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- cacheHintProperty() - function in javafx.scene.FXStepMonitor
- cacheHintProperty() - function in javafx.scene.PlayPauseMonitor
- cacheHintProperty() - function in javafx.scene.FXTimeMonitor
- cacheHintProperty() - function in javafx.scene.NumericLabelMonitor
- cacheHintProperty() - function in javafx.scene.EffectGroupCell
- cacheHintProperty() - function in javafx.scene.EffectCell
- cacheHintProperty() - function in javafx.scene.AbstractEffectCell
- cacheHintProperty() - function in javafx.scene.CustomLeafletMapView
- cacheHintProperty() - function in javafx.scene.AbstractFXDisplay
- cacheHintProperty() - function in javafx.scene.FX2DDisplay
- cacheHintProperty() - function in javafx.scene.LeafletMapDisplay
- cacheProperty() - function in javafx.scene.FXStepMonitor
- cacheProperty() - function in javafx.scene.PlayPauseMonitor
- cacheProperty() - function in javafx.scene.FXTimeMonitor
- cacheProperty() - function in javafx.scene.NumericLabelMonitor
- cacheProperty() - function in javafx.scene.EffectGroupCell
- cacheProperty() - function in javafx.scene.EffectCell
- cacheProperty() - function in javafx.scene.AbstractEffectCell
- cacheProperty() - function in javafx.scene.CustomLeafletMapView
- cacheProperty() - function in javafx.scene.AbstractFXDisplay
- cacheProperty() - function in javafx.scene.FX2DDisplay
- cacheProperty() - function in javafx.scene.LeafletMapDisplay
- cacheShapeProperty() - function in javafx.scene.layout.FXStepMonitor
- cacheShapeProperty() - function in javafx.scene.layout.PlayPauseMonitor
- cacheShapeProperty() - function in javafx.scene.layout.FXTimeMonitor
- cacheShapeProperty() - function in javafx.scene.layout.NumericLabelMonitor
- cacheShapeProperty() - function in javafx.scene.layout.EffectGroupCell
- cacheShapeProperty() - function in javafx.scene.layout.EffectCell
- cacheShapeProperty() - function in javafx.scene.layout.AbstractEffectCell
- cacheShapeProperty() - function in javafx.scene.layout.CustomLeafletMapView
- cacheShapeProperty() - function in javafx.scene.layout.AbstractFXDisplay
- cacheShapeProperty() - function in javafx.scene.layout.FX2DDisplay
- cacheShapeProperty() - function in javafx.scene.layout.LeafletMapDisplay
- calculate(Map) - function in it.unibo.alchemist.expressions.interfaces.IExpression
- calculate(Map) - function in it.unibo.alchemist.expressions.implementations.Expression
- calculateTransform() - function in it.unibo.alchemist.boundary.wormhole.implementation.LeafletMapWormhole
- calculateTransform() - function in it.unibo.alchemist.boundary.wormhole.implementation.WormholeFX
- call() - function in it.unibo.alchemist.grid.simulation.RemoteSimulationImpl
- call() - function in java.util.concurrent.RemoteSimulation
- CameraInjectVisibleNodeClosestToDistance - class in it.unibo.alchemist.model.implementations.actions
- Given a list of VisibleNode associated to visionMolecule, it finds the closest to a point located at distance from node in the direction of node's heading, and injects its position in targetMolecule.
- CameraSee - class in it.unibo.alchemist.model.implementations.actions
- Checks nodes in the environment and writes in outputMolecule the list of it.unibo.alchemist.model.interfaces.VisibleNode, containing filterByMolecule.
- cancelButtonProperty() - function in javafx.scene.control.PlayPauseMonitor
- cancelEdit() - function in javafx.scene.control.EffectGroupCell
- cancelEdit() - function in javafx.scene.control.EffectCell
- cancelEdit() - function in javafx.scene.control.AbstractEffectCell
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteering
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.CognitiveBehavior
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteering
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.PrioritySteering
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.SteeringBehavior
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.Event
- The default implementation verifies if all the conditions are valid.
- canExecute() - function in it.unibo.alchemist.model.interfaces.Event
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.AbstractReaction
- The default implementation verifies if all the conditions are valid.
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.ChemicalReaction
- The default implementation verifies if all the conditions are valid.
- canExecute() - function in it.unibo.alchemist.model.interfaces.ChemicalReaction
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.BiochemicalReaction
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.SAPEREReaction
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.SAPEREGradient
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteeringWithPhysics
- canExecute() - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteeringWithPhysics
- canExecute() - function in it.unibo.alchemist.model.interfaces.Reaction
- CanvasExtensionsKt - class in it.unibo.alchemist.boundary
- cartesianProduct(Sequence,Sequence) - function in it.unibo.alchemist.model.implementations.actions.IterableExtensionKt
- Performs the cartesian product of two sequences.
