From 34b6c232d3cf4fd1f92fac08ad34957202b1bdb0 Mon Sep 17 00:00:00 2001 From: Christoph Ruegg Date: Sun, 24 Jun 2018 15:12:01 +0200 Subject: [PATCH] Spatial: import tests --- src/Numerics.Tests/Numerics.Tests.csproj | 3 + src/Numerics.Tests/Spatial/AngleTests.cs | 338 ++++++++++++ src/Numerics.Tests/Spatial/AssertGeometry.cs | 164 ++++++ src/Numerics.Tests/Spatial/AssertXml.cs | 117 +++++ src/Numerics.Tests/Spatial/AssertXmlTests.cs | 111 ++++ .../Spatial/Euclidean2D/Circle2DTests.cs | 58 +++ .../Spatial/Euclidean2D/Line2DTests.cs | 214 ++++++++ .../Spatial/Euclidean2D/LineSegment2DTests.cs | 167 ++++++ .../Spatial/Euclidean2D/Point2DTests.cs | 283 ++++++++++ .../Spatial/Euclidean2D/PolyLine2DTests.cs | 72 +++ .../Spatial/Euclidean2D/Polygon2DTests.cs | 186 +++++++ .../Spatial/Euclidean2D/Vector2DTests.cs | 469 +++++++++++++++++ .../Spatial/Euclidean3D/Circle3DTests.cs | 69 +++ .../Euclidean3D/CoordinateSystem3DTests.cs | 311 +++++++++++ .../Spatial/Euclidean3D/Line3DTests.cs | 198 +++++++ .../Spatial/Euclidean3D/LineSegment3DTests.cs | 143 +++++ .../Spatial/Euclidean3D/Plane3DTests.cs | 238 +++++++++ .../Spatial/Euclidean3D/Point3DTests.cs | 294 +++++++++++ .../Spatial/Euclidean3D/PolyLine3DTests.cs | 72 +++ .../Spatial/Euclidean3D/Ray3DTests.cs | 59 +++ .../Spatial/Euclidean3D/UnitVector3DTests.cs | 220 ++++++++ .../Spatial/Euclidean3D/Vector3DTests.cs | 492 ++++++++++++++++++ 22 files changed, 4278 insertions(+) create mode 100644 src/Numerics.Tests/Spatial/AngleTests.cs create mode 100644 src/Numerics.Tests/Spatial/AssertGeometry.cs create mode 100644 src/Numerics.Tests/Spatial/AssertXml.cs create mode 100644 src/Numerics.Tests/Spatial/AssertXmlTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/Circle2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/Line2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/LineSegment2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/Point2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/PolyLine2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/Polygon2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean2D/Vector2DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Circle3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/CoordinateSystem3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Line3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/LineSegment3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Plane3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Point3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/PolyLine3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Ray3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/UnitVector3DTests.cs create mode 100644 src/Numerics.Tests/Spatial/Euclidean3D/Vector3DTests.cs diff --git a/src/Numerics.Tests/Numerics.Tests.csproj b/src/Numerics.Tests/Numerics.Tests.csproj index 3cfa17d8..9b4c2a4e 100644 --- a/src/Numerics.Tests/Numerics.Tests.csproj +++ b/src/Numerics.Tests/Numerics.Tests.csproj @@ -27,5 +27,8 @@ + + + diff --git a/src/Numerics.Tests/Spatial/AngleTests.cs b/src/Numerics.Tests/Spatial/AngleTests.cs new file mode 100644 index 00000000..7b43e664 --- /dev/null +++ b/src/Numerics.Tests/Spatial/AngleTests.cs @@ -0,0 +1,338 @@ +using System; +using System.Globalization; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.Spatial; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial +{ + [TestFixture] + public class AngleTests + { + private const double Tolerance = 1e-6; + private const double DegToRad = Math.PI / 180; + + [Test] + public void OperatorCompare() + { + var one = Angle.FromRadians(1); + var two = Angle.FromRadians(2); + Assert.AreEqual(true, one < two); + Assert.AreEqual(true, one <= two); + Assert.AreEqual(true, one <= Angle.FromRadians(1)); + Assert.AreEqual(false, one < Angle.FromRadians(1)); + Assert.AreEqual(false, one > Angle.FromRadians(1)); + Assert.AreEqual(true, one >= Angle.FromRadians(1)); + } + + [TestCase("1.5707 rad", "1.5707 rad", 1.5707 + 1.5707)] + [TestCase("1.5707 rad", "2 °", 1.5707 + (2 * DegToRad))] + public void OperatorAdd(string lvs, string rvs, double ev) + { + var lv = Angle.Parse(lvs); + var rv = Angle.Parse(rvs); + var sum = lv + rv; + Assert.AreEqual(ev, sum.Radians, Tolerance); + Assert.IsInstanceOf(sum); + } + + [TestCase("1.5707 rad", "1.5706 rad", 1.5707 - 1.5706)] + [TestCase("1.5707 rad", "2 °", 1.5707 - (2 * DegToRad))] + public void OperatorSubtract(string lvs, string rvs, double ev) + { + var lv = Angle.Parse(lvs); + var rv = Angle.Parse(rvs); + var diff = lv - rv; + Assert.AreEqual(ev, diff.Radians, Tolerance); + Assert.IsInstanceOf(diff); + } + + [TestCase("15 °", 5, 15 * 5 * DegToRad)] + [TestCase("-10 °", 0, 0)] + [TestCase("-10 °", 2, -10 * 2 * DegToRad)] + [TestCase("1 rad", 2, 2)] + public void OperatorMultiply(string lvs, double rv, double ev) + { + var lv = Angle.Parse(lvs); + var prods = new[] { lv * rv, rv * lv }; + foreach (var prod in prods) + { + Assert.AreEqual(ev, prod.Radians, 1e-3); + Assert.IsInstanceOf(prod); + } + } + + [Test] + public void OperatorNegate() + { + Assert.AreEqual(-1, (-Angle.FromRadians(1)).Radians); + } + + [TestCase("3.141596 rad", 2, 1.570797999)] + public void DivisionTest(string s, double rv, double expected) + { + var angle = Angle.Parse(s); + var actual = angle / rv; + Assert.AreEqual(expected, actual.Radians, Tolerance); + Assert.IsInstanceOf(actual); + } + + [TestCase("90 °", 90, Math.PI / 2, true)] + [TestCase("1 rad", 1 * 180 / Math.PI, 1, true)] + [TestCase("1.1 rad", 1 * 180 / Math.PI, Math.PI / 2, false)] + public void Equals(string s, double degrees, double radians, bool expected) + { + var a = Angle.Parse(s); + var deg = Angle.FromDegrees(degrees); + Assert.AreEqual(expected, deg.Equals(a)); + Assert.AreEqual(expected, deg.Equals(a, Tolerance)); + Assert.AreEqual(expected, deg == a); + Assert.AreEqual(!expected, deg != a); + + var rad = Angle.FromRadians(radians); + Assert.AreEqual(expected, rad.Equals(a)); + Assert.AreEqual(expected, rad.Equals(a, Tolerance)); + Assert.AreEqual(expected, rad == a); + Assert.AreEqual(!expected, rad != a); + } + + [Test] + public void EqualsWithTolerance() + { + var one = Angle.FromRadians(1); + var two = Angle.FromRadians(2); + Assert.AreEqual(true, one.Equals(two, 2)); + Assert.AreEqual(false, one.Equals(two, 0.1)); + Assert.AreEqual(true, one.Equals(two, Angle.FromRadians(2))); + Assert.AreEqual(false, one.Equals(two, Angle.FromRadians(0.1))); + } + + [TestCase(90, 1.5707963267948966)] + public void FromDegrees(double degrees, double expected) + { + Assert.AreEqual(expected, Angle.FromDegrees(degrees).Radians); + Assert.AreEqual(degrees, Angle.FromDegrees(degrees).Degrees, 1E-6); + } + + [TestCase(1, 1)] + public void FromRadians(double radians, double expected) + { + Assert.AreEqual(expected, Angle.FromRadians(radians).Radians); + } + + [TestCase(20, 33, 49, 0.35890271998857842)] + public void FromSexagesimal(int degrees, int minutes, double seconds, double expected) + { + Assert.AreEqual(expected, Angle.FromSexagesimal(degrees, minutes, seconds).Radians, 1E-6); + } + + [TestCase("5 °", 5 * DegToRad)] + [TestCase("5°", 5 * DegToRad)] + [TestCase("-5.34 rad", -5.34)] + [TestCase("-5,34 rad", -5.34)] + [TestCase("1e-4 rad", 0.0001)] + [TestCase("1e-4 °", 0.0001 * DegToRad)] + public void Parse(string s, double expected) + { + Assert.AreEqual(true, Angle.TryParse(s, out var angle)); + Assert.AreEqual(expected, angle.Radians, Tolerance); + angle = Angle.Parse(s); + Assert.AreEqual(expected, angle.Radians, Tolerance); + Assert.IsInstanceOf(angle); + + // ReSharper disable once RedundantToStringCall + angle = Angle.Parse(s.ToString()); + Assert.AreEqual(expected, angle.Radians, Tolerance); + Assert.IsInstanceOf(angle); + } + + [Test] + public void FailParse() + { + bool result = Angle.TryParse("test", out var angle); + Assert.AreEqual(default(Angle), angle); + Assert.IsFalse(result); + } + + [Test] + public void FailParseDirect() + { + Assert.Throws(() => Angle.Parse("Test"), "Expected FormatException", null); + } + + [TestCase(".1 rad", 0.1)] + [TestCase("1.2 rad", 1.2)] + [TestCase("1.2\u00A0rad", 1.2)] + [TestCase("1.2radians", 1.2)] + [TestCase("1.2 radians", 1.2)] + [TestCase("1.2\u00A0radians", 1.2)] + [TestCase("1.2\u00A0Radians", 1.2)] + public void ParseRadians(string text, double expected) + { + Assert.AreEqual(true, Angle.TryParse(text, out var angle)); + Assert.AreEqual(expected, angle.Radians); + Assert.AreEqual(expected, Angle.Parse(text).Radians); + } + + [TestCase("1°", 1)] + [TestCase("1 °", 1)] + [TestCase("1deg", 1)] + [TestCase("1 deg", 1)] + [TestCase("1\u00A0deg", 1)] + [TestCase("1\u00A0DEG", 1)] + [TestCase("1degrees", 1)] + [TestCase("1 degrees", 1)] + [TestCase("1\u00A0degrees", 1)] + [TestCase("1\u00A0Degrees", 1)] + public void ParseDegrees(string text, double expected) + { + Assert.AreEqual(true, Angle.TryParse(text, out var angle)); + Assert.AreEqual(expected, angle.Degrees); + Assert.AreEqual(expected, Angle.Parse(text).Degrees); + } + + [TestCase(@"")] + [TestCase(@"1")] + public void ReadFrom(string xml) + { + var v = Angle.FromRadians(1); + Assert.AreEqual(v, Angle.ReadFrom(XmlReader.Create(new StringReader(xml)))); + } + + [Test] + public void Compare() + { + var small = Angle.FromDegrees(1); + var big = Angle.FromDegrees(2); + Assert.IsTrue(small < big); + Assert.IsTrue(small <= big); + Assert.IsFalse(small > big); + Assert.IsFalse(small >= big); + Assert.AreEqual(-1, small.CompareTo(big)); + Assert.AreEqual(0, small.CompareTo(small)); + Assert.AreEqual(1, big.CompareTo(small)); + } + + [TestCase("15 °", "0.261799387799149\u00A0rad")] + public void ToString(string s, string expected) + { + var angle = Angle.Parse(s); + var toString = angle.ToString(CultureInfo.InvariantCulture); + Assert.AreEqual(expected, toString); + Assert.IsTrue(angle.Equals(Angle.Parse(toString), Tolerance)); + Assert.IsTrue(angle.Equals(Angle.Parse(toString), Angle.FromRadians(Tolerance))); + } + + //[TestCase("15°", "F2", "15.00°")] + //public void ToString(string s, string format, string expected) + //{ + // var angle = Angle.Parse(s); + // var toString = angle.ToString(format, CultureInfo.InvariantCulture, AngleUnit.Degrees); + // Assert.AreEqual(expected, toString); + // Assert.AreEqual(angle.Radians, Angle.Parse(angle.ToString(format)).Radians, 1E-2); + // Assert.IsTrue(angle.Equals(Angle.Parse(toString), Tolerance)); + //} + + [TestCase("15°", @"")] + public void XmlRoundTrips(string vs, string xml) + { + var angle = Angle.Parse(vs); + AssertXml.XmlRoundTrips(angle, xml, (e, a) => + { + Assert.AreEqual(e.Radians, a.Radians, Tolerance); + }); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = Angle.FromRadians(1), + Value2 = Angle.FromRadians(2), + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + Assert.AreEqual(container.Value1, roundTrip.Value1); + Assert.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void ReadXmlContainerElementValues() + { + var container = new AssertXml.Container + { + Value1 = Angle.FromRadians(1), + Value2 = Angle.FromRadians(2), + }; + var xml = "\r\n" + + " 1\r\n" + + " 2\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + using (var reader = new StringReader(xml)) + { + var deserialized = (AssertXml.Container)serializer.Deserialize(reader); + Assert.AreEqual(container.Value1, deserialized.Value1); + Assert.AreEqual(container.Value2, deserialized.Value2); + } + } + + [TestCase("15°", @"0.261799387799149")] + [TestCase("15°", @"0.261799387799149")] + [TestCase("15°", @"15")] + [TestCase("15°", @"")] + [TestCase("180°", @"")] + public void XmlElement(string vs, string xml) + { + var angle = Angle.Parse(vs); + var serializer = new XmlSerializer(typeof(Angle)); + using (var reader = new StringReader(xml)) + { + var fromElements = (Angle)serializer.Deserialize(reader); + Assert.AreEqual(angle.Radians, fromElements.Radians, 1e-6); + } + } + + [Test] + public void ToStringTest() + { + int number = 1; + var angle = Angle.FromRadians(number); + string expected = number + " rad"; + Assert.AreEqual(expected, angle.ToString()); + } + + [Test] + public void ObjectEqualsTest() + { + var angle = Angle.FromRadians(1); + Assert.IsTrue(angle.Equals((object)angle)); + } + + [Test] + public void ObjectNullTest() + { + var angle = Angle.FromRadians(1); + Assert.IsFalse(angle.Equals(null)); + } + + [Test] + public void HashCodeTest() + { + string test = "test"; + var angle = Angle.FromRadians(1); + var lookup = new System.Collections.Generic.Dictionary + { + { angle, test } + }; + + Assert.AreEqual(test, lookup[angle]); + } + } +} diff --git a/src/Numerics.Tests/Spatial/AssertGeometry.cs b/src/Numerics.Tests/Spatial/AssertGeometry.cs new file mode 100644 index 00000000..1582333f --- /dev/null +++ b/src/Numerics.Tests/Spatial/AssertGeometry.cs @@ -0,0 +1,164 @@ +using MathNet.Numerics.LinearAlgebra; +using MathNet.Numerics.Spatial.Euclidean2D; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial +{ + public static class AssertGeometry + { + public static void AreEqual(CoordinateSystem3D coordinateSystem, Point3D origin, Vector3D xAxis, Vector3D yAxis, Vector3D zAxis, double tolerance = 1e-6) + { + AreEqual(xAxis, coordinateSystem.XAxis, tolerance); + AreEqual(yAxis, coordinateSystem.YAxis, tolerance); + AreEqual(zAxis, coordinateSystem.ZAxis, tolerance); + AreEqual(origin, coordinateSystem.Origin, tolerance); + + AreEqual(new double[] { xAxis.X, xAxis.Y, xAxis.Z, 0 }, coordinateSystem.Column(0).ToArray(), tolerance); + AreEqual(new double[] { yAxis.X, yAxis.Y, yAxis.Z, 0 }, coordinateSystem.Column(1).ToArray(), tolerance); + AreEqual(new double[] { zAxis.X, zAxis.Y, zAxis.Z, 0 }, coordinateSystem.Column(2).ToArray(), tolerance); + AreEqual(new double[] { origin.X, origin.Y, origin.Z, 1 }, coordinateSystem.Column(3).ToArray(), tolerance); + } + + public static void AreEqual(UnitVector3D expected, UnitVector3D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + Assert.AreEqual(expected.X, actual.X, tolerance, message); + Assert.AreEqual(expected.Y, actual.Y, tolerance, message); + Assert.AreEqual(expected.Z, actual.Z, tolerance, message); + } + + public static void AreEqual(Vector3D expected, Vector3D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + Assert.AreEqual(expected.X, actual.X, tolerance, message); + Assert.AreEqual(expected.Y, actual.Y, tolerance, message); + Assert.AreEqual(expected.Z, actual.Z, tolerance, message); + } + + public static void AreEqual(UnitVector3D expected, Vector3D actual, double tolerance = 1e-6, string message = "") + { + AreEqual(expected.ToVector3D(), actual, tolerance, message); + } + + public static void AreEqual(Vector3D expected, UnitVector3D actual, double tolerance = 1e-6, string message = "") + { + AreEqual(expected, actual.ToVector3D(), tolerance, message); + } + + public static void AreEqual(Vector2D expected, Vector2D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + Assert.AreEqual(expected.X, actual.X, tolerance, message); + Assert.AreEqual(expected.Y, actual.Y, tolerance, message); + } + + public static void AreEqual(Point3D expected, Point3D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + Assert.AreEqual(expected.X, actual.X, tolerance, message); + Assert.AreEqual(expected.Y, actual.Y, tolerance, message); + Assert.AreEqual(expected.Z, actual.Z, tolerance, message); + } + + public static void AreEqual(CoordinateSystem3D expected, CoordinateSystem3D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + if (expected.Values.Length != actual.Values.Length) + { + Assert.Fail(); + } + + for (var i = 0; i < expected.Values.Length; i++) + { + Assert.AreEqual(expected.Values[i], actual.Values[i], tolerance); + } + } + + public static void AreEqual(double[] expected, double[] actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", "{" + string.Join(",", expected) + "}", "{" + string.Join(",", actual) + "}"); + } + + if (expected.Length != actual.Length) + { + Assert.Fail(); + } + + for (var i = 0; i < expected.Length; i++) + { + Assert.AreEqual(expected[i], actual[i], tolerance); + } + } + + public static void AreEqual(Line3D expected, Line3D actual, double tolerance = 1e-6) + { + AreEqual(expected.StartPoint, actual.StartPoint, tolerance); + AreEqual(expected.EndPoint, actual.EndPoint, tolerance); + } + + public static void AreEqual(LineSegment3D expected, LineSegment3D actual, double tolerance = 1e-6) + { + AreEqual(expected.StartPoint, actual.StartPoint, tolerance); + AreEqual(expected.EndPoint, actual.EndPoint, tolerance); + } + + public static void AreEqual(Ray3D expected, Ray3D actual, double tolerance = 1e-6, string message = "") + { + AreEqual(expected.ThroughPoint, actual.ThroughPoint, tolerance, message); + AreEqual(expected.Direction, actual.Direction, tolerance, message); + } + + public static void AreEqual(Plane3D expected, Plane3D actual, double tolerance = 1e-6, string message = "") + { + AreEqual(expected.Normal, actual.Normal, tolerance, message); + AreEqual(expected.RootPoint, actual.RootPoint, tolerance, message); + Assert.AreEqual(expected.D, actual.D, tolerance, message); + } + + public static void AreEqual(Matrix expected, Matrix actual, double tolerance = 1e-6) + { + Assert.AreEqual(expected.RowCount, actual.RowCount); + Assert.AreEqual(expected.ColumnCount, actual.ColumnCount); + var expectedRowWiseArray = expected.ToRowMajorArray(); + var actualRowWiseArray = actual.ToRowMajorArray(); + for (var i = 0; i < expectedRowWiseArray.Length; i++) + { + Assert.AreEqual(expectedRowWiseArray[i], actualRowWiseArray[i], tolerance); + } + } + + public static void AreEqual(Point2D expected, Point2D actual, double tolerance = 1e-6, string message = "") + { + if (string.IsNullOrEmpty(message)) + { + message = string.Format("Expected {0} but was {1}", expected, actual); + } + + Assert.AreEqual(expected.X, actual.X, tolerance, message); + Assert.AreEqual(expected.Y, actual.Y, tolerance, message); + } + } +} diff --git a/src/Numerics.Tests/Spatial/AssertXml.cs b/src/Numerics.Tests/Spatial/AssertXml.cs new file mode 100644 index 00000000..f9e54c3f --- /dev/null +++ b/src/Numerics.Tests/Spatial/AssertXml.cs @@ -0,0 +1,117 @@ +using System; +using System.Diagnostics; +using System.IO; +using System.Linq; +using System.Xml; +using System.Xml.Linq; +using System.Xml.Serialization; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial +{ + public static class AssertXml + { + public static XmlWriterSettings Settings + { + get + { + var settings = new XmlWriterSettings + { + Indent = true, + NewLineHandling = NewLineHandling.Entitize, + OmitXmlDeclaration = true, + ////NamespaceHandling = NamespaceHandling.Default + }; + return settings; + } + } + + public static void AreEqual(string first, string other) + { + var x1 = CleanupXml(first); + var x2 = CleanupXml(other); + Assert.AreEqual(x1, x2); + } + + /// + /// Serializes using XmlSerializer & DataContractSerializer + /// Compares the generated xml + /// Then asserts that the deserialized is the same as input (item) + /// + /// + /// + /// + /// + public static void XmlRoundTrips(T item, string expectedXml, Action assert) + { + var roundtrips = new[] + { + XmlSerializerRoundTrip(item, expectedXml) + }; + foreach (var roundtrip in roundtrips) + { + assert(item, roundtrip); + } + } + + public static T XmlSerializerRoundTrip(T item, string expected) + { + var serializer = new XmlSerializer(item.GetType()); + string xml; + + using (var sw = new StringWriter()) + using (var writer = XmlWriter.Create(sw, Settings)) + { + serializer.Serialize(writer, item); + xml = sw.ToString(); + Debug.WriteLine("XmlSerializer"); + Debug.Write(xml); + Debug.WriteLine(string.Empty); + AreEqual(expected, xml); + } + + using (var reader = new StringReader(xml)) + { + return (T)serializer.Deserialize(reader); + } + } + + private static string