unit TestDataPOD; interface uses System.SysUtils, Myc.Data.Scalar, Myc.Data.Decimal, Myc.Data.Series, DUnitX.TestFramework; type [TestFixture] TTestPOD = class public // Tests the TScalar factory methods using a wide range of values. [TestCase('Ordinal_Zero', '0,Ordinal')] [TestCase('Ordinal_Positive', '9876543210,Ordinal')] [TestCase('Ordinal_Negative', '-1234567890,Ordinal')] [TestCase('Ordinal_Max', '9223372036854775807,Ordinal')] [TestCase('Float_Zero', '0.0,Float')] [TestCase('Float_Positive', '1.23,Float')] [TestCase('Float_Negative', '-3.1415926535,Float')] procedure TestScalarCreation(const AValueStr: string; AExpectedKind: TScalar.TKind); end; implementation uses System.Variants; { TTestPOD } procedure TTestPOD.TestScalarCreation(const AValueStr: string; AExpectedKind: TScalar.TKind); var scalar: TScalar; begin case AExpectedKind of TScalar.TKind.Ordinal: begin scalar := TScalar.FromInt64(StrToInt64(AValueStr)); Assert.AreEqual(AExpectedKind, scalar.Kind, 'Kind should be Ordinal'); Assert.AreEqual(StrToInt64(AValueStr), scalar.Value.AsInt64, 'Value mismatch for AsInt64'); end; TScalar.TKind.Float: begin scalar := TScalar.FromDouble(StrToFloat(AValueStr)); Assert.AreEqual(AExpectedKind, scalar.Kind, 'Kind should be Float'); Assert.AreEqual(StrToFloat(AValueStr), scalar.Value.AsDouble, 1E-12, 'Value mismatch for AsDouble'); end; else Assert.Fail('Unhandled TScalar.TKind in test'); end; end; initialization FormatSettings.DecimalSeparator := '.'; TDUnitX.RegisterTestFixture(TTestPOD); end.