- cellCache(ListView,Function1) - function in tornadofx.ListKeybindsView
- cellCache(TableColumn,Function1) - function in tornadofx.ListKeybindsView
- cellCache(ListView,Function1) - function in tornadofx.EditKeybindView
- cellCache(TableColumn,Function1) - function in tornadofx.EditKeybindView
- cellFormat(ComboBox,Boolean,Function2) - function in tornadofx.ListKeybindsView
- cellFormat(ListView,Function2) - function in tornadofx.ListKeybindsView
- cellFormat(TableColumn,Function2) - function in tornadofx.ListKeybindsView
- cellFormat(ComboBox,Boolean,Function2) - function in tornadofx.EditKeybindView
- cellFormat(ListView,Function2) - function in tornadofx.EditKeybindView
- cellFormat(TableColumn,Function2) - function in tornadofx.EditKeybindView
- cellFragment(ListView,KClass) - function in tornadofx.ListKeybindsView
- cellFragment(TableColumn,KClass) - function in tornadofx.ListKeybindsView
- cellFragment(TreeView,KClass) - function in tornadofx.ListKeybindsView
- cellFragment(ListView,KClass) - function in tornadofx.EditKeybindView
- cellFragment(TableColumn,KClass) - function in tornadofx.EditKeybindView
- cellFragment(TreeView,KClass) - function in tornadofx.EditKeybindView
- CellMove - class in it.unibo.alchemist.model.implementations.actions
- CellNode - class in it.unibo.alchemist.model.interfaces
- CellNodeImpl - class in it.unibo.alchemist.model.implementations.nodes
- CellTensionPolarization - class in it.unibo.alchemist.model.implementations.actions
- CellWithCircularArea - class in it.unibo.alchemist.model.interfaces
- Implements a cell with a defined volume.
- center(BorderPane) - function in tornadofx.ListKeybindsView
- center(BorderPane,KClass) - function in tornadofx.ListKeybindsView
- center(BorderPane) - function in tornadofx.EditKeybindView
- center(BorderPane,KClass) - function in tornadofx.EditKeybindView
- center() - function in it.unibo.alchemist.boundary.wormhole.implementation.LeafletMapWormhole
- center() - function in it.unibo.alchemist.boundary.wormhole.implementation.WormholeFX
- center() - function in it.unibo.alchemist.boundary.wormhole.implementation.MapWormhole
- center() - function in it.unibo.alchemist.boundary.wormhole.implementation.WormholeSwing
- center() - function in it.unibo.alchemist.boundary.wormhole.implementation.AbstractWormhole2D
- Points the center of the view on the center of the environment.
- center() - function in it.unibo.alchemist.boundary.wormhole.interfaces.Wormhole2D
- Points the center of the view on the center of the environment.
- centerShapeProperty() - function in javafx.scene.layout.FXStepMonitor
- centerShapeProperty() - function in javafx.scene.layout.PlayPauseMonitor
- centerShapeProperty() - function in javafx.scene.layout.FXTimeMonitor
- centerShapeProperty() - function in javafx.scene.layout.NumericLabelMonitor
- centerShapeProperty() - function in javafx.scene.layout.EffectGroupCell
- centerShapeProperty() - function in javafx.scene.layout.EffectCell
- centerShapeProperty() - function in javafx.scene.layout.AbstractEffectCell
- centerShapeProperty() - function in javafx.scene.layout.CustomLeafletMapView
- centerShapeProperty() - function in javafx.scene.layout.AbstractFXDisplay
- centerShapeProperty() - function in javafx.scene.layout.FX2DDisplay
- centerShapeProperty() - function in javafx.scene.layout.LeafletMapDisplay
- ChangeBiomolConcentrationInCell - class in it.unibo.alchemist.model.implementations.actions
- ChangeBiomolConcentrationInEnv - class in it.unibo.alchemist.model.implementations.actions
- Action implementing the changing of the concentration of a given biomolecule in environment.
- ChangeBiomolConcentrationInNeighbor - class in it.unibo.alchemist.model.implementations.actions
- changePriority(EffectFX,int) - function in it.unibo.alchemist.boundary.gui.effects.EffectStack
- Changes the specified offset priority of the specified offset.
- changePriority(EffectFX,int) - function in it.unibo.alchemist.boundary.gui.effects.EffectGroup
- Changes the specified offset priority of the specified offset.
- ChangeTargetOnCollision - class in it.unibo.alchemist.model.implementations.movestrategies
- Base class for TargetSelectionStrategy offering automatic target change on collision and utilities for initialization.
- Characteristic - class in it.unibo.alchemist.model.cognitiveagents.impact.individual
- Any characteristic associated to a pedestrian.