Normalize(XElement e) + { + using (var sw = new StringWriter()) + using (var writer = XmlWriter.Create(sw, Settings)) + { + e.WriteTo(writer); + writer.Flush(); + return sw.ToString(); + } + } + + private static string CleanupXml(string xml) + { + var e = XElement.Parse(xml); + var clean = RemoveAllNamespaces(e); + return Normalize(clean); + } + + /// + /// Core recursion function + /// + /// + /// + private static XElement RemoveAllNamespaces(XElement e) + { + var ne = new XElement(e.Name.LocalName, e.HasElements ? null : e.Value); + ne.Add(e.Attributes().Where(a => !a.IsNamespaceDeclaration)); + ne.Add(e.Elements().Select(RemoveAllNamespaces)); + return ne; + } + + public class Container + { + public T Value1 { get; set; } + + public T Value2 { get; set; } + } + } +} diff --git a/src/Numerics.Tests/Spatial/AssertXmlTests.cs b/src/Numerics.Tests/Spatial/AssertXmlTests.cs new file mode 100644 index 00000000..b008cbf0 --- /dev/null +++ b/src/Numerics.Tests/Spatial/AssertXmlTests.cs @@ -0,0 +1,111 @@ +using System; +using System.Collections.Generic; +using System.Globalization; +using System.Linq; +using System.Linq.Expressions; +using System.Reflection; +using System.Xml; +using System.Xml.Linq; +using System.Xml.Schema; +using System.Xml.Serialization; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial +{ + +#if !NETCOREAPP1_1 + + public class AssertXmlTests + { + [Test] + public void XmlSerializerRoundTripTest() + { + var dummy = new XmlSerializableDummy("Meh", 14); + var roundTrip = AssertXml.XmlSerializerRoundTrip(dummy, @"Meh"); + Assert.AreEqual(dummy.Name, roundTrip.Name); + Assert.AreEqual(dummy.Age, roundTrip.Age); + } + + public class XmlSerializableDummy : IXmlSerializable + { + private readonly string name; + + public XmlSerializableDummy(string name, int age) + { + this.Age = age; + this.name = name; + } + + // ReSharper disable once UnusedMember.Local + private XmlSerializableDummy() + { + } + + public string Name => this.name; + + public int Age { get; set; } + + public XmlSchema GetSchema() => null; + + public void ReadXml(XmlReader reader) + { + var e = (XElement)XNode.ReadFrom(reader); + this.Age = XmlConvert.ToInt32(e.Attribute("Age").Value); + var name = ReadAttributeOrElement(e, "Name"); + WriteValueToReadonlyField(this, name, () => this.name); + } + + public void WriteXml(XmlWriter writer) + { + writer.WriteAttributeString("Age", this.Age.ToString(CultureInfo.InvariantCulture)); + writer.WriteElementString("Name", this.Name); + } + + private static string ReadAttributeOrElement(XElement e, string localName) + { + XAttribute xattribute = e.Attributes() + .SingleOrDefault(x => x.Name.LocalName == localName); + if (xattribute != null) + { + return xattribute.Value; + } + + XElement xelement = e.Elements() + .SingleOrDefault(x => x.Name.LocalName == localName); + if (xelement != null) + { + return xelement.Value; + } + + throw new XmlException($"Attribute or element {localName} not found"); + } + + private static void WriteValueToReadonlyField( + TClass item, + TProperty value, + Expression> fieldExpression) + { + string name = ((MemberExpression)fieldExpression.Body).Member.Name; + GetAllFields(item.GetType()) + .Single(x => x.Name == name) + .SetValue(item, value); + } + + private static IEnumerable GetAllFields(Type t) + { + if (t == null) + { + return Enumerable.Empty(); + } + + BindingFlags bindingAttr = BindingFlags.DeclaredOnly | BindingFlags.Instance | BindingFlags.Static | + BindingFlags.Public | BindingFlags.NonPublic; + return t.GetFields(bindingAttr) + .Concat(GetAllFields(t.BaseType)); + } + } + } + +#endif + +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/Circle2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/Circle2DTests.cs new file mode 100644 index 00000000..bfa438ee --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/Circle2DTests.cs @@ -0,0 +1,58 @@ +using System; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class Circle2DTests + { + [TestCase("0, 0", 2.5)] + [TestCase("2, -4", 4.7)] + public void CircleCenterRadius(string p1s, double radius) + { + var center = Point2D.Parse(p1s); + var circle = new Circle2D(center, radius); + Assert.AreEqual(2 * radius, circle.Diameter, double.Epsilon); + Assert.AreEqual(2 * Math.PI * radius, circle.Circumference, double.Epsilon); + Assert.AreEqual(Math.PI * radius * radius, circle.Area, double.Epsilon); + } + + [TestCase("0, 0", 1)] + [TestCase("2, -4", 4.7)] + public void CircleEquality(string center, double radius) + { + var cp = Point2D.Parse(center); + var c = new Circle2D(cp, radius); + var c2 = new Circle2D(cp, radius); + Assert.True(c == c2); + Assert.True(c.Equals(c2)); + } + + [TestCase("-7,4", "-4,5", "0,3", "-4,0", 5)] + [TestCase("1,1", "2,4", "5,3", "3,2", 2.2360679775)] + [TestCase("-1,0", "0,1", "1,0", "0,0", 1)] + public void CircleFromThreePoints(string p1s, string p2s, string p3s, string centers, double radius) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var p3 = Point2D.Parse(p3s); + var center = Point2D.Parse(centers); + + var circle = Circle2D.FromPoints(p1, p2, p3); + + AssertGeometry.AreEqual(center, circle.Center); + Assert.AreEqual(radius, circle.Radius, 1e-6); + } + + [Test] + public void CircleFromThreePointsArgumentException() + { + var p1 = new Point2D(0, 0); + var p2 = new Point2D(-1, 0); + var p3 = new Point2D(1, 0); + + Assert.Throws(() => { Circle2D.FromPoints(p1, p2, p3); }); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/Line2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/Line2DTests.cs new file mode 100644 index 00000000..415a33f2 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/Line2DTests.cs @@ -0,0 +1,214 @@ +using System; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class Line2DTests + { + [Test] + public void Constructor() + { + var p1 = new Point2D(0, 0); + var p2 = new Point2D(1, 1); + var line = new Line2D(p1, p2); + + AssertGeometry.AreEqual(p1, line.StartPoint); + AssertGeometry.AreEqual(p2, line.EndPoint); + } + + [Test] + public void ConstructorThrowsErrorOnSamePoint() + { + var p1 = new Point2D(1, -1); + var p2 = new Point2D(1, -1); + Assert.Throws(() => new Line2D(p1, p2)); + } + + [TestCase("0,0", "1,0", 1)] + [TestCase("0,0", "0,1", 1)] + [TestCase("0,0", "-1,0", 1)] + [TestCase("0,-1", "0,1", 2)] + [TestCase("-1,-1", "2,2", 4.24264068711)] + public void LineLength(string p1s, string p2s, double expected) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var line = new Line2D(p1, p2); + var len = line.Length; + + Assert.AreEqual(expected, len, 1e-7); + } + + [TestCase("0,0", "4,0", "1,0")] + [TestCase("3,0", "0,0", "-1,0")] + [TestCase("2.7,-2.7", "0,0", "-0.707106781,0.707106781")] + [TestCase("11,-1", "11,1", "0,1")] + public void LineDirection(string p1s, string p2s, string exs) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var ex = Vector2D.Parse(exs); + var line = new Line2D(p1, p2); + + AssertGeometry.AreEqual(ex, line.Direction); + } + + [TestCase("0,0", "10,10", "0,0", "10,10", true)] + [TestCase("0,0", "10,10", "0,0", "10,11", false)] + public void EqualityOperator(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var l1 = Line2D.Parse(p1s, p2s); + var l2 = Line2D.Parse(p3s, p4s); + + Assert.AreEqual(expected, l1 == l2); + } + + [TestCase("0,0", "10,10", "0,0", "10,10", false)] + [TestCase("0,0", "10,10", "0,0", "10,11", true)] + public void InequalityOperator(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var l1 = new Line2D(Point2D.Parse(p1s), Point2D.Parse(p2s)); + var l2 = new Line2D(Point2D.Parse(p3s), Point2D.Parse(p4s)); + + Assert.AreEqual(expected, l1 != l2); + } + + [Test] + public void EqualityComparisonFalseAgainstNull() + { + var line = new Line2D(default(Point2D), new Point2D(1, 1)); + Assert.IsFalse(line.Equals(null)); + } + + [Test] + public void AdditionOperator() + { + var l1 = Line2D.Parse("0,0", "1,1"); + var ex = Line2D.Parse("-1,-1", "0,0"); + + Assert.AreEqual(ex, l1 + new Vector2D(-1, -1)); + } + + [Test] + public void SubtractionOperator() + { + var l1 = Line2D.Parse("0,0", "1,1"); + var ex = Line2D.Parse("-1,-1", "0,0"); + + Assert.AreEqual(ex, l1 - new Vector2D(1, 1)); + } + + [TestCase("0,0", "1,-1", Description = "Check start point")] + [TestCase("1,0", "1,-1")] + [TestCase("1,-2", "1,-1")] + [TestCase("4,0", "3,-1", Description = "Check end point")] + [TestCase("3,0", "3,-1")] + [TestCase("3,-3", "3,-1")] + [TestCase("1.5,0", "1.5,-1", Description = "Check near middle")] + [TestCase("1.5,-2", "1.5,-1")] + public void LineToBetweenEndPoints(string ptest, string exs) + { + var line = Line2D.Parse("1,-1", "3,-1"); + var point = Point2D.Parse(ptest); + var expPoint = Point2D.Parse(exs); + var expLine = new Line2D(expPoint, point); + + Assert.AreEqual(expLine, line.LineTo(point, true)); + } + + [TestCase("0,0", "0,-1", Description = "Check start point")] + [TestCase("1,0", "1,-1")] + [TestCase("1,-2", "1,-1")] + [TestCase("4,0", "4,-1", Description = "Check end pointt")] + [TestCase("3,0", "3,-1")] + [TestCase("3,-3", "3,-1")] + [TestCase("1.5,0", "1.5,-1", Description = "Check near middle")] + [TestCase("1.5,-2", "1.5,-1")] + public void LineToIgnoreEndPoints(string ptest, string exs) + { + var line = Line2D.Parse("1,-1", "3,-1"); + var point = Point2D.Parse(ptest); + var expPoint = Point2D.Parse(exs); + var expLine = new Line2D(expPoint, point); + + Assert.AreEqual(expLine, line.LineTo(point, false)); + } + + [TestCase("0,0", "1,0", "0,0", "0,0")] + [TestCase("0,0", "1,0", "1,0", "1,0")] + [TestCase("0,0", "1,0", ".25,1", ".25,0")] + [TestCase("0,0", "1,0", "-1,0", "0,0")] + [TestCase("0,0", "1,0", "3,0", "1,0")] + public void ClosestPointToWithinSegment(string start, string end, string point, string expected) + { + var line = Line2D.Parse(start, end); + var p = Point2D.Parse(point); + var e = Point2D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p, true)); + } + + [TestCase("0,0", "1,0", "0,0", "0,0")] + [TestCase("0,0", "1,0", "1,0", "1,0")] + [TestCase("0,0", "1,0", ".25,1", ".25,0")] + [TestCase("0,0", "1,0", "-1,1", "-1,0")] + [TestCase("0,0", "1,0", "3,0", "3,0")] + public void ClosestPointToOutsideSegment(string start, string end, string point, string expected) + { + var line = Line2D.Parse(start, end); + var p = Point2D.Parse(point); + var e = Point2D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p, false)); + } + + [TestCase("0,0", "2,2", "1,0", "1,2", "1,1")] + [TestCase("0,0", "2,2", "0,1", "2,1", "1,1")] + [TestCase("0,0", "2,2", "-1,-5", "-1,0", "-1,-1")] + [TestCase("0,0", "2,2", "0,1", "1,2", null)] + public void IntersectWithTest(string s1, string e1, string s2, string e2, string expected) + { + var line1 = Line2D.Parse(s1, e1); + var line2 = Line2D.Parse(s2, e2); + var e = string.IsNullOrEmpty(expected) ? (Point2D?)null : Point2D.Parse(expected); + Assert.AreEqual(e, line1.IntersectWith(line2)); + Assert.AreEqual(e, line1.IntersectWith(line2, Angle.FromRadians(0.001))); + } + + [TestCase("0,0", "0,1", "1,1", "1,2", true)] + [TestCase("0,0", "0,-1", "1,1", "1,2", true)] + [TestCase("0,0", "0.5,-1", "1,1", "1,2", false)] + [TestCase("0,0", "0.00001,-1.0000", "1,1", "1,2", false)] + public void IsParallelToWithinDoubleTol(string s1, string e1, string s2, string e2, bool expected) + { + var line1 = Line2D.Parse(s1, e1); + var line2 = Line2D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2)); + } + + [TestCase("0,0", "0,1", "1,1", "1,2", 0.01, true)] + [TestCase("0,0", "0,-1", "1,1", "1,2", 0.01, true)] + [TestCase("0,0", "0.5,-1", "1,1", "1,2", 0.01, false)] + [TestCase("0,0", "0.001,-1.0000", "1,1", "1,2", 0.05, false)] + [TestCase("0,0", "0.001,-1.0000", "1,1", "1,2", 0.06, true)] + public void IsParallelToWithinAngleTol(string s1, string e1, string s2, string e2, double degreesTol, bool expected) + { + var line1 = Line2D.Parse(s1, e1); + var line2 = Line2D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2, Angle.FromDegrees(degreesTol))); + } + + [Test] + public void ToStringCheck() + { + var check = Line2D.Parse("0,0", "1,1").ToString(); + + Assert.AreEqual("StartPoint: (0,\u00A00), EndPoint: (1,\u00A01)", check); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/LineSegment2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/LineSegment2DTests.cs new file mode 100644 index 00000000..de335bf3 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/LineSegment2DTests.cs @@ -0,0 +1,167 @@ +using System; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class LineSegment2DTests + { + [Test] + public void Constructor() + { + var p1 = new Point2D(0, 0); + var p2 = new Point2D(1, 1); + var line = new LineSegment2D(p1, p2); + + AssertGeometry.AreEqual(p1, line.StartPoint); + AssertGeometry.AreEqual(p2, line.EndPoint); + } + + [Test] + public void ConstructorThrowsErrorOnSamePoint() + { + var p1 = new Point2D(1, -1); + var p2 = new Point2D(1, -1); + Assert.Throws(() => new LineSegment2D(p1, p2)); + } + + [TestCase("0,0", "1,0", 1)] + [TestCase("0,0", "0,1", 1)] + [TestCase("0,0", "-1,0", 1)] + [TestCase("0,-1", "0,1", 2)] + [TestCase("-1,-1", "2,2", 4.24264068711)] + public void LineLength(string p1s, string p2s, double expected) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var line = new LineSegment2D(p1, p2); + var len = line.Length; + + Assert.AreEqual(expected, len, 1e-7); + } + + [TestCase("0,0", "4,0", "1,0")] + [TestCase("3,0", "0,0", "-1,0")] + [TestCase("2.7,-2.7", "0,0", "-0.707106781,0.707106781")] + [TestCase("11,-1", "11,1", "0,1")] + public void LineDirection(string p1s, string p2s, string exs) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var ex = Vector2D.Parse(exs); + var line = new LineSegment2D(p1, p2); + + AssertGeometry.AreEqual(ex, line.Direction); + } + + [TestCase("0,0", "10,10", "0,0", "10,10", true)] + [TestCase("0,0", "10,10", "0,0", "10,11", false)] + public void EqualityOperator(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var l1 = LineSegment2D.Parse(p1s, p2s); + var l2 = LineSegment2D.Parse(p3s, p4s); + + Assert.AreEqual(expected, l1 == l2); + } + + [TestCase("0,0", "10,10", "0,0", "10,10", false)] + [TestCase("0,0", "10,10", "0,0", "10,11", true)] + public void InequalityOperator(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var l1 = new LineSegment2D(Point2D.Parse(p1s), Point2D.Parse(p2s)); + var l2 = new LineSegment2D(Point2D.Parse(p3s), Point2D.Parse(p4s)); + + Assert.AreEqual(expected, l1 != l2); + } + + [Test] + public void EqualityComparisonFalseAgainstNull() + { + var line = new LineSegment2D(default(Point2D), new Point2D(1, 1)); + Assert.IsFalse(line.Equals(null)); + } + + [TestCase("0,0", "1,-1", Description = "Check start point")] + [TestCase("1,0", "1,-1")] + [TestCase("1,-2", "1,-1")] + [TestCase("4,0", "3,-1", Description = "Check end point")] + [TestCase("3,0", "3,-1")] + [TestCase("3,-3", "3,-1")] + [TestCase("1.5,0", "1.5,-1", Description = "Check near middle")] + [TestCase("1.5,-2", "1.5,-1")] + public void LineToBetweenEndPoints(string ptest, string exs) + { + var line = LineSegment2D.Parse("1,-1", "3,-1"); + var point = Point2D.Parse(ptest); + var expPoint = Point2D.Parse(exs); + var expLine = new LineSegment2D(expPoint, point); + + Assert.AreEqual(expLine, line.LineTo(point)); + } + + [TestCase("1,1", "3,1", "1,1", "2,2", "4,2")] + [TestCase("1,1", "3,1", "-1,-1", "0,0", "2,0")] + public void TranslateBy(string spoint1, string spoint2, string svector, string spoint3, string spoint4) + { + var line = LineSegment2D.Parse(spoint1, spoint2); + var expected = LineSegment2D.Parse(spoint3, spoint4); + var vector = Vector2D.Parse(svector); + Assert.AreEqual(expected.Length, line.Length); + Assert.AreEqual(expected, line.TranslateBy(vector)); + } + + [TestCase("0,0", "1,0", "0,0", "0,0")] + [TestCase("0,0", "1,0", "1,0", "1,0")] + [TestCase("0,0", "1,0", ".25,1", ".25,0")] + [TestCase("0,0", "1,0", "-1,0", "0,0")] + [TestCase("0,0", "1,0", "3,0", "1,0")] + public void ClosestPointToWithinSegment(string start, string end, string point, string expected) + { + var line = LineSegment2D.Parse(start, end); + var p = Point2D.Parse(point); + var e = Point2D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p)); + } + + [TestCase("0,0", "2,2", "1,0", "1,2", "1,1")] + [TestCase("0,0", "2,2", "0,1", "2,1", "1,1")] + [TestCase("0,0", "2,2", "-1,-5", "-1,0", "-1,-1")] + public void IntersectWithTest(string s1, string e1, string s2, string e2, string expected) + { + var line1 = LineSegment2D.Parse(s1, e1); + var line2 = LineSegment2D.Parse(s2, e2); + var e = string.IsNullOrEmpty(expected) ? (Point2D?)null : Point2D.Parse(expected); + bool success = line1.TryIntersect(line2, out var result, Angle.FromRadians(0.001)); + Assert.IsTrue(success); + Assert.AreEqual(e, result); + } + + [TestCase("0,0", "0,1", "1,1", "1,2", 0.0001, true)] + [TestCase("0,0", "0,-1", "1,1", "1,2", 0.0001, true)] + [TestCase("0,0", "0.5,-1", "1,1", "1,2", 0.0001, false)] + [TestCase("0,0", "0.00001,-1.0000", "1,1", "1,2", 0.0001, false)] + [TestCase("0,0", "0,1", "1,1", "1,2", 0.01, true)] + [TestCase("0,0", "0,-1", "1,1", "1,2", 0.01, true)] + [TestCase("0,0", "0.5,-1", "1,1", "1,2", 0.01, false)] + [TestCase("0,0", "0.001,-1.0000", "1,1", "1,2", 0.05, false)] + [TestCase("0,0", "0.001,-1.0000", "1,1", "1,2", 0.06, true)] + public void IsParallelToWithinAngleTol(string s1, string e1, string s2, string e2, double degreesTol, bool expected) + { + var line1 = LineSegment2D.Parse(s1, e1); + var line2 = LineSegment2D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2, Angle.FromDegrees(degreesTol))); + } + + [Test] + public void ToStringCheck() + { + var check = LineSegment2D.Parse("0,0", "1,1").ToString(); + + Assert.AreEqual("StartPoint: (0,\u00A00), EndPoint: (1,\u00A01)", check); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/Point2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/Point2DTests.cs new file mode 100644 index 00000000..aa84aabc --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/Point2DTests.cs @@ -0,0 +1,283 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.LinearAlgebra.Double; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class Point2DTests + { + [Test] + public void Ctor() + { + var p = new Point2D(1, 2); + Assert.AreEqual(1, p.X); + Assert.AreEqual(2, p.Y); + } + + [TestCase(5, "90 °", "0, 5")] + [TestCase(3, "-90 °", "0, -3")] + [TestCase(1, "45 °", "0.71, 0.71")] + [TestCase(1, "-45 °", "0.71, -0.71")] + [TestCase(1, "0 °", "1, 0")] + [TestCase(1, "180 °", "-1, 0")] + public void FromPolar(int radius, string avs, string eps) + { + var angle = Angle.Parse(avs); + var p = Point2D.FromPolar(radius, angle); + var ep = Point2D.Parse(eps); + AssertGeometry.AreEqual(ep, p, 1e-2); + } + + [Test] + public void FromPolarFailsWhenNegativeRadius() + { + Assert.Throws(() => Point2D.FromPolar(-1.0, Angle.FromRadians(0))); + } + + [TestCase("-1, -2", "1, 2", "0, 0")] + public void OperatorAddVector2D(string ps, string vs, string eps) + { + var p = Point2D.Parse(ps); + var v = Vector2D.Parse(vs); + var actual = p + v; + var expected = Point2D.Parse(eps); + Assert.AreEqual(expected, actual); + } + + [TestCase("-1, -2", "1, 2", "-2, -4")] + public void OperatorSubtractVector2D(string ps, string vs, string eps) + { + var p = Point2D.Parse(ps); + var v = Vector2D.Parse(vs); + var actual = p - v; + var expected = Point2D.Parse(eps); + Assert.AreEqual(expected, actual); + } + + [TestCase("-1, -2", "1, 2", "-2, -4")] + public void OperatorSubtractPoint2D(string p1s, string p2s, string eps) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var actual = p1 - p2; + var expected = Vector2D.Parse(eps); + Assert.AreEqual(expected, actual); + } + + [TestCase("-1,1", -1, 1)] + [TestCase("-1,-1", -1, -1)] + [TestCase("1, 2", 1, 2)] + [TestCase("1.2; 3.4", 1.2, 3.4)] + [TestCase("1.2;3.4", 1.2, 3.4)] + [TestCase("1,2; 