// Copyright (C) Stichting Deltares 2016. 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.Collections.Generic; using System.ComponentModel; using System.Globalization; using System.Linq; using Application.Ringtoets.Storage.TestUtil; using Core.Common.Base; using Core.Common.Base.Data; using Core.Common.Base.Geometry; using Core.Common.Gui.PropertyBag; using Core.Common.TestUtil; using NUnit.Framework; using Rhino.Mocks; using Ringtoets.ClosingStructures.Data; using Ringtoets.ClosingStructures.Data.TestUtil; using Ringtoets.ClosingStructures.Forms.PresentationObjects; using Ringtoets.ClosingStructures.Forms.PropertyClasses; using Ringtoets.Common.Data.AssessmentSection; using Ringtoets.Common.Data.DikeProfiles; using Ringtoets.Common.Data.FailureMechanism; using Ringtoets.Common.Data.Structures; using Ringtoets.Common.Data.TestUtil; using Ringtoets.Common.Forms.Helpers; using Ringtoets.Common.Forms.PropertyClasses; using Ringtoets.HydraRing.Data; namespace Ringtoets.ClosingStructures.Forms.Test.PropertyClasses { [TestFixture] public class ClosingStructuresInputContextPropertiesTest { private const int hydraulicBoundaryLocationPropertyIndex = 0; private const int stormDurationPropertyIndex = 1; private const int deviationWaveDirectionPropertyIndex = 2; private const int insideWaterLevelPropertyIndex = 3; private const int structurePropertyIndex = 4; private const int structureLocationPropertyIndex = 5; private const int structureNormalOrientationPropertyIndex = 6; private const int inflowModelTypePropertyIndex = 7; private const int widthFlowAperturesPropertyIndex = 8; private const int areaFlowAperturesPropertyIndex = 9; private const int identicalAperturesPropertyIndex = 10; private const int flowWidthAtBottomProtectionPropertyIndex = 11; private const int storageStructureAreaPropertyIndex = 12; private const int allowedLevelIncreaseStoragePropertyIndex = 13; private const int levelCrestStructureNotClosingPropertyIndex = 14; private const int thresholdHeightOpenWeirPropertyIndex = 15; private const int criticalOvertoppingDischargePropertyIndex = 16; private const int probabilityOpenStructureBeforeFloodingPropertyIndex = 17; private const int failureProbabilityOpenStructurePropertyIndex = 18; private const int failureProbabilityReparationPropertyIndex = 19; private const int failureProbabilityStructureWithErosionPropertyIndex = 20; private const int foreshoreProfilePropertyIndex = 21; private const int useBreakWaterPropertyIndex = 22; private const int useForeshorePropertyIndex = 23; private const int modelFactorSuperCriticalFlowPropertyIndex = 24; private const int drainCoefficientPropertyIndex = 25; private const int factorStormDurationOpenStructurePropertyIndex = 26; private MockRepository mockRepository; [SetUp] public void SetUp() { mockRepository = new MockRepository(); } [Test] public void Constructor_ExpectedValues() { // Call var properties = new ClosingStructuresInputContextProperties(); // Assert Assert.IsInstanceOf, ClosingStructuresFailureMechanism>>(properties); Assert.IsNull(properties.Data); } [Test] public void Data_SetNewInputContextInstance_ReturnCorrectPropertyValues() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var properties = new ClosingStructuresInputContextProperties(); var inputContext = new ClosingStructuresInputContext(calculation.InputParameters, calculation, failureMechanism, assessmentSectionStub); // Call properties.Data = inputContext; // Assert ClosingStructuresInput input = calculation.InputParameters; var expectedProbabilityOpenStructureBeforeFlooding = ProbabilityFormattingHelper.Format(input.ProbabilityOpenStructureBeforeFlooding); var expectedFailureProbabilityOpenStructure = ProbabilityFormattingHelper.Format(input.FailureProbabilityOpenStructure); var