- checkboxItem(PopupMenu,String,Boolean,Function1) - function in tornadofx.Keybinder
- checkImage(Image,ImageObserver) - function in java.awt.EffectBuilder
- checkImage(Image,ImageObserver) - function in java.awt.JEffectsTab
- checkImage(Image,ImageObserver) - function in java.awt.JEffectRepresentation
- checkImage(Image,ImageObserver) - function in java.awt.AlchemistSwingUI
- checkImage(Image,ImageObserver) - function in java.awt.StatusBar
- checkImage(Image,ImageObserver) - function in java.awt.ReactivityPanel
- checkImage(Image,ImageObserver) - function in java.awt.FileMenu
- checkImage(Image,ImageObserver) - function in java.awt.SimControlPanel
- checkImage(Image,ImageObserver) - function in java.awt.SimControlButton
- checkImage(Image,ImageObserver) - function in java.awt.AbstractMenu
- checkImage(Image,ImageObserver) - function in java.awt.NumericTextField
- checkImage(Image,ImageObserver) - function in java.awt.TimeStepMonitor
- checkImage(Image,ImageObserver) - function in java.awt.NodeTracker
- checkImage(Image,ImageObserver) - function in java.awt.MapDisplay
- checkImage(Image,ImageObserver) - function in java.awt.Generic2DDisplay
- checkImage(Image,ImageObserver) - function in java.awt.MoleculeInjectorGUI
- checkImage(Image,ImageObserver) - function in java.awt.JOutputMonitorRepresentation
- checkImage(Image,ImageObserver) - function in java.awt.JTape
- checkImage(Image,ImageObserver) - function in java.awt.JTapeTab
- checkImage(Image,ImageObserver) - function in java.awt.JTapeSection
- checkImage(Image,ImageObserver) - function in java.awt.JTapeMainFeature
- checkImage(Image,ImageObserver) - function in java.awt.JTapeFeatureStack
- checkImage(Image,ImageObserver) - function in java.awt.JTapeGroup
- ChemicalReaction - class in it.unibo.alchemist.model.implementations.reactions
- ChemotacticPolarization - class in it.unibo.alchemist.model.implementations.actions
- CHILD - enum entry in it.unibo.alchemist.model.cognitiveagents.impact.individual.Age
- childBoundsChanged(Node) - function in javafx.scene.CustomLeafletMapView
- childBoundsChanged(Node) - function in javafx.scene.AbstractFXDisplay
- childBoundsChanged(Node) - function in javafx.scene.FX2DDisplay
- childBoundsChanged(Node) - function in javafx.scene.LeafletMapDisplay
- childVisibilityChanged(Node) - function in javafx.scene.CustomLeafletMapView
- childVisibilityChanged(Node) - function in javafx.scene.AbstractFXDisplay
- childVisibilityChanged(Node) - function in javafx.scene.FX2DDisplay
- childVisibilityChanged(Node) - function in javafx.scene.LeafletMapDisplay
- chooseAndLoad() - function in it.unibo.alchemist.boundary.gui.effects.EffectBuilderFX
- Asks the user to chose an effect and returns a new instance of the desired class.
- circle(Double) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Euclidean2DShapeFactory
- A circle extends in the first and second axis by its diameter.
- Circle - class in it.unibo.alchemist.loader.shapes
- A circle.
- Circle - class in it.unibo.alchemist.loader.deployments
- CircleNode - class in it.unibo.alchemist.model.implementations.nodes
- A it.unibo.alchemist.model.interfaces.Node with a circle shape meant to be added to a it.unibo.alchemist.model.interfaces.environments.PhysicsEnvironment.
- circleSector(Double,Double,Double) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Euclidean2DShapeFactory
- A circle sector is the portion of a disk enclosed by two radii and an arc and it extends in the first and second axis by its radius and angle.
- CircularArc - class in it.unibo.alchemist.loader.deployments
- Displaces the nodes in the environment in a circular arc, given a nodeCount, the coordinates of the circle's center centerX and centerY, the circle's radius radius, perturbation randomness (uniform, generated via randomGenerator) for radius radiusRandomness and for angle angleRandomness, a startAngle, and an endAngle.
- CircularDeformableCell - class in it.unibo.alchemist.model.interfaces
- Implements a circular deformable cell.
- CircularDeformableCellImpl - class in it.unibo.alchemist.model.implementations.nodes
- Implementation of a circular deformable cell.
- ClassItem - class in it.unibo.alchemist.boundary.gui.monitors
- A simple Class wrapper exposing a better toString.
- ClassPathScanner - class in it.unibo.alchemist
- An utility class providing support for loading arbitrary subclasses available in the classpath.
- cleanQueue() - function in it.unibo.alchemist.boundary.gui.CommandQueueBuilder
- Clears the queue.
- clear() - function in it.unibo.alchemist.boundary.gui.effects.EffectStack
- clear() - function in java.util.EffectGroup
- clear(Canvas) - function in it.unibo.alchemist.boundary.CanvasExtensionsKt
- Clears a given canvas.