3,4", 1.2, 3.4)] + [TestCase("1.2, 3.4", 1.2, 3.4)] + [TestCase("1.2 3.4", 1.2, 3.4)] + [TestCase("1.2,\u00A03.4", 1.2, 3.4)] + [TestCase("1.2\u00A03.4", 1.2, 3.4)] + [TestCase("(1.2, 3.4)", 1.2, 3.4)] + [TestCase("(.1, 2.3e-4)", 0.1, 0.00023000000000000001)] + public void Parse(string text, double expectedX, double expectedY) + { + Assert.AreEqual(true, Point2D.TryParse(text, out var p)); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + + p = Point2D.Parse(text); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + + p = Point2D.Parse(p.ToString()); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + } + + [TestCase("1.2")] + [TestCase("1; 2; 3")] + public void ParseFails(string text) + { + Assert.AreEqual(false, Point2D.TryParse(text, out _)); + Assert.Throws(() => Point2D.Parse(text)); + } + + [TestCase(@"")] + [TestCase(@"12")] + public void ReadFrom(string xml) + { + var v = new Point2D(1, 2); + AssertGeometry.AreEqual(v, Point2D.ReadFrom(XmlReader.Create(new StringReader(xml)))); + } + + [Test] + public void OfVector() + { + var p = Point2D.OfVector(DenseVector.OfArray(new[] { 1, 2.0 })); + Assert.AreEqual(1, p.X); + Assert.AreEqual(2, p.Y); + + Assert.Throws(() => Point2D.OfVector(DenseVector.OfArray(new[] { 1, 2, 3.0 }))); + } + + [Test] + public void ToDenseVector() + { + var p = new Point2D(1, 2); + var v = p.ToVector(); + Assert.AreEqual(2, v.Count); + Assert.AreEqual(1, v[0]); + Assert.AreEqual(2, v[1]); + } + + [TestCase("0, 0", "1, 0", 1.0)] + [TestCase("2, 0", "1, 0", 1.0)] + [TestCase("2, 0", "-1, 0", 3.0)] + [TestCase("0, 2", "0, -1", 3.0)] + public void DistanceTo(string p1s, string p2s, double expected) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + Assert.AreEqual(expected, p1.DistanceTo(p2)); + Assert.AreEqual(expected, p2.DistanceTo(p1)); + } + + [TestCase("0, 0", "1, 2", "0.5, 1")] + [TestCase("-1, -2", "1, 2", "0, 0")] + public void MidPoint(string p1s, string p2s, string eps) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var centroids = new[] + { + Point2D.Centroid(p1, p2), + Point2D.MidPoint(p1, p2), + }; + var expected = Point2D.Parse(eps); + foreach (var centroid in centroids) + { + AssertGeometry.AreEqual(expected, centroid); + } + } + + [TestCase("1, 0", "90 °", "0, 1")] + [TestCase("1, 0", "-90 °", "0, -1")] + [TestCase("1, 0", "45 °", "0.71, 0.71")] + [TestCase("1, 0", "-45 °", "0.71, -0.71")] + [TestCase("1, 0", "30 °", "0.87, 0.5")] + [TestCase("-5, 0", "30 °", "-4.33, -2.5")] + public void RotateTest(string ps, string avs, string eps) + { + var p = Point2D.Parse(ps); + var av = Angle.Parse(avs); + var expected = Point2D.Parse(eps); + var rm = Matrix2D.Rotation(av); + var actual = p.TransformBy(rm); + AssertGeometry.AreEqual(expected, actual, 1e-2); + } + + [TestCase("0, 0", "1, 2", "1, 2")] + public void VectorTo(string p1s, string p2s, string evs) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + var actual = p1.VectorTo(p2); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, actual); + } + + [TestCase("1, 2", "1, 2")] + public void ToVector(string ps, string evs) + { + var p1 = Point2D.Parse(ps); + var actual = p1.ToVector2D(); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, actual); + } + + [TestCase("1, 2", "1, 2", 1e-4, true)] + [TestCase("-1, 2", "-1, 2", 1e-4, true)] + [TestCase("1, 2", "3, 4", 1e-4, false)] + public void Equals(string p1s, string p2s, double tol, bool expected) + { + var p1 = Point2D.Parse(p1s); + var p2 = Point2D.Parse(p2s); + Assert.AreEqual(expected, p1 == p2); + Assert.AreEqual(expected, p2 == p1); + Assert.AreEqual(!expected, p1 != p2); + Assert.AreEqual(!expected, p2 != p1); + + Assert.AreEqual(expected, p1.Equals(p2)); + Assert.AreEqual(expected, p1.Equals((object)p2)); + Assert.AreEqual(expected, Equals(p1, p2)); + Assert.AreEqual(expected, p1.Equals(p2, tol)); + Assert.AreNotEqual(expected, p1 != p2); + Assert.AreEqual(false, p1.Equals(null)); + } + + [TestCase("-2, 0", null, "(-2,\u00A00)")] + [TestCase("-2, 0", "N2", "(-2.00,\u00A00.00)")] + public void ToString(string vs, string format, string expected) + { + var v = Point2D.Parse(vs); + var actual = v.ToString(format); + Assert.AreEqual(expected, actual); + Assert.AreEqual(v, Point2D.Parse(actual)); + } + + [Test] + public void XmlRoundtrip() + { + var v = new Point2D(1, 2); + AssertXml.XmlRoundTrips(v, @"", (e, a) => AssertGeometry.AreEqual(e, a)); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = new Point2D(1, 2), + Value2 = new Point2D(3, 4) + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + AssertGeometry.AreEqual(container.Value1, roundTrip.Value1); + AssertGeometry.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void XmlElements() + { + var v = new Point2D(1, 2); + var serializer = new XmlSerializer(typeof(Point2D)); + AssertGeometry.AreEqual(v, (Point2D)serializer.Deserialize(new StringReader(@"12"))); + } + + [Test] + public void XmlContainerElements() + { + var container = new AssertXml.Container + { + Value1 = new Point2D(1, 2), + Value2 = new Point2D(3, 4) + }; + var xml = "\r\n" + + " 12\r\n" + + " 34\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + var deserialized = (AssertXml.Container)serializer.Deserialize(new StringReader(xml)); + AssertGeometry.AreEqual(container.Value1, deserialized.Value1); + AssertGeometry.AreEqual(container.Value2, deserialized.Value2); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/PolyLine2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/PolyLine2DTests.cs new file mode 100644 index 00000000..5a63925e --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/PolyLine2DTests.cs @@ -0,0 +1,72 @@ +using System; +using System.Linq; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class PolyLine2DTests + { + [TestCase("0,0;1,1;2,2;3,3", 1, "1,1")] + [TestCase("0,0;1,1;2,2;3,3", 0, "0,0")] + [TestCase("0,0;1,1;2,2;3,3", 3, "3,3")] + public void IndexAccessorTest(string points, int index, string expected) + { + var testElement = new PolyLine2D(from x in points.Split(';') select Point2D.Parse(x)); + var checkElement = Point2D.Parse(expected); + AssertGeometry.AreEqual(checkElement, testElement.Vertices.Skip(index).First()); + } + + [TestCase("0,0;0,1", 1.0)] + [TestCase("0,0;0,1;1,1", 2.0)] + [TestCase("0,-1.5;0,1;1,1", 3.5)] + public void GetPolyLineLengthTests(string points, double expected) + { + var testElement = new PolyLine2D(from x in points.Split(';') select Point2D.Parse(x)); + + Assert.AreEqual(expected, testElement.Length); + } + + [TestCase("0,-1.5;0,1;1,1", 1.0, "1,1")] + [TestCase("0,-1.5;0,1;1,1", 0.0, "0,-1.5")] + [TestCase("0,0;0,1;1,1", 0.25, "0,0.5")] + [TestCase("0,0;0,1;1,1", 0.5, "0,1")] + [TestCase("0,0;0,1;1,1", 0.75, "0.5,1")] + public void GetPointAtFractionAlongCurve(string points, double fraction, string expected) + { + // Note that this method also tests GetPointAtLengthFromStart(...) + var testElement = new PolyLine2D(from x in points.Split(';') select Point2D.Parse(x)); + var checkElement = Point2D.Parse(expected); + + Assert.AreEqual(checkElement, testElement.GetPointAtFractionAlongCurve(fraction)); + } + + [TestCase("0,-1.5;0,1;1,1", 2.0, "1,1")] + [TestCase("0,-1.5;0,1;1,1", -5, "0,-1.5")] + public void GetPointAtFractionAlongCurveThrowsArgumentException(string points, double fraction, string expected) + { + var testElement = new PolyLine2D(from x in points.Split(';') select Point2D.Parse(x)); + Assert.Throws(() => { testElement.GetPointAtFractionAlongCurve(fraction); }); + } + + [TestCase("0,0;0,1;1,1", "0,-1", "0,0")] // Off Endpoint + [TestCase("0,0;0,1;1,1", "2,1", "1,1")] // Off Endpoint + [TestCase("0,0;0,1;1,1", "-1,2", "0,1")] // Off Corner + [TestCase("0,0;0,1;1,1", "0,0", "0,0")] // On Endpoint + [TestCase("0,0;0,1;1,1", "1,1", "1,1")] // On Endpoint + [TestCase("0,0;0,1;1,1", "0,1", "0,1")] // On Corner + [TestCase("0,0;0,1;1,1", "0,0.5", "0,0.5")] // On Curve + [TestCase("0,0;0,1;1,1", "-1,0.5", "0,0.5")] // Off curve + [TestCase("0,0;0,1;1,1", "0.5,1", "0.5,1")] // On Curve + [TestCase("0,0;0,1;1,1", "0.5,1.5", "0.5,1")] // Off curve + public void ClosestPointToTest(string points, string testPoint, string expectedPoint) + { + var testCurve = new PolyLine2D(from x in points.Split(';') select Point2D.Parse(x)); + var test = Point2D.Parse(testPoint); + var expected = Point2D.Parse(expectedPoint); + + Assert.AreEqual(expected, testCurve.ClosestPointTo(test)); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/Polygon2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/Polygon2DTests.cs new file mode 100644 index 00000000..ea6b7608 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/Polygon2DTests.cs @@ -0,0 +1,186 @@ +using System.Collections.Generic; +using System.Linq; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class Polygon2DTests + { + [Test] + public void ConstructorTest() + { + var polygon = TestPolygon1(); + var checkList = new List { new Point2D(0, 0), new Point2D(0.25, 0.5), new Point2D(1, 1), new Point2D(-1, 1), new Point2D(0.5, -0.5) }; + CollectionAssert.AreEqual(checkList, polygon.Vertices); + } + + [TestCase("0,0;2,2;3,1;2,0", "1,1", "1,1;3,3;4,2;3,1")] + [TestCase("0,0;2,2;3,1;2,0", "-1,-1", "-1,-1;1,1;2,0;1,-1")] + public void TranslatePolygon(string points, string vectorString, string expectedPolygon) + { + var testElement = new Polygon2D(from x in points.Split(';') select Point2D.Parse(x)); + var expected = new Polygon2D(from x in expectedPolygon.Split(';') select Point2D.Parse(x)); + Vector2D vector = Vector2D.Parse(vectorString); + var result = testElement.TranslateBy(vector); + Assert.AreEqual(expected, result); + } + + [TestCase("0,0;1,2;-1,2", System.Math.PI, "0,0;-1,-2;1,-2")] + public void RotatePolygon(string points, double angle, string expectedPolygon) + { + var testElement = new Polygon2D(from x in points.Split(';') select Point2D.Parse(x)); + var expected = new Polygon2D(from x in expectedPolygon.Split(';') select Point2D.Parse(x)); + Angle a = Angle.FromRadians(angle); + var result = testElement.Rotate(a); + Assert.IsTrue(expected.Equals(result, 0.001)); + } + + [TestCase("0,0;1,2;-1,2", "0,0:1,2;1,2:-1,2;-1,2:0,0")] + public void PolygonEdges(string stringpoints, string lines) + { + List points = (from x in stringpoints.Split(';') select Point2D.Parse(x)).ToList(); + var lineset = lines.Split(';').Select(t => LineSegment2D.Parse(t.Split(':').First(), t.Split(':').Last())).ToList(); + + var poly = new Polygon2D(points); + CollectionAssert.AreEquivalent(lineset, poly.Edges); + } + + [Test] + public void ConstructorTest_ClipsStartOnDuplicate() + { + // Test to make sure that if the constructor point list is given to the polygon constructor with the first and last points + // being duplicates, the point at the beginning of the list is removed + var polygon = TestPolygon2(); + var checkList = new List { new Point2D(0.25, 0.5), new Point2D(1, 1), new Point2D(-1, 1), new Point2D(0.5, -0.5), new Point2D(0, 0) }; + CollectionAssert.AreEqual(checkList, polygon); + } + + [TestCase(0.5, 0, true)] + [TestCase(0.35, 0, true)] + [TestCase(0.5, 0.5, true)] + [TestCase(0.75, 0.1, false)] + [TestCase(0.75, -0.1, true)] + [TestCase(0.5, -0.5, false)] + [TestCase(0.25, 0.5, false)] + [TestCase(0.25, -0.5, false)] + [TestCase(0.0, 0, false)] + [TestCase(1.5, 0, false)] + public void IsPointInPolygonTest1(double x, double y, bool outcome) + { + var testPoint = new Point2D(x, y); + var testPoly = TestPolygon3(); + + Assert.AreEqual(outcome, testPoly.EnclosesPoint(testPoint)); + } + + [TestCase(0.5, 0, true)] + [TestCase(0.35, 0, true)] + [TestCase(0.5, 0.5, true)] + [TestCase(0.75, 0.1, false)] + [TestCase(0.75, -0.1, true)] + [TestCase(0.5, -0.5, false)] + [TestCase(0.25, 0.5, false)] + [TestCase(0.25, -0.5, false)] + [TestCase(0.0, 0, false)] + [TestCase(1.5, 0, false)] + public void IsPointInPolygonTest2(double x, double y, bool outcome) + { + var testPoint = new Point2D(x, y); + var testPoly = TestPolygon4(); + + Assert.AreEqual(outcome, testPoly.EnclosesPoint(testPoint)); + } + + // These test cases were generated using scipy.spatial's ConvexHull method + [TestCase("0.27,0.41;0.87,0.67;0.7,0.33;0.5,0.61;0.04,0.23;0.73,0.14;0.84,0.02;0.25,0.23;0.12,0.2;0.37,0.78", "0.87,0.67;0.37,0.78;0.04,0.23;0.12,0.2;0.84,0.02")] + [TestCase("0.81,0.25;0.77,0.15;0.17,0.48;0.4,0.58;0.29,0.92;0.37,0.26;0.7,0.91;0.04,0.1;0.39,0.73;0.7,0.12", "0.7,0.91;0.29,0.92;0.04,0.1;0.7,0.12;0.77,0.15;0.81,0.25")] + [TestCase("0.87,0.39;0.83,0.42;0.75,0.62;0.91,0.49;0.18,0.63;0.17,0.95;0.22,0.5;0.93,0.41;0.66,0.79;0.32,0.42", "0.66,0.79;0.17,0.95;0.18,0.63;0.22,0.5;0.32,0.42;0.87,0.39;0.93,0.41;0.91,0.49")] + [TestCase("0.18,0.39;0.91,0.3;0.35,0.53;0.91,0.38;0.49,0.28;0.61,0.22;0.27,0.18;0.44,0.06;0.5,0.79;0.78,0.22", "0.91,0.38;0.5,0.79;0.18,0.39;0.27,0.18;0.44,0.06;0.78,0.22;0.91,0.3")] + [TestCase("0.89,0.55;0.98,0.24;0.03,0.2;0.51,0.99;0.72,0.32;0.56,0.87;0.1,0.75;0.64,0.16;0.82,0.73;0.17,0.46", "0.89,0.55;0.82,0.73;0.51,0.99;0.1,0.75;0.03,0.2;0.64,0.16;0.98,0.24")] + [TestCase("-201.573,100.940;197.083,21.031;161.021,-29.414;114.223,-23.998;230.290,-68.246;-32.272,182.239;-173.345,72.736;-175.435,-176.273;90.810,-97.350;-196.942,216.594;67.759,-162.464;67.454,-174.844;-89.116,171.982;-18.421,11.935;73.816,-180.169;-103.560,-36.297;-233.800,194.296;-64.463,166.811;-17.182,83.403;-72.010,219.944", "-72.01,219.944;-196.942,216.594;-233.8,194.296;-175.435,-176.273;73.816,-180.169;230.29,-68.246;197.083,21.031")] + public void ConvexHullTest(string points, string expected) + { + var testPoints = (from x in points.Split(';') select Point2D.Parse(x)).ToList(); + var expectedPoints = (from x in expected.Split(';') select Point2D.Parse(x)).ToList(); + + var hullClockwise = Polygon2D.GetConvexHullFromPoints(testPoints, true); + + var clockwiseVertices = hullClockwise.Vertices; + CollectionAssert.AreEqual(expectedPoints, clockwiseVertices); + /* + for (var i = 0; i < hullClockwise.VertexCount; i++) + { + Assert.That(ClockwiseVerticies[i], Is.EqualTo(expectedPoints[i])); + } + */ + + var hullCounterClockwise = Polygon2D.GetConvexHullFromPoints(testPoints, false); + var counterClockwiseVertices = hullCounterClockwise.Vertices; + expectedPoints.Reverse(); + CollectionAssert.AreEqual(expectedPoints, counterClockwiseVertices); + /* + for (var i = 0; i < hullCounterClockwise.VertexCount; i++) + { + Assert.That(counterClockwiseVerticies[i], Is.EqualTo(expectedPoints[hullCounterClockwise.VertexCount - 1 - i])); + } + */ + + var pointsNotOnConvexHull = testPoints.Except(hullCounterClockwise); + foreach (var pointNotOnConvexHull in pointsNotOnConvexHull) + { + var pointIsInsideConvexHull = hullCounterClockwise.EnclosesPoint(pointNotOnConvexHull); + Assert.That(pointIsInsideConvexHull); + } + + // second check: if we remove any point from the convex hull and build a new convex hull + // then that point should be outside the new convex hull; if it's inside then our new + // convex hull is the actual convex hull, which means the original one wasn't! + foreach (var pointToRemove in counterClockwiseVertices) + { + var convexHullWithPointRemoved = new Polygon2D(hullCounterClockwise.Except(new[] { pointToRemove })); + var pointIsInsideConvexHull = + convexHullWithPointRemoved.EnclosesPoint(pointToRemove); + Assert.That(pointIsInsideConvexHull, Is.Not.True); + } + } + + [TestCase("0,0;0.4,0;0.5,0;0.6,0;1,0;1,.25;1,.75;1,1;0,1;0,0.5", "1,0;1,1;0,1;0,0")] + public void ReduceComplexity(string points, string reduced) + { + var testPoints = from x in points.Split(';') select Point2D.Parse(x); + var expectedPoints = from x in reduced.Split(';') select Point2D.Parse(x); + var poly = new Polygon2D(testPoints); + var expected = new Polygon2D(expectedPoints); + var thinned = poly.ReduceComplexity(0.00001); + + CollectionAssert.AreEqual(expected, thinned); + } + + private static Polygon2D TestPolygon1() + { + var points = from x in new[] { "0,0", "0.25,0.5", "1,1", "-1,1", "0.5,-0.5" } select Point2D.Parse(x); + return new Polygon2D(points); + } + + private static Polygon2D TestPolygon2() + { + var points = from x in new[] { "0,0", "0.25,0.5", "1,1", "-1,1", "0.5,-0.5", "0,0" } select Point2D.Parse(x); + return new Polygon2D(points); + } + + private static Polygon2D TestPolygon3() + { + var points = from x in new[] { "0.25,0", "0.5,1", "1,-1" } select Point2D.Parse(x); + return new Polygon2D(points); + } + + private static Polygon2D TestPolygon4() + { + var points = from x in new[] { "0.5,1", "1,-1", "0.25,0" } select Point2D.Parse(x); + return new Polygon2D(points); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean2D/Vector2DTests.cs b/src/Numerics.Tests/Spatial/Euclidean2D/Vector2DTests.cs new file mode 100644 index 00000000..376869a7 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean2D/Vector2DTests.cs @@ -0,0 +1,469 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.LinearAlgebra; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean2D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean2D +{ + [TestFixture] + public class Vector2DTests + { + [Test] + public void Ctor() + { + var v = new Vector2D(1, 2); + Assert.AreEqual(1, v.X); + Assert.AreEqual(2, v.Y); + } + + [TestCase("-1, -2", "1, 2", "0, 0")] + public void OperatorAdd(string v1s, string v2s, string evs) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v1 + v2); + Assert.AreEqual(expected, v2 + v1); + } + + [TestCase("-1, -2", "1, 2", "-2, -4")] + public void OperatorSubtract(string v1s, string v2s, string evs) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v1 - v2); + } + + [TestCase("-1, -2", "1, 2")] + public void OperatorNegate(string vs, string evs) + { + var v = Vector2D.Parse(vs); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, -v); + } + + [TestCase("-1, -2", 2, "-2, -4")] + public void OperatorMultiply(string vs, double d, string evs) + { + var v = Vector2D.Parse(vs); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v * d); + Assert.AreEqual(expected, d * v); + } + + [TestCase("-1, -2", 2, "-0.5, -1")] + public void OperatorDivide(string vs, double d, string evs) + { + var v = Vector2D.Parse(vs); + var actual = v / d; + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, actual); + } + + [TestCase(5, "90 °", "0, 5")] + [TestCase(3, "-90 °", "0, -3")] + [TestCase(1, "45 °", "0.71, 0.71")] + [TestCase(1, "-45 °", "0.71, -0.71")] + [TestCase(1, "0 °", "1, 0")] + [TestCase(1, "180 °", "-1, 0")] + public void FromPolar(int radius, string avs, string eps) + { + var angle = Angle.Parse(avs); + var v = Vector2D.FromPolar(radius, angle); + var ep = Vector2D.Parse(eps); + AssertGeometry.AreEqual(ep, v, 1e-2); + } + + [Test] + public void FromPolarFailsWhenNegativeRadius() + { + Assert.Throws(() => Vector2D.FromPolar(-1.0, Angle.FromRadians(0))); + } + + [Test] + public void OfVector() + { + var v = Vector2D.OfVector(Vector.Build.Dense(new[] { 1.0, 2 })); + Assert.AreEqual(1, v.X); + Assert.AreEqual(2, v.Y); + + Assert.Throws(() => Vector2D.OfVector(Vector.Build.Dense(new[] { 1.0 }))); + Assert.Throws(() => Vector2D.OfVector(Vector.Build.Dense(new[] { 1.0, 2, 3 }))); + } + + [TestCase("-1,1", -1, 1)] + [TestCase("1, 2", 1, 2)] + [TestCase("1.2; 3.4", 1.2, 3.4)] + [TestCase("1.2;3.4", 1.2, 3.4)] + [TestCase("1.2 ; 3.4", 1.2, 3.4)] + [TestCase("1,2; 3,4", 1.2, 3.4)] + [TestCase("1.2, 3.4", 1.2, 3.4)] + [TestCase("1.2 3.4", 1.2, 3.4)] + [TestCase("1.2,\u00A03.4", 1.2, 3.4)] + [TestCase("1.2\u00A03.4", 1.2, 3.4)] + [TestCase("(1.2, 3.4)", 1.2, 3.4)] + [TestCase("1,2\u00A03,4", 1.2, 3.4)] + [TestCase("(.1, 2.3e-4)", 0.1, 0.00023000000000000001)] + public void Parse(string text, double expectedX, double expectedY) + { + Assert.AreEqual(true, Vector2D.TryParse(text, out var p)); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + + p = Vector2D.Parse(text); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + + p = Vector2D.Parse(p.ToString()); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + } + + [TestCase("1.2")] + [TestCase("1; 2; 3")] + public void ParseFails(string text) + { + Assert.AreEqual(false, Vector2D.TryParse(text, out _)); + Assert.Throws(() => Vector2D.Parse(text)); + } + + [TestCase(@"")] + [TestCase(@"")] + [TestCase(@"12")] + [TestCase(@"21")] + public void ReadFrom(string xml) + { + var v = new Vector2D(1, 2); + AssertGeometry.AreEqual(v, Vector2D.ReadFrom(XmlReader.Create(new StringReader(xml)))); + } + + [TestCase("-1, -2", "1, 2", "0, 0")] + public void Add(string v1s, string v2s, string evs) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v1.Add(v2)); + Assert.AreEqual(expected, v2.Add(v1)); + } + + [TestCase("-1, -2", "1, 2", "-2, -4")] + public void Subtract(string v1s, string v2s, string evs) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v1.Subtract(v2)); + } + + [TestCase("-1, -2", "1, 2")] + public void Negate(string vs, string evs) + { + var v = Vector2D.Parse(vs); + var expected = Vector2D.Parse(evs); + Assert.AreEqual(expected, v.Negate()); + } + + [TestCase("-1, -2", 2, "-2, -4")] + public void ScaleBy(string vs, double d, string evs) + { + var v = Vector2D.Parse(vs); + Assert.AreEqual(Vector2D.Parse(evs), v.ScaleBy(d)); + } + + [TestCase("2, 0", 2)] + [TestCase("-2, 0", 2)] + [TestCase("0, 2", 2)] + public void Length(string vs, double expected) + { + var v = Vector2D.Parse(vs); + Assert.AreEqual(expected, v.Length, 1e-6); + } + + [Test] + public void ToDenseVector() + { + var v = new Vector2D(1, 2); + var actual = v.ToVector(); + Assert.AreEqual(2, actual.Count); + Assert.AreEqual(1, actual[0]); + Assert.AreEqual(2, actual[1]); + } + + [TestCase("1, 0", "1, 0", 1e-4, false)] + [TestCase("1, 0", "0, -1", 1e-4, true)] + [TestCase("1, 0", "0, 1", 1e-4, true)] + [TestCase("0, 1", "1, 0", 1e-4, true)] + [TestCase("0, 1", "0, 1", 1e-4, false)] + public void IsPerpendicularTo(string v1s, string v2s, double tol, bool expected) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + Assert.AreEqual(expected, v1.IsPerpendicularTo(v2, tol)); + Assert.AreEqual(expected, v2.IsPerpendicularTo(v1, tol)); + Assert.AreEqual(expected, v1.IsPerpendicularTo(v2, Angle.FromRadians(tol))); + Assert.AreEqual(expected, v2.IsPerpendicularTo(v1, Angle.FromRadians(tol))); + } + + [TestCase("1, 0", "1, 0", 1e-10, true)] + [TestCase("1, 0", "-1, 0", 1e-10, true)] + [TestCase("1, 0", "1, 1", 1e-10, false)] + [TestCase("1, 1", "1, 1", 1e-10, true)] + [TestCase("1, -1", "-1, 1", 1e-10, true)] + [TestCase("1, 0.5", "-1, -0.5", 1e-10, true)] + [TestCase("1, 0.5", "1, 0.5001", 1e-10, false)] + [TestCase("1, 0.5", "1, 0.5001", 1e-8, true)] // Demonstration of the effect of tolerance + public void IsParallelToByDoubleTolerance(string v1s, string v2s, double tol, bool expected) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + Assert.AreEqual(expected, v1.IsParallelTo(v2, tol)); + Assert.AreEqual(expected, v2.IsParallelTo(v1, tol)); + } + + [TestCase("1, 0", "1, 0", 1e-4, true)] + [TestCase("1, 0", "-1, 0", 1e-4, true)] + [TestCase("1, 0", "1, 1", 1e-4, false)] + [TestCase("1, 1", "1, 1", 1e-4, true)] + [TestCase("1, -1", "-1, 1", 1e-4, true)] + [TestCase("1, 0", "1, 0.001", 0.06, true)] + [TestCase("1, 0", "1, -0.001", 0.06, true)] + [TestCase("-1, 0", "1, 0.001", 0.06, true)] + [TestCase("-1, 0", "1, -0.001", 0.06, true)] + [TestCase("1, 0", "1, 0.001", 0.05, false)] + [TestCase("1, 0", "1, -0.001", 0.05, false)] + [TestCase("-1, 0", "1, 0.001", 0.05, false)] + [TestCase("-1, 0", "1, -0.001", 0.05, false)] + [TestCase("1, 0.5", "-1, -0.5", 1e-4, true)] + public void IsParallelToByAngleTolerance(string v1s, string v2s, double degreesTolerance, bool expected) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + Assert.AreEqual(expected, v1.IsParallelTo(v2, Angle.FromDegrees(degreesTolerance))); + Assert.AreEqual(expected, v2.IsParallelTo(v1, Angle.FromDegrees(degreesTolerance))); + } + + [TestCase("1, 0", "90°", "0, 1")] + [TestCase("1, 0", "-270°", "0, 1")] + [TestCase("1, 0", "-90°", "0, -1")] + [TestCase("1, 0", "270°", "0, -1")] + [TestCase("1, 0", "180°", "-1, 0")] + [TestCase("1, 0", "0°", "1, 0")] + [TestCase("0, 1", "-90°", "1, 0")] + public void Rotate(string vs, string @as, string evs) + { + var v = Vector2D.Parse(vs); + var angle = Angle.Parse(@as); + var expected = Vector2D.Parse(evs); + AssertGeometry.AreEqual(expected, v.Rotate(angle), 0.01); + } + + [TestCase("1, 2", "3, 4", 11)] + public void DotProduct(string vs, string evs, double expected) + { + var v1 = Vector2D.Parse(vs); + var v2 = Vector2D.Parse(evs); + Assert.AreEqual(expected, v1.DotProduct(v2)); + } + + [TestCase("2, 3", "0.55470019, 0.83205029")] + public void Normalize(string vs, string evs) + { + var v1 = Vector2D.Parse(vs); + var expected = Vector2D.Parse(evs); + AssertGeometry.AreEqual(expected, v1.Normalize()); + } + + [TestCase("1,0", "0,1", "270°", "-90°")] + [TestCase("0,1", "1,0", "90°", "90°")] + [TestCase("-0.99985, 0.01745", "-1, 0", "359°", "-1°")] + [TestCase("-0.99985, -0.01745", "-1, 0", "1°", "1°")] + [TestCase("0.99985, 0.01745", "1, 0", "1°", "1°")] + [TestCase("0.99985, -0.01745", "1, 0", "359°", "-1°")] + public void SignedAngleTo(string v1s, string v2s, string expectedClockWise, string expectedNegative) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var cw = v1.SignedAngleTo(v2, true); + var expected = Angle.Parse(expectedClockWise); + Assert.AreEqual(expected.Degrees, cw.Degrees, 1e-3); + var cwNeg = v1.SignedAngleTo(v2, true, true); + Assert.AreEqual(Angle.Parse(expectedNegative).Degrees, cwNeg.Degrees, 1e-3); + + var ccw = v1.SignedAngleTo(v2, false); + Assert.AreEqual(360 - expected.Degrees, ccw.Degrees, 1e-3); + } + + [TestCase("1, 0", "0, 1", false, 90)] + [TestCase("1, 0", "0, 1", true, 270)] + [TestCase("1, 0", "0, -1", true, 90)] + [TestCase("1, 0", "0, -1", false, 270)] + [TestCase("1, 0", "-1, 0", true, 180)] + [TestCase("1, 0", "-1, 0", false, 180)] + [TestCase("1, 0", "1, 0", false, 0)] + [TestCase("0, 1", "1, 0", true, 90)] + public void SignedAngleTo(string v1s, string v2s, bool clockWise, float expected) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var av = v1.SignedAngleTo(v2, clockWise); + Assert.AreEqual(expected, av.Degrees, 0.1); + } + + [Test] + public void CheckCachedXAxis() + { + AssertGeometry.AreEqual(new Vector2D(1, 0), Vector2D.XAxis); + } + + [Test] + public void CheckCachedYAxis() + { + AssertGeometry.AreEqual(new Vector2D(0, 1), Vector2D.YAxis); + } + + [TestCase("1,0", "0,1", "90°")] + [TestCase("2,0", "0,3", "90°")] + [TestCase("1,0", "0,-1", "90°")] + [TestCase("0,1", "1,0", "90°")] + [TestCase("-0.99985, 0.01745", "-1, 0", "1°")] + [TestCase("-0.99985, -0.01745", "-1, 0", "1°")] + [TestCase("0.99985, 0.01745", "1, 0", "1°")] + [TestCase("0.99985, -0.01745", "1, 0", "1°")] + [TestCase("-0.99985, -0.01745", "1, 0", "179°")] + [TestCase("-0.99985, 0.01745", "1, 0", "179°")] + public void AngleTo(string v1s, string v2s, string expectedAngle) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + + var angle = v1.AngleTo(v2); + var expected = Angle.Parse(expectedAngle); + Assert.AreEqual(expected.Degrees, angle.Degrees, 1e-3); + + angle = v2.AngleTo(v1); + Assert.AreEqual(expected.Degrees, angle.Degrees, 1e-3); + } + + [TestCase("1,0", "0,1", 1)] + [TestCase("-1,0", "0,1", -1)] + [TestCase("0.5003,-0.7066", "0.0739,0.7981", 0.452)] + [TestCase("0.7097,0.6059", "0.0142,-0.7630", -0.550)] + [TestCase("-0.6864,0.7036", "-0.8541,-0.1124", 0.678)] + [TestCase("-0.2738,0.6783", "0.1695,0.9110", -0.364)] + public void CrossProducts(string v1s, string v2s, double expected) + { + // Generated test data from http://calculator.tutorvista.com/math/8/cross-product-calculator.html + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + + var cross = v1.CrossProduct(v2); + + Assert.AreEqual(expected, cross, 1e-3); + } + + [TestCase("1,0", "2,0", "1,0")] + [TestCase("1,1", "2,0", "1,0")] + [TestCase("1,0", "-2,0", "1,0")] + [TestCase("-1,1", "2,0", "-1,0")] + [TestCase("-0.0563,-0.2904", "-0.3671,-0.7945", "-0.120,-0.261")] + [TestCase("0.4610,0.9067", "-0.7948,-0.7748", "0.690,0.672")] + [TestCase("0.3916,-0.9644", "-0.0873,0.0978", "0.653,-0.731")] + public void VectorProjection(string v1s, string v2s, string exs) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + var ex = Vector2D.Parse(exs); + + AssertGeometry.AreEqual(ex, v1.ProjectOn(v2), 1e-3); + } + + [TestCase("1, 0", "1, 0", 1e-4, true)] + [TestCase("-1, 1", "-1, 1", 1e-4, true)] + [TestCase("1, 0", "1, 1", 1e-4, false)] + public void Equals(string v1s, string v2s, double tol, bool expected) + { + var v1 = Vector2D.Parse(v1s); + var v2 = Vector2D.Parse(v2s); + Assert.AreEqual(expected, v1 == v2); + Assert.AreEqual(expected, v2 == v1); + Assert.AreNotEqual(expected, v1 != v2); + Assert.AreNotEqual(expected, v2 != v1); + Assert.AreEqual(expected, v1.Equals(v2)); + Assert.AreEqual(expected, v1.Equals((object)v2)); + Assert.AreEqual(expected, Equals(v1, v2)); + Assert.AreEqual(expected, v1.Equals(v2, tol)); + Assert.IsFalse(default(Vector2D).Equals(null)); + } + + [Test] + public void EqualsFailsWhenNegativeTolerance() + { + var v1 = new Vector2D(0, 0); + var v2 = new Vector2D(1, 1); + Assert.Throws(() => v1.Equals(v2, -0.01)); + } + + [TestCase("-2, 0", null, "(-2,\u00A00)")] + [TestCase("-2, 0", "N2", "(-2.00,\u00A00.00)")] + public void ToString(string vs, string format, string expected) + { + var v = Vector2D.Parse(vs); + var actual = v.ToString(format); + Assert.AreEqual(expected, actual); + Assert.AreEqual(v, Vector2D.Parse(actual)); + } + + [Test] + public void XmlRoundtrip() + { + var v = new Vector2D(1, 2); + AssertXml.XmlRoundTrips(v, @"", (e, a) => AssertGeometry.AreEqual(e, a)); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = new Vector2D(1, 2), + Value2 = new Vector2D(3, 4) + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + AssertGeometry.AreEqual(container.Value1, roundTrip.Value1); + AssertGeometry.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void XmlElements() + { + var v = new Vector2D(1, 2); + var serializer = new XmlSerializer(typeof(Vector2D)); + AssertGeometry.AreEqual(v, (Vector2D)serializer.Deserialize(new StringReader(@"12"))); + } + + [Test] + public void XmlContainerElements() + { + var xml = "\r\n" + + " 12\r\n" + + " 34\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + var deserialized = (AssertXml.Container)serializer.Deserialize(new StringReader(xml)); + AssertGeometry.AreEqual(new Vector2D(1, 2), deserialized.Value1); + AssertGeometry.AreEqual(new Vector2D(3, 4), deserialized.Value2); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Circle3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Circle3DTests.cs new file mode 100644 index 00000000..d6d9da5a --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Circle3DTests.cs @@ -0,0 +1,69 @@ +// ReSharper disable InconsistentNaming + +using System; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Circle3DTests + { + [TestCase("0, 0, 0", 2.5)] + [TestCase("2, -4, 0", 4.7)] + public void CircleCenterRadius(string p1s, double radius) + { + var center = Point3D.Parse(p1s); + var circle = new Circle3D(center, UnitVector3D.ZAxis, radius); + Assert.AreEqual(2 * radius, circle.Diameter, double.Epsilon); + Assert.AreEqual(2 * Math.PI * radius, circle.Circumference, double.Epsilon); + Assert.AreEqual(Math.PI * radius * radius, circle.Area, double.Epsilon); + } + + [TestCase("0,0,0", "5,0,0", "2.5,0,0", 2.5)] + [TestCase("23.56,15.241,0", "62.15,-12.984,0", "42.8550,1.1285,0", 23.90522289)] + public void Circle2Points(string p1s, string p2s, string centers, double radius) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var circle3D = Circle3D.FromPointsAndAxis(p1, p2, UnitVector3D.ZAxis); + AssertGeometry.AreEqual(circle3D.CenterPoint, Point3D.Parse(centers)); + Assert.AreEqual(circle3D.Radius, radius, 1e-6); + } + + // Test cases randomly generated from GOM Inspect Professional v8 + [TestCase("-1,0,0", "0,1,0", "1,0,0", "0,0,0", 1)] + [TestCase("3.5184432,0.3072766,1.5733767", "2.6311562,3.8537550,4.1648900", "1.7918408,3.3085796,0.1773063", "2.7223188,2.4699561,2.2155024", 2.3923465)] + [TestCase("3.9940300,4.7087055,3.0356712", "1.7448842,3.5524049,2.9346235", "3.3923391,0.6820635,2.8792665", "3.6015409,2.7091562,2.9554706", 2.0392835)] + [TestCase("1.1572695,1.7427232,3.8991802", "3.8499789,2.6866347,1.1215183", "4.4666442,3.1640346,2.6081508", "2.6534515,2.3079965,2.6873057", 2.0066725)] + [TestCase("2.8983684,2.6350014,3.6266714", "3.9347082,1.2248094,3.9586336", "1.3540560,4.4935097,4.4614937", "2.5949041,2.2684548,7.7958547", 4.1962526)] + [TestCase("3.2522525,3.4579030,2.5739476", "2.5922429,2.5575788,4.4536494", "0.9654999,3.9766348,1.5029361", "1.4925488,3.2060788,3.1067942", 1.8557743)] + [TestCase("1.4907420,4.4495954,1.2951978", "2.3796522,3.6326081,0.4917802", "3.6332795,0.3779172,3.4856655", "2.3105721,2.5275616,2.8479118", 2.6033163)] + [TestCase("4.0537333,0.7137006,1.8633552", "0.7591453,2.7025442,4.5177595", "2.4149884,2.4450949,0.7413665", "2.3306759,1.8283553,3.0064357", 2.3490455)] + [TestCase("2.3488295,3.4356098,2.3024682", "2.0004679,2.0740716,4.8011107", "4.1253165,3.8784045,1.5045145", "4.3383477,2.6362129,3.7888115", 2.6089145)] + [TestCase("2.7730017,4.7353519,1.6764519", "4.4640538,3.8917330,1.7939499", "2.9657457,0.7421344,0.7106418", "2.8705245,2.7387444,1.1937714", 2.0564369)] + [TestCase("0.3309697,1.4510555,4.3876068", "3.3591227,3.2904666,1.6724443", "0.6636883,0.8606021,3.9895073", "1.7839226,2.6021881,3.1186384", 2.2464326)] + public void CircleFromThreePoints(string p1s, string p2s, string p3s, string centers, double radius) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var p3 = Point3D.Parse(p3s); + var center = Point3D.Parse(centers); + + var circle = Circle3D.FromPoints(p1, p2, p3); + + AssertGeometry.AreEqual(center, circle.CenterPoint); + Assert.AreEqual(radius, circle.Radius, 1e-6); + } + + [Test] + public void CircleFromThreePointsArgumentException() + { + var p1 = new Point3D(0, 0, 0); + var p2 = new Point3D(-1, 0, 0); + var p3 = new Point3D(1, 0, 0); + + Assert.Throws(() => Circle3D.FromPoints(p1, p2, p3)); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/CoordinateSystem3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/CoordinateSystem3DTests.cs new file mode 100644 index 00000000..2953af1f --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/CoordinateSystem3DTests.cs @@ -0,0 +1,311 @@ +using System; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + // ReSharper disable InconsistentNaming + [TestFixture] + public class CoordinateSystem3DTests + { + private const string X = "1; 0 ; 0"; + private const string Y = "0; 1; 0"; + private const string Z = "0; 0; 1"; + private const string NegativeX = "-1; 0; 0"; + private const string NegativeY = "0; -1; 0"; + private const string NegativeZ = "0; 0; -1"; + + [TestCase("1, 2, 3", "4, 5, 6", "7, 8, 9", "-1, -2, -3")] + public void ConstructorTest(string ps, string xs, string ys, string zs) + { + var origin = Point3D.Parse(ps); + var xAxis = Vector3D.Parse(xs); + var yAxis = Vector3D.Parse(ys); + var zAxis = Vector3D.Parse(zs); + var css = new[] + { + new CoordinateSystem3D(origin, xAxis, yAxis, zAxis), + new CoordinateSystem3D(xAxis, yAxis, zAxis, origin) + }; + foreach (var cs in css) + { + AssertGeometry.AreEqual(origin, cs.Origin); + AssertGeometry.AreEqual(xAxis, cs.XAxis); + AssertGeometry.AreEqual(yAxis, cs.YAxis); + AssertGeometry.AreEqual(zAxis, cs.ZAxis); + } + } + + [TestCase("o:{1, 2e-6, -3} x:{1, 2, 3} y:{3, 3, 3} z:{4, 4, 4}", "1, 2e-6, -3", "1, 2, 3", "3, 3, 3", "4, 4, 4")] + public void ParseTests(string s, string ops, string xs, string ys, string zs) + { + var cs = CoordinateSystem3D.Parse(s); + AssertGeometry.AreEqual(Point3D.Parse(ops), cs.Origin); + AssertGeometry.AreEqual(Vector3D.Parse(xs), cs.XAxis); + AssertGeometry.AreEqual(Vector3D.Parse(ys), cs.YAxis); + AssertGeometry.AreEqual(Vector3D.Parse(zs), cs.ZAxis); + } + + [TestCase("1, 2, 3", "90°", "0, 0, 1", "-2, 1, 3")] + [TestCase("1, 2, 3", "90°", "0, 0, -1", "2, -1, 3")] + [TestCase("1, 2, 3", "-90°", "0, 0, 1", "2, -1, 3")] + [TestCase("1, 2, 3", "180°", "0, 0, 1", "-1, -2, 3")] + [TestCase("1, 2, 3", "270°", "0, 0, 1", "2, -1, 3")] + [TestCase("1, 2, 3", "90°", "1, 0, 0", "1, -3, 2")] + [TestCase("1, 2, 3", "-90°", "1, 0, 0", "1, 3, -2")] + [TestCase("1, 2, 3", "90°", "-1, 0, 0", "1, 3, -2")] + [TestCase("1, 2, 3", "90°", "0, 1, 0", "3, 2, -1")] + [TestCase("1, 2, 3", "-90°", "0, 1, 0", "-3, 2, 1")] + public void RotationAroundVector(string ps, string @as, string vs, string eps) + { + var p = Point3D.Parse(ps); + var angle = Angle.Parse(@as); + var coordinateSystems = new[] + { + CoordinateSystem3D.Rotation(angle, UnitVector3D.Parse(vs)), + CoordinateSystem3D.Rotation(angle, Vector3D.Parse(vs)), + }; + var expected = Point3D.Parse(eps); + foreach (var coordinateSystem in coordinateSystems) + { + var rotatedPoint = coordinateSystem.Transform(p); + AssertGeometry.AreEqual(expected, rotatedPoint); + } + } + + [TestCase("0°", "0°", "0°", "1, 2, 3", "1, 2, 3")] + [TestCase("90°", "0°", "0°", "1, 2, 3", "-2, 1, 3")] + [TestCase("-90°", "0°", "0°", "1, 2, 3", "2, -1, 3")] + [TestCase("0°", "90°", "0°", "1, 2, 3", "3, 2, -1")] + [TestCase("0°", "-90°", "0°", "1, 2, 3", "-3, 2, 1")] + [TestCase("0°", "0°", "90°", "1, 2, 3", "1, -3, 2")] + [TestCase("0°", "0°", "-90°", "1, 2, 3", "1, 3, -2")] + public void RotationYawPitchRoll(string yaws, string pitchs, string rolls, string ps, string eps) + { + var p = Point3D.Parse(ps); + var yaw = Angle.Parse(yaws); + var pitch = Angle.Parse(pitchs); + var roll = Angle.Parse(rolls); + var coordinateSystems = new[] + { + CoordinateSystem3D.Rotation(yaw, pitch, roll), + }; + var expected = Point3D.Parse(eps); + foreach (var coordinateSystem in coordinateSystems) + { + var rotatedPoint = coordinateSystem.Transform(p); + AssertGeometry.AreEqual(expected, rotatedPoint); + } + } + + [TestCase("1, 2, 3", "0, 0, 1", "1, 2, 4")] + [TestCase("1, 2, 3", "0, 0, -1", "1, 2, 2")] + [TestCase("1, 2, 3", "0, 0, 0", "1, 2, 3")] + [TestCase("1, 2, 3", "0, 1, 0", "1, 3, 3")] + [TestCase("1, 2, 3", "0, -1, 0", "1, 1, 3")] + [TestCase("1, 2, 3", "1, 0, 0", "2, 2, 3")] + [TestCase("1, 2, 3", "-1, 0, 0", "0, 2, 3")] + public void Translation(string ps, string vs, string eps) + { + var p = Point3D.Parse(ps); + var cs = CoordinateSystem3D.Translation(Vector3D.Parse(vs)); + var tp = cs.Transform(p); + Console.WriteLine(cs.ToString()); + AssertGeometry.AreEqual(Point3D.Parse(eps), tp); + } + + [TestCase(X, X, null)] + [TestCase(X, X, X)] + [TestCase(X, X, Y)] + [TestCase(X, X, Z)] + [TestCase(X, NegativeX, null)] + [TestCase(X, NegativeX, Z)] + [TestCase(X, NegativeX, Y)] + [TestCase(X, Y, null)] + [TestCase(X, Z, null)] + [TestCase(Y, Y, null)] + [TestCase(Y, Y, X)] + [TestCase(Y, NegativeY, null)] + [TestCase(Y, NegativeY, X)] + [TestCase(Y, NegativeY, Z)] + [TestCase(Z, NegativeZ, null)] + [TestCase(Z, NegativeZ, X)] + [TestCase(Z, NegativeZ, Y)] + [TestCase("1, 2, 3", "-1, 0, -1", null)] + public void RotateToTest(string v1s, string v2s, string @as) + { + var axis = string.IsNullOrEmpty(@as) ? (UnitVector3D?)null : Vector3D.Parse(@as).Normalize(); + var v1 = Vector3D.Parse(v1s).Normalize(); + var v2 = Vector3D.Parse(v2s).Normalize(); + var actual = CoordinateSystem3D.RotateTo(v1, v2, axis); + Console.WriteLine(actual); + var rv = actual.Transform(v1); + AssertGeometry.AreEqual(v2, rv); + actual = CoordinateSystem3D.RotateTo(v2, v1, axis); + rv = actual.Transform(v2); + AssertGeometry.AreEqual(v1, rv); + } + + [Test] + public void InvertTest() + { + Assert.Inconclusive("Test this?"); + } + + [Test] + public void EqualityNullOperator() + { + string