// // Math.NET Numerics, part of the Math.NET Project // http://mathnet.opensourcedotnet.info // // Copyright (c) 2009 Math.NET // // Permission is hereby granted, free of charge, to any person // obtaining a copy of this software and associated documentation // files (the "Software"), to deal in the Software without // restriction, including without limitation the rights to use, // copy, modify, merge, publish, distribute, sublicense, and/or sell // copies of the Software, and to permit persons to whom the // Software is furnished to do so, subject to the following // conditions: // // The above copyright notice and this permission notice shall be // included in all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, // EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES // OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND // NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT // HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, // WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR // OTHER DEALINGS IN THE SOFTWARE. // namespace MathNet.Numerics.UnitTests.ComplexTests { using System; using System.Globalization; using MbUnit.Framework; [TestFixture] public class ComplexTextHandlingTest { [Test] [Row(1, -2, "1 -2i")] [Row(1, 2, "1 + 2i")] [Row(1, 0, "1")] [Row(0, -2, "-2i")] [Row(0, 2, "2i")] [Row(0, 2, "2i")] [Row(0, 0, "0")] [Row(Double.NaN, Double.NaN, "{1}")] [Row(Double.NaN, 0, "{1}")] [Row(0, Double.NaN, "{1}")] [Row(Double.PositiveInfinity, Double.PositiveInfinity, "{2}")] [Row(1.1, 0, "1{0}1")] [Row(-1.1, 0, "-1{0}1")] [Row(0, 1.1, "1{0}1i")] [Row(0, -1.1, "-1{0}1i")] [Row(1.1, 1.1, "1{0}1 + 1{0}1i")] public void CanFormatComplexToString(double real, double imag, string expected) { var numberFormat = NumberFormatInfo.CurrentInfo; var a = new Complex(real, imag); Assert.AreEqual( String.Format( expected, numberFormat.NumberDecimalSeparator, numberFormat.NaNSymbol, numberFormat.PositiveInfinitySymbol), a.ToString()); } [Test] [MultipleAsserts] [Row("en-US", "NaN", "Infinity", "1.1")] [Row("tr-TR", "NaN", "Infinity", "1,1")] [Row("de-DE", "n. def.", "+unendlich", "1,1")] [Row("de-CH", "n. def.", "+unendlich", "1.1")] [Row("he-IL", "לא מספר", "אינסוף חיובי", "1.1")] public void CanFormatComplexToStringWithCulture( string cultureName, string nan, string infinity, string number) { var provider = CultureInfo.GetCultureInfo(cultureName); Assert.AreEqual(nan, Complex.NaN.ToString(provider)); Assert.AreEqual(infinity, Complex.Infinity.ToString(provider)); Assert.AreEqual("0", Complex.Zero.ToString(provider)); Assert.AreEqual(String.Format("{0}", number), new Complex(1.1, 0).ToString(provider)); Assert.AreEqual(String.Format("-{0}", number), new Complex(-1.1, 0).ToString(provider)); Assert.AreEqual(String.Format("-{0}i", number), new Complex(0, -1.1).ToString(provider)); Assert.AreEqual(String.Format("{0}i", number), new Complex(0, 1.1).ToString(provider)); Assert.AreEqual(String.Format("{0} + {0}i", number), new Complex(1.1, 1.1).ToString(provider)); } [Test] [MultipleAsserts] public void CanFormatComplexToStringWithFormat() { Assert.AreEqual("0", String.Format("{0:G}", Complex.Zero)); Assert.AreEqual("1 + 2i", String.Format("{0:G}", new Complex(1, 2))); Assert.AreEqual("001 + 002i", String.Format("{0:000;minus 000;zero}", new Complex(1, 2))); Assert.AreEqual("minus 002i", String.Format("{0:000;minus 000;zero}", new Complex(0, -2))); Assert.AreEqual("zero", String.Format("{0:000;minus 000;zero}", Complex.Zero)); Assert.AreEqual("0", Complex.Zero.ToString("G")); Assert.AreEqual("1 + 2i", new Complex(1, 2).ToString("G")); Assert.AreEqual("001 + 002i", new Complex(1, 2).ToString("#000;minus 000;zero")); Assert.AreEqual("minus 002i", new Complex(0, -2).ToString("#000;minus 000;zero")); Assert.AreEqual("zero", Complex.Zero.ToString("#000;minus 000;zero")); } [Test] [MultipleAsserts] public void CanFormatComplexToStringWithFormatInvariant() { var culture = CultureInfo.InvariantCulture; Assert.AreEqual("NaN", String.Format(culture, "{0:.000}", Complex.NaN)); Assert.AreEqual(".000", String.Format(culture, "{0:.000}", Complex.Zero)); Assert.AreEqual("1.100", String.Format(culture, "{0:.000}", new Complex(1.1, 0))); Assert.AreEqual("1.100 + 1.100i", String.Format(culture, "{0:.000}", new Complex(1.1, 1.1))); Assert.AreEqual("NaN", Complex.NaN.ToString("#.000", culture)); Assert.AreEqual("Infinity", Complex.Infinity.ToString("#.000", culture)); Assert.AreEqual(".000", Complex.Zero.ToString("#.000", culture)); Assert.AreEqual("1.100", new Complex(1.1, 0).ToString("#.000", culture)); Assert.AreEqual("-1.100i", new Complex(0, -1.1).ToString("#.000", culture)); Assert.AreEqual("1.100i", new Complex(0, 1.1).ToString("#.000", culture)); Assert.AreEqual("1.100 + 1.100i", new Complex(1.1, 1.1).ToString("#.000", culture)); } [Test] [Row("-1 -2i", -1, -2, "en-US")] [Row("-1 - 2i ", -1, -2, "de-CH")] public void CanParseStringToComplexWithCulture( string text, double expectedReal, double expectedImaginary, string cultureName) { Complex parsed = Complex.Parse(text, CultureInfo.GetCultureInfo(cultureName)); Assert.AreEqual(expectedReal, parsed.Real); Assert.AreEqual(expectedImaginary, parsed.Imaginary); } [Test] [Row("1", 1, 0)] [Row("-1", -1, 0)] [Row("-i", 0, -1)] [Row("i", 0, 1)] [Row("2i", 0, 2)] [Row("1 + 2i", 1, 2)] [Row("1+2i", 1, 2)] [Row("1 - 2i", 1, -2)] [Row("1-2i", 1, -2)] [Row("1,2 ", 1, 2)] [Row("1 , 2", 1, 2)] [Row("1,2i", 1, 2)] [Row("-1, -2i", -1, -2)] [Row(" - 1 , - 2 i ", -1, -2)] [Row("(+1,2i)", 1, 2)] [Row("(-1 , -2)", -1, -2)] [Row("(-1 , -2i)", -1, -2)] [Row("(+1e1 , -2e-2i)", 10, -0.02)] [Row("(-1E1 -2e2i)", -10, -200)] [Row("(-1e+1 -2e2i)", -10, -200)] [Row("(-1e1 -2e+2i)", -10, -200)] [Row("(-1e-1 -2E2i)", -0.1, -200)] [Row("(-1e1 -2e-2i)", -10, -0.02)] [Row("(-1E+1 -2e+2i)", -10, -200)] [Row("(-1e-1,-2e-2i)", -0.1, -0.02)] [Row("(+1 +2i)", 1, 2)] [Row("(-1E+1 -2e+2i)", -10, -200)] [Row("(-1e-1,-2e-2i)", -0.1, -0.02)] public void CanTryParseStringToComplexWithInvariant(string str, double expectedReal, double expectedImaginary) { var invariantCulture = CultureInfo.InvariantCulture; Complex z; var ret = Complex.TryParse(str, invariantCulture, out z); Assert.IsTrue(ret); Assert.AreEqual(expectedReal, z.Real); Assert.AreEqual(expectedImaginary, z.Imaginary); } [Test] public void