// Copyright (C) Stichting Deltares 2017. All rights reserved. // // This file is part of Ringtoets. // // Ringtoets is free software: you can redistribute it and/or modify // it under the terms of the GNU General Public License as published by // the Free Software Foundation, either version 3 of the License, or // (at your option) any later version. // // This program is distributed in the hope that it will be useful, // but WITHOUT ANY WARRANTY; without even the implied warranty of // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the // GNU General Public License for more details. // // You should have received a copy of the GNU General Public License // along with this program. If not, see . // // All names, logos, and references to "Deltares" are registered trademarks of // Stichting Deltares and remain full property of Stichting Deltares at all times. // All rights reserved. using System; using System.ComponentModel; using Core.Common.TestUtil; using Deltares.WaternetCreator; using Deltares.WTIStability; using NUnit.Framework; using Ringtoets.MacroStabilityInwards.KernelWrapper.Calculators.Input; using Ringtoets.MacroStabilityInwards.KernelWrapper.Calculators.UpliftVan.Input; using Ringtoets.MacroStabilityInwards.KernelWrapper.Creators.Input; using Ringtoets.MacroStabilityInwards.KernelWrapper.TestUtil.Calculators.Input; using Ringtoets.MacroStabilityInwards.Primitives; using PlLineCreationMethod = Ringtoets.MacroStabilityInwards.KernelWrapper.Calculators.Input.PlLineCreationMethod; using WaternetCreationMode = Ringtoets.MacroStabilityInwards.KernelWrapper.Calculators.Input.WaternetCreationMode; using WTIStabilityPlLineCreationMethod = Deltares.WaternetCreator.PlLineCreationMethod; using WTIStabilityWaternetCreationMethod = Deltares.WaternetCreator.WaternetCreationMode; namespace Ringtoets.MacroStabilityInwards.KernelWrapper.Test.Creators.Input { [TestFixture] public class StabilityLocationCreatorTest { [Test] public void CreateExtreme_InputNull_ThrowsArgumentNullException() { // Call TestDelegate call = () => StabilityLocationCreator.CreateExtreme(null); // Assert var exception = Assert.Throws(call); Assert.AreEqual("input", exception.ParamName); } [Test] public void CreateExtreme_InvalidDikeSoilScenario_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = (MacroStabilityInwardsDikeSoilScenario) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateExtreme(input); // Assert string message = $"The value of argument 'dikeSoilScenario' ({99}) is invalid for Enum type '{typeof(MacroStabilityInwardsDikeSoilScenario).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(MacroStabilityInwardsDikeSoilScenario.ClayDikeOnClay, DikeSoilScenario.ClayDikeOnClay)] [TestCase(MacroStabilityInwardsDikeSoilScenario.ClayDikeOnSand, DikeSoilScenario.ClayDikeOnSand)] [TestCase(MacroStabilityInwardsDikeSoilScenario.SandDikeOnClay, DikeSoilScenario.SandDikeOnClay)] [TestCase(MacroStabilityInwardsDikeSoilScenario.SandDikeOnSand, DikeSoilScenario.SandDikeOnSand)] public void CreateExtreme_ValidDikeSoilScenario_ReturnStabilityLocationWithDikeSoilScenario(MacroStabilityInwardsDikeSoilScenario macroStabilityInwardsDikeSoilScenario, DikeSoilScenario dikeSoilScenario) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = macroStabilityInwardsDikeSoilScenario }); // Call StabilityLocation location = StabilityLocationCreator.CreateExtreme(input); // Assert Assert.AreEqual(dikeSoilScenario, location.DikeSoilScenario); } [Test] public void CreateExtreme_InvalidWaternetCreationMode_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), WaternetCreationMode = (WaternetCreationMode) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateExtreme(input); // Assert string message = $"The value of argument 'waternetCreationMode' ({99}) is invalid for Enum type '{typeof(WaternetCreationMode).