expectedFailureProbabilityReparation = ProbabilityFormattingHelper.Format(input.FailureProbabilityReparation); Assert.AreEqual(input.DeviationWaveDirection, properties.DeviationWaveDirection); Assert.AreSame(input.InsideWaterLevel, properties.InsideWaterLevel.Data); Assert.AreEqual(input.InflowModelType, properties.InflowModelType); Assert.AreSame(input.AreaFlowApertures, properties.AreaFlowApertures.Data); Assert.AreEqual(input.IdenticalApertures, properties.IdenticalApertures); Assert.AreSame(input.LevelCrestStructureNotClosing, properties.LevelCrestStructureNotClosing.Data); Assert.AreSame(input.ThresholdHeightOpenWeir, properties.ThresholdHeightOpenWeir.Data); Assert.AreEqual(expectedProbabilityOpenStructureBeforeFlooding, properties.ProbabilityOpenStructureBeforeFlooding); Assert.AreEqual(expectedFailureProbabilityOpenStructure, properties.FailureProbabilityOpenStructure); Assert.AreEqual(expectedFailureProbabilityReparation, properties.FailureProbabilityReparation); Assert.AreSame(input.DrainCoefficient, properties.DrainCoefficient.Data); Assert.AreEqual(input.FactorStormDurationOpenStructure, properties.FactorStormDurationOpenStructure); mockRepository.VerifyAll(); } [Test] public void Data_SetNewInputContextInstanceWithData_ReturnCorrectPropertyValues() { // Setup var hydraulicBoundaryDatabase = new HydraulicBoundaryDatabase { Locations = { new HydraulicBoundaryLocation(0, "", 0, 0) } }; var assessmentSectionStub = mockRepository.Stub(); assessmentSectionStub.HydraulicBoundaryDatabase = hydraulicBoundaryDatabase; mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism { ForeshoreProfiles = { new TestForeshoreProfile() }, ClosingStructures = { new TestClosingStructure() } }; var calculation = new StructuresCalculation { InputParameters = { Structure = new TestClosingStructure(), HydraulicBoundaryLocation = new HydraulicBoundaryLocation(0, "name", 0.0, 1.1), ForeshoreProfile = new TestForeshoreProfile() } }; var inputContext = new ClosingStructuresInputContext(calculation.InputParameters, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties(); // Call properties.Data = inputContext; // Assert ClosingStructuresInput input = calculation.InputParameters; var expectedProbabilityOpenStructureBeforeFlooding = ProbabilityFormattingHelper.Format(input.ProbabilityOpenStructureBeforeFlooding); var expectedFailureProbabilityOpenStructure = ProbabilityFormattingHelper.Format(input.FailureProbabilityOpenStructure); var expectedFailureProbabilityReparation = ProbabilityFormattingHelper.Format(input.FailureProbabilityReparation); Assert.AreEqual(input.DeviationWaveDirection, properties.DeviationWaveDirection); Assert.AreSame(input.InsideWaterLevel, properties.InsideWaterLevel.Data); Assert.AreEqual(input.InflowModelType, properties.InflowModelType); Assert.AreSame(input.AreaFlowApertures, properties.AreaFlowApertures.Data); Assert.AreEqual(input.IdenticalApertures, properties.IdenticalApertures); Assert.AreSame(input.LevelCrestStructureNotClosing, properties.LevelCrestStructureNotClosing.Data); Assert.AreSame(input.ThresholdHeightOpenWeir, properties.ThresholdHeightOpenWeir.Data); Assert.AreEqual(expectedProbabilityOpenStructureBeforeFlooding, properties.ProbabilityOpenStructureBeforeFlooding); Assert.AreEqual(expectedFailureProbabilityOpenStructure, properties.FailureProbabilityOpenStructure); Assert.AreEqual(expectedFailureProbabilityReparation, properties.FailureProbabilityReparation); Assert.AreSame(input.DrainCoefficient, properties.DrainCoefficient.Data); Assert.AreEqual(input.FactorStormDurationOpenStructure, properties.FactorStormDurationOpenStructure); var availableForeshoreProfiles = properties.GetAvailableForeshoreProfiles().ToArray(); Assert.AreEqual(1, availableForeshoreProfiles.Length); CollectionAssert.AreEqual(failureMechanism.ForeshoreProfiles, availableForeshoreProfiles); var