- clearDecorators() - function in tornadofx.KeybindModel
- clearDirty(DirtyBits) - function in javafx.scene.CustomLeafletMapView
- clearDirty(DirtyBits) - function in javafx.scene.AbstractFXDisplay
- clearDirty(DirtyBits) - function in javafx.scene.FX2DDisplay
- clearDirty(DirtyBits) - function in javafx.scene.LeafletMapDisplay
- clearEffects() - function in it.unibo.alchemist.boundary.gui.effects.JEffectsTab
- Removes every effect.
- clearMarkersAndTracks() - function in de.saring.leafletmap.CustomLeafletMapView
- clearSizeCache() - function in javafx.scene.CustomLeafletMapView
- clearSizeCache() - function in javafx.scene.AbstractFXDisplay
- clearSizeCache() - function in javafx.scene.FX2DDisplay
- clearSizeCache() - function in javafx.scene.LeafletMapDisplay
- CLICKED - enum entry in it.unibo.alchemist.boundary.jfx.events.mouse.ActionOnMouse
- clickSelection(Map,Wormhole2D) - function in it.unibo.alchemist.boundary.interactions.SelectionHelper
- Retrieves the element selected by clicking.
- clipProperty() - function in javafx.scene.FXStepMonitor
- clipProperty() - function in javafx.scene.PlayPauseMonitor
- clipProperty() - function in javafx.scene.FXTimeMonitor
- clipProperty() - function in javafx.scene.NumericLabelMonitor
- clipProperty() - function in javafx.scene.EffectGroupCell
- clipProperty() - function in javafx.scene.EffectCell
- clipProperty() - function in javafx.scene.AbstractEffectCell
- clipProperty() - function in javafx.scene.CustomLeafletMapView
- clipProperty() - function in javafx.scene.AbstractFXDisplay
- clipProperty() - function in javafx.scene.FX2DDisplay
- clipProperty() - function in javafx.scene.LeafletMapDisplay
- clone() - function in java.awt.geom.RectObstacle2D
- clone() - function in org.jgrapht.graph.BaseNavigationGraph
- clone() - function in org.jgrapht.graph.DirectedNavigationGraph
- clone() - function in org.jgrapht.graph.UndirectedNavigationGraph
- clone() - function in java.awt.geom.DoubleDimension
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractGroupSteeringAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractLayerAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractNavigationAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractSteeringAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractSteeringActionWithTarget
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentArrive
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentAvoidLayer
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentCohesion
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentCombineSteering
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentExplore
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentFlee
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentFollowLayer
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentFollowRoute
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentFollowScalarField
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentGoalOrientedExplore
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentNavigationAction2D
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentObstacleAvoidance
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentPursue
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentReachDestination
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentReachKnownDestination
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentSeek
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentSeek2D
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentSeparation
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentWander
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractEuclideanConfigurableMoveNode
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ConstantDistanceRandomWalk
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.FollowAtDistance
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.GenericRandomWalker
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.HeadTowardRandomDirection
- {@inheritDoc}.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.HeadTowardTarget
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LevyWalk
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.Spin
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RemoveNode
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.BrownianMove
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.MoveForwardAndTeleport
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractConfigurableMoveNode
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.MoveToTarget
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractLocalAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractMoveNode
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SetLocalMoleculeConcentration
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractActionOnSingleMolecule
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ToggleMolecule
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ToggleMoleculeRandomly
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AbstractNeighborAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AbstractRandomizableAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CellMove
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AddJunctionInCell
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AddJunctionInCell
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CellTensionPolarization
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ChangeBiomolConcentrationInCell
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RemoveJunctionInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.RemoveJunctionInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ChemotacticPolarization
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ChangeBiomolConcentrationInEnv
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.AddJunctionInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.AddJunctionInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RandomPolarization
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ChangeBiomolConcentrationInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.ChangeBiomolConcentrationInNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RemoveJunctionInCell
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.RemoveJunctionInCell
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SendToNeighbor
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RunProtelisProgram
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaCountNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaCountNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaCountNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaCountNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAscendingGradientDist
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAscendingGradientDist
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAscendingGradientDist
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAscendingGradientDist
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAllNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAllNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAllNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAllNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAllNeighborsAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREWalker
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREWalker
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaStandardAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaStandardAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaStandardAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREMoveNodeAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREMoveNodeAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREMoveNodeAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREMoveNodeAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAbstractAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaChangeArgument
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaChangeArgument
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaChangeArgument
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaChangeArgument
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREMoveLSAToAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREMoveLSAToAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREMoveLSAToAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREMoveLSAToAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAscendingAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaAscendingAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAscendingAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaAscendingAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREWalkerRiseGradient
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREWalkerRiseGradient
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPERELocalAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPERELocalAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPERELocalAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPERELocalAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREChemotaxis
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREChemotaxis
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREChemotaxis
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREChemotaxis
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaRandomNeighborAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.LsaRandomNeighborAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaRandomNeighborAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaRandomNeighborAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPEREAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPEREAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPERENeighborAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.SAPERENeighborAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPERENeighborAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SAPERENeighborAgent
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.ReproduceGPSTrace
- Fails, can't be cloned.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.ReproduceGPSTrace
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.GPSTraceWalker
- Fails, can't be cloned.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.GPSTraceWalker
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.MoveOnMap
- Fails, can't be cloned.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.TargetMapWalker
- Fails, can't be cloned.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.TargetMapWalker
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.MoveOnMapWithGPS
- Fails, can't be cloned.
