// 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.Collections.Generic; using System.Xml.Linq; using Core.Common.Base.IO; using Ringtoets.Common.IO.Configurations; using Ringtoets.Common.IO.Configurations.Helpers; using Ringtoets.Common.IO.Configurations.Import; using Ringtoets.GrassCoverErosionInwards.IO.Properties; using RingtoetsCommonIOResources = Ringtoets.Common.IO.Properties.Resources; namespace Ringtoets.GrassCoverErosionInwards.IO.Configurations { /// /// This class reads a grass cover erosion inwards configuration from XML and creates /// a collection of corresponding , typically /// containing one or more . /// public class GrassCoverErosionInwardsCalculationConfigurationReader : CalculationConfigurationReader { private const string hrLocatieSchemaName = "HrLocatieSchema.xsd"; private const string orientatieSchemaName = "OrientatieSchema.xsd"; private const string golfReductieSchemaName = "GolfReductieSchema.xsd"; private const string stochastSchemaName = "StochastSchema.xsd"; private const string stochastStandaardafwijkingSchemaName = "StochastStandaardafwijkingSchema.xsd"; /// /// Creates a new instance of . /// /// The file path to the XML file. /// Thrown when is invalid. /// Thrown when: /// /// points to a file that does not exist. /// points to a file that does not contain valid XML. /// points to a file that does not pass the schema validation. /// points to a file that does not contain configuration elements. /// /// public GrassCoverErosionInwardsCalculationConfigurationReader(string xmlFilePath) : base(xmlFilePath, Resources.GEKBConfiguratieSchema, new Dictionary { { hrLocatieSchemaName, RingtoetsCommonIOResources.HrLocatieSchema }, { orientatieSchemaName, RingtoetsCommonIOResources.OrientatieSchema }, { golfReductieSchemaName, RingtoetsCommonIOResources.GolfReductieSchema }, { stochastSchemaName, RingtoetsCommonIOResources.StochastSchema }, { stochastStandaardafwijkingSchemaName, RingtoetsCommonIOResources.StochastStandaardafwijkingSchema } }) {} protected override ReadGrassCoverErosionInwardsCalculation ParseCalculationElement(XElement calculationElement) { var constructionProperties = new ReadGrassCoverErosionInwardsCalculation.ConstructionProperties { Name = calculationElement.Attribute(ConfigurationSchemaIdentifiers.NameAttribute).Value, HydraulicBoundaryLocation = calculationElement.GetStringValueFromDescendantElement(ConfigurationSchemaIdentifiers.HydraulicBoundaryLocationElement), DikeProfileId = calculationElement.GetStringValueFromDescendantElement(GrassCoverErosionInwardsCalculationConfigurationSchemaIdentifiers.DikeProfileElement), Orientation = calculationElement.GetDoubleValueFromDescendantElement(ConfigurationSchemaIdentifiers.Orientation), DikeHeight = calculationElement.GetDoubleValueFromDescendantElement(GrassCoverErosionInwardsCalculationConfigurationSchemaIdentifiers.DikeHeightElement), DikeHeightCalculationType = (ReadHydraulicLoadsCalculationType?) calculationElement.GetConvertedValueFromDescendantStringElement( GrassCoverErosionInwardsCalculationConfigurationSchemaIdentifiers.DikeHeightCalculationTypeElement), OvertoppingRateCalculationType = (ReadHydraulicLoadsCalculationType?) calculationElement.GetConvertedValueFromDescendantStringElement( GrassCoverErosionInwardsCalculationConfigurationSchemaIdentifiers.OvertoppingRateCalculationTypeElement), UseBreakWater = calculationElement.GetBoolValueFromDescendantElement(ConfigurationSchemaIdentifiers.UseBreakWater), BreakWaterType = (ConfigurationBreakWaterType?) calculationElement.GetConvertedValueFromDescendantStringElement(ConfigurationSchemaIdentifiers.BreakWaterType), BreakWaterHeight = calculationElement.GetDoubleValueFromDescendantElement(ConfigurationSchemaIdentifiers.BreakWaterHeight), UseForeshore = calculationElement.GetBoolValueFromDescendantElement(ConfigurationSchemaIdentifiers.UseForeshore) }; XElement criticalFlowRateElement = calculationElement.GetStochastElement(GrassCoverErosionInwardsCalculationConfigurationSchemaIdentifiers.CriticalFlowRateStochastName); if (criticalFlowRateElement != null) { constructionProperties.CriticalFlowRateMean = criticalFlowRateElement.GetDoubleValueFromDescendantElement(ConfigurationSchemaIdentifiers.MeanElement); constructionProperties.CriticalFlowRateStandardDeviation = criticalFlowRateElement.GetDoubleValueFromDescendantElement(ConfigurationSchemaIdentifiers.StandardDeviationElement); } return new ReadGrassCoverErosionInwardsCalculation(constructionProperties); } } }