// 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.Linq; using System.Windows.Forms; using Core.Common.Base; using Core.Components.Gis.Data; using Core.Components.Gis.Forms; using Ringtoets.Common.Data.AssessmentSection; using Ringtoets.Common.Data.Calculation; using Ringtoets.Common.Data.DikeProfiles; using Ringtoets.Common.Data.FailureMechanism; using Ringtoets.Common.Data.Hydraulics; using Ringtoets.Common.Forms.Factories; using Ringtoets.Revetment.Data; using Ringtoets.StabilityStoneCover.Data; using Ringtoets.StabilityStoneCover.Forms.Factories; using Ringtoets.StabilityStoneCover.Forms.PresentationObjects; using StabilityStoneCoverDataResources = Ringtoets.StabilityStoneCover.Data.Properties.Resources; namespace Ringtoets.StabilityStoneCover.Forms.Views { /// /// This class is a view showing map data for a stability stone cover failure mechanism. /// public partial class StabilityStoneCoverFailureMechanismView : UserControl, IMapView { private readonly MapDataCollection mapDataCollection; private readonly MapLineData referenceLineMapData; private readonly MapLineData sectionsMapData; private readonly MapPointData sectionsStartPointMapData; private readonly MapPointData sectionsEndPointMapData; private readonly MapPointData hydraulicBoundaryLocationsMapData; private readonly MapLineData foreshoreProfilesMapData; private readonly MapLineData calculationsMapData; private Observer failureMechanismObserver; private Observer assessmentSectionObserver; private Observer hydraulicBoundaryLocationsObserver; private Observer foreshoreProfilesObserver; private RecursiveObserver, HydraulicBoundaryLocation> hydraulicBoundaryLocationObserver; private RecursiveObserver calculationInputObserver; private RecursiveObserver calculationGroupObserver; private RecursiveObserver calculationObserver; private RecursiveObserver foreshoreProfileObserver; private StabilityStoneCoverFailureMechanismContext data; /// /// Creates a new instance of . /// /// The failure mechanism to show the data for. /// The assessment section to show data for. /// Thrown when any parameter is null. public StabilityStoneCoverFailureMechanismView(StabilityStoneCoverFailureMechanism failureMechanism, IAssessmentSection assessmentSection) { if (failureMechanism == null) { throw new ArgumentNullException(nameof(failureMechanism)); } if (assessmentSection == null) { throw new ArgumentNullException(nameof(assessmentSection)); } InitializeComponent(); FailureMechanism = failureMechanism; AssessmentSection = assessmentSection; CreateObservers(); mapDataCollection = new MapDataCollection(StabilityStoneCoverDataResources.StabilityStoneCoverFailureMechanism_DisplayName); referenceLineMapData = RingtoetsMapDataFactory.CreateReferenceLineMapData(); hydraulicBoundaryLocationsMapData = RingtoetsMapDataFactory.CreateHydraulicBoundaryLocationsMapData(); foreshoreProfilesMapData = RingtoetsMapDataFactory.CreateForeshoreProfileMapData(); sectionsMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsMapData(); sectionsStartPointMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsStartPointMapData(); sectionsEndPointMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsEndPointMapData(); calculationsMapData = RingtoetsMapDataFactory.CreateCalculationsMapData(); mapDataCollection.Add(referenceLineMapData); mapDataCollection.Add(sectionsMapData); mapDataCollection.Add(sectionsStartPointMapData); mapDataCollection.Add(sectionsEndPointMapData); mapDataCollection.Add(hydraulicBoundaryLocationsMapData); mapDataCollection.Add(foreshoreProfilesMapData); mapDataCollection.Add(calculationsMapData); SetMapDataFeatures(); ringtoetsMapControl.SetAllData(mapDataCollection, AssessmentSection.BackgroundData); } /// /// Gets the failure mechanism. /// public StabilityStoneCoverFailureMechanism FailureMechanism { get; } /// /// Gets the assessment section. /// public IAssessmentSection AssessmentSection { get; } public object Data { get { return data; } set { data = value as StabilityStoneCoverFailureMechanismContext; if (data == null) { failureMechanismObserver.Observable = null; assessmentSectionObserver.Observable = null; hydraulicBoundaryLocationsObserver.Observable = null; hydraulicBoundaryLocationObserver.Observable = null; foreshoreProfilesObserver.Observable = null; foreshoreProfileObserver.Observable = null; calculationInputObserver.Observable = null; calculationGroupObserver.Observable = null; calculationObserver.Observable = null; ringtoetsMapControl.RemoveAllData(); } else { failureMechanismObserver.Observable = data.WrappedData; assessmentSectionObserver.Observable = data.Parent; hydraulicBoundaryLocationsObserver.Observable = data.Parent.HydraulicBoundaryDatabase.Locations; hydraulicBoundaryLocationObserver.Observable = data.Parent.HydraulicBoundaryDatabase.Locations; foreshoreProfilesObserver.Observable = data.WrappedData.ForeshoreProfiles; foreshoreProfileObserver.Observable = data.WrappedData.ForeshoreProfiles; calculationInputObserver.Observable = data.WrappedData.WaveConditionsCalculationGroup; calculationGroupObserver.Observable = data.WrappedData.WaveConditionsCalculationGroup; calculationObserver.Observable = data.WrappedData.WaveConditionsCalculationGroup; SetMapDataFeatures(); ringtoetsMapControl.SetAllData(mapDataCollection, data.Parent.BackgroundData); } } } public IMapControl Map { get { return ringtoetsMapControl.MapControl; } } protected override void Dispose(bool disposing) { failureMechanismObserver.Dispose(); assessmentSectionObserver.Dispose(); hydraulicBoundaryLocationsObserver.Dispose(); hydraulicBoundaryLocationObserver.Dispose(); foreshoreProfilesObserver.Dispose(); foreshoreProfileObserver.Dispose(); calculationInputObserver.Dispose(); calculationGroupObserver.Dispose(); calculationObserver.Dispose(); if (disposing) { components?.Dispose(); } base.Dispose(disposing); } private void CreateObservers() { failureMechanismObserver = new Observer(UpdateMapData) { Observable = FailureMechanism }; assessmentSectionObserver = new Observer(UpdateMapData) { Observable = AssessmentSection }; hydraulicBoundaryLocationsObserver = new Observer(UpdateMapData) { Observable = AssessmentSection.HydraulicBoundaryDatabase.Locations }; foreshoreProfilesObserver = new Observer(UpdateMapData) { Observable = FailureMechanism.ForeshoreProfiles }; hydraulicBoundaryLocationObserver = new RecursiveObserver, HydraulicBoundaryLocation>( UpdateMapData, hbl => hbl) { Observable = AssessmentSection.HydraulicBoundaryDatabase.Locations }; calculationInputObserver = new RecursiveObserver( UpdateMapData, pcg => pcg.Children.Concat(pcg.Children.OfType() .Select(pc => pc.InputParameters))) { Observable = FailureMechanism.WaveConditionsCalculationGroup }; calculationGroupObserver = new RecursiveObserver(UpdateMapData, pcg => pcg.Children) { Observable = FailureMechanism.WaveConditionsCalculationGroup }; calculationObserver = new RecursiveObserver(UpdateMapData, pcg => pcg.Children) { Observable = FailureMechanism.WaveConditionsCalculationGroup }; foreshoreProfileObserver = new RecursiveObserver(UpdateMapData, coll => coll) { Observable = FailureMechanism.ForeshoreProfiles }; } private void UpdateMapData() { SetMapDataFeatures(); referenceLineMapData.NotifyObservers(); sectionsMapData.NotifyObservers(); sectionsStartPointMapData.NotifyObservers(); sectionsEndPointMapData.NotifyObservers(); hydraulicBoundaryLocationsMapData.NotifyObservers(); foreshoreProfilesMapData.NotifyObservers(); calculationsMapData.NotifyObservers(); } private void SetMapDataFeatures() { ReferenceLine referenceLine = AssessmentSection.ReferenceLine; IEnumerable failureMechanismSections = FailureMechanism.Sections; HydraulicBoundaryDatabase hydraulicBoundaryDatabase = AssessmentSection.HydraulicBoundaryDatabase; IEnumerable foreshoreProfiles = FailureMechanism.ForeshoreProfiles; IEnumerable calculations = FailureMechanism.WaveConditionsCalculationGroup.GetCalculations().Cast(); referenceLineMapData.Features = RingtoetsMapDataFeaturesFactory.CreateReferenceLineFeatures(referenceLine, AssessmentSection.Id, AssessmentSection.Name); sectionsMapData.Features = RingtoetsMapDataFeaturesFactory.CreateFailureMechanismSectionFeatures(failureMechanismSections); sectionsStartPointMapData.Features = RingtoetsMapDataFeaturesFactory.CreateFailureMechanismSectionStartPointFeatures(failureMechanismSections); sectionsEndPointMapData.Features = RingtoetsMapDataFeaturesFactory.CreateFailureMechanismSectionEndPointFeatures(failureMechanismSections); hydraulicBoundaryLocationsMapData.Features = RingtoetsMapDataFeaturesFactory.CreateHydraulicBoundaryDatabaseFeatures(hydraulicBoundaryDatabase); foreshoreProfilesMapData.Features = RingtoetsMapDataFeaturesFactory.CreateForeshoreProfilesFeatures(foreshoreProfiles); calculationsMapData.Features = StabilityStoneCoverMapDataFeaturesFactory.CreateCalculationFeatures(calculations); } } }