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.MoveOnMapWithGPS
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.RandomTargetInPolygonOnMap
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CameraInjectVisibleNodeClosestToDistance
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.implementations.actions.CameraSee
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.GroupSteeringAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.NavigationAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SteeringAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.SteeringActionWithTarget
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.ILsaAction
- cloneAction(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.Action
- This method allows to clone this action on a new node.
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.WantToEscape
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.ConcentrationChanged
- How to override: create a new action of your concrete subtype.
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.ConcentrationChanged
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.AbstractCondition
- How to override: create a new action of your concrete subtype.
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.MoleculeHasConcentration
- How to override: create a new action of your concrete subtype.
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.MoleculeHasConcentration
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.ContainsMolecule
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.NoOtherReactionCanExecute
- How to override: create a new action of your concrete subtype.
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.AbstractNonPropensityContributingCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.NeighborhoodPresent
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.NeighborhoodPresent
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInCell
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInCell
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.GenericMoleculeUnderLevel
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.GenericMoleculeUnderLevel
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInEnv
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInEnv
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.TensionPresent
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.AbstractNeighborCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.EnvPresent
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.GenericMoleculePresent
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.JunctionPresentInCell
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.JunctionPresentInCell
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInNeighbor
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.BiomolPresentInNeighbor
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.ComputationalRoundComplete
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaAbstractCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaStandardCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaStandardCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaStandardCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaNeighborhoodCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaNeighborhoodCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.implementations.conditions.LsaNeighborhoodCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.LsaNeighborhoodCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.ILsaCondition
- cloneCondition(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.Condition
- This method allows to clone this action on a new node.
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.RandomTarget
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.ChangeTargetOnCollision
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.RoutingStrategy
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.SpeedSelectionStrategy
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.TargetSelectionStrategy
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.speed.ConstantSpeed
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.speed.InteractWithOthers
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.ConstantSpace
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.speed.GloballyConstantSpeed
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.TraceDependantSpeed
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.speed.StraightLineTraceDependantSpeed
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.speed.RoutingTraceDependantSpeed
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.target.FollowTarget
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.target.FollowTargetOnMap
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.FollowTargetOnMap
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.implementations.movestrategies.target.FollowTrace
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.OnStreets
- cloneIfNeeded(Node,Reaction) - function in it.unibo.alchemist.model.interfaces.movestrategies.IgnoreStreets
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.AbstractCognitivePedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.AbstractHeterogeneousPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.AbstractHomogeneousPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.AbstractOrientingPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CognitiveOrientingPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CognitivePedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.HeterogeneousPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.HomogeneousOrientingPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.HomogeneousPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.CircleNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.AbstractNode
- Default implementation fails: override correctly calling the constructor.
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.IntNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.CircularDeformableCellImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CircularDeformableCellImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.EnvironmentNodeImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.EnvironmentNodeImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.IntegerNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.IntegerNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.CellNodeImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CellNodeImpl
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.DoubleNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.DoubleNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.ProtelisNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.ProtelisNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.LsaNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.LsaNode
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.CognitiveOrientingPhysicalPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CognitivePhysicalPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.implementations.nodes.HomogeneousOrientingPhysicalPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.HomogeneousPhysicalPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CognitivePedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CognitivePedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.HeterogeneousPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.OrientingPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.Pedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.Pedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.EnvironmentNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CellNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CellWithCircularArea
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.CircularDeformableCell
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.ILsaNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.Node
- Creates a new Node which is a clone of the current Node.
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.PhysicalNode
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.PhysicalPedestrian
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.PhysicalPedestrian2D
- cloneNode(Time) - function in it.unibo.alchemist.model.interfaces.NodeWithShape
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteering
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.CognitiveBehavior
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteering
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.PrioritySteering
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.SteeringBehavior
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.Event
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.AbstractReaction
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.ChemicalReaction
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.BiochemicalReaction
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.BiochemicalReaction
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.SAPEREReaction
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.SAPEREGradient
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteeringWithPhysics
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteeringWithPhysics
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.TimeDistribution
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.Reaction
- This method allows to clone this reaction on a new node.
