// 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.Linq; using Core.Common.Utils; using NUnit.Framework; using Ringtoets.HydraRing.Calculation.Data; using Ringtoets.HydraRing.Calculation.Data.Input.Hydraulics; using Ringtoets.HydraRing.Calculation.Data.Variables; namespace Ringtoets.HydraRing.Calculation.Test.Data.Input.Hydraulics { [TestFixture] public class DunesBoundaryConditionsCalculationInputTest { [Test] public void Constructor_ExpectedValues() { // Setup const double norm = 1.0/10000; const int sectionId = 1; const long hydraulicBoundaryLocationId = 1234; const double orientation = 100; // Call var dunesBoundaryConditionsCalculationInput = new DunesBoundaryConditionsCalculationInput(sectionId, hydraulicBoundaryLocationId, norm, orientation); // Assert double expectedBeta = StatisticsConverter.ProbabilityToReliability(norm); Assert.IsInstanceOf(dunesBoundaryConditionsCalculationInput); Assert.AreEqual(HydraRingFailureMechanismType.DunesBoundaryConditions, dunesBoundaryConditionsCalculationInput.FailureMechanismType); Assert.AreEqual(2, dunesBoundaryConditionsCalculationInput.CalculationTypeId); Assert.AreEqual(26, dunesBoundaryConditionsCalculationInput.VariableId); Assert.AreEqual(hydraulicBoundaryLocationId, dunesBoundaryConditionsCalculationInput.HydraulicBoundaryLocationId); Assert.IsNotNull(dunesBoundaryConditionsCalculationInput.Section); CollectionAssert.IsEmpty(dunesBoundaryConditionsCalculationInput.ProfilePoints); CollectionAssert.IsEmpty(dunesBoundaryConditionsCalculationInput.ForelandsPoints); Assert.IsNull(dunesBoundaryConditionsCalculationInput.BreakWater); Assert.AreEqual(expectedBeta, dunesBoundaryConditionsCalculationInput.Beta); var section = dunesBoundaryConditionsCalculationInput.Section; Assert.AreEqual(sectionId, section.SectionId); Assert.IsNaN(section.SectionLength); Assert.AreEqual(orientation, section.CrossSectionNormal); HydraRingVariable[] hydraRingVariables = dunesBoundaryConditionsCalculationInput.Variables.ToArray(); Assert.AreEqual(1, hydraRingVariables.Length); var waterLevelVariable = hydraRingVariables.First(); Assert.IsInstanceOf(waterLevelVariable); Assert.AreEqual(26, waterLevelVariable.VariableId); Assert.AreEqual(0.0, waterLevelVariable.Value); } [Test] public void GetSubMechanismModelId_ReturnsExpectedValues() { // Call var dunesBoundaryConditionsCalculationInput = new DunesBoundaryConditionsCalculationInput(1, 1, 2.2, 3.3); // Assert Assert.IsNull(dunesBoundaryConditionsCalculationInput.GetSubMechanismModelId(1)); } } }