// 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 Ringtoets.AssemblyTool.Data; using Ringtoets.AssemblyTool.KernelWrapper.Calculators; using Ringtoets.AssemblyTool.KernelWrapper.Calculators.Assembly; using Ringtoets.AssemblyTool.KernelWrapper.Kernels; using Ringtoets.Common.Data.AssessmentSection; using Ringtoets.Common.Data.Exceptions; using Ringtoets.Common.Data.Probability; using Ringtoets.Common.Primitives; namespace Ringtoets.MacroStabilityInwards.Data { /// /// Factory for assembling assembly results for macro stability inwards failure mechanism section results. /// public static class MacroStabilityInwardsFailureMechanismSectionResultAssemblyFactory { /// /// Assembles the simple assessment results. /// /// The failure mechanism section result to assemble the /// simple assembly results for. /// A based on the . /// Thrown when /// is null. /// Thrown when the /// could not be created. public static FailureMechanismSectionAssembly AssembleSimpleAssessment( MacroStabilityInwardsFailureMechanismSectionResult failureMechanismSectionResult) { if (failureMechanismSectionResult == null) { throw new ArgumentNullException(nameof(failureMechanismSectionResult)); } IAssemblyToolCalculatorFactory calculatorFactory = AssemblyToolCalculatorFactory.Instance; IFailureMechanismSectionAssemblyCalculator calculator = calculatorFactory.CreateFailureMechanismSectionAssemblyCalculator(AssemblyToolKernelFactory.Instance); try { return calculator.AssembleSimpleAssessment(failureMechanismSectionResult.SimpleAssessmentResult); } catch (FailureMechanismSectionAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } } /// /// Assembles the detailed assessment result. /// /// The failure mechanism section result to /// assemble the detailed assembly for. /// The calculation scenarios belonging to this section. /// The failure mechanism this section belongs to. /// The this section belongs to. /// A . /// Thrown when any parameter is null. /// Thrown when the /// could not be created. public static FailureMechanismSectionAssembly AssembleDetailedAssessment( MacroStabilityInwardsFailureMechanismSectionResult failureMechanismSectionResult, IEnumerable calculationScenarios, MacroStabilityInwardsFailureMechanism failureMechanism, IAssessmentSection assessmentSection) { if (failureMechanismSectionResult == null) { throw new ArgumentNullException(nameof(failureMechanismSectionResult)); } if (calculationScenarios == null) { throw new ArgumentNullException(nameof(calculationScenarios)); } if (failureMechanism == null) { throw new ArgumentNullException(nameof(failureMechanism)); } if (assessmentSection == null) { throw new ArgumentNullException(nameof(assessmentSection)); } IAssemblyToolCalculatorFactory calculatorFactory = AssemblyToolCalculatorFactory.Instance; IFailureMechanismSectionAssemblyCalculator calculator = calculatorFactory.CreateFailureMechanismSectionAssemblyCalculator(AssemblyToolKernelFactory.Instance); try { return calculator.AssembleDetailedAssessment( failureMechanismSectionResult.DetailedAssessmentResult, failureMechanismSectionResult.GetDetailedAssessmentProbability(calculationScenarios, failureMechanism, assessmentSection), failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN(failureMechanismSectionResult.Section.Length), new AssemblyCategoriesInput(failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN( failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.SectionLength), failureMechanism.Contribution, assessmentSection.FailureMechanismContribution.SignalingNorm, assessmentSection.FailureMechanismContribution.LowerLimitNorm)); } catch (FailureMechanismSectionAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } } /// /// Assembles the tailor made assessment result. /// /// The failure mechanism section result to /// assemble the tailor made assembly for. /// The failure mechanism this section belongs to. /// The this section belongs to. /// A . /// Thrown when any parameter is null. /// Thrown when the /// could not be created. public static FailureMechanismSectionAssembly AssembleTailorMadeAssessment( MacroStabilityInwardsFailureMechanismSectionResult failureMechanismSectionResult, MacroStabilityInwardsFailureMechanism failureMechanism, IAssessmentSection assessmentSection) { if (failureMechanismSectionResult == null) { throw new ArgumentNullException(nameof(failureMechanismSectionResult)); } if (failureMechanism == null) { throw new ArgumentNullException(nameof(failureMechanism)); } if (assessmentSection == null) { throw new ArgumentNullException(nameof(assessmentSection)); } IAssemblyToolCalculatorFactory calculatorFactory = AssemblyToolCalculatorFactory.Instance; IFailureMechanismSectionAssemblyCalculator calculator = calculatorFactory.CreateFailureMechanismSectionAssemblyCalculator(AssemblyToolKernelFactory.Instance); try { return calculator.AssembleTailorMadeAssessment( failureMechanismSectionResult.TailorMadeAssessmentResult, failureMechanismSectionResult.TailorMadeAssessmentProbability, failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN(failureMechanismSectionResult.Section.Length), new