availableStructures = properties.GetAvailableStructures().ToArray(); Assert.AreEqual(1, availableStructures.Length); CollectionAssert.AreEqual(failureMechanism.ClosingStructures, availableStructures); mockRepository.VerifyAll(); } [Test] public void SetProperties_IndividualProperties_UpdateDataAndNotifyObservers() { // Setup const int numberOfChangedProperties = 7; var observerMock = mockRepository.StrictMock(); var assessmentSectionStub = mockRepository.Stub(); observerMock.Expect(o => o.UpdateObserver()).Repeat.Times(numberOfChangedProperties); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; input.Attach(observerMock); var random = new Random(100); double newDeviationWaveDirection = random.NextDouble(); double newFactorStormDurationOpenStructure = random.NextDouble(); var newInflowModelType = ClosingStructureInflowModelType.FloodedCulvert; var newIdenticalApertures = 2; // Call properties.DeviationWaveDirection = (RoundedDouble) newDeviationWaveDirection; properties.FactorStormDurationOpenStructure = (RoundedDouble) newFactorStormDurationOpenStructure; properties.InflowModelType = newInflowModelType; properties.FailureProbabilityOpenStructure = "1e-2"; properties.FailureProbabilityReparation = "1e-3"; properties.IdenticalApertures = newIdenticalApertures; properties.ProbabilityOpenStructureBeforeFlooding = "1e-4"; // Assert var expectedProbabilityOpenStructureBeforeFlooding = ProbabilityFormattingHelper.Format(0.01); var expectedFailureProbabilityOpenStructure = ProbabilityFormattingHelper.Format(0.001); var expectedFailureProbabilityReparation = ProbabilityFormattingHelper.Format(0.0001); Assert.AreEqual(newDeviationWaveDirection, properties.DeviationWaveDirection, properties.DeviationWaveDirection.GetAccuracy()); Assert.AreEqual(newFactorStormDurationOpenStructure, properties.FactorStormDurationOpenStructure, properties.FactorStormDurationOpenStructure.GetAccuracy()); Assert.AreEqual(newInflowModelType, properties.InflowModelType); Assert.AreEqual(expectedProbabilityOpenStructureBeforeFlooding, properties.FailureProbabilityOpenStructure); Assert.AreEqual(expectedFailureProbabilityOpenStructure, properties.FailureProbabilityReparation); Assert.AreEqual(newIdenticalApertures, properties.IdenticalApertures); Assert.AreEqual(expectedFailureProbabilityReparation, properties.ProbabilityOpenStructureBeforeFlooding); mockRepository.VerifyAll(); } [Test] [TestCase(double.MinValue)] [TestCase(double.MaxValue)] public void SetProbabilityOpenStructureBeforeFlooding_InvalidValues_ThrowsArgumentException(double newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.ProbabilityOpenStructureBeforeFlooding = newValue.ToString(CultureInfo.InvariantCulture); // Assert var expectedMessage = "De waarde voor de faalkans is te groot of te klein."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] [TestCase("no double value")] [TestCase("")] public void SetProbabilityOpenStructureBeforeFlooding_ValuesUnableToParse_ThrowsArgumentException(string newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.ProbabilityOpenStructureBeforeFlooding = newValue; // Assert var expectedMessage = "De waarde voor de faalkans kon niet geïnterpreteerd worden als een getal."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] public void SetProbabilityOpenStructureBeforeFlooding_NullValue_ThrowsArgumentNullException() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.ProbabilityOpenStructureBeforeFlooding = null; // Assert var expectedMessage = "De waarde voor de faalkans moet ingevuld zijn."