ParseThrowsFormatExceptionIfMissingClosingParen() { Assert.Throws(() => Complex.Parse("(1,2")); } [Test] public void TryParseCanHandleSymbols() { Complex z; var ni = NumberFormatInfo.CurrentInfo; var separator = CultureInfo.CurrentCulture.TextInfo.ListSeparator; var ret = Complex.TryParse( ni.NegativeInfinitySymbol + separator + ni.PositiveInfinitySymbol, out z); Assert.IsTrue(ret, "A1"); Assert.AreEqual(double.NegativeInfinity, z.Real, "A2"); Assert.AreEqual(double.PositiveInfinity, z.Imaginary, "A3"); ret = Complex.TryParse(ni.NaNSymbol + separator + ni.NaNSymbol, out z); Assert.IsTrue(ret, "B1"); Assert.AreEqual(double.NaN, z.Real, "B2"); Assert.AreEqual(double.NaN, z.Imaginary, "B3"); ret = Complex.TryParse(ni.NegativeInfinitySymbol + "+" + ni.PositiveInfinitySymbol + "i", out z); Assert.IsTrue(ret, "C1"); Assert.AreEqual(double.NegativeInfinity, z.Real, "C2"); Assert.AreEqual(double.PositiveInfinity, z.Imaginary, "C3"); ret = Complex.TryParse(ni.NaNSymbol + "+" + ni.NaNSymbol + "i", out z); Assert.IsTrue(ret, "D1"); Assert.AreEqual(double.NaN, z.Real, "D2"); Assert.AreEqual(double.NaN, z.Imaginary, "D3"); ret = Complex.TryParse( double.MaxValue.ToString("R") + " " + double.MinValue.ToString("R") + "i", out z); Assert.IsTrue(ret, "E1"); Assert.AreEqual(double.MaxValue, z.Real, "E2"); Assert.AreEqual(double.MinValue, z.Imaginary, "E3"); } [Test] [Row("en-US")] [Row("tr-TR")] [Row("de-DE")] [Row("de-CH")] [Row("he-IL")] public void TryParseCanHandleSymbolsWithCulture(string cultureName) { Complex z; var culture = CultureInfo.GetCultureInfo(cultureName); var ni = culture.NumberFormat; var separator = culture.TextInfo.ListSeparator; var ret = Complex.TryParse( ni.NegativeInfinitySymbol + separator + ni.PositiveInfinitySymbol, culture, out z); Assert.IsTrue(ret, "A1"); Assert.AreEqual(double.NegativeInfinity, z.Real, "A2"); Assert.AreEqual(double.PositiveInfinity, z.Imaginary, "A3"); ret = Complex.TryParse(ni.NaNSymbol + separator + ni.NaNSymbol, culture, out z); Assert.IsTrue(ret, "B1"); Assert.AreEqual(double.NaN, z.Real, "B2"); Assert.AreEqual(double.NaN, z.Imaginary, "B3"); ret = Complex.TryParse(ni.NegativeInfinitySymbol + "+" + ni.PositiveInfinitySymbol + "i", culture, out z); Assert.IsTrue(ret, "C1"); Assert.AreEqual(double.NegativeInfinity, z.Real, "C2"); Assert.AreEqual(double.PositiveInfinity, z.Imaginary, "C3"); ret = Complex.TryParse(ni.NaNSymbol + "+" + ni.NaNSymbol + "i", culture, out z); Assert.IsTrue(ret, "D1"); Assert.AreEqual(double.NaN, z.Real, "D2"); Assert.AreEqual(double.NaN, z.Imaginary, "D3"); ret = Complex.TryParse( double.MaxValue.ToString("R", culture) + " " + double.MinValue.ToString("R", culture) + "i", culture, out z); Assert.IsTrue(ret, "E1"); Assert.AreEqual(double.MaxValue, z.Real, "E2"); Assert.AreEqual(double.MinValue, z.Imaginary, "E3"); } [Test] [Row("")] [Row("+")] [Row("1-")] [Row("i+")] [Row("1/2i")] [Row("1i+2i")] [Row("i1i")] [Row("(1i,2)")] [Row("1e+")] [Row("1e")] [Row("1,")] [Row(",1")] [Row(null)] public void TryParseReturnsFalseWhenGiveBadValueWithInvariant(string str) { Complex z; var ret = Complex.TryParse(str, CultureInfo.InvariantCulture, out z); Assert.IsFalse(ret); Assert.AreEqual(0, z.Real); Assert.AreEqual(0, z.Imaginary); } } }