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.AnyRealDistribution
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.AnyRealDistribution
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.WeibullTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.WeibullTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.WeibullDistributedWeibullTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.WeibullDistributedWeibullTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.WeibullDistributedWeibullTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.DiracComb
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.DiracComb
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.Trigger
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.Trigger
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.ExponentialTime
- Must be overridden by subclasses returning the correct instance.
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.ExponentialTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.AbstractDistribution
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.RandomDiracComb
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.RandomDiracComb
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.RandomDiracComb
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.MoleculeControlledTimeDistribution
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.SAPEREExponentialTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.implementations.timedistributions.SAPEREExponentialTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.SAPEREExponentialTime
- cloneOnNewNode(Node,Time) - function in it.unibo.alchemist.model.interfaces.SAPERETimeDistribution
- CLONING - enum entry in it.unibo.alchemist.boundary.interfaces.FXOutputMonitor.ViewStatus
In this status, click to clone nodes.
- close() - function in tornadofx.ListKeybindsView
- close() - function in tornadofx.EditKeybindView
- close() - function in it.unibo.alchemist.boundary.interactions.AnalogPanHelper
- Closes the helper.
- close() - function in it.unibo.alchemist.boundary.interactions.SelectionHelper
- Closes the selection.
- close() - function in it.unibo.alchemist.boundary.interactions.SelectionHelper.SelectionBox
- Closes this SelectionBox.
- close() - function in it.unibo.alchemist.grid.util.WorkingDirectory
- close() - function in it.unibo.alchemist.grid.config.RemoteGeneralSimulationConfig
- close() - function in it.unibo.alchemist.grid.cluster.Cluster
- Leave the cluster.
- close() - function in it.unibo.alchemist.grid.cluster.ClusterImpl
- Leave the cluster.
- close() - function in java.lang.ClusterImpl
- close(Environment,Time,Long) - function in it.unibo.alchemist.loader.export.Exporter
- Close the export environment.
- close(Environment,Time,Long) - function in it.unibo.alchemist.loader.export.AbstractExporter
- Close the export environment.
- close(Environment,Time,Long) - function in it.unibo.alchemist.loader.export.exporters.CSVExporter
- Close the export environment.
- close(Environment,Time,Long) - function in it.unibo.alchemist.loader.export.exporters.MongoDBExporter
- Close the export environment.
- closeableWhen(Function0) - function in tornadofx.ListKeybindsView
- closeableWhen(Function0) - function in tornadofx.EditKeybindView
- closeModal() - function in tornadofx.ListKeybindsView
- closeModal() - function in tornadofx.EditKeybindView
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AbstractConvexPolygon
- Finds the edge of the polygon closest to the provided segment, i.e.
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AwtMutableConvexPolygon
- Finds the edge of the polygon closest to the provided segment, i.e.
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.ExtendableConvexPolygonInEnvironment
- Finds the edge of the polygon closest to the provided segment, i.e.
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ConvexPolygon
- Finds the edge of the polygon closest to the provided segment, i.e.
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.MutableConvexPolygon
- Finds the edge of the polygon closest to the provided segment, i.e.
- closestEdgeTo(Segment2D) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ExtendableConvexPolygon
- Finds the edge of the polygon closest to the provided segment, i.e.
- ClosestN - class in it.unibo.alchemist.model.implementations.linkingrules
- Non local-consistent rule that connect the closest N nodes together.
- closestPointTo(P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Segment2DImpl
- Finds the point of the segment which is closest to the provided point.
- closestPointTo(P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Segment2D
- Finds the point of the segment which is closest to the provided point.
- CloseToAlreadyDeployed - class in it.unibo.alchemist.loader.deployments
- This Deployment places new nodes in the proximity of those already included in the environment.
- CloseToGPSTrace - class in it.unibo.alchemist.loader.deployments
- This Deployment displaces nodes in the proximity of a GPS trace.
- Cluster - class in it.unibo.alchemist.grid.cluster
- The entity that represent the joined cluster.
- ClusterImpl - class in it.unibo.alchemist.grid.cluster
- An implementation of Cluster uses Apache Ignite.
- coerceAtLeast(double) - function in it.unibo.alchemist.model.interfaces.geometry.Euclidean2DPosition
- coerceAtLeast(double) - function in it.unibo.alchemist.model.interfaces.geometry.AbstractEuclideanPosition
- coerceAtLeast(Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector
- coerceAtLeast(Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector2D
- coerceAtMost(double) - function in it.unibo.alchemist.model.interfaces.geometry.Euclidean2DPosition
- coerceAtMost(double) - function in it.unibo.alchemist.model.interfaces.geometry.AbstractEuclideanPosition
- coerceAtMost(Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector
- coerceAtMost(Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector2D
- coerceIn(double,double) - function in it.unibo.alchemist.model.interfaces.geometry.Euclidean2DPosition
- coerceIn(double,double) - function in it.unibo.alchemist.model.interfaces.geometry.AbstractEuclideanPosition
- coerceIn(Double,Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector
- Performs a coercion at least and at most.