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] [TestCase(double.MinValue)] [TestCase(double.MaxValue)] public void SetFailureProbabilityOpenStructure_InvalidValues_ThrowsArgumentException(double newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityOpenStructure = newValue.ToString(CultureInfo.InvariantCulture); // Assert var expectedMessage = "De waarde voor de faalkans is te groot of te klein."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] [TestCase("no double value")] [TestCase("")] public void SetFailureProbabilityOpenStructure_ValuesUnableToParse_ThrowsArgumentException(string newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityOpenStructure = newValue; // Assert var expectedMessage = "De waarde voor de faalkans kon niet geïnterpreteerd worden als een getal."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] public void SetFailureProbabilityOpenStructure_NullValue_ThrowsArgumentNullException() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityOpenStructure = null; // Assert var expectedMessage = "De waarde voor de faalkans moet ingevuld zijn."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] [TestCase(double.MinValue)] [TestCase(double.MaxValue)] public void SetFailureProbabilityReparation_InvalidValues_ThrowsArgumentException(double newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityReparation = newValue.ToString(CultureInfo.InvariantCulture); // Assert var expectedMessage = "De waarde voor de faalkans is te groot of te klein."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] [TestCase("no double value")] [TestCase("")] public void SetFailureProbabilityReparation_ValuesUnableToParse_ThrowsArgumentException(string newValue) { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityReparation = newValue; // Assert var expectedMessage = "De waarde voor de faalkans kon niet geïnterpreteerd worden als een getal."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] public void SetFailureProbabilityReparation_NullValue_ThrowsArgumentNullException() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var input = calculation.InputParameters; var inputContext = new ClosingStructuresInputContext(input, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Call TestDelegate call = () => properties.FailureProbabilityReparation = null; // Assert var expectedMessage = "De waarde voor de faalkans moet ingevuld zijn."; TestHelper.AssertThrowsArgumentExceptionAndTestMessage(call, expectedMessage); mockRepository.VerifyAll(); } [Test] public void Constructor_Always_PropertiesHaveExpectedAttributesValues() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var inputContext = new ClosingStructuresInputContext(calculation.InputParameters, calculation, failureMechanism, assessmentSectionStub); // Call var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; // Assert const string schematizationCategory = "Schematisatie"; const string hydraulicDataCategory = "Hydraulische gegevens"; const string modelSettingsCategory = "Modelinstellingen"; var dynamicPropertyBag = new DynamicPropertyBag(properties); PropertyDescriptorCollection dynamicProperties = dynamicPropertyBag.GetProperties(new Attribute[] { new BrowsableAttribute(true) }); Assert.AreEqual(27, dynamicProperties.Count); PropertyDescriptor deviationWaveDirectionProperty = dynamicProperties[deviationWaveDirectionPropertyIndex]; Assert.IsFalse(deviationWaveDirectionProperty.IsReadOnly); Assert.AreEqual(hydraulicDataCategory, deviationWaveDirectionProperty.Category); Assert.AreEqual("Afwijking golfrichting [°]", deviationWaveDirectionProperty.DisplayName); Assert.AreEqual("Afwijking van de golfrichting.", deviationWaveDirectionProperty.Description); PropertyDescriptor insideWaterLevelProperty = dynamicProperties[insideWaterLevelPropertyIndex]; Assert.IsInstanceOf(insideWaterLevelProperty.Converter); Assert.AreEqual(hydraulicDataCategory, insideWaterLevelProperty.Category); Assert.AreEqual("Binnenwaterstand [m+NAP]", insideWaterLevelProperty.DisplayName); Assert.AreEqual("Binnenwaterstand.", insideWaterLevelProperty.Description); PropertyDescriptor inflowModelTypeProperty = dynamicProperties[inflowModelTypePropertyIndex]; Assert.IsInstanceOf(inflowModelTypeProperty.Converter); Assert.AreEqual(schematizationCategory, inflowModelTypeProperty.Category); Assert.AreEqual("Instroommodel", inflowModelTypeProperty.DisplayName); Assert.AreEqual("Instroommodel van het kunstwerk.", inflowModelTypeProperty.Description); PropertyDescriptor areaFlowAperturesProperty = dynamicProperties[areaFlowAperturesPropertyIndex]; Assert.IsInstanceOf(areaFlowAperturesProperty.Converter); Assert.AreEqual(schematizationCategory, areaFlowAperturesProperty.Category); Assert.AreEqual("Doorstroomoppervlak [m²]", areaFlowAperturesProperty.DisplayName); Assert.AreEqual("Doorstroomoppervlak van doorstroomopeningen.", areaFlowAperturesProperty.Description); PropertyDescriptor identicalAperturesProperty = dynamicProperties[identicalAperturesPropertyIndex]; Assert.IsFalse(identicalAperturesProperty.IsReadOnly); Assert.AreEqual(schematizationCategory, identicalAperturesProperty.Category); Assert.AreEqual("Aantal identieke doorstroomopeningen [-]", identicalAperturesProperty.DisplayName); Assert.AreEqual("Aantal identieke doorstroomopeningen.", identicalAperturesProperty.Description); PropertyDescriptor levelCrestStructureNotClosingProperty = dynamicProperties[levelCrestStructureNotClosingPropertyIndex]; Assert.IsInstanceOf(levelCrestStructureNotClosingProperty.Converter); Assert.AreEqual(schematizationCategory, levelCrestStructureNotClosingProperty.Category); Assert.AreEqual("Kruinhoogte niet gesloten kering [m+NAP]", levelCrestStructureNotClosingProperty.DisplayName); Assert.AreEqual("Niveau kruin bij niet gesloten maximaal kerende keermiddelen.", levelCrestStructureNotClosingProperty.Description); PropertyDescriptor thresholdHeightOpenWeirProperty = dynamicProperties[thresholdHeightOpenWeirPropertyIndex]; Assert.IsInstanceOf(thresholdHeightOpenWeirProperty.Converter); Assert.AreEqual(schematizationCategory, thresholdHeightOpenWeirProperty.Category); Assert.AreEqual("Drempelhoogte [m+NAP]", thresholdHeightOpenWeirProperty.DisplayName); Assert.AreEqual("Drempelhoogte niet gesloten kering of hoogte van de onderkant van de wand/drempel.", thresholdHeightOpenWeirProperty.Description); PropertyDescriptor probabilityOpenStructureBeforeFloodingProperty = dynamicProperties[probabilityOpenStructureBeforeFloodingPropertyIndex]; Assert.IsFalse(probabilityOpenStructureBeforeFloodingProperty.IsReadOnly); Assert.AreEqual(schematizationCategory, probabilityOpenStructureBeforeFloodingProperty.Category); Assert.AreEqual("Kans op open staan bij naderend hoogwater [1/jaar]", probabilityOpenStructureBeforeFloodingProperty.DisplayName); Assert.AreEqual("Kans op open staan bij naderend hoogwater.", probabilityOpenStructureBeforeFloodingProperty.Description); PropertyDescriptor failureProbabilityOpenStructureProperty = dynamicProperties[failureProbabilityOpenStructurePropertyIndex]; Assert.IsFalse(failureProbabilityOpenStructureProperty.IsReadOnly); Assert.AreEqual(schematizationCategory, failureProbabilityOpenStructureProperty.Category); Assert.AreEqual("Kans mislukken sluiting [1/jaar]", failureProbabilityOpenStructureProperty.DisplayName); Assert.AreEqual("Kans op mislukken sluiting van geopend kunstwerk.", failureProbabilityOpenStructureProperty.Description); PropertyDescriptor failureProbabilityReparationProperty = dynamicProperties[failureProbabilityReparationPropertyIndex]; Assert.IsFalse(failureProbabilityReparationProperty.IsReadOnly); Assert.AreEqual(schematizationCategory, failureProbabilityReparationProperty.Category); Assert.AreEqual("Faalkans