test = "o:{1, 2e-6, -3} x:{1, 2, 3} y:{3, 3, 3} z:{4, 4, 4}"; + var cs = CoordinateSystem3D.Parse(test); + + Assert.IsFalse(cs == null); + } + + [Test] + public void EqualityNullOperatorTrue() + { + CoordinateSystem3D cs = null; + + Assert.IsTrue(cs == null); + } + + [Test] + public void EqualityNotNullOperator() + { + string test = "o:{1, 2e-6, -3} x:{1, 2, 3} y:{3, 3, 3} z:{4, 4, 4}"; + var cs = CoordinateSystem3D.Parse(test); + + Assert.IsTrue(cs != null); + } + + [Test] + public void EqualityNotNullOperatorFalse() + { + CoordinateSystem3D cs = null; + + Assert.IsFalse(cs != null); + } + + [Test] + public void EqualityNull() + { + string test = "o:{1, 2e-6, -3} x:{1, 2, 3} y:{3, 3, 3} z:{4, 4, 4}"; + var cs = CoordinateSystem3D.Parse(test); + + Assert.IsFalse(cs.Equals(null)); + } + + [TestCase("1; -5; 3", "1; -5; 3", "o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + public void TransformPoint(string ps, string eps, string css) + { + var p = Point3D.Parse(ps); + var cs = CoordinateSystem3D.Parse(css); + var actual = p.TransformBy(cs); + var expected = Point3D.Parse(eps); + AssertGeometry.AreEqual(expected, actual, float.Epsilon); + } + + [TestCase("1; 2; 3", "1; 2; 3", "o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + [TestCase("1; 2; 3", "1; 2; 3", "o:{3, 4, 5} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + public void TransformVector(string vs, string evs, string css) + { + var v = Vector3D.Parse(vs); + var cs = CoordinateSystem3D.Parse(css); + var actual = cs.Transform(v); + var expected = Vector3D.Parse(evs); + AssertGeometry.AreEqual(expected, actual); + } + + [Test] + public void TransformUnitVector() + { + var cs = CoordinateSystem3D.Rotation(Angle.FromDegrees(90), UnitVector3D.ZAxis); + var uv = UnitVector3D.XAxis; + var actual = cs.Transform(uv); + AssertGeometry.AreEqual(UnitVector3D.YAxis, actual); + } + + [TestCase("o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}", "o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + [TestCase("o:{0, 0, 0} x:{10, 0, 0} y:{0, 1, 0} z:{0, 0, 1}", "o:{1, 0, 0} x:{0.1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + [TestCase("o:{0, 0, 0} x:{10, 0, 0} y:{0, 1, 0} z:{0, 0, 1}", "o:{1, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + [TestCase("o:{1, 2, -7} x:{10, 0, 0} y:{0, 1, 0} z:{0, 0, 1}", "o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + [TestCase("o:{1, 2, -7} x:{10, 0.1, 0} y:{0, 1.2, 0.1} z:{0.1, 0, 1}", "o:{2, 5, 1} x:{0.1, 2, 0} y:{0.2, -1, 0} z:{0, 0.4, 1}")] + public void SetToAlignCoordinateSystemsTest(string fcss, string tcss) + { + var fcs = CoordinateSystem3D.Parse(fcss); + var tcs = CoordinateSystem3D.Parse(tcss); + + var css = new[] + { + CoordinateSystem3D.SetToAlignCoordinateSystems(fcs.Origin, fcs.XAxis, fcs.YAxis, fcs.ZAxis, tcs.Origin, tcs.XAxis, tcs.YAxis, tcs.ZAxis), + CoordinateSystem3D.CreateMappingCoordinateSystem(fcs, tcs) + }; + foreach (var cs in css) + { + var aligned = cs.Transform(fcs); + AssertGeometry.AreEqual(tcs.Origin, aligned.Origin); + + AssertGeometry.AreEqual(tcs.XAxis, aligned.XAxis); + + AssertGeometry.AreEqual(tcs.YAxis, aligned.YAxis); + + AssertGeometry.AreEqual(tcs.ZAxis, aligned.ZAxis); + } + } + + [TestCase(X, Y, Z)] + [TestCase(NegativeX, Y, Z)] + [TestCase(NegativeX, Y, null)] + [TestCase(X, Y, null)] + [TestCase(X, Y, "0,0,1")] + [TestCase("1,-1, 1", "0, 1, 1", null)] + [TestCase(X, Z, Y)] + public void SetToRotateToTest(string vs, string vts, string axisString) + { + var v = UnitVector3D.Parse(vs, tolerance: 1); + var vt = UnitVector3D.Parse(vts, tolerance: 1); + UnitVector3D? axis = null; + if (axisString != null) + { + axis = UnitVector3D.Parse(axisString); + } + + var cs = CoordinateSystem3D.RotateTo(v, vt, axis); + var rv = cs.Transform(v); + AssertGeometry.AreEqual(vt, rv); + + var invert = cs.Invert(); + var rotateBack = invert.Transform(rv); + AssertGeometry.AreEqual(v, rotateBack); + + cs = CoordinateSystem3D.RotateTo(vt, v, axis); + rotateBack = cs.Transform(rv); + AssertGeometry.AreEqual(v, rotateBack); + } + + [TestCase("o:{1, 2, -7} x:{10, 0, 0} y:{0, 1, 0} z:{0, 0, 1}", "o:{0, 0, 0} x:{1, 0, 0} y:{0, 1, 0} z:{0, 0, 1}")] + public void Transform(string cs1s, string cs2s) + { + var cs1 = CoordinateSystem3D.Parse(cs1s); + var cs2 = CoordinateSystem3D.Parse(cs2s); + var actual = cs1.Transform(cs2); + var expected = new CoordinateSystem3D(cs1.Multiply(cs2)); + AssertGeometry.AreEqual(expected, actual); + } + + [Test] + public void XmlRoundTrips() + { + var cs = new CoordinateSystem3D(new Point3D(1, -2, 3), new Vector3D(0, 1, 0), new Vector3D(0, 0, 1), new Vector3D(1, 0, 0)); + string expected = @" + + + + + +"; + AssertXml.XmlRoundTrips(cs, expected, (e, a) => AssertGeometry.AreEqual(e, a)); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Line3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Line3DTests.cs new file mode 100644 index 00000000..8b5f45a6 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Line3DTests.cs @@ -0,0 +1,198 @@ +using System; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Line3DTests + { + [Test] + public void Ctor() + { + Assert.Throws(() => new Line3D(Point3D.Origin, Point3D.Origin)); + } + + [TestCase("0, 0, 0", "1, -1, 1", "1, -1, 1")] + public void DirectionsTest(string p1s, string p2s, string evs) + { + var l = Line3D.Parse(p1s, p2s); + var excpected = UnitVector3D.Parse(evs, tolerance: 1); + AssertGeometry.AreEqual(excpected, l.Direction); + } + + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "1, 0, 0", "0, 0, 0", "0, -1, 1")] + public void ProjectOn(string p1s, string p2s, string rootPoint, string unitVector, string ep1s, string ep2s) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var line = new Line3D(p1, p2); + var plane = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + var expected = new Line3D(Point3D.Parse(ep1s), Point3D.Parse(ep2s)); + AssertGeometry.AreEqual(expected, line.ProjectOn(plane)); + } + + [TestCase("0, 0, 0", "1, -2, 3", 3.741657)] + public void Length(string p1s, string p2s, double expected) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var l = new Line3D(p1, p2); + Assert.AreEqual(expected, l.Length, 1e-6); + } + + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "1, -1, 1", true)] + [TestCase("0, 0, 2", "1, -1, 1", "0, 0, 0", "1, -1, 1", false)] + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "2, -1, 1", false)] + public void Equals(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var line1 = new Line3D(Point3D.Parse(p1s), Point3D.Parse(p2s)); + var line2 = new Line3D(Point3D.Parse(p3s), Point3D.Parse(p4s)); + Assert.AreEqual(expected, line1.Equals(line2)); + Assert.AreEqual(expected, line1 == line2); + Assert.AreEqual(!expected, line1 != line2); + } + + [TestCase("0, 0, 0", "1, 0, 0", "0.5, 1, 0", true, "0.5, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "0.5, 1, 0", false, "0.5, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "2, 1, 0", true, "1, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "2, 1, 0", false, "2, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "-2, 1, 0", true, "0, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "-2, 1, 0", false, "-2, 0, 0")] + public void LineToTest(string p1s, string p2s, string ps, bool mustStartFromLine, string sps) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var l = new Line3D(p1, p2); + var p = Point3D.Parse(ps); + var actual = l.LineTo(p, mustStartFromLine); + AssertGeometry.AreEqual(Point3D.Parse(sps), actual.StartPoint, 1e-6); + AssertGeometry.AreEqual(p, actual.EndPoint, 1e-6); + } + + [TestCase("1, 2, 3", "4, 5, 6", @"")] + public void XmlTests(string p1s, string p2s, string xml) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var l = new Line3D(p1, p2); + AssertXml.XmlRoundTrips(l, xml, (e, a) => AssertGeometry.AreEqual(e, a)); + } + + [TestCase("0,0,0", "0,0,1", "0,0,0", "0,0,0", Description = "Start point")] + [TestCase("0,0,0", "0,0,1", "0,0,1", "0,0,1", Description = "End point")] + [TestCase("0,0,0", "0,0,1", "1,0,.25", "0,0,.25")] + [TestCase("0,0,0", "0,0,1", "0,0,-1", "0,0,0")] + [TestCase("0,0,0", "0,0,1", "0,0,3", "0,0,1")] + public void ClosestPointToWithinSegment(string start, string end, string point, string expected) + { + var line = Line3D.Parse(start, end); + var p = Point3D.Parse(point); + var e = Point3D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p, true)); + } + + [TestCase("0,0,0", "0,0,1", "0,0,0", "0,0,0", Description = "Start point")] + [TestCase("0,0,0", "0,0,1", "0,0,1", "0,0,1", Description = "End point")] + [TestCase("0,0,0", "0,0,1", "1,0,.25", "0,0,.25")] + [TestCase("0,0,0", "0,0,1", "0,0,-1", "0,0,-1")] + [TestCase("0,0,0", "0,0,1", "0,0,3", "0,0,3")] + public void ClosestPointToOutsideSegment(string start, string end, string point, string expected) + { + var line = Line3D.Parse(start, end); + var p = Point3D.Parse(point); + var e = Point3D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p, false)); + } + + [TestCase("0,0,0", "0,0,1", "0,1,1", "0,1,2", true)] + [TestCase("0,0,0", "0,0,-1", "0,1,1", "0,1,2", true)] + [TestCase("0,0,0", "0,0.5,-1", "0,1,1", "0,1,2", false)] + [TestCase("0,0,0", "0,0.00001,-1.0000", "0,1,1", "0,1,2", false)] + public void IsParallelToWithinDoubleTol(string s1, string e1, string s2, string e2, bool expected) + { + var line1 = Line3D.Parse(s1, e1); + var line2 = Line3D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2)); + } + + [TestCase("0,0,0", "0,0,1", "0,1,1", "0,1,2", 0.01, true)] + [TestCase("0,0,0", "0,0,-1", "0,1,1", "0,1,2", 0.01, true)] + [TestCase("0,0,0", "0,0.5,-1", "0,1,1", "0,1,2", 0.01, false)] + [TestCase("0,0,0", "0,0.001,-1.0000", "0,1,1", "0,1,2", 0.05, false)] + [TestCase("0,0,0", "0,0.001,-1.0000", "0,1,1", "0,1,2", 0.06, true)] + public void IsParallelToWithinAngleTol(string s1, string e1, string s2, string e2, double degreesTol, bool expected) + { + var line1 = Line3D.Parse(s1, e1); + var line2 = Line3D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2, Angle.FromDegrees(degreesTol))); + } + + [TestCase("0,0,0", "1,0,0", "1,1,1", "2,1,1", "0,0,0", "0,1,1")] // Parallel case + [TestCase("0,0,0", "1,0,0", "2,-1,0", "2,0,0", "2,0,0", "2,0,0")] // Intersecting case + [TestCase("0.3097538,3.0725982,3.9317042", "1.3945620,6.4927958,2.1094821", "2.4486204,5.1947760,6.3369721", "8.4010954,9.5691708,5.1665254", "-0.1891954,1.4995044,4.7698213", "-0.7471721,2.8462306,6.9653670")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("6.7042836,5.1490163,0.3655590", "7.6915457,0.8511235,0.8627290", "0.6890053,6.6207933,3.4147472", "5.6116149,1.7160727,5.4461589", "7.5505158,1.4650754,0.7917085", "5.7356234,1.5925149,5.4973334")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("2.9663973,7.1338954,9.7732130", "6.4625826,8.7716408,3.7015737", "1.8924447,4.9060507,1.8755412", "1.9542505,5.8440396,8.2251863", "1.8254726,6.5994432,11.7545962", "1.9889190,6.3701828,11.7868723")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("7.3107741,0.0835261,3.0516366", "1.0013621,9.6730070,3.6824080", "3.2195097,0.8726049,1.0448256", "4.5620367,8.6714351,3.3311693", "3.7856774,5.4412119,3.4040514", "4.0462563,5.6752319,2.4527875")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("6.8171425,2.0728553,1.9235196", "3.0360117,0.0371047,0.5410118", "0.4798755,2.8536110,0.4402877", "9.4038162,7.5597521,0.3068954", "2.9867513,0.0105830,0.5230005", "1.2671009,3.2687632,0.4285205")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("0.9826196,9.8736629,3.7966845", "3.9607685,8.7036678,0.3921888", "0.2333178,4.9282166,5.6478261", "5.8182917,0.7224496,6.8152397", "-0.7871493,10.5689341,5.8198105", "-3.0149659,7.3743380,4.9688451")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("3.1369768,8.4887731,0.1371429", "4.9427402,3.5584831,9.4250139", "1.0628142,7.4582519,3.7246752", "3.7045709,0.1811190,4.7211734", "3.8813087,6.4565178,3.9655839", "1.7121301,5.6696095,3.9696039")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("8.7598151,0.2378638,3.0353259", "0.5266014,9.6548588,2.7893143", "1.8918146,3.4742242,7.0646539", "7.3796941,7.0882850,4.4899767", "4.5791946,5.0195789,2.9104073", "5.3106500,5.7257093,5.4606833")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("7.6132801,6.8593303,3.7729401", "7.7434088,2.0184714,6.0037938", "4.1910423,0.6022826,6.7846734", "1.6554785,3.0341358,8.7351072", "7.8041730,-0.2419887,7.0455007", "5.8721457,-1.0100597,5.4915169")] // Randomly generated in GOM Inspect Professional V8 + [TestCase("0.3818483,0.4893437,8.1438438", "4.6619509,7.8881811,4.7600744", "0.7792658,4.6454081,8.3927247", "0.2002105,7.4120903,3.5542593", "2.2611504,3.7380159,6.6581026", "0.6866122,5.0880999,7.6185307")] // Randomly generated in GOM Inspect Professional V8 + public void ClosestPointsBetween(string s1, string e1, string s2, string e2, string cp1, string cp2) + { + var l1 = Line3D.Parse(s1, e1); + var l2 = Line3D.Parse(s2, e2); + + var result = l1.ClosestPointsBetween(l2); + + AssertGeometry.AreEqual(Point3D.Parse(cp1), result.Item1); + AssertGeometry.AreEqual(Point3D.Parse(cp2), result.Item2); + } + + [TestCase("0,0,0", "1,0,0", "0.5,1,0", "1.5,1,0", "1,0,0", "1,1,0")] // Parallel case + [TestCase("0,0,0", "1,0,0", "3,1,0", "3,2,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("1,0,0", "0,0,0", "3,1,0", "3,2,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("0,0,0", "1,0,0", "3,2,0", "3,1,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("1,0,0", "0,0,0", "3,2,0", "3,1,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("5.6925969,1.3884847,7.1713834", "5.1573193,9.7184415,0.8644498", "0.6567836,8.3850115,1.5273528", "7.1182449,9.0049546,9.1872098", "5.3056396,7.4102899,2.6120410", "3.0759605,8.6171187,4.3952101")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("3.0803549,8.1101503,4.2072541", "0.9167489,5.4057168,0.0942629", "3.6443155,1.9841677,2.1280020", "4.0865344,8.8738039,9.2944797", "3.0803549,8.1101503,4.2072541", "3.8982350,5.9401568,6.2429519")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("2.0809966,9.3100446,9.4661138", "6.0883386,5.5240161,2.7490910", "8.4523738,2.6004881,8.8473518", "5.5868380,5.4932213,1.1649868", "6.0883386,5.5240161,2.7490910", "6.0992239,4.9759722,2.5386692")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("6.6149320,7.8081445,4.6267089", "5.3733678,7.5372568,0.4121304", "7.9879025,7.5486791,5.8931379", "1.4971100,6.2860737,3.2138409", "6.6149320,7.8081445,4.6267089", "6.4606595,7.2515959,5.2627161")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("4.7238306,4.7424963,7.9590086", "9.2276709,8.3299427,1.0349775", "7.3828132,6.3559129,8.7078245", "4.6487651,2.8181310,8.5972384", "4.7238306,4.7424963,7.9590086", "5.5976910,4.0460147,8.6356203")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("7.1035997,1.9299120,3.4688193", "8.5433252,5.8883905,9.7941707", "3.3053692,6.3729100,3.5626868", "8.4883669,8.1557493,7.2000211", "8.3560381,5.3734507,8.9713356", "8.4883669,8.1557493,7.2000211")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("7.4520661,5.7569419,4.1686608", "4.2367431,3.5840889,2.7405165", "1.3188110,5.7542366,2.7702002", "7.7144529,5.0792324,0.2292819", "4.7448074,3.9274289,2.9661826", "4.3479012,5.4345425,1.5667759")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("7.5543831,9.7934598,9.5348209", "6.5205418,0.3092162,8.7907210", "0.4877286,0.3419443,2.5644342", "8.6578287,6.1098998,5.8827401", "7.1211660,5.8192172,9.2230160", "8.4262398,5.9464019,5.7886797")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.0543887,5.4347267,4.3429352", "4.2117265,4.7630853,1.3218313", "8.9537706,1.5933994,0.6307145", "2.7936886,7.2837201,1.8965656", "4.5061578,4.8704041,1.8045609", "4.8831652,5.3535848,1.4671937")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.5771629,2.8557455,9.8087521", "5.4359776,8.6172816,5.7508093", "7.8904712,4.3099454,2.4107493", "8.1402295,0.9894932,3.8694855", "5.7508984,7.0273316,6.8706367", "7.8904712,4.3099454,2.4107493")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("1.1294829,5.4847586,8.1420946", "7.2489863,0.3206420,0.8259188", "5.8457205,6.7040761,3.0411085", "8.9017428,0.9704561,3.8471667", "5.7071649,1.6217517,2.6692442", "7.8717570,2.9028855,3.5754970")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("0.8765316,4.0262533,7.1988316", "4.3383388,7.0189039,1.4430865", "1.9687345,6.4066677,1.9041603", "0.6533722,5.3636394,1.3877450", "3.5259020,6.3165714,2.7938779", "1.9687345,6.4066677,1.9041603")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("0.3580051,9.3271145,8.5768069", "2.3779489,4.3772771,1.6443451", "1.0661185,9.0362165,3.9415240", "7.6388414,1.7341324,0.4120660", "1.8279811,5.7249636,3.5318384", "2.9136360,6.9836839,2.9494336")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.1264627,6.5812576,3.9222538", "1.5068838,5.6589456,0.0446154", "0.8368111,1.7808290,7.1053143", "8.6670395,3.8812950,1.4077528", "5.4376749,6.4437392,3.3440907", "6.1998837,3.2194782,3.2029458")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("5.2548631,0.4534686,7.9484333", "2.8554822,5.3465480,5.8755276", "0.3950940,1.3010814,5.5699850", "6.0302455,6.0816738,9.9995164", "3.7687405,3.4841320,6.6645221", "2.9986425,3.5098071,7.6165137")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("4.7098248,1.2821556,4.9827025", "6.4808992,9.9281018,2.2789106", "9.6036733,2.5927984,2.8488436", "7.2373861,1.4947206,2.8305463", "4.9620442,2.5134284,4.5976544", "7.2373861,1.4947206,2.8305463")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("0.5036993,0.6001582,2.2439019", "9.0252221,6.6637385,5.1333177", "6.9023714,0.8286511,9.3846113", "7.8635188,7.6077266,0.1778680", "6.9835948,5.2109969,4.4410576", "7.4521485,4.7062875,4.1183470")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("4.1414680,4.8821393,2.4051430", "2.1773492,6.4060895,2.8305709", "0.5806575,3.1182178,9.4735442", "9.3828570,0.6330684,7.6857961", "4.1414680,4.8821393,2.4051430", "4.5936441,1.9852201,8.6584969")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("3.6062333,0.6118218,5.2241603", "0.7544416,1.5864715,8.4712397", "2.3437474,4.9755332,1.7418572", "9.8825574,1.3070092,8.6204338", "3.6062333,0.6118218,5.2241603", "5.5154683,3.4321153,4.6358053")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("2.2607133,8.3082403,6.7904628", "5.0325175,8.7431170,3.9781037", "6.4334028,4.8699270,1.1961501", "1.7809363,2.4707254,6.2966301", "5.0325175,8.7431170,3.9781037", "5.4392405,4.3572536,2.2860462")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("6.1786725,3.6854264,9.2902405", "2.6667579,9.5505050,9.5018463", "2.0599944,1.6033445,0.6954832", "3.1884883,6.4163288,9.0715930", "4.1912356,7.0045487,9.4099909", "3.1884883,6.4163288,9.0715930")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("8.8292667,0.7124560,8.2423649", "0.3649094,7.1453826,3.0669636", "2.5889872,1.1761708,7.2524548", "5.4661666,6.7986776,4.9964301", "4.3314255,4.1308233,5.4922289", "4.2263025,4.3757686,5.9686197")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.0241017,5.1715162,5.7250655", "5.6868388,6.0031583,1.2902594", "3.4800129,9.7922534,2.4761596", "0.0589551,3.4081038,0.9383102", "5.6945715,5.9840905,1.3919397", "2.3316866,7.6493234,1.9599588")] // projection between segments, generated in GOM Inspect Professional V8 + public void ClosestPointsBetweenOnSegment(string s1, string e1, string s2, string e2, string cp1, string cp2) + { + var l1 = Line3D.Parse(s1, e1); + var l2 = Line3D.Parse(s2, e2); + + var result = l1.ClosestPointsBetween(l2, true); + + AssertGeometry.AreEqual(Point3D.Parse(cp1), result.Item1); + AssertGeometry.AreEqual(Point3D.Parse(cp2), result.Item2); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/LineSegment3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/LineSegment3DTests.cs