- coerceIn(Double,Double) - function in it.unibo.alchemist.model.interfaces.geometry.Vector2D
- Performs a coercion at least and at most.
- CognitiveAgentArrive - class in it.unibo.alchemist.model.implementations.actions
- Move the agent towards a target position.
- CognitiveAgentAvoidLayer - class in it.unibo.alchemist.model.implementations.actions
- Move the pedestrian towards positions of the environment with a low concentration of the target molecule.
- CognitiveAgentCohesion - class in it.unibo.alchemist.model.implementations.actions
- Move the agent towards the other members of his group.
- CognitiveAgentCombineSteering - class in it.unibo.alchemist.model.implementations.actions
- Combination of multiple steering actions.
- CognitiveAgentExplore - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using Exploring navigation strategy.
- CognitiveAgentFlee - class in it.unibo.alchemist.model.implementations.actions
- Move the agent away from a target position.
- CognitiveAgentFollowLayer - class in it.unibo.alchemist.model.implementations.actions
- Move the pedestrian towards positions of the environment with a high concentration of the target molecule.
- CognitiveAgentFollowRoute - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using RouteFollowing navigation strategy.
- CognitiveAgentFollowScalarField - class in it.unibo.alchemist.model.implementations.actions
- Moves the pedestrian where the given scalar field is higher.
- CognitiveAgentGoalOrientedExplore - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using GoalOrientedExploring navigation strategy.
- CognitiveAgentNavigationAction2D - class in it.unibo.alchemist.model.implementations.actions
- Implementation of a NavigationAction2D.
- CognitiveAgentNavigationAction2D.Companion - class in it.unibo.alchemist.model.implementations.actions.CognitiveAgentNavigationAction2D
- CognitiveAgentObstacleAvoidance - class in it.unibo.alchemist.model.implementations.actions
- Move the agent avoiding potential obstacles in its path.
- CognitiveAgentPursue - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using Pursuing navigation strategy.
- CognitiveAgentReachDestination - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using DestinationReaching navigation strategy.
- CognitiveAgentReachKnownDestination - class in it.unibo.alchemist.model.implementations.actions
- A NavigationAction using KnownDestinationReaching navigation strategy.
- CognitiveAgentSeek - class in it.unibo.alchemist.model.implementations.actions
- Move the pedestrian towards the target position as fast as possible.
- CognitiveAgentSeek2D - class in it.unibo.alchemist.model.implementations.actions
- CognitiveAgentSeek behavior in a bidimensional environment, delegated to CognitiveAgentFollowScalarField (this means the pedestrian tries to overtake others on its path, in general its movements are more sophisticated than CognitiveAgentSeek).
- CognitiveAgentSeparation - class in it.unibo.alchemist.model.implementations.actions
- Move the agent away from the pedestrians near to him.
- CognitiveAgentWander - class in it.unibo.alchemist.model.implementations.actions
- Give the impression of a random walk through the environment targeting an ever changing pseudo-randomly point of a circumference at a given distance and with a given radius from the current pedestrian position.
- CognitiveBehavior - class in it.unibo.alchemist.model.implementations.reactions
- Reaction representing the cognitive behavior of a pedestrian.
- CognitiveCharacteristic - class in it.unibo.alchemist.model.cognitiveagents.impact.cognitive
- A characteristic which depends on the other agents in the environment.
- CognitiveModel - class in it.unibo.alchemist.model.cognitiveagents
- Theoretical model to describe the cognitive processes underlying in an agent.
- CognitiveOrientingPedestrian2D - class in it.unibo.alchemist.model.implementations.nodes
- A cognitive OrientingPedestrian in the Euclidean world.
- CognitiveOrientingPhysicalPedestrian2D - class in it.unibo.alchemist.model.implementations.nodes
- A cognitive OrientingPedestrian2D capable of physical interactions.
- CognitivePedestrian - class in it.unibo.alchemist.model.interfaces
- A heterogeneous pedestrian with cognitive capabilities.
- CognitivePedestrian2D - class in it.unibo.alchemist.model.implementations.nodes
- Implementation of a cognitive pedestrian in the Euclidean world.
- CognitivePedestrian2D - class in it.unibo.alchemist.model.interfaces
- A pedestrian with cognitive characteristics that lives in a bidimensional environment.
- CognitivePhysicalPedestrian2D - class in it.unibo.alchemist.model.implementations.nodes
- A cognitive pedestrian capable of physical interactions, modeled as a PhysicalPedestrian2D.