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(WaternetCreationMode.CreateWaternet, WTIStabilityWaternetCreationMethod.CreateWaternet)] [TestCase(WaternetCreationMode.FillInWaternetValues, WTIStabilityWaternetCreationMethod.FillInWaternetValues)] public void CreateExtreme_ValidWaternetCreationMode_ReturnStabilityLocationWithWaternetCreationMode(WaternetCreationMode upliftVanWaternetCreationMode, WTIStabilityWaternetCreationMethod waternetCreationMode) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), WaternetCreationMode = upliftVanWaternetCreationMode }); // Call StabilityLocation location = StabilityLocationCreator.CreateExtreme(input); // Assert Assert.AreEqual(waternetCreationMode, location.WaternetCreationMode); } [Test] public void CreateExtreme_InvalidPlLineCreationMethod_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), PlLineCreationMethod = (PlLineCreationMethod) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateExtreme(input); // Assert string message = $"The value of argument 'plLineCreationMethod' ({99}) is invalid for Enum type '{typeof(PlLineCreationMethod).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(PlLineCreationMethod.ExpertKnowledgeRrd, WTIStabilityPlLineCreationMethod.ExpertKnowledgeRrd)] [TestCase(PlLineCreationMethod.ExpertKnowledgeLinearInDike, WTIStabilityPlLineCreationMethod.ExpertKnowledgeLinearInDike)] [TestCase(PlLineCreationMethod.RingtoetsWti2017, WTIStabilityPlLineCreationMethod.RingtoetsWti2017)] [TestCase(PlLineCreationMethod.DupuitStatic, WTIStabilityPlLineCreationMethod.DupuitStatic)] [TestCase(PlLineCreationMethod.DupuitDynamic, WTIStabilityPlLineCreationMethod.DupuitDynamic)] [TestCase(PlLineCreationMethod.Sensors, WTIStabilityPlLineCreationMethod.Sensors)] [TestCase(PlLineCreationMethod.None, WTIStabilityPlLineCreationMethod.None)] public void CreateExtreme_ValidPlLineCreationMethod_ReturnStabilityLocationWithWaternetCreationMode(PlLineCreationMethod upliftVanPlLineCreationMethod, WTIStabilityPlLineCreationMethod expectedPlLineCreationMethod) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), PlLineCreationMethod = upliftVanPlLineCreationMethod }); // Call StabilityLocation location = StabilityLocationCreator.CreateExtreme(input); // Assert Assert.AreEqual(expectedPlLineCreationMethod, location.PlLineCreationMethod); } [Test] [Combinatorial] public void CreateExtreme_WithInput_ReturnStabilityLocation([Values(true, false)] bool drainageConstructionPresent, [Values(true, false)] bool useDefaultOffsets) { // Setup var random = new Random(21); double assessmentLevel = random.Next(); double waterLevelRiverAverage = random.Next(); double waterLevelPolderExtreme = random.Next(); double minimumLevelPhreaticLineAtDikeTopRiver = random.Next(); double minimumLevelPhreaticLineAtDikeTopPolder = random.Next(); bool adjustPhreaticLine3And4ForUplift = random.NextBoolean(); double leakageLengthOutwardsPhreaticLine3 = random.Next(); double leakageLengthInwardsPhreaticLine3 = random.Next(); double leakageLengthOutwardsPhreaticLine4 = random.Next(); double leakageLengthInwardsPhreaticLine4 = random.Next(); double piezometricHeadPhreaticLine2Outwards = random.Next(); double