herstel van gefaalde situatie [1/jaar]", failureProbabilityReparationProperty.DisplayName); Assert.AreEqual("Faalkans herstel van gefaalde situatie.", failureProbabilityReparationProperty.Description); PropertyDescriptor drainCoefficientProperty = dynamicProperties[drainCoefficientPropertyIndex]; Assert.IsInstanceOf(drainCoefficientProperty.Converter); Assert.AreEqual(modelSettingsCategory, drainCoefficientProperty.Category); Assert.AreEqual("Afvoercoëfficient [-]", drainCoefficientProperty.DisplayName); Assert.AreEqual("Afvoercoëfficient.", drainCoefficientProperty.Description); PropertyDescriptor factorStormDurationOpenStructureProperty = dynamicProperties[factorStormDurationOpenStructurePropertyIndex]; Assert.IsFalse(factorStormDurationOpenStructureProperty.IsReadOnly); Assert.AreEqual(modelSettingsCategory, factorStormDurationOpenStructureProperty.Category); Assert.AreEqual("Factor voor stormduur hoogwater [-]", factorStormDurationOpenStructureProperty.DisplayName); Assert.AreEqual("Factor voor stormduur hoogwater gegeven geopend kunstwerk.", factorStormDurationOpenStructureProperty.Description); // Only check the order of the base properties Assert.AreEqual("Kunstwerk", dynamicProperties[structurePropertyIndex].DisplayName); Assert.AreEqual("Locatie (RD) [m]", dynamicProperties[structureLocationPropertyIndex].DisplayName); Assert.AreEqual("Oriëntatie [°]", dynamicProperties[structureNormalOrientationPropertyIndex].DisplayName); Assert.AreEqual("Stroomvoerende breedte bodembescherming [m]", dynamicProperties[flowWidthAtBottomProtectionPropertyIndex].DisplayName); Assert.AreEqual("Breedte van doorstroomopening [m]", dynamicProperties[widthFlowAperturesPropertyIndex].DisplayName); Assert.AreEqual("Kombergend oppervlak [m²]", dynamicProperties[storageStructureAreaPropertyIndex].DisplayName); Assert.AreEqual("Toegestane peilverhoging komberging [m]", dynamicProperties[allowedLevelIncreaseStoragePropertyIndex].DisplayName); Assert.AreEqual("Kritiek instromend debiet [m³/s/m]", dynamicProperties[criticalOvertoppingDischargePropertyIndex].DisplayName); Assert.AreEqual("Faalkans gegeven erosie bodem [1/jaar]", dynamicProperties[failureProbabilityStructureWithErosionPropertyIndex].DisplayName); Assert.AreEqual("Modelfactor overloopdebiet volkomen overlaat [-]", dynamicProperties[modelFactorSuperCriticalFlowPropertyIndex].DisplayName); Assert.AreEqual("Voorlandprofiel", dynamicProperties[foreshoreProfilePropertyIndex].DisplayName); Assert.AreEqual("Dam", dynamicProperties[useBreakWaterPropertyIndex].DisplayName); Assert.AreEqual("Voorlandgeometrie", dynamicProperties[useForeshorePropertyIndex].DisplayName); Assert.AreEqual("Locatie met hydraulische randvoorwaarden", dynamicProperties[hydraulicBoundaryLocationPropertyIndex].DisplayName); Assert.AreEqual("Stormduur [uur]", dynamicProperties[stormDurationPropertyIndex].DisplayName); mockRepository.VerifyAll(); } [Test] public void SetStructure_StructureInSection_UpdateSectionResults() { // Setup var assessmentSectionStub = mockRepository.Stub(); mockRepository.ReplayAll(); var failureMechanism = new ClosingStructuresFailureMechanism(); var calculation = new StructuresCalculation(); var inputContext = new ClosingStructuresInputContext(calculation.InputParameters, calculation, failureMechanism, assessmentSectionStub); var properties = new ClosingStructuresInputContextProperties { Data = inputContext }; failureMechanism.AddSection(new FailureMechanismSection("Section", new List { new Point2D(-10.0, -10.0), new Point2D(10.0, 10.0) })); // Call properties.Structure = new TestClosingStructure(); // Assert Assert.AreSame(calculation, failureMechanism.SectionResults.ElementAt(0).Calculation); mockRepository.VerifyAll(); } } }