new file mode 100644 index 00000000..ff7dbe25 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/LineSegment3DTests.cs @@ -0,0 +1,143 @@ +using System; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + /// + /// Tests for LineSegment3D + /// + [TestFixture] + public class LineSegment3DTests + { + [Test] + public void Ctor() + { + Assert.Throws(() => new LineSegment3D(Point3D.Origin, Point3D.Origin)); + } + + [TestCase("0, 0, 0", "1, -1, 1", "1, -1, 1")] + public void DirectionsTest(string p1s, string p2s, string evs) + { + var l = LineSegment3D.Parse(p1s, p2s); + var excpected = UnitVector3D.Parse(evs, tolerance: 1); + AssertGeometry.AreEqual(excpected, l.Direction); + } + + [TestCase("0, 0, 0", "1, -2, 3", 3.741657)] + public void Length(string p1s, string p2s, double expected) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var l = new LineSegment3D(p1, p2); + Assert.AreEqual(expected, l.Length, 1e-6); + } + + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "1, -1, 1", true)] + [TestCase("0, 0, 2", "1, -1, 1", "0, 0, 0", "1, -1, 1", false)] + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "2, -1, 1", false)] + public void Equals(string p1s, string p2s, string p3s, string p4s, bool expected) + { + var line1 = new LineSegment3D(Point3D.Parse(p1s), Point3D.Parse(p2s)); + var line2 = new LineSegment3D(Point3D.Parse(p3s), Point3D.Parse(p4s)); + Assert.AreEqual(expected, line1.Equals(line2)); + Assert.AreEqual(expected, line1 == line2); + Assert.AreEqual(!expected, line1 != line2); + } + + [TestCase("1,1,1", "3,1,1", "1,1,0", "2,2,1", "4,2,1")] + [TestCase("1,1,1", "3,1,1", "-1,-1,0", "0,0,1", "2,0,1")] + public void TranslateBy(string spoint1, string spoint2, string svector, string spoint3, string spoint4) + { + var line = LineSegment3D.Parse(spoint1, spoint2); + var expected = LineSegment3D.Parse(spoint3, spoint4); + var vector = Vector3D.Parse(svector); + Assert.AreEqual(expected.Length, line.Length); + Assert.AreEqual(expected, line.TranslateBy(vector)); + } + + [TestCase("0, 0, 0", "1, 0, 0", "0.5, 1, 0", "0.5, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "2, 1, 0", "1, 0, 0")] + [TestCase("0, 0, 0", "1, 0, 0", "-2, 1, 0", "0, 0, 0")] + public void LineToTest(string p1s, string p2s, string ps, string sps) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var l = new LineSegment3D(p1, p2); + var p = Point3D.Parse(ps); + var actual = l.LineTo(p); + AssertGeometry.AreEqual(Point3D.Parse(sps), actual.StartPoint, 1e-6); + AssertGeometry.AreEqual(p, actual.EndPoint, 1e-6); + } + + [TestCase("0,0,0", "0,0,1", "0,0,0", "0,0,0", Description = "Start point")] + [TestCase("0,0,0", "0,0,1", "0,0,1", "0,0,1", Description = "End point")] + [TestCase("0,0,0", "0,0,1", "1,0,.25", "0,0,.25")] + [TestCase("0,0,0", "0,0,1", "0,0,-1", "0,0,0")] + [TestCase("0,0,0", "0,0,1", "0,0,3", "0,0,1")] + public void ClosestPointTo(string start, string end, string point, string expected) + { + var line = LineSegment3D.Parse(start, end); + var p = Point3D.Parse(point); + var e = Point3D.Parse(expected); + + Assert.AreEqual(e, line.ClosestPointTo(p)); + } + + [TestCase("0,0,0", "0,0,1", "0,1,1", "0,1,2", 0.00001, true)] + [TestCase("0,0,0", "0,0,-1", "0,1,1", "0,1,2", 0.00001, true)] + [TestCase("0,0,0", "0,0.5,-1", "0,1,1", "0,1,2", 0.00001, false)] + [TestCase("0,0,0", "0,0.00001,-1.0000", "0,1,1", "0,1,2", 0.00001, false)] + [TestCase("0,0,0", "0,0,1", "0,1,1", "0,1,2", 0.01, true)] + [TestCase("0,0,0", "0,0,-1", "0,1,1", "0,1,2", 0.01, true)] + [TestCase("0,0,0", "0,0.5,-1", "0,1,1", "0,1,2", 0.01, false)] + [TestCase("0,0,0", "0,0.001,-1.0000", "0,1,1", "0,1,2", 0.05, false)] + [TestCase("0,0,0", "0,0.001,-1.0000", "0,1,1", "0,1,2", 0.06, true)] + public void IsParallelToWithinAngleTol(string s1, string e1, string s2, string e2, double degreesTol, bool expected) + { + var line1 = LineSegment3D.Parse(s1, e1); + var line2 = LineSegment3D.Parse(s2, e2); + + Assert.AreEqual(expected, line1.IsParallelTo(line2, Angle.FromDegrees(degreesTol))); + } + + [TestCase("0,0,0", "1,0,0", "0.5,1,0", "1.5,1,0", "1,0,0", "1,1,0")] // Parallel case + [TestCase("0,0,0", "1,0,0", "3,1,0", "3,2,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("1,0,0", "0,0,0", "3,1,0", "3,2,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("0,0,0", "1,0,0", "3,2,0", "3,1,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("1,0,0", "0,0,0", "3,2,0", "3,1,0", "1,0,0", "3,1,0")] // Endpoint Case + [TestCase("5.6925969,1.3884847,7.1713834", "5.1573193,9.7184415,0.8644498", "0.6567836,8.3850115,1.5273528", "7.1182449,9.0049546,9.1872098", "5.3056396,7.4102899,2.6120410", "3.0759605,8.6171187,4.3952101")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("3.0803549,8.1101503,4.2072541", "0.9167489,5.4057168,0.0942629", "3.6443155,1.9841677,2.1280020", "4.0865344,8.8738039,9.2944797", "3.0803549,8.1101503,4.2072541", "3.8982350,5.9401568,6.2429519")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("2.0809966,9.3100446,9.4661138", "6.0883386,5.5240161,2.7490910", "8.4523738,2.6004881,8.8473518", "5.5868380,5.4932213,1.1649868", "6.0883386,5.5240161,2.7490910", "6.0992239,4.9759722,2.5386692")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("6.6149320,7.8081445,4.6267089", "5.3733678,7.5372568,0.4121304", "7.9879025,7.5486791,5.8931379", "1.4971100,6.2860737,3.2138409", "6.6149320,7.8081445,4.6267089", "6.4606595,7.2515959,5.2627161")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("4.7238306,4.7424963,7.9590086", "9.2276709,8.3299427,1.0349775", "7.3828132,6.3559129,8.7078245", "4.6487651,2.8181310,8.5972384", "4.7238306,4.7424963,7.9590086", "5.5976910,4.0460147,8.6356203")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("7.1035997,1.9299120,3.4688193", "8.5433252,5.8883905,9.7941707", "3.3053692,6.3729100,3.5626868", "8.4883669,8.1557493,7.2000211", "8.3560381,5.3734507,8.9713356", "8.4883669,8.1557493,7.2000211")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("7.4520661,5.7569419,4.1686608", "4.2367431,3.5840889,2.7405165", "1.3188110,5.7542366,2.7702002", "7.7144529,5.0792324,0.2292819", "4.7448074,3.9274289,2.9661826", "4.3479012,5.4345425,1.5667759")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("7.5543831,9.7934598,9.5348209", "6.5205418,0.3092162,8.7907210", "0.4877286,0.3419443,2.5644342", "8.6578287,6.1098998,5.8827401", "7.1211660,5.8192172,9.2230160", "8.4262398,5.9464019,5.7886797")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.0543887,5.4347267,4.3429352", "4.2117265,4.7630853,1.3218313", "8.9537706,1.5933994,0.6307145", "2.7936886,7.2837201,1.8965656", "4.5061578,4.8704041,1.8045609", "4.8831652,5.3535848,1.4671937")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.5771629,2.8557455,9.8087521", "5.4359776,8.6172816,5.7508093", "7.8904712,4.3099454,2.4107493", "8.1402295,0.9894932,3.8694855", "5.7508984,7.0273316,6.8706367", "7.8904712,4.3099454,2.4107493")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("1.1294829,5.4847586,8.1420946", "7.2489863,0.3206420,0.8259188", "5.8457205,6.7040761,3.0411085", "8.9017428,0.9704561,3.8471667", "5.7071649,1.6217517,2.6692442", "7.8717570,2.9028855,3.5754970")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("0.8765316,4.0262533,7.1988316", "4.3383388,7.0189039,1.4430865", "1.9687345,6.4066677,1.9041603", "0.6533722,5.3636394,1.3877450", "3.5259020,6.3165714,2.7938779", "1.9687345,6.4066677,1.9041603")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("0.3580051,9.3271145,8.5768069", "2.3779489,4.3772771,1.6443451", "1.0661185,9.0362165,3.9415240", "7.6388414,1.7341324,0.4120660", "1.8279811,5.7249636,3.5318384", "2.9136360,6.9836839,2.9494336")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.1264627,6.5812576,3.9222538", "1.5068838,5.6589456,0.0446154", "0.8368111,1.7808290,7.1053143", "8.6670395,3.8812950,1.4077528", "5.4376749,6.4437392,3.3440907", "6.1998837,3.2194782,3.2029458")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("5.2548631,0.4534686,7.9484333", "2.8554822,5.3465480,5.8755276", "0.3950940,1.3010814,5.5699850", "6.0302455,6.0816738,9.9995164", "3.7687405,3.4841320,6.6645221", "2.9986425,3.5098071,7.6165137")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("4.7098248,1.2821556,4.9827025", "6.4808992,9.9281018,2.2789106", "9.6036733,2.5927984,2.8488436", "7.2373861,1.4947206,2.8305463", "4.9620442,2.5134284,4.5976544", "7.2373861,1.4947206,2.8305463")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("0.5036993,0.6001582,2.2439019", "9.0252221,6.6637385,5.1333177", "6.9023714,0.8286511,9.3846113", "7.8635188,7.6077266,0.1778680", "6.9835948,5.2109969,4.4410576", "7.4521485,4.7062875,4.1183470")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("4.1414680,4.8821393,2.4051430", "2.1773492,6.4060895,2.8305709", "0.5806575,3.1182178,9.4735442", "9.3828570,0.6330684,7.6857961", "4.1414680,4.8821393,2.4051430", "4.5936441,1.9852201,8.6584969")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("3.6062333,0.6118218,5.2241603", "0.7544416,1.5864715,8.4712397", "2.3437474,4.9755332,1.7418572", "9.8825574,1.3070092,8.6204338", "3.6062333,0.6118218,5.2241603", "5.5154683,3.4321153,4.6358053")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("2.2607133,8.3082403,6.7904628", "5.0325175,8.7431170,3.9781037", "6.4334028,4.8699270,1.1961501", "1.7809363,2.4707254,6.2966301", "5.0325175,8.7431170,3.9781037", "5.4392405,4.3572536,2.2860462")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("6.1786725,3.6854264,9.2902405", "2.6667579,9.5505050,9.5018463", "2.0599944,1.6033445,0.6954832", "3.1884883,6.4163288,9.0715930", "4.1912356,7.0045487,9.4099909", "3.1884883,6.4163288,9.0715930")] // projection from endpoint, generated in GOM Inspect Professional V8 + [TestCase("8.8292667,0.7124560,8.2423649", "0.3649094,7.1453826,3.0669636", "2.5889872,1.1761708,7.2524548", "5.4661666,6.7986776,4.9964301", "4.3314255,4.1308233,5.4922289", "4.2263025,4.3757686,5.9686197")] // projection between segments, generated in GOM Inspect Professional V8 + [TestCase("6.0241017,5.1715162,5.7250655", "5.6868388,6.0031583,1.2902594", "3.4800129,9.7922534,2.4761596", "0.0589551,3.4081038,0.9383102", "5.6945715,5.9840905,1.3919397", "2.3316866,7.6493234,1.9599588")] // projection between segments, generated in GOM Inspect Professional V8 + public void ClosestPointsBetweenOnSegment(string s1, string e1, string s2, string e2, string cp1, string cp2) + { + var l1 = LineSegment3D.Parse(s1, e1); + var l2 = LineSegment3D.Parse(s2, e2); + + Assert.AreEqual(true, l1.TryShortestLineTo(l2, Angle.FromRadians(0.00001), out var result)); + AssertGeometry.AreEqual(Point3D.Parse(cp1), result.StartPoint); + AssertGeometry.AreEqual(Point3D.Parse(cp2), result.EndPoint); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Plane3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Plane3DTests.cs new file mode 100644 index 00000000..f152715d --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Plane3DTests.cs @@ -0,0 +1,238 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.Linq; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Plane3DTests + { + private const string X = "1; 0 ; 0"; + private const string Z = "0; 0; 1"; + private const string NegativeZ = "0; 0; -1"; + private const string ZeroPoint = "0; 0; 0"; + + [Test] + public void Ctor() + { + var plane1 = new Plane3D(new Point3D(0, 0, 3), UnitVector3D.ZAxis); + var plane2 = new Plane3D(0, 0, 3, -3); + var plane3 = new Plane3D(UnitVector3D.ZAxis, 3); + var plane4 = Plane3D.FromPoints(new Point3D(0, 0, 3), new Point3D(5, 3, 3), new Point3D(-2, 1, 3)); + AssertGeometry.AreEqual(plane1, plane2); + AssertGeometry.AreEqual(plane1, plane3); + AssertGeometry.AreEqual(plane1, plane4); + } + + [TestCase("0, 0, 0", "1, 0, 0", "0, 0, 0", "1, 0, 0")] + public void Parse(string rootPoint, string unitVector, string pds, string vds) + { + var plane = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + AssertGeometry.AreEqual(Point3D.Parse(pds), plane.RootPoint); + AssertGeometry.AreEqual(Vector3D.Parse(vds), plane.Normal); + } + + [TestCase("1, 0, 0, 0", "0, 0, 0", "1, 0, 0")] + public void Parse2(string s, string pds, string vds) + { + var plane = this.GetPlaneFrom4Doubles(s); + AssertGeometry.AreEqual(Point3D.Parse(pds), plane.RootPoint); + AssertGeometry.AreEqual(Vector3D.Parse(vds), plane.Normal); + } + + [TestCase(ZeroPoint, "0, 0, 0", "0, 0, 1", ZeroPoint)] + [TestCase(ZeroPoint, "0, 0, -1", "0, 0, 1", "0; 0;-1")] + [TestCase(ZeroPoint, "0, 0, 1", "0, 0, -1", "0; 0; 1")] + [TestCase("1; 2; 3", "0, 0, 0", "0, 0, 1", "1; 2; 0")] + public void ProjectPointOn(string ps, string rootPoint, string unitVector, string eps) + { + var plane = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + var projectedPoint = plane.Project(Point3D.Parse(ps)); + var expected = Point3D.Parse(eps); + AssertGeometry.AreEqual(expected, projectedPoint, float.Epsilon); + } + + [TestCase(ZeroPoint, Z, ZeroPoint, 0)] + [TestCase(ZeroPoint, Z, "1; 2; 0", 0)] + [TestCase(ZeroPoint, Z, "1; -2; 0", 0)] + [TestCase(ZeroPoint, Z, "1; 2; 3", 3)] + [TestCase(ZeroPoint, Z, "-1; 2; -3", -3)] + [TestCase(ZeroPoint, NegativeZ, ZeroPoint, 0)] + [TestCase(ZeroPoint, NegativeZ, "1; 2; 1", -1)] + [TestCase(ZeroPoint, NegativeZ, "1; 2; -1", 1)] + [TestCase("0; 0; -1", NegativeZ, ZeroPoint, -1)] + [TestCase("0; 0; 1", NegativeZ, ZeroPoint, 1)] + [TestCase(ZeroPoint, X, "1; 0; 0", 1)] + [TestCase("188,6578; 147,0620; 66,0170", Z, "118,6578; 147,0620; 126,1170", 60.1)] + public void SignedDistanceToPoint(string prps, string pns, string ps, double expected) + { + var plane = new Plane3D(UnitVector3D.Parse(pns), Point3D.Parse(prps)); + var p = Point3D.Parse(ps); + Assert.AreEqual(expected, plane.SignedDistanceTo(p), 1E-6); + } + + [TestCase(ZeroPoint, Z, ZeroPoint, Z, 0)] + [TestCase(ZeroPoint, Z, "0;0;1", Z, 1)] + [TestCase(ZeroPoint, Z, "0;0;-1", Z, -1)] + [TestCase(ZeroPoint, NegativeZ, "0;0;-1", Z, 1)] + public void SignedDistanceToOtherPlane(string prps, string pns, string otherPlaneRootPointString, string otherPlaneNormalString, double expectedValue) + { + var plane = new Plane3D(UnitVector3D.Parse(pns), Point3D.Parse(prps)); + var otherPlane = new Plane3D(UnitVector3D.Parse(otherPlaneNormalString), Point3D.Parse(otherPlaneRootPointString)); + Assert.AreEqual(expectedValue, plane.SignedDistanceTo(otherPlane), 1E-6); + } + + [TestCase(ZeroPoint, Z, ZeroPoint, Z, 0)] + [TestCase(ZeroPoint, Z, ZeroPoint, X, 0)] + [TestCase(ZeroPoint, Z, "0;0;1", X, 1)] + public void SignedDistanceToRay(string prps, string pns, string rayThroughPointString, string rayDirectionString, double expectedValue) + { + var plane = new Plane3D(UnitVector3D.Parse(pns), Point3D.Parse(prps)); + var otherPlane = new Ray3D(Point3D.Parse(rayThroughPointString), UnitVector3D.Parse(rayDirectionString)); + Assert.AreEqual(expectedValue, plane.SignedDistanceTo(otherPlane), 1E-6); + } + + [Test] + public void ProjectLineOn() + { + var unitVector = UnitVector3D.ZAxis; + var rootPoint = new Point3D(0, 0, 1); + var plane = new Plane3D(unitVector, rootPoint); + + var line = new LineSegment3D(new Point3D(0, 0, 0), new Point3D(1, 0, 0)); + var projectOn = plane.Project(line); + AssertGeometry.AreEqual(new LineSegment3D(new Point3D(0, 0, 1), new Point3D(1, 0, 1)), projectOn, float.Epsilon); + } + + [Test] + public void ProjectVectorOn() + { + var unitVector = UnitVector3D.ZAxis; + var rootPoint = new Point3D(0, 0, 1); + var plane = new Plane3D(unitVector, rootPoint); + var vector = new Vector3D(1, 0, 0); + var projectOn = plane.Project(vector); + AssertGeometry.AreEqual(new Vector3D(1, 0, 0), projectOn.Direction, float.Epsilon); + AssertGeometry.AreEqual(new Point3D(0, 0, 1), projectOn.ThroughPoint, float.Epsilon); + } + + [TestCase("0, 0, 0", "0, 0, 1", "0, 0, 0", "0, 1, 0", "0, 0, 0", "-1, 0, 0")] + [TestCase("0, 0, 2", "0, 0, 1", "0, 0, 0", "0, 1, 0", "0, 0, 2", "-1, 0, 0")] + public void InterSectionWithPlane(string rootPoint1, string unitVector1, string rootPoint2, string unitVector2, string eps, string evs) + { + var plane1 = new Plane3D(Point3D.Parse(rootPoint1), UnitVector3D.Parse(unitVector1)); + var plane2 = new Plane3D(Point3D.Parse(rootPoint2), UnitVector3D.Parse(unitVector2)); + var intersections = new[] + { + plane1.IntersectionWith(plane2), + plane2.IntersectionWith(plane1) + }; + foreach (var intersection in intersections) + { + AssertGeometry.AreEqual(Point3D.Parse(eps), intersection.ThroughPoint); + AssertGeometry.AreEqual(UnitVector3D.Parse(evs), intersection.Direction); + } + } + + [TestCase("0, 0, 0", "0, 0, 1", "0, 0, 0", "0, 0, 1", "0, 0, 0", "0, 0, 0")] + public void InterSectionWithPlaneTest_BadArgument(string rootPoint1, string unitVector1, string rootPoint2, string unitVector2, string eps, string evs) + { + var plane1 = new Plane3D(Point3D.Parse(rootPoint1), UnitVector3D.Parse(unitVector1)); + var plane2 = new Plane3D(Point3D.Parse(rootPoint2), UnitVector3D.Parse(unitVector2)); + + Assert.Throws(() => plane1.IntersectionWith(plane2)); + Assert.Throws(() => plane2.IntersectionWith(plane1)); + } + + [Test] + public void MirrorPoint() + { + var plane = new Plane3D(UnitVector3D.ZAxis, new Point3D(0, 0, 0)); + var point3D = new Point3D(1, 2, 3); + var mirrorAbout = plane.MirrorAbout(point3D); + AssertGeometry.AreEqual(new Point3D(1, 2, -3), mirrorAbout, float.Epsilon); + } + + [Test] + public void SignOfD() + { + var plane1 = new Plane3D(UnitVector3D.ZAxis, new Point3D(0, 0, 100)); + Assert.AreEqual(-100, plane1.D); + } + + [Test] + public void InterSectionPointDifferentOrder() + { + var plane1 = new Plane3D(UnitVector3D.Create(0.8, 0.3, 0.01), new Point3D(20, 0, 0)); + var plane2 = new Plane3D(UnitVector3D.Create(0.002, 1, 0.1), new Point3D(0, 0, 0)); + var plane3 = new Plane3D(UnitVector3D.Create(0.5, 0.5, 1), new Point3D(0, 0, -30)); + var pointFromPlanes1 = Plane3D.PointFromPlanes(plane1, plane2, plane3); + var pointFromPlanes2 = Plane3D.PointFromPlanes(plane2, plane1, plane3); + var pointFromPlanes3 = Plane3D.PointFromPlanes(plane3, plane1, plane2); + AssertGeometry.AreEqual(pointFromPlanes1, pointFromPlanes2, 1E-10); + AssertGeometry.AreEqual(pointFromPlanes3, pointFromPlanes2, 1E-10); + } + + [TestCase("0, 0, 0", "1, 0, 0", "0, 0, 0", "0, 1, 0", "0, 0, 0", "0, 0, 1", "0, 0, 0")] + [TestCase("0, 0, 0", "-1, 0, 0", "0, 0, 0", "0, 1, 0", "0, 0, 0", "0, 0, 1", "0, 0, 0")] + [TestCase("20, 0, 0", "1, 0, 0", "0, 0, 0", "0, 1, 0", "0, 0, -30", "0, 0, 1", "20, 0, -30")] + public void PointFromPlanes(string rootPoint1, string unitVector1, string rootPoint2, string unitVector2, string rootPoint3, string unitVector3, string eps) + { + var plane1 = new Plane3D(Point3D.Parse(rootPoint1), UnitVector3D.Parse(unitVector1)); + var plane2 = new Plane3D(Point3D.Parse(rootPoint2), UnitVector3D.Parse(unitVector2)); + var plane3 = new Plane3D(Point3D.Parse(rootPoint3), UnitVector3D.Parse(unitVector3)); + var points = new[] + { + Plane3D.PointFromPlanes(plane1, plane2, plane3), + Plane3D.PointFromPlanes(plane2, plane1, plane3), + Plane3D.PointFromPlanes(plane1, plane3, plane2), + Plane3D.PointFromPlanes(plane2, plane3, plane1), + Plane3D.PointFromPlanes(plane3, plane2, plane1), + Plane3D.PointFromPlanes(plane3, plane1, plane2), + }; + var expected = Point3D.Parse(eps); + foreach (var point in points) + { + AssertGeometry.AreEqual(expected, point); + } + } + + [TestCase("1, 1, 0, -12", "-1, 1, 0, -12", "0, 0, 1, -5", "0, 16.970563, 5")] + public void PointFromPlanes2(string planeString1, string planeString2, string planeString3, string eps) + { + var plane1 = this.GetPlaneFrom4Doubles(planeString1); + var plane2 = this.GetPlaneFrom4Doubles(planeString2); + var plane3 = this.GetPlaneFrom4Doubles(planeString3); + var points = new[] + { + Plane3D.PointFromPlanes(plane1, plane2, plane3), + Plane3D.PointFromPlanes(plane2, plane1, plane3), + Plane3D.PointFromPlanes(plane1, plane3, plane2), + Plane3D.PointFromPlanes(plane2, plane3, plane1), + Plane3D.PointFromPlanes(plane3, plane2, plane1), + Plane3D.PointFromPlanes(plane3, plane1, plane2), + }; + var expected = Point3D.Parse(eps); + foreach (var point in points) + { + AssertGeometry.AreEqual(expected, point); + } + } + + [TestCase("0, 0, 0", "0, 0, 1", @"")] + public void XmlRoundTrips(string rootPoint, string unitVector, string xml) + { + var plane = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + AssertXml.XmlRoundTrips(plane, xml, (e, a) => AssertGeometry.AreEqual(e, a)); + } + + private Plane3D GetPlaneFrom4Doubles(string inputstring) + { + var numbers = inputstring.Split(',').Select(t => double.Parse(t)).ToArray(); + return new Plane3D(numbers[0], numbers[1], numbers[2], numbers[3]); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Point3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Point3DTests.cs new file mode 100644 index 00000000..7cfce8a5 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Point3DTests.cs @@ -0,0 +1,294 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Point3DTests + { + [Test] + public void Ctor() + { + var actual = new Point3D(1, 2, 3); + Assert.AreEqual(1, actual.X, 1e-6); + Assert.AreEqual(2, actual.Y, 1e-6); + Assert.AreEqual(3, actual.Z, 1e-6); + } + + [TestCase("-1,1,-1", -1, 1, -1)] + [TestCase("1, 2, 3", 1, 2, 3)] + [TestCase("1.2; 3.4; 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2;3.4;5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2 ; 3.4 ; 5.6", 1.2, 3.4, 5.6)] + [TestCase("1,2; 3,4; 5,6", 1.2, 3.4, 5.6)] + [TestCase("1.2, 3.4, 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2 3.4 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2,\u00A03.4\u00A05.6", 1.2, 3.4, 5.6)] + [TestCase("1.2\u00A03.4\u00A05.6", 1.2, 3.4, 5.6)] + [TestCase("(1.2, 3.4 5.6)", 1.2, 3.4, 5.6)] + [TestCase("1,2\u00A03,4\u00A05,6", 1.2, 3.4, 5.6)] + [TestCase("(.1, 2.3e-4,1)", 0.1, 0.00023000000000000001, 1)] + [TestCase("1.0 , 2.5,3.3", 1, 2.5, 3.3)] + [TestCase("1,0 ; 2,5;3,3", 1, 2.5, 3.3)] + [TestCase("1.0 ; 2.5;3.3", 1, 2.5, 3.3)] + [TestCase("1.0,2.5,-3.3", 1, 2.5, -3.3)] + [TestCase("1;2;3", 1, 2, 3)] + public void Parse(string text, double expectedX, double expectedY, double expectedZ) + { + Assert.AreEqual(true, Point3D.TryParse(text, out var p)); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = Point3D.Parse(text); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = Point3D.Parse(p.ToString()); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + } + + [TestCase("1.2")] + [TestCase("1,2; 2.3; 3")] + [TestCase("1; 2; 3; 4")] + public void ParseFails(string text) + { + Assert.AreEqual(false, Point3D.TryParse(text, out _)); + Assert.Throws(() => Point3D.Parse(text)); + } + + [TestCase("")] + [TestCase("")] + [TestCase("")] + [TestCase("1-23")] + [TestCase("-231")] + [TestCase("31-2")] + public void ReadFrom(string xml) + { + using (var reader = new StringReader(xml)) + { + var actual = Point3D.ReadFrom(XmlReader.Create(reader)); + Assert.AreEqual(new Point3D(1, -2, 3), actual); + } + } + + [Test] + public void ToDenseVector() + { + var p = new Point3D(1, 2, 3); + var vector = p.ToVector(); + Assert.AreEqual(3, vector.Count); + Assert.AreEqual(1, vector[0], 1e-6); + Assert.AreEqual(2, vector[1], 1e-6); + Assert.AreEqual(3, vector[2], 1e-6); + + var roundtripped = Point3D.OfVector(vector); + Assert.AreEqual(1, roundtripped.X, 1e-6); + Assert.AreEqual(2, roundtripped.Y, 1e-6); + Assert.AreEqual(3, roundtripped.Z, 1e-6); + } + + [TestCase("1, 2, 3", "1, 2, 3", 1e-4, true)] + [TestCase("1, 2, 3", "4, 5, 6", 1e-4, false)] + public void Equals(string p1s, string p2s, double tol, bool expected) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + Assert.AreEqual(expected, p1 == p2); + Assert.AreEqual(expected, p1.Equals(p2)); + Assert.AreEqual(expected, p1.Equals((object)p2)); + Assert.AreEqual(expected, Equals(p1, p2)); + Assert.AreEqual(expected, p1.Equals(p2, tol)); + Assert.AreNotEqual(expected, p1 != p2); + } + + [TestCase("0, 0, 0", "0, 0, 1", "0, 0, 0.5")] + [TestCase("0, 0, 1", "0, 0, 0", "0, 0, 0.5")] + [TestCase("0, 0, 0", "0, 0, 0", "0, 0, 0")] + [TestCase("1, 1, 1", "3, 3, 3", "2, 2, 2")] + [TestCase("-3, -3, -3", "3, 3, 3", "0, 0, 0")] + public void MidPoint(string p1s, string p2s, string eps) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + var ep = Point3D.Parse(eps); + var mp = Point3D.MidPoint(p1, p2); + AssertGeometry.AreEqual(ep, mp, 1e-9); + var centroid = Point3D.Centroid(p1, p2); + AssertGeometry.AreEqual(ep, centroid, 1e-9); + } + + [TestCase("0, 0, 0", "0, 0, 1", "0, 0, 0", "0, 1, 0", "0, 0, 0", "1, 0, 0", "0, 0, 0")] + [TestCase("0, 0, 5", "0, 0, 1", "0, 4, 0", "0, 1, 0", "3, 0, 0", "1, 0, 0", "3, 4, 5")] + public void FromPlanes(string rootPoint1, string unitVector1, string rootPoint2, string unitVector2, string rootPoint3, string unitVector3, string eps) + { + var plane1 = new Plane3D(Point3D.Parse(rootPoint1), UnitVector3D.Parse(unitVector1)); + var plane2 = new Plane3D(Point3D.Parse(rootPoint2), UnitVector3D.Parse(unitVector2)); + var plane3 = new Plane3D(Point3D.Parse(rootPoint3), UnitVector3D.Parse(unitVector3)); + var p1 = Point3D.IntersectionOf(plane1, plane2, plane3); + var p2 = Point3D.IntersectionOf(plane2, plane1, plane3); + var p3 = Point3D.IntersectionOf(plane2, plane3, plane1); + var p4 = Point3D.IntersectionOf(plane3, plane1, plane2); + var p5 = Point3D.IntersectionOf(plane3, plane2, plane1); + var ep = Point3D.Parse(eps); + foreach (var p in new[] { p1, p2, p3, p4, p5 }) + { + AssertGeometry.AreEqual(ep, p); + } + } + + [TestCase("0, 0, 0", "0, 0, 0", "0, 0, 1", "0, 0, 0")] + [TestCase("0, 0, 1", "0, 0, 0", "0, 0, 1", "0, 0, -1")] + public void MirrorAbout(string ps, string rootPoint, string unitVector, string eps) + { + var p = Point3D.Parse(ps); + var p2 = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + var actual = p.MirrorAbout(p2); + + var ep = Point3D.Parse(eps); + AssertGeometry.AreEqual(ep, actual); + } + + [TestCase("0, 0, 0", "0, 0, 0", "0, 0, 1", "0, 0, 0")] + [TestCase("0, 0, 1", "0, 0, 0", "0, 0, 1", "0, 0, 0")] + [TestCase("0, 0, 1", "0, 10, 0", "0, 1, 0", "0, 10, 1")] + public void ProjectOnTests(string ps, string rootPoint, string unitVector, string eps) + { + var p = Point3D.Parse(ps); + var p2 = new Plane3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + var actual = p.ProjectOn(p2); + + var ep = Point3D.Parse(eps); + AssertGeometry.AreEqual(ep, actual); + } + + [TestCase("1, 2, 3", "1, 0, 0", "2, 2, 3")] + [TestCase("1, 2, 3", "0, 1, 0", "1, 3, 3")] + [TestCase("1, 2, 3", "0, 0, 1", "1, 2, 4")] + public void AddVector(string ps, string vs, string eps) + { + var p = Point3D.Parse(ps); + var actuals = new[] + { + p + Vector3D.Parse(vs), + p + UnitVector3D.Parse(vs) + }; + var expected = Point3D.Parse(eps); + foreach (var actual in actuals) + { + Assert.AreEqual(expected, actual); + } + } + + [TestCase("1, 2, 3", "1, 0, 0", "0, 2, 3")] + [TestCase("1, 2, 3", "0, 1, 0", "1, 1, 3")] + [TestCase("1, 2, 3", "0, 0, 1", "1, 2, 2")] + public void SubtractVector(string ps, string vs, string eps) + { + var p = Point3D.Parse(ps); + var actuals = new[] + { + p - Vector3D.Parse(vs), + p - UnitVector3D.Parse(vs) + }; + var expected = Point3D.Parse(eps); + foreach (var actual in actuals) + { + Assert.AreEqual(expected, actual); + } + } + + [TestCase("1, 2, 3", "4, 8, 16", "-3, -6, -13")] + public void SubtractPoint(string p1s, string p2s, string evs) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + + var expected = Vector3D.Parse(evs); + Assert.AreEqual(expected, p1 - p2); + } + + [TestCase("0,0,0", "1,0,0", 1)] + [TestCase("1,1,1", "2,1,1", 1)] + public void DistanceTo(string p1s, string p2s, double d) + { + var p1 = Point3D.Parse(p1s); + var p2 = Point3D.Parse(p2s); + + Assert.AreEqual(d, p1.DistanceTo(p2), 1e-6); + Assert.AreEqual(d, p2.DistanceTo(p1), 1e-6); + } + + [TestCase("-1 ; 2;-3")] + public void ToVectorAndBack(string ps) + { + var p = Point3D.Parse(ps); + AssertGeometry.AreEqual(p, p.ToVector3D().ToPoint3D(), 1e-9); + } + + [TestCase("-2, 0, 1e-4", null, "(-2, 0, 0.0001)", 1e-4)] + [TestCase("-2, 0, 1e-4", "F2", "(-2.00, 0.00, 0.00)", 1e-4)] + public void ToString(string vs, string format, string expected, double tolerance) + { + var p = Point3D.Parse(vs); + var actual = p.ToString(format); + Assert.AreEqual(expected, actual); + AssertGeometry.AreEqual(p, Point3D.Parse(actual), tolerance); + } + + [Test] + public void XmlRoundtrip() + { + var p = new Point3D(1, -2, 3); + var xml = @""; + AssertXml.XmlRoundTrips(p, xml, (expected, actual) => AssertGeometry.AreEqual(expected, actual)); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = new Point3D(1, 2, 3), + Value2 = new Point3D(4, 5, 6) + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + AssertGeometry.AreEqual(container.Value1, roundTrip.Value1); + AssertGeometry.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void XmlElements() + { + var v = new Point3D(1, 2, 3); + var serializer = new XmlSerializer(typeof(Point3D)); + AssertGeometry.AreEqual(v, (Point3D)serializer.Deserialize(new StringReader(@"123"))); + } + + [Test] + public void XmlContainerElements() + { + var xml = "\r\n" + + " 123\r\n" + + " 456\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + var deserialized = (AssertXml.Container)serializer.Deserialize(new StringReader(xml)); + AssertGeometry.AreEqual(new Point3D(1, 2, 3), deserialized.Value1); + AssertGeometry.AreEqual(new Point3D(4, 5, 6), deserialized.Value2); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/PolyLine3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/PolyLine3DTests.cs new file mode 100644 index 00000000..2b43c719 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/PolyLine3DTests.cs @@ -0,0 +1,72 @@ +using System; +using System.Linq; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class PolyLine3DTests + { + [TestCase("0,0,1;1,1,0;2,2,1;3,3,0", 1, "1,1,0")] + [TestCase("0,0,1;1,1,0;2,2,1;3,3,0", 0, "0,0,1")] + [TestCase("0,0,1;1,1,0;2,2,1;3,3,0", 3, "3,3,0")] + public void IndexAccessorTest(string points, int index, string expected) + { + var testElement = new PolyLine3D(from x in points.Split(';') select Point3D.Parse(x)); + var checkElement = Point3D.Parse(expected); + AssertGeometry.AreEqual(checkElement, testElement.Vertices.Skip(index).First()); + } + + [TestCase("0,0,0;0,1,0", 1.0)] + [TestCase("0,0,0;0,1,0;1,1,0", 2.0)] + [TestCase("0,-1.5,0;0,1,0;1,1,0", 3.5)] + public void GetPolyLineLengthTests(string points, double expected) + { + var testElement = new PolyLine3D(from x in points.Split(';') select Point3D.Parse(x)); + + Assert.AreEqual(expected, testElement.Length, 1e-10); + } + + [TestCase("0,-1.5,0;0,1,0;1,1,0", 1.0, "1,1,0")] + [TestCase("0,-1.5,0;0,1,0;1,1,0", 0.0, "0,-1.5,0")] + [TestCase("0,0,0;0,1,0;1,1,0", 0.25, "0,0.5,0")] + [TestCase("0,0,0;0,1,0;1,1,0", 0.5, "0,1,0")] + [TestCase("0,0,0;0,1,0;1,1,0", 0.75, "0.5,1,0")] + public void GetPointAtFractionAlongCurve(string points, double fraction, string expected) + { + // Note that this method also tests GetPointAtLengthFromStart(...) + var testElement = new PolyLine3D(from x in points.Split(';') select Point3D.Parse(x)); + var checkElement = Point3D.Parse(expected); + + AssertGeometry.AreEqual(checkElement, testElement.GetPointAtFractionAlongCurve(fraction)); + } + + [TestCase("0,-1.5,0;0,1,0;1,1,0", 2.0, "1,1,0")] + [TestCase("0,-1.5,0;0,1,0;1,1,0", -5, "0,-1.5,0")] + public void GetPointAtFractionAlongCurveThrowsArgumentException(string points, double fraction, string expected) + { + var testElement = new PolyLine3D(from x in points.Split(';') select Point3D.Parse(x)); + Assert.Throws(() => { testElement.GetPointAtFractionAlongCurve(fraction); }); + } + + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0,-1,0", "0,0,0")] // Off Endpoint + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "2,1,2", "1,1,2")] // Off Endpoint + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "-1,2,1", "0,1,1")] // Off Corner + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0,0,0", "0,0,0")] // On Endpoint + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "1,1,2", "1,1,2")] // On Endpoint + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0,1,1", "0,1,1")] // On Corner + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0,0.5,0.5", "0,0.5,0.5")] // On Curve + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "-1,0.5,0.5", "0,0.5,0.5")] // Off curve + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0.5,1,1.5", "0.5,1,1.5")] // On Curve + [TestCase("0,0,0 ; 0,1,1 ; 1,1,2", "0.5,1.5,1.5", "0.5,1,1.5")] // Off curve + public void ClosestPointToTest(string points, string testPoint, string expectedPoint) + { + var testCurve = new PolyLine3D(from x in points.Split(';') select Point3D.Parse(x)); + var test = Point3D.Parse(testPoint); + var expected = Point3D.Parse(expectedPoint); + + AssertGeometry.AreEqual(expected, testCurve.ClosestPointTo(test), 1e-06); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Ray3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Ray3DTests.cs new file mode 100644 index 00000000..3a602caf --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Ray3DTests.cs @@ -0,0 +1,59 @@ +// ReSharper disable InconsistentNaming + +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Ray3DTests + { + [TestCase("1, 2, 3", "0, 0, 1", "1, 2, 3", "0, 0, 1")] + public void Parse(string rootPoint, string unitVector, string eps, string evs) + { + var ray = new Ray3D(Point3D.Parse(rootPoint), UnitVector3D.Parse(unitVector)); + AssertGeometry.AreEqual(Point3D.Parse(eps), ray.ThroughPoint); + AssertGeometry.AreEqual(Vector3D.Parse(evs), ray.Direction); + } + + [TestCase("0, 0, 0", "0, 0, 1", "0, 0, 0", "0, 1, 0", "0, 0, 0", "-1, 0, 0")] + [TestCase("0, 0, 2", "0, 0, 1", "0, 0, 0", "0, 1, 0", "0, 0, 2", "-1, 0, 0")] + public void IntersectionOf(string rootPoint1, string unitVector1, string rootPoint2, string unitVector2, string eps, string evs) + { + var plane1 = new Plane3D(Point3D.Parse(rootPoint1), UnitVector3D.Parse(unitVector1)); + var plane2 = new Plane3D(Point3D.Parse(rootPoint2), UnitVector3D.Parse(unitVector2)); + var actual = Ray3D.IntersectionOf(plane1, plane2); + var expected = Ray3D.Parse(eps, evs); + AssertGeometry.AreEqual(expected, actual); + } + + [Test] + public void LineToTest() + { + var ray = new Ray3D(new Point3D(0, 0, 0), UnitVector3D.ZAxis); + var point3D = new Point3D(1, 0, 0); + var line3DTo = ray.ShortestLineTo(point3D); + AssertGeometry.AreEqual(new Point3D(0, 0, 0), line3DTo.StartPoint); + AssertGeometry.AreEqual(point3D, line3DTo.EndPoint, float.Epsilon); + } + + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "1, -1, 1", true)] + [TestCase("0, 0, 2", "1, -1, 1", "0, 0, 0", "1, -1, 1", false)] + [TestCase("0, 0, 0", "1, -1, 1", "0, 0, 0", "2, -1, 1", false)] + public void Equals(string p1s, string v1s, string p2s, string v2s, bool expected) + { + var ray1 = new Ray3D(Point3D.Parse(p1s), UnitVector3D.Parse(v1s, tolerance: 2)); + var ray2 = new Ray3D(Point3D.Parse(p2s), UnitVector3D.Parse(v2s, tolerance: 2)); + Assert.AreEqual(expected, ray1.Equals(ray2)); + Assert.AreEqual(expected, ray1 == ray2); + Assert.AreEqual(!expected, ray1 != ray2); + } + + [TestCase("1, 2, 3", "-0.2672612419124244, 0.53452248382484879, 0.80178372573727319", false, @"")] + public void XmlTests(string ps, string vs, bool asElements, string xml) + { + var ray = new Ray3D(Point3D.Parse(ps), UnitVector3D.Parse(vs)); + AssertXml.XmlRoundTrips(ray, xml, (e, a) => AssertGeometry.AreEqual(e, a, 1e-6)); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/UnitVector3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/UnitVector3DTests.cs new file mode 100644 index 00000000..789ca124 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/UnitVector3DTests.cs @@ -0,0 +1,220 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class UnitVector3DTests + { + [Test] + public void Create() + { + var actual = UnitVector3D.Create(1, -2, 3); + Assert.AreEqual(0.2672612419124244, actual.X); + Assert.AreEqual(-0.53452248382484879, actual.Y); + Assert.AreEqual(0.80178372573727319, actual.Z); + + actual = UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319); + Assert.AreEqual(0.2672612419124244, actual.X); + Assert.AreEqual(-0.53452248382484879, actual.Y); + Assert.AreEqual(0.80178372573727319, actual.Z); + + Assert.Throws(() => UnitVector3D.Create(double.NaN, 2, 3)); + Assert.Throws(() => UnitVector3D.Create(double.PositiveInfinity, 2, 3)); + Assert.Throws(() => UnitVector3D.Create(double.NegativeInfinity, 2, 3)); + } + + [TestCase("1,0; 0; 0,0", 1, 0, 0)] + [TestCase("0; 1,0; 0,0", 0, 1, 0)] + [TestCase("0; 0,0; 1,0", 0, 0, 1)] + [TestCase("1.0; 0; 0.0", 1, 0, 0)] + [TestCase("0; 1.0; 0.0", 0, 1, 0)] + [TestCase("0; 0.0; 1.0", 0, 0, 1)] + public void Parse(string text, double expectedX, double expectedY, double expectedZ) + { + Assert.AreEqual(true, UnitVector3D.TryParse(text, out var p)); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = UnitVector3D.Parse(text); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = UnitVector3D.Parse(p.ToString()); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + } + + [TestCase("1; 2; 3")] + [TestCase("1.2")] + [TestCase("1,2; 2.3; 3")] + [TestCase("1; 2; 3; 4")] + public void ParseFails(string text) + { + Assert.AreEqual(false, UnitVector3D.TryParse(text, out _)); + Assert.Throws(() => UnitVector3D.Parse(text)); + } + + [Test] + public void ToDenseVector() + { + var uv = UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319); + var vector = uv.ToVector(); + Assert.AreEqual(3, vector.Count); + Assert.AreEqual(0.2672612419124244, vector[0]); + Assert.AreEqual(-0.53452248382484879, vector[1]); + Assert.AreEqual(0.80178372573727319, vector[2]); + + var roundtripped = UnitVector3D.OfVector(vector); + Assert.AreEqual(0.2672612419124244, roundtripped.X); + Assert.AreEqual(-0.53452248382484879, roundtripped.Y); + Assert.AreEqual(0.80178372573727319, roundtripped.Z); + } + + [TestCase("1, 0, 0", "1, 0, 0", 1e-4, true)] + [TestCase("0, 1, 0", "0, 1, 0", 1e-4, true)] + [TestCase("0, 0, 1", "0, 0, 1", 1e-4, true)] + [TestCase("1, 0, 0", "0, 1, 0", 1e-4, false)] + [TestCase("0, 1, 0", "1, 0, 0", 1e-4, false)] + [TestCase("0, 0, 1", "0, 1, 0", 1e-4, false)] + public void Equals(string p1s, string p2s, double tol, bool expected) + { + var v1 = UnitVector3D.Parse(p1s); + var v2 = UnitVector3D.Parse(p2s); + var vector3D = v1.ToVector3D(); + Assert.AreEqual(expected, v1 == v2); + Assert.IsTrue(v1 == vector3D); + Assert.IsTrue(vector3D == v1); + + Assert.AreEqual(expected, v1.Equals(v2)); + Assert.IsTrue(v1.Equals(vector3D)); + Assert.IsTrue(vector3D.Equals(v1)); + Assert.AreEqual(expected, v1.Equals(v2.ToVector3D())); + Assert.AreEqual(expected, v2.ToVector3D().Equals(v1)); + + Assert.AreEqual(expected, v1.Equals((object)v2)); + Assert.AreEqual(expected, Equals(v1, v2)); + + Assert.AreEqual(expected, v1.Equals(v2, tol)); + Assert.AreNotEqual(expected, v1 != v2); + Assert.AreNotEqual(expected, v1 != v2.ToVector3D()); + Assert.AreNotEqual(expected, v2.ToVector3D() != v1); + } + + [TestCase("1; 0; 0", 5, "5; 0; 0")] + [TestCase("1; 0; 0", -5, "-5; 0; 0")] + [TestCase("-1; 0; 0", 5, "-5; 0; 0")] + [TestCase("-1; 0; 0", -5, "5; 0; 0")] + [TestCase("0; 1; 0", 5, "0; 5; 0")] + [TestCase("0; 0; 1", 5, "0; 0; 5")] + public void Scale(string ivs, double s, string exs) + { + var uv = UnitVector3D.Parse(ivs); + var v = uv.ScaleBy(s); + AssertGeometry.AreEqual(Vector3D.Parse(exs), v, float.Epsilon); + } + + [TestCase("1; 0; 0", "1; 0; 0", 1)] + [TestCase("1; 0; 0", "-1; 0; 0", -1)] + [TestCase("1; 0; 0", "0; -1; 0", 0)] + public void DotProduct(string v1s, string v2s, double expected) + { + var uv1 = UnitVector3D.Parse(v1s); + var uv2 = UnitVector3D.Parse(v2s); + var dp = uv1.DotProduct(uv2); + Assert.AreEqual(dp, expected, 1e-9); + Assert.IsTrue(dp <= 1); + Assert.IsTrue(dp >= -1); + } + + [TestCase("-1, 0, 0", null, "(-1, 0, 0)", 1e-4)] + [TestCase("-1, 0, 1e-4", "F2", "(-1.00, 0.00, 0.00)", 1e-3)] + public void ToString(string vs, string format, string expected, double tolerance) + { + var v = UnitVector3D.Parse(vs); + var actual = v.ToString(format); + Assert.AreEqual(expected, actual); + AssertGeometry.AreEqual(v, UnitVector3D.Parse(actual), tolerance); + } + + [TestCase("1,0,0", 3, "3,0,0")] + public void MultiplyTest(string unitVectorAsString, double multiplier, string expected) + { + var unitVector3D = UnitVector3D.Parse(unitVectorAsString); + Assert.AreEqual(Vector3D.Parse(expected), multiplier * unitVector3D); + } + + [TestCase("")] + [TestCase("")] + [TestCase("")] + [TestCase("0.2672612419124244-0.534522483824848790.80178372573727319")] + [TestCase("-0.534522483824848790.801783725737273190.2672612419124244")] + [TestCase("0.801783725737273190.2672612419124244-0.53452248382484879")] + public void ReadFrom(string xml) + { + using (var reader = new StringReader(xml)) + { + var actual = UnitVector3D.ReadFrom(XmlReader.Create(reader)); + Assert.AreEqual(UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319), actual); + } + } + + [Test] + public void XmlRoundtrip() + { + var uv = UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319); + var xml = ""; + AssertXml.XmlRoundTrips(uv, xml, (expected, actual) => AssertGeometry.AreEqual(expected, actual)); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319), + Value2 = UnitVector3D.Create(1, 0, 0) + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + AssertGeometry.AreEqual(container.Value1, roundTrip.Value1); + AssertGeometry.