piezometricHeadPhreaticLine2Inwards = random.Next(); double penetrationLength = random.Next(); DrainageConstruction drainageConstruction = drainageConstructionPresent ? new DrainageConstruction(random.Next(), random.Next()) : new DrainageConstruction(); PhreaticLineOffsets phreaticLineOffsets = useDefaultOffsets ? new PhreaticLineOffsets() : new PhreaticLineOffsets(random.Next(), random.Next(), random.Next(), random.Next()); var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = MacroStabilityInwardsDikeSoilScenario.SandDikeOnClay, AssessmentLevel = assessmentLevel, WaterLevelRiverAverage = waterLevelRiverAverage, WaterLevelPolderExtreme = waterLevelPolderExtreme, DrainageConstruction = drainageConstruction, PhreaticLineOffsetsExtreme = phreaticLineOffsets, PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), MinimumLevelPhreaticLineAtDikeTopRiver = minimumLevelPhreaticLineAtDikeTopRiver, MinimumLevelPhreaticLineAtDikeTopPolder = minimumLevelPhreaticLineAtDikeTopPolder, AdjustPhreaticLine3And4ForUplift = adjustPhreaticLine3And4ForUplift, LeakageLengthOutwardsPhreaticLine3 = leakageLengthOutwardsPhreaticLine3, LeakageLengthInwardsPhreaticLine3 = leakageLengthInwardsPhreaticLine3, LeakageLengthOutwardsPhreaticLine4 = leakageLengthOutwardsPhreaticLine4, LeakageLengthInwardsPhreaticLine4 = leakageLengthInwardsPhreaticLine4, PiezometricHeadPhreaticLine2Outwards = piezometricHeadPhreaticLine2Outwards, PiezometricHeadPhreaticLine2Inwards = piezometricHeadPhreaticLine2Inwards, PenetrationLength = penetrationLength }); // Call StabilityLocation location = StabilityLocationCreator.CreateExtreme(input); // Assert Assert.AreEqual(DikeSoilScenario.SandDikeOnClay, location.DikeSoilScenario); Assert.AreEqual(WTIStabilityWaternetCreationMethod.CreateWaternet, location.WaternetCreationMode); Assert.AreEqual(WTIStabilityPlLineCreationMethod.RingtoetsWti2017, location.PlLineCreationMethod); Assert.AreEqual(assessmentLevel, location.WaterLevelRiver); Assert.AreEqual(assessmentLevel, location.HeadInPlLine3); Assert.AreEqual(assessmentLevel, location.HeadInPlLine4); Assert.AreEqual(waterLevelRiverAverage, location.WaterLevelRiverAverage); Assert.AreEqual(waterLevelPolderExtreme, location.WaterLevelPolder); Assert.AreEqual(drainageConstruction.IsPresent, location.DrainageConstructionPresent); Assert.AreEqual(drainageConstruction.XCoordinate, location.XCoordMiddleDrainageConstruction); Assert.AreEqual(drainageConstruction.ZCoordinate, location.ZCoordMiddleDrainageConstruction); Assert.AreEqual(minimumLevelPhreaticLineAtDikeTopRiver, location.MinimumLevelPhreaticLineAtDikeTopRiver); Assert.AreEqual(minimumLevelPhreaticLineAtDikeTopPolder, location.MinimumLevelPhreaticLineAtDikeTopPolder); Assert.AreEqual(phreaticLineOffsets.UseDefaults, location.UseDefaultOffsets); Assert.AreEqual(phreaticLineOffsets.BelowDikeTopAtRiver, location.PlLineOffsetBelowPointBRingtoetsWti2017); Assert.AreEqual(phreaticLineOffsets.BelowDikeTopAtPolder, location.PlLineOffsetBelowDikeTopAtPolder); Assert.AreEqual(phreaticLineOffsets.BelowShoulderBaseInside, location.PlLineOffsetBelowShoulderBaseInside); Assert.AreEqual(phreaticLineOffsets.BelowDikeToeAtPolder, location.PlLineOffsetBelowDikeToeAtPolder); Assert.AreEqual(adjustPhreaticLine3And4ForUplift, location.AdjustPl3And4ForUplift); Assert.AreEqual(leakageLengthOutwardsPhreaticLine3, location.LeakageLengthOutwardsPl3); Assert.AreEqual(leakageLengthInwardsPhreaticLine3, location.LeakageLengthInwardsPl3); Assert.AreEqual(leakageLengthOutwardsPhreaticLine4, location.LeakageLengthOutwardsPl4); Assert.AreEqual(leakageLengthInwardsPhreaticLine4, location.LeakageLengthInwardsPl4); Assert.AreEqual(piezometricHeadPhreaticLine2Outwards, location.HeadInPlLine2Outwards); Assert.AreEqual(piezometricHeadPhreaticLine2Inwards, location.HeadInPlLine2Inwards); Assert.AreEqual(penetrationLength, location.PenetrationLength); AssertIrrelevantValues(location); } [Test] public