- CognitivePhysicalPedestrian2D.Companion - class in it.unibo.alchemist.model.implementations.nodes.CognitivePhysicalPedestrian2D
- CognitiveSpec - class in it.unibo.alchemist.model.cognitiveagents.impact.cognitive
- A specification of the parameters regarding cognitive characteristics to load from a config file.
- coincidesWith(Line2D) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.SlopeInterceptLine2D
- Checks if two lines coincide.
- coincidesWith(ClosedRange,ClosedRange) - function in it.unibo.alchemist.RangeExtensionKt
- Checks whether two ranges coincide.
- ColorChannel - class in it.unibo.alchemist.boundary.gui
- ColorSerializationAdapter - class in it.unibo.alchemist.boundary.gui.effects.json
- This class should be registered in a com.google.gson.GsonBuilder to serialize and deserialize JavaFX Color objects.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.AbstractCognitiveCharacteristic
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.BeliefDanger
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.BodyCognitiveCharacteristic
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.DesireEvacuate
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.DesireWalkRandomly
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.Fear
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.IntentionEvacuate
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.IntentionWalkRandomly
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- combinationFunction() - function in it.unibo.alchemist.model.cognitiveagents.impact.cognitive.MentalCognitiveCharacteristic
- Algorithm which decides how the parameters involved in the evolution of this characteristic must be combined together.
- CombinedLinkingRule - class in it.unibo.alchemist.model.implementations.linkingrules
- A meta-rule that combines multiple subRules.
- CommandQueueBuilder - class in it.unibo.alchemist.boundary.gui
- Builder class that eases the building of a queue of DrawCommands.
- commit() - function in it.unibo.alchemist.model.ProtelisIncarnation.ProtectedExecutionEnvironment
- commit() - function in it.unibo.alchemist.model.implementations.nodes.ProtelisNode
- commit(ObservableValue,Function0) - function in tornadofx.KeybindModel
- commit(Boolean,Boolean,ObservableValue,Function0) - function in tornadofx.KeybindModel
- commit() - function in org.protelis.vm.impl.AlchemistExecutionContext
- commitEdit(T) - function in javafx.scene.control.EffectGroupCell
- commitEdit(T) - function in javafx.scene.control.EffectCell
- commitEdit(T) - function in javafx.scene.control.AbstractEffectCell
- CommonFilters - class in it.unibo.alchemist.loader.export.filters
- Utilities with the most common filtering operations on values.
- Comparator() - function in it.unibo.alchemist.expressions.parser.Exp
- COMPARATOR - enum entry in it.unibo.alchemist.expressions.implementations.Type
- ComparatorTreeNode - class in it.unibo.alchemist.expressions.implementations
- compareTo(Node) - function in kotlin.AbstractCognitivePedestrian
- compareTo(Node) - function in kotlin.AbstractHeterogeneousPedestrian
- compareTo(Node) - function in kotlin.AbstractHomogeneousPedestrian
- compareTo(Node) - function in kotlin.AbstractOrientingPedestrian
- compareTo(Node) - function in kotlin.CognitiveOrientingPedestrian2D
- compareTo(Node) - function in kotlin.CognitivePedestrian2D
- compareTo(Node) - function in kotlin.HeterogeneousPedestrian2D
- compareTo(Node) - function in kotlin.HomogeneousOrientingPedestrian2D
- compareTo(Node) - function in kotlin.HomogeneousPedestrian2D
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.CircleNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.AbstractNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.IntNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.CircularDeformableCellImpl
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.EnvironmentNodeImpl
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.IntegerNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.CellNodeImpl
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.DoubleNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.ProtelisNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.LsaNode
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.CognitiveOrientingPhysicalPedestrian2D
- compareTo(Node) - function in kotlin.CognitivePhysicalPedestrian2D
- compareTo(Node) - function in it.unibo.alchemist.model.implementations.nodes.HomogeneousOrientingPhysicalPedestrian2D
- compareTo(Node) - function in kotlin.HomogeneousPhysicalPedestrian2D
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteering
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.CognitiveBehavior
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteering
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.PrioritySteering
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.SteeringBehavior
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.Event
- compareTo(T) - function in java.lang.Event
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.AbstractReaction
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.ChemicalReaction
- compareTo(T) - function in java.lang.ChemicalReaction
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.BiochemicalReaction
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.SAPEREReaction
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.SAPEREGradient
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.BlendedSteeringWithPhysics
- compareTo(Reaction) - function in it.unibo.alchemist.model.implementations.reactions.NavigationPrioritisedSteeringWithPhysics
- compareTo(Node) - function in kotlin.CognitivePedestrian
- compareTo(Node) - function in kotlin.CognitivePedestrian2D
- compareTo(Node) - function in kotlin.HeterogeneousPedestrian
- compareTo(Node) - function in kotlin.OrientingPedestrian
- compareTo(