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void XmlElements() + { + var v = UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319); + var serializer = new XmlSerializer(typeof(UnitVector3D)); + using (var reader = new StringReader("0.2672612419124244-0.534522483824848790.80178372573727319")) + { + AssertGeometry.AreEqual(v, (UnitVector3D)serializer.Deserialize(reader)); + } + } + + [Test] + public void XmlContainerElements() + { + var xml = "\r\n" + + " 0.2672612419124244-0.534522483824848790.80178372573727319\r\n" + + " 100\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + var deserialized = (AssertXml.Container)serializer.Deserialize(new StringReader(xml)); + AssertGeometry.AreEqual(UnitVector3D.Create(0.2672612419124244, -0.53452248382484879, 0.80178372573727319), deserialized.Value1); + AssertGeometry.AreEqual(UnitVector3D.Create(1, 0, 0), deserialized.Value2); + } + } +} diff --git a/src/Numerics.Tests/Spatial/Euclidean3D/Vector3DTests.cs b/src/Numerics.Tests/Spatial/Euclidean3D/Vector3DTests.cs new file mode 100644 index 00000000..500938a8 --- /dev/null +++ b/src/Numerics.Tests/Spatial/Euclidean3D/Vector3DTests.cs @@ -0,0 +1,492 @@ +// ReSharper disable InconsistentNaming + +using System; +using System.IO; +using System.Xml; +using System.Xml.Serialization; +using MathNet.Numerics.Spatial; +using MathNet.Numerics.Spatial.Euclidean3D; +using NUnit.Framework; + +namespace MathNet.Numerics.Tests.Spatial.Euclidean3D +{ + [TestFixture] + public class Vector3DTests + { + private const string X = "1; 0 ; 0"; + private const string Y = "0; 1; 0"; + private const string Z = "0; 0; 1"; + private const string NegativeX = "-1; 0; 0"; + private const string NegativeY = "0; -1; 0"; + private const string NegativeZ = "0; 0; -1"; + + [Test] + public void Ctor() + { + var v = new Vector3D(1, 2, 3); + Assert.AreEqual(1, v.X); + Assert.AreEqual(2, v.Y); + Assert.AreEqual(3, v.Z); + } + + [TestCase("1,2,-3", 3, "3,6,-9")] + public void OperatorMultiply(string vectorAsString, double multiplier, string expected) + { + var vector = Vector3D.Parse(vectorAsString); + AssertGeometry.AreEqual(Vector3D.Parse(expected), multiplier * vector, 1e-6); + } + + [TestCase("-1,1,-1", -1, 1, -1)] + [TestCase("1, 2, 3", 1, 2, 3)] + [TestCase("1.2; 3.4; 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2;3.4;5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2 ; 3.4 ; 5.6", 1.2, 3.4, 5.6)] + [TestCase("1,2; 3,4; 5,6", 1.2, 3.4, 5.6)] + [TestCase("1.2, 3.4, 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2 3.4 5.6", 1.2, 3.4, 5.6)] + [TestCase("1.2,\u00A03.4\u00A05.6", 1.2, 3.4, 5.6)] + [TestCase("1.2\u00A03.4\u00A05.6", 1.2, 3.4, 5.6)] + [TestCase("(1.2, 3.4 5.6)", 1.2, 3.4, 5.6)] + [TestCase("1,2\u00A03,4\u00A05,6", 1.2, 3.4, 5.6)] + [TestCase("(.1, 2.3e-4,1)", 0.1, 0.00023000000000000001, 1)] + [TestCase("1.0 , 2.5,3.3", 1, 2.5, 3.3)] + [TestCase("1,0 ; 2,5;3,3", 1, 2.5, 3.3)] + [TestCase("1.0 ; 2.5;3.3", 1, 2.5, 3.3)] + [TestCase("1.0,2.5,-3.3", 1, 2.5, -3.3)] + [TestCase("1;2;3", 1, 2, 3)] + public void Parse(string text, double expectedX, double expectedY, double expectedZ) + { + Assert.AreEqual(true, Vector3D.TryParse(text, out var p)); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = Vector3D.Parse(text); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + + p = Vector3D.Parse(p.ToString()); + Assert.AreEqual(expectedX, p.X); + Assert.AreEqual(expectedY, p.Y); + Assert.AreEqual(expectedZ, p.Z); + } + + [TestCase("1.2")] + [TestCase("1,2; 2.3; 3")] + [TestCase("1; 2; 3; 4")] + public void ParseFails(string text) + { + Assert.AreEqual(false, Vector3D.TryParse(text, out _)); + Assert.Throws(() => Vector3D.Parse(text)); + } + + [TestCase("")] + [TestCase("")] + [TestCase("")] + [TestCase("1-23")] + [TestCase("-231")] + [TestCase("31-2")] + public void ReadFrom(string xml) + { + using (var reader = new StringReader(xml)) + { + var actual = Vector3D.ReadFrom(XmlReader.Create(reader)); + Assert.AreEqual(new Vector3D(1, -2, 3), actual); + } + } + + [Test] + public void ToDenseVector() + { + var v = new Vector3D(1, 2, 3); + var vector = v.ToVector(); + Assert.AreEqual(3, vector.Count); + Assert.AreEqual(1, vector[0]); + Assert.AreEqual(2, vector[1]); + Assert.AreEqual(3, vector[2]); + + var roundtripped = Vector3D.OfVector(vector); + Assert.AreEqual(1, roundtripped.X); + Assert.AreEqual(2, roundtripped.Y); + Assert.AreEqual(3, roundtripped.Z); + } + + [TestCase("1; 0 ; 0")] + [TestCase("1; 1 ; 0")] + [TestCase("1; -1 ; 0")] + public void Orthogonal(string vs) + { + var v = Vector3D.Parse(vs); + var orthogonal = v.Orthogonal; + Assert.IsTrue(orthogonal.DotProduct(v) < 1e-6); + } + + [TestCase("0; 0 ; 0")] + public void Orthogonal_BadArgument(string vs) + { + var v = Vector3D.Parse(vs); +#pragma warning disable SA1312 // Variable names must begin with lower-case letter + Assert.Throws(() => { var _ = v.Orthogonal; }); +#pragma warning restore SA1312 // Variable names must begin with lower-case letter + } + + [TestCase(X, Y, Z)] + [TestCase(X, "1, 1, 0", Z)] + [TestCase(X, NegativeY, NegativeZ)] + [TestCase(Y, Z, X)] + [TestCase(Y, "0.1, 0.1, 1", "1, 0, -0.1", Description = "Almost Z")] + [TestCase(Y, "-0.1, -0.1, 1", "1, 0, 0.1", Description = "Almost Z men minus")] + public void CrossProduct(string v1s, string v2s, string ves) + { + var vector1 = Vector3D.Parse(v1s); + var vector2 = Vector3D.Parse(v2s); + var expected = Vector3D.Parse(ves); + var crossProduct = vector1.CrossProduct(vector2); + AssertGeometry.AreEqual(expected, crossProduct, 1E-6); + } + + [TestCase(X, Y, Z, 90)] + [TestCase(X, X, Z, 0)] + [TestCase(X, NegativeY, Z, -90)] + [TestCase(X, NegativeX, Z, 180)] + public void SignedAngleTo(string fromString, string toString, string axisString, double degreeAngle) + { + var fromVector = Vector3D.Parse(fromString); + var toVector = Vector3D.Parse(toString); + var aboutVector = Vector3D.Parse(axisString); + Assert.AreEqual(degreeAngle, fromVector.SignedAngleTo(toVector, aboutVector.Normalize()).Degrees, 1E-6); + } + + [TestCase("1; 0; 1", Y, "-1; 0; 1", "90°")] + public void SignedAngleToArbitraryVector(string fromString, string toString, string axisString, string @as) + { + var fromVector = Vector3D.Parse(fromString); + var toVector = Vector3D.Parse(toString); + var aboutVector = Vector3D.Parse(axisString); + var angle = Angle.Parse(@as); + Assert.AreEqual(angle.Degrees, fromVector.SignedAngleTo(toVector.Normalize(), aboutVector.Normalize()).Degrees, 1E-6); + } + + [TestCase(X, 5)] + [TestCase(Y, 5)] + [TestCase("1; 1; 0", 5)] + [TestCase("1; 0; 1", 5)] + [TestCase("0; 1; 1", 5)] + [TestCase("1; 1; 1", 5)] + [TestCase(X, 90)] + [TestCase(Y, 90)] + [TestCase("1; 1; 0", 90)] + [TestCase("1; 0; 1", 90)] + [TestCase("0; 1; 1", 90)] + [TestCase("1; 1; 1", 90)] + [TestCase("1; 0; 1", -90)] + [TestCase("1; 0; 1", 180)] + [TestCase("1; 0; 1", 0)] + public void SignedAngleTo_RotationAroundZ(string vectorDoubles, double rotationInDegrees) + { + var vector = Vector3D.Parse(vectorDoubles); + var angle = Angle.FromDegrees(rotationInDegrees); + var rotated = Vector3D.OfVector(Matrix3D.RotationAroundZAxis(angle).Multiply(vector.ToVector())); + var actual = vector.SignedAngleTo(rotated, Vector3D.Parse(Z).Normalize()); + Assert.AreEqual(rotationInDegrees, actual.Degrees, 1E-6); + } + + [TestCase(X, Z, 90, Y)] + public void Rotate(string vs, string avs, double deg, string evs) + { + var v = Vector3D.Parse(vs); + var about = Vector3D.Parse(avs); + var expected = Vector3D.Parse(evs); + var rotated = v.Rotate(about, Angle.FromDegrees(deg)); + AssertGeometry.AreEqual(expected, rotated, 1E-6); + + rotated = v.Rotate(about.Normalize(), Angle.FromDegrees(deg)); + AssertGeometry.AreEqual(expected, rotated, 1E-6); + } + + [TestCase("X", X)] + [TestCase("Y", Y)] + [TestCase("Z", Z)] + public void SignedAngleTo_Itself(string axisDummy, string aboutDoubles) + { + var vector = new Vector3D(1, 1, 1); + var aboutVector = Vector3D.Parse(aboutDoubles); + var angle = vector.SignedAngleTo(vector, aboutVector.Normalize()); + Assert.AreEqual(0, angle.Degrees, 1E-6); + } + + [TestCase(X, Y, "90°")] + [TestCase(Y, X, "90°")] + [TestCase(X, Z, "90°")] + [TestCase(Z, X, "90°")] + [TestCase(Y, Z, "90°")] + [TestCase(Z, Y, "90°")] + [TestCase(X, X, "0°")] + [TestCase(Y, Y, "0°")] + [TestCase(Z, Z, "0°")] + [TestCase(X, NegativeY, "90°")] + [TestCase(Y, NegativeY, "180°")] + [TestCase(Z, NegativeZ, "180°")] + [TestCase("1; 1; 0", X, "45°")] + [TestCase("1; 1; 0", Y, "45°")] + [TestCase("1; 1; 0", Z, "90°")] + [TestCase("2; 2; 0", "0; 0; 2", "90°")] + [TestCase("1; 1; 1", X, "54.74°")] + [TestCase("1; 1; 1", Y, "54.74°")] + [TestCase("1; 1; 1", Z, "54.74°")] + [TestCase("1; 0; 0", "1; 0; 0", "0°")] + [TestCase("-1; -1; 1", "-1; -1; 1", "0°")] + [TestCase("1; 1; 1", "-1; -1; -1", "180°")] + public void AngleTo(string v1s, string v2s, string ea) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s); + var angles = new[] + { + v1.AngleTo(v2), + v2.AngleTo(v1) + }; + var expected = Angle.Parse(ea); + foreach (var angle in angles) + { + Assert.AreEqual(expected.Radians, angle.Radians, 1E-2); + } + } + + [TestCase("5; 0; 0", "1; 0 ; 0")] + [TestCase("-5; 0; 0", "-1; 0 ; 0")] + [TestCase("0; 5; 0", "0; 1 ; 0")] + [TestCase("0; -5; 0", "0; -1 ; 0")] + [TestCase("0; 0; 5", "0; 0 ; 1")] + [TestCase("0; 0; -5", "0; 0 ; -1")] + [TestCase("2; 2; 2", "0,577350269189626; 0,577350269189626; 0,577350269189626")] + [TestCase("-2; 15; 2", "-0,131024356416084; 0,982682673120628; 0,131024356416084")] + public void Normalize(string vs, string evs) + { + var vector = Vector3D.Parse(vs); + var uv = vector.Normalize(); + var expected = UnitVector3D.Parse(evs); + AssertGeometry.AreEqual(expected, uv, 1E-6); + } + + [TestCase("0; 0; 0", "0; 0 ; 0")] + public void Normalize_BadArgument(string vs, string evs) + { + var vector = Vector3D.Parse(vs); + //// ReSharper disable once ReturnValueOfPureMethodIsNotUsed + Assert.Throws(() => vector.Normalize()); + } + + [TestCase("1, -1, 10", 5, "5, -5, 50")] + public void Scale(string vs, double s, string evs) + { + var v = Vector3D.Parse(vs); + var actual = v.ScaleBy(s); + AssertGeometry.AreEqual(Vector3D.Parse(evs), actual, 1e-6); + } + + [TestCase("5;0;0", 5)] + [TestCase("-5;0;0", 5)] + [TestCase("-3;0;4", 5)] + public void Length(string vectorString, double length) + { + var vector = Vector3D.Parse(vectorString); + Assert.AreEqual(length, vector.Length); + } + + [TestCase(X, X, true)] + [TestCase(X, NegativeX, true)] + [TestCase(Y, Y, true)] + [TestCase(Y, NegativeY, true)] + [TestCase(Z, NegativeZ, true)] + [TestCase(Z, Z, true)] + [TestCase("1;-8;7", "1;-8;7", true)] + [TestCase(X, "1;-8;7", false)] + [TestCase("1;-1.2;0", Z, false)] + public void IsParallelTo(string vector1, string vector2, bool expected) + { + var v1 = Vector3D.Parse(vector1); + var v2 = Vector3D.Parse(vector2); + Assert.AreEqual(true, v1.IsParallelTo(v1, 1E-6)); + Assert.AreEqual(true, v2.IsParallelTo(v2, 1E-6)); + Assert.AreEqual(expected, v1.IsParallelTo(v2, 1E-6)); + Assert.AreEqual(expected, v2.IsParallelTo(v1, 1E-6)); + } + + [TestCase("0,1,0", "0,1, 0", 1e-10, true)] + [TestCase("0,1,0", "0,-1, 0", 1e-10, true)] + [TestCase("0,1,0", "0,1, 1", 1e-10, false)] + [TestCase("0,1,1", "0,1, 1", 1e-10, true)] + [TestCase("0,1,-1", "0,-1, 1", 1e-10, true)] + [TestCase("0,1,0", "0,1, 0.001", 1e-10, false)] + [TestCase("0,1,0", "0,1, -0.001", 1e-10, false)] + [TestCase("0,-1,0", "0,1, 0.001", 1e-10, false)] + [TestCase("0,-1,0", "0,1, -0.001", 1e-10, false)] + [TestCase("0,1,0", "0,1, 0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,1,0", "0,1, -0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,-1,0", "0,1, 0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,-1,0", "0,1, -0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,1,0.5", "0,-1, -0.5", 1e-10, true)] + public void IsParallelToByDoubleTolerance(string v1s, string v2s, double tolerance, bool expected) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s); + Assert.AreEqual(expected, v1.IsParallelTo(v2, tolerance)); + Assert.AreEqual(expected, v2.IsParallelTo(v1, tolerance)); + } + + [TestCase("0,1,0", "0,1, 0", 1e-10, true)] + [TestCase("0,1,0", "0,-1, 0", 1e-10, true)] + [TestCase("0,1,0", "0,1, 1", 1e-10, false)] + [TestCase("0,1,1", "0,1, 1", 1e-10, true)] + [TestCase("0,1,-1", "0,-1, 1", 1e-10, true)] + [TestCase("0,1,0", "0,1, 0.001", 1e-10, false)] + [TestCase("0,1,0", "0,1, -0.001", 1e-10, false)] + [TestCase("0,-1,0", "0,1, 0.001", 1e-10, false)] + [TestCase("0,-1,0", "0,1, -0.001", 1e-10, false)] + [TestCase("0,1,0", "0,1, 0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,1,0", "0,1, -0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,-1,0", "0,1, 0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,-1,0", "0,1, -0.001", 1e-6, true, Description = "These test cases demonstrate the effect of the tolerance")] + [TestCase("0,1,0.5", "0,-1, -0.5", 1e-10, true)] + public void IsParallelToUnitVectorByDoubleTolerance(string v1s, string v2s, double tolerance, bool expected) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s).Normalize(); + Assert.AreEqual(expected, v1.IsParallelTo(v2, tolerance)); + Assert.AreEqual(expected, v2.IsParallelTo(v1, tolerance)); + } + + [TestCase("0,1,0", "0,1, 0", 1e-4, true)] + [TestCase("0,1,0", "0,-1, 0", 1e-4, true)] + [TestCase("0,1,0", "0,1, 1", 1e-4, false)] + [TestCase("0,1,1", "0,1, 1", 1e-4, true)] + [TestCase("0,1,-1", "0,-1, 1", 1e-4, true)] + [TestCase("0,1,0", "0,1, 0.001", 0.06, true)] + [TestCase("0,1,0", "0,1, -0.001", 0.06, true)] + [TestCase("0,-1,0", "0,1, 0.001", 0.06, true)] + [TestCase("0,-1,0", "0,1, -0.001", 0.06, true)] + [TestCase("0,1,0", "0,1, 0.001", 0.05, false)] + [TestCase("0,1,0", "0,1, -0.001", 0.05, false)] + [TestCase("0,-1,0", "0,1, 0.001", 0.05, false)] + [TestCase("0,-1,0", "0,1, -0.001", 0.05, false)] + [TestCase("0,1,0.5", "0,-1, -0.5", 1e-4, true)] + public void IsParallelToByAngleTolerance(string v1s, string v2s, double degreesTolerance, bool expected) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s); + Assert.AreEqual(expected, v1.IsParallelTo(v2, Angle.FromDegrees(degreesTolerance))); + Assert.AreEqual(expected, v2.IsParallelTo(v1, Angle.FromDegrees(degreesTolerance))); + } + + [TestCase("0,1,0", "0,1, 0", 1e-4, true)] + [TestCase("0,1,0", "0,-1, 0", 1e-4, true)] + [TestCase("0,1,0", "0,1, 1", 1e-4, false)] + [TestCase("0,1,1", "0,1, 1", 1e-4, true)] + [TestCase("0,1,-1", "0,-1, 1", 1e-4, true)] + [TestCase("0,1,0", "0,1, 0.001", 0.06, true)] + [TestCase("0,1,0", "0,1, -0.001", 0.06, true)] + [TestCase("0,-1,0", "0,1, 0.001", 0.06, true)] + [TestCase("0,-1,0", "0,1, -0.001", 0.06, true)] + [TestCase("0,1,0", "0,1, 0.001", 0.05, false)] + [TestCase("0,1,0", "0,1, -0.001", 0.05, false)] + [TestCase("0,-1,0", "0,1, 0.001", 0.05, false)] + [TestCase("0,-1,0", "0,1, -0.001", 0.05, false)] + [TestCase("0,1,0.5", "0,-1, -0.5", 1e-4, true)] + public void IsParallelToUnitVectorByAngleTolerance(string v1s, string v2s, double degreesTolerance, bool expected) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s).Normalize(); + Assert.AreEqual(expected, v1.IsParallelTo(v2, Angle.FromDegrees(degreesTolerance))); + Assert.AreEqual(expected, v2.IsParallelTo(v1, Angle.FromDegrees(degreesTolerance))); + } + + [TestCase(X, X, false)] + [TestCase(NegativeX, X, false)] + [TestCase("-11;0;0", X, false)] + [TestCase("1;1;0", X, false)] + [TestCase(X, Y, true)] + [TestCase(X, Z, true)] + [TestCase(Y, X, true)] + [TestCase(Y, Z, true)] + [TestCase(Z, Y, true)] + [TestCase(Z, X, true)] + public void IsPerpendicularTo(string v1s, string v2s, bool expected) + { + var v1 = Vector3D.Parse(v1s); + var v2 = Vector3D.Parse(v2s); + Assert.AreEqual(expected, v1.IsPerpendicularTo(v2)); + } + + [TestCase("1, 2, 3", "1, 2, 3", 1e-4, true)] + [TestCase("1, 2, 3", "4, 5, 6", 1e-4, false)] + public void Equals(string p1s, string p2s, double tol, bool expected) + { + var v1 = Vector3D.Parse(p1s); + var v2 = Vector3D.Parse(p2s); + Assert.AreEqual(expected, v1 == v2); + Assert.AreEqual(expected, v1.Equals(v2)); + Assert.AreEqual(expected, v1.Equals((object)v2)); + Assert.AreEqual(expected, Equals(v1, v2)); + Assert.AreEqual(expected, v1.Equals(v2, tol)); + Assert.AreNotEqual(expected, v1 != v2); + } + + [TestCase("-2, 0, 1e-4", null, "(-2, 0, 0.0001)", 1e-4)] + [TestCase("-2, 0, 1e-4", "F2", "(-2.00, 0.00, 0.00)", 1e-4)] + public void ToString(string vs, string format, string expected, double tolerance) + { + var v = Vector3D.Parse(vs); + var actual = v.ToString(format); + Assert.AreEqual(expected, actual); + AssertGeometry.AreEqual(v, Vector3D.Parse(actual), tolerance); + } + + [Test] + public void XmlRoundtrip() + { + var p = new Vector3D(1, -2, 3); + var xml = @""; + AssertXml.XmlRoundTrips(p, xml, (expected, actual) => AssertGeometry.AreEqual(expected, actual)); + } + + [Test] + public void XmlContainerRoundtrip() + { + var container = new AssertXml.Container + { + Value1 = new Vector3D(1, 2, 3), + Value2 = new Vector3D(4, 5, 6) + }; + var expected = "\r\n" + + " \r\n" + + " \r\n" + + ""; + var roundTrip = AssertXml.XmlSerializerRoundTrip(container, expected); + AssertGeometry.AreEqual(container.Value1, roundTrip.Value1); + AssertGeometry.AreEqual(container.Value2, roundTrip.Value2); + } + + [Test] + public void XmlElements() + { + var v = new Vector3D(1, 2, 3); + var serializer = new XmlSerializer(typeof(Vector3D)); + AssertGeometry.AreEqual(v, (Vector3D)serializer.Deserialize(new StringReader(@"123"))); + } + + [Test] + public void XmlContainerElements() + { + var xml = "\r\n" + + " 123\r\n" + + " 456\r\n" + + ""; + var serializer = new XmlSerializer(typeof(AssertXml.Container)); + var deserialized = (AssertXml.Container)serializer.Deserialize(new StringReader(xml)); + AssertGeometry.AreEqual(new Vector3D(1, 2, 3), deserialized.Value1); + AssertGeometry.AreEqual(new Vector3D(4, 5, 6), deserialized.Value2); + } + } +}