void CreateDaily_InputNull_ThrowsArgumentNullException() { // Call TestDelegate call = () => StabilityLocationCreator.CreateDaily(null); // Assert var exception = Assert.Throws(call); Assert.AreEqual("input", exception.ParamName); } [Test] public void CreateDaily_InvalidDikeSoilScenario_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = (MacroStabilityInwardsDikeSoilScenario) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateDaily(input); // Assert string message = $"The value of argument 'dikeSoilScenario' ({99}) is invalid for Enum type '{typeof(MacroStabilityInwardsDikeSoilScenario).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(MacroStabilityInwardsDikeSoilScenario.ClayDikeOnClay, DikeSoilScenario.ClayDikeOnClay)] [TestCase(MacroStabilityInwardsDikeSoilScenario.ClayDikeOnSand, DikeSoilScenario.ClayDikeOnSand)] [TestCase(MacroStabilityInwardsDikeSoilScenario.SandDikeOnClay, DikeSoilScenario.SandDikeOnClay)] [TestCase(MacroStabilityInwardsDikeSoilScenario.SandDikeOnSand, DikeSoilScenario.SandDikeOnSand)] public void CreateDaily_ValidDikeSoilScenario_ReturnStabilityLocationWithDikeSoilScenario(MacroStabilityInwardsDikeSoilScenario macroStabilityInwardsDikeSoilScenario, DikeSoilScenario dikeSoilScenario) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = macroStabilityInwardsDikeSoilScenario }); // Call StabilityLocation location = StabilityLocationCreator.CreateDaily(input); // Assert Assert.AreEqual(dikeSoilScenario, location.DikeSoilScenario); } [Test] public void CreateDaily_InvalidWaternetCreationMode_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), WaternetCreationMode = (WaternetCreationMode) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateDaily(input); // Assert string message = $"The value of argument 'waternetCreationMode' ({99}) is invalid for Enum type '{typeof(WaternetCreationMode).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(WaternetCreationMode.CreateWaternet, WTIStabilityWaternetCreationMethod.CreateWaternet)] [TestCase(WaternetCreationMode.FillInWaternetValues, WTIStabilityWaternetCreationMethod.FillInWaternetValues)] public void CreateDaily_ValidWaternetCreationMode_ReturnStabilityLocationWithWaternetCreationMode(WaternetCreationMode waternetCreationMode, WTIStabilityWaternetCreationMethod expectedWaternetCreationMode) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), WaternetCreationMode = waternetCreationMode }); // Call StabilityLocation location = StabilityLocationCreator.CreateDaily(input); // Assert Assert.AreEqual(expectedWaternetCreationMode, location.WaternetCreationMode); } [Test] public void CreateDaily_InvalidPlLineCreationMethod_ThrowInvalidEnumArgumentException() { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), DrainageConstruction = new DrainageConstruction(), SlipPlane = new UpliftVanSlipPlane(), PlLineCreationMethod = (PlLineCreationMethod) 99 }); // Call TestDelegate test = () => StabilityLocationCreator.CreateDaily(input); // Assert string message = $"The value of argument 'plLineCreationMethod' ({99}) is invalid for Enum type '{typeof(PlLineCreationMethod).Name}'."