AssemblyCategoriesInput(failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN( failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.SectionLength), failureMechanism.Contribution, assessmentSection.FailureMechanismContribution.SignalingNorm, assessmentSection.FailureMechanismContribution.LowerLimitNorm)); } catch (FailureMechanismSectionAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } } /// /// Assembles the combined assembly. /// /// The failure mechanism section result to /// combine the assemblies for. /// The calculation scenarios belonging to this section. /// The failure mechanism this section belongs to. /// The this section belongs to. /// A . /// Thrown when any parameter is null. /// Thrown when the /// could not be created. public static FailureMechanismSectionAssembly AssembleCombinedAssessment( MacroStabilityInwardsFailureMechanismSectionResult failureMechanismSectionResult, IEnumerable calculationScenarios, MacroStabilityInwardsFailureMechanism failureMechanism, IAssessmentSection assessmentSection) { if (failureMechanismSectionResult == null) { throw new ArgumentNullException(nameof(failureMechanismSectionResult)); } if (calculationScenarios == null) { throw new ArgumentNullException(nameof(calculationScenarios)); } if (failureMechanism == null) { throw new ArgumentNullException(nameof(failureMechanism)); } if (assessmentSection == null) { throw new ArgumentNullException(nameof(assessmentSection)); } FailureMechanismSectionAssembly simpleAssembly = AssembleSimpleAssessment(failureMechanismSectionResult); FailureMechanismSectionAssembly detailedAssembly = AssembleDetailedAssessment( failureMechanismSectionResult, calculationScenarios, failureMechanism, assessmentSection); FailureMechanismSectionAssembly tailorMadeAssembly = AssembleTailorMadeAssessment( failureMechanismSectionResult, failureMechanism, assessmentSection); IAssemblyToolCalculatorFactory calculatorFactory = AssemblyToolCalculatorFactory.Instance; IFailureMechanismSectionAssemblyCalculator calculator = calculatorFactory.CreateFailureMechanismSectionAssemblyCalculator(AssemblyToolKernelFactory.Instance); try { return calculator.AssembleCombined(simpleAssembly, detailedAssembly, tailorMadeAssembly); } catch (FailureMechanismSectionAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } } /// /// Assembles the failure mechanism assembly. /// /// The failure mechanism section results to /// get the assembly for. /// The calculation scenarios belonging to this failure mechanism. /// The failure mechanism this to assemble for. /// The the failure mechanism belongs to. /// Indicator whether the manual assembly should be used in the assembly. /// A . /// Thrown when any parameter is null. /// Thrown when the /// could not be created. public static FailureMechanismAssembly AssembleFailureMechanism( IEnumerable failureMechanismSectionResults, IEnumerable calculationScenarios, MacroStabilityInwardsFailureMechanism failureMechanism, IAssessmentSection assessmentSection, bool considerManualAssembly = true) { if (failureMechanismSectionResults == null) { throw new ArgumentNullException(nameof(failureMechanismSectionResults)); } if (calculationScenarios == null) { throw new ArgumentNullException(nameof(calculationScenarios)); } if (failureMechanism == null) { throw new ArgumentNullException(nameof(failureMechanism)); } if (assessmentSection == null) { throw new ArgumentNullException(nameof(assessmentSection)); } IAssemblyToolCalculatorFactory calculatorFactory = AssemblyToolCalculatorFactory.Instance; IFailureMechanismSectionAssemblyCalculator sectionCalculator = calculatorFactory.CreateFailureMechanismSectionAssemblyCalculator(AssemblyToolKernelFactory.Instance); var sectionAssemblies = new List(); var assemblyCategoriesInput = new AssemblyCategoriesInput(failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN( failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.SectionLength), failureMechanism.Contribution, assessmentSection.FailureMechanismContribution.SignalingNorm, assessmentSection.FailureMechanismContribution.LowerLimitNorm); try { foreach (MacroStabilityInwardsFailureMechanismSectionResult sectionResult in failureMechanismSectionResults) { if (sectionResult.UseManualAssemblyProbability && considerManualAssembly) { sectionAssemblies.Add(sectionCalculator.AssembleDetailedAssessment( DetailedAssessmentProbabilityOnlyResultType.Probability, sectionResult.ManualAssemblyProbability, failureMechanism.MacroStabilityInwardsProbabilityAssessmentInput.GetN(sectionResult.Section.Length), assemblyCategoriesInput)); } else { sectionAssemblies.Add(AssembleCombinedAssessment(sectionResult, calculationScenarios, failureMechanism, assessmentSection)); } } IFailureMechanismAssemblyCalculator calculator = calculatorFactory.CreateFailureMechanismAssemblyCalculator(AssemblyToolKernelFactory.Instance); return calculator.AssembleFailureMechanism(sectionAssemblies, assemblyCategoriesInput); } catch (FailureMechanismSectionAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } catch (FailureMechanismAssemblyCalculatorException e) { throw new AssemblyException(e.Message, e); } } } }