// 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.FailureMechanism;
using Ringtoets.Common.Data.Hydraulics;
using Ringtoets.Common.Forms.Factories;
using Ringtoets.MacroStabilityInwards.Data;
using Ringtoets.MacroStabilityInwards.Data.SoilProfile;
using Ringtoets.MacroStabilityInwards.Forms.Factories;
using Ringtoets.MacroStabilityInwards.Primitives;
using MacroStabilityInwardsDataResources = Ringtoets.MacroStabilityInwards.Data.Properties.Resources;
namespace Ringtoets.MacroStabilityInwards.Forms.Views
{
///
/// This class is a view showing map data for a macro stability inwards failure mechanism.
///
public partial class MacroStabilityInwardsFailureMechanismView : UserControl, IMapView
{
private readonly MapLineData referenceLineMapData;
private readonly MapLineData sectionsMapData;
private readonly MapLineData stochasticSoilModelsMapData;
private readonly MapLineData surfaceLinesMapData;
private readonly MapPointData sectionsStartPointMapData;
private readonly MapPointData sectionsEndPointMapData;
private readonly MapPointData hydraulicBoundaryLocationsMapData;
private readonly MapLineData calculationsMapData;
private Observer failureMechanismObserver;
private Observer hydraulicBoundaryLocationsObserver;
private Observer assessmentSectionObserver;
private Observer surfaceLinesObserver;
private Observer stochasticSoilModelsObserver;
private RecursiveObserver, HydraulicBoundaryLocation> hydraulicBoundaryLocationObserver;
private RecursiveObserver calculationInputObserver;
private RecursiveObserver calculationGroupObserver;
private RecursiveObserver calculationObserver;
private RecursiveObserver surfaceLineObserver;
///
/// 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 MacroStabilityInwardsFailureMechanismView(MacroStabilityInwardsFailureMechanism 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();
var mapDataCollection = new MapDataCollection(MacroStabilityInwardsDataResources.MacroStabilityInwardsFailureMechanism_DisplayName);
referenceLineMapData = RingtoetsMapDataFactory.CreateReferenceLineMapData();
hydraulicBoundaryLocationsMapData = RingtoetsMapDataFactory.CreateHydraulicBoundaryLocationsMapData();
sectionsMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsMapData();
stochasticSoilModelsMapData = RingtoetsMapDataFactory.CreateStochasticSoilModelsMapData();
surfaceLinesMapData = RingtoetsMapDataFactory.CreateSurfaceLinesMapData();
sectionsStartPointMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsStartPointMapData();
sectionsEndPointMapData = RingtoetsMapDataFactory.CreateFailureMechanismSectionsEndPointMapData();
calculationsMapData = RingtoetsMapDataFactory.CreateCalculationsMapData();
mapDataCollection.Add(referenceLineMapData);
mapDataCollection.Add(stochasticSoilModelsMapData);
mapDataCollection.Add(surfaceLinesMapData);
mapDataCollection.Add(sectionsMapData);
mapDataCollection.Add(sectionsStartPointMapData);
mapDataCollection.Add(sectionsEndPointMapData);
mapDataCollection.Add(hydraulicBoundaryLocationsMapData);
mapDataCollection.Add(calculationsMapData);
SetAllMapDataFeatures();
ringtoetsMapControl.SetAllData(mapDataCollection, AssessmentSection.BackgroundData);
}
///
/// Gets the failure mechanism.
///
public MacroStabilityInwardsFailureMechanism FailureMechanism { get; }
///
/// Gets the assessment section.
///
public IAssessmentSection AssessmentSection { get; }
public object Data { get; set; }
public IMapControl Map
{
get
{
return ringtoetsMapControl.MapControl;
}
}
protected override void Dispose(bool disposing)
{
failureMechanismObserver.Dispose();
assessmentSectionObserver.Dispose();
hydraulicBoundaryLocationsObserver.Dispose();
hydraulicBoundaryLocationObserver.Dispose();
stochasticSoilModelsObserver.Dispose();
calculationInputObserver.Dispose();
calculationGroupObserver.Dispose();
calculationObserver.Dispose();
surfaceLinesObserver.Dispose();
surfaceLineObserver.Dispose();
if (disposing)
{
components?.Dispose();
}
base.Dispose(disposing);
}
private void CreateObservers()
{
failureMechanismObserver = new Observer(UpdateSectionsMapData)
{
Observable = FailureMechanism
};
assessmentSectionObserver = new Observer(UpdateReferenceLineMapData)
{
Observable = AssessmentSection
};
hydraulicBoundaryLocationsObserver = new Observer(UpdateHydraulicBoundaryLocationsMapData)
{
Observable = AssessmentSection.HydraulicBoundaryDatabase.Locations
};
surfaceLinesObserver = new Observer(UpdateSurfaceLinesMapData)
{
Observable = FailureMechanism.SurfaceLines
};
stochasticSoilModelsObserver = new Observer(UpdateStochasticSoilModelsMapData)
{
Observable = FailureMechanism.StochasticSoilModels
};
hydraulicBoundaryLocationObserver = new RecursiveObserver, HydraulicBoundaryLocation>(
UpdateHydraulicBoundaryLocationsMapData, hbl => hbl)
{
Observable = AssessmentSection.HydraulicBoundaryDatabase.Locations
};
calculationInputObserver = new RecursiveObserver(
UpdateCalculationsMapData, pcg => pcg.Children.Concat