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(test, message); } [Test] [TestCase(PlLineCreationMethod.ExpertKnowledgeRrd, WTIStabilityPlLineCreationMethod.ExpertKnowledgeRrd)] [TestCase(PlLineCreationMethod.ExpertKnowledgeLinearInDike, WTIStabilityPlLineCreationMethod.ExpertKnowledgeLinearInDike)] [TestCase(PlLineCreationMethod.RingtoetsWti2017, WTIStabilityPlLineCreationMethod.RingtoetsWti2017)] [TestCase(PlLineCreationMethod.DupuitStatic, WTIStabilityPlLineCreationMethod.DupuitStatic)] [TestCase(PlLineCreationMethod.DupuitDynamic, WTIStabilityPlLineCreationMethod.DupuitDynamic)] [TestCase(PlLineCreationMethod.Sensors, WTIStabilityPlLineCreationMethod.Sensors)] [TestCase(PlLineCreationMethod.None, WTIStabilityPlLineCreationMethod.None)] public void CreateDaily_ValidPlLineCreationMethod_ReturnStabilityLocationWithWaternetCreationMode(PlLineCreationMethod plLineCreationMethod, WTIStabilityPlLineCreationMethod expectedPlLineCreationMethod) { // Setup var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { DrainageConstruction = new DrainageConstruction(), PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = new PhreaticLineOffsets(), SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), PlLineCreationMethod = plLineCreationMethod }); // Call StabilityLocation location = StabilityLocationCreator.CreateDaily(input); // Assert Assert.AreEqual(expectedPlLineCreationMethod, location.PlLineCreationMethod); } [Test] [Combinatorial] public void CreateDaily_WithInput_ReturnStabilityLocation([Values(true, false)] bool drainageConstructionPresent, [Values(true, false)] bool useDefaultOffsets) { // Setup var random = new Random(21); double assessmentLevel = random.Next(); double waterLevelRiverAverage = random.Next(); double waterLevelPolderDaily = random.Next(); double minimumLevelPhreaticLineAtDikeTopRiver = random.Next(); double minimumLevelPhreaticLineAtDikeTopPolder = random.Next(); bool adjustPhreaticLine3And4ForUplift = random.NextBoolean(); double leakageLengthOutwardsPhreaticLine3 = random.Next(); double leakageLengthInwardsPhreaticLine3 = random.Next(); double leakageLengthOutwardsPhreaticLine4 = random.Next(); double leakageLengthInwardsPhreaticLine4 = random.Next(); double piezometricHeadPhreaticLine2Outwards = random.Next(); double piezometricHeadPhreaticLine2Inwards = random.Next(); DrainageConstruction drainageConstruction = drainageConstructionPresent ? new DrainageConstruction(random.Next(), random.Next()) : new DrainageConstruction(); PhreaticLineOffsets phreaticLineOffsets = useDefaultOffsets ? new PhreaticLineOffsets() : new PhreaticLineOffsets(random.Next(), random.Next(), random.Next(), random.Next()); var input = new UpliftVanCalculatorInput( new UpliftVanCalculatorInput.ConstructionProperties { SurfaceLine = new MacroStabilityInwardsSurfaceLine("test"), SoilProfile = new TestSoilProfile(), SlipPlane = new UpliftVanSlipPlane(), DikeSoilScenario = MacroStabilityInwardsDikeSoilScenario.SandDikeOnClay, AssessmentLevel = assessmentLevel, WaterLevelRiverAverage = waterLevelRiverAverage, WaterLevelPolderDaily = waterLevelPolderDaily, DrainageConstruction = drainageConstruction, PhreaticLineOffsetsExtreme = new PhreaticLineOffsets(), PhreaticLineOffsetsDaily = phreaticLineOffsets, MinimumLevelPhreaticLineAtDikeTopRiver = minimumLevelPhreaticLineAtDikeTopRiver, MinimumLevelPhreaticLineAtDikeTopPolder = minimumLevelPhreaticLineAtDikeTopPolder, AdjustPhreaticLine3And4ForUplift = adjustPhreaticLine3And4ForUplift, LeakageLengthOutwardsPhreaticLine3 = leakageLengthOutwardsPhreaticLine3, LeakageLengthInwardsPhreaticLine3 = leakageLengthInwardsPhreaticLine3, LeakageLengthOutwardsPhreaticLine4 = leakageLengthOutwardsPhreaticLine4, LeakageLengthInwardsPhreaticLine4 = leakageLengthInwardsPhreaticLine4, PiezometricHeadPhreaticLine2Outwards = piezometricHeadPhreaticLine2Outwards, PiezometricHeadPhreaticLine2Inwards = piezometricHeadPhreaticLine2Inwards, PenetrationLength = random.Next() }); // Call StabilityLocation location = StabilityLocationCreator.CreateDaily(input); // Assert Assert.AreEqual(DikeSoilScenario.SandDikeOnClay, location.DikeSoilScenario); Assert.AreEqual(WTIStabilityWaternetCreationMethod.CreateWaternet, location.WaternetCreationMode); Assert.AreEqual(WTIStabilityPlLineCreationMethod.RingtoetsWti2017, location.PlLineCreationMethod); Assert.AreEqual(waterLevelRiverAverage, location.WaterLevelRiver); Assert.AreEqual(waterLevelRiverAverage, location.HeadInPlLine3); Assert.AreEqual(waterLevelRiverAverage, location.HeadInPlLine4); Assert.AreEqual(waterLevelRiverAverage, location.WaterLevelRiverAverage); Assert.AreEqual(waterLevelPolderDaily, location.WaterLevelPolder); Assert.AreEqual(drainageConstruction.IsPresent, location.DrainageConstructionPresent); Assert.AreEqual(drainageConstruction.XCoordinate, location.XCoordMiddleDrainageConstruction); Assert.AreEqual(drainageConstruction.ZCoordinate, location.ZCoordMiddleDrainageConstruction); Assert.AreEqual(minimumLevelPhreaticLineAtDikeTopRiver, location.MinimumLevelPhreaticLineAtDikeTopRiver); Assert.AreEqual(minimumLevelPhreaticLineAtDikeTopPolder, location.MinimumLevelPhreaticLineAtDikeTopPolder); Assert.AreEqual(phreaticLineOffsets.UseDefaults, location.UseDefaultOffsets); Assert.AreEqual(phreaticLineOffsets.BelowDikeTopAtRiver, location.PlLineOffsetBelowPointBRingtoetsWti2017); Assert.AreEqual(phreaticLineOffsets.BelowDikeTopAtPolder, location.PlLineOffsetBelowDikeTopAtPolder); Assert.AreEqual(phreaticLineOffsets.BelowShoulderBaseInside, location.PlLineOffsetBelowShoulderBaseInside); Assert.AreEqual(phreaticLineOffsets.BelowDikeToeAtPolder, location.PlLineOffsetBelowDikeToeAtPolder); Assert.AreEqual(adjustPhreaticLine3And4ForUplift, location.AdjustPl3And4ForUplift); Assert.AreEqual(leakageLengthOutwardsPhreaticLine3, location.LeakageLengthOutwardsPl3); Assert.AreEqual(leakageLengthInwardsPhreaticLine3, location.LeakageLengthInwardsPl3); Assert.AreEqual(leakageLengthOutwardsPhreaticLine4, location.LeakageLengthOutwardsPl4); Assert.AreEqual(leakageLengthInwardsPhreaticLine4, location.LeakageLengthInwardsPl4); Assert.AreEqual(piezometricHeadPhreaticLine2Outwards, location.HeadInPlLine2Outwards); Assert.AreEqual(piezometricHeadPhreaticLine2Inwards, location.HeadInPlLine2Inwards); Assert.AreEqual(0.0, location.PenetrationLength); AssertIrrelevantValues(location); } private static void AssertIrrelevantValues(StabilityLocation location) { Assert.IsNaN(location.WaterLevelRiverLow); // Only for macro stability outwards Assert.AreEqual(0.0, location.X); // Unused property Assert.AreEqual(0.0, location.Y); // Unused property Assert.IsTrue(string.IsNullOrEmpty(location.PiezometricHeads.Name)); // Unused property Assert.IsNaN(location.PiezometricHeads.HeadPl3); // Unused property Assert.AreEqual(0.30, location.PiezometricHeads.DampingFactorPl3); // Unused property Assert.IsNaN(location.PiezometricHeads.HeadPl4); // Unused property Assert.AreEqual(0.30, location.PiezometricHeads.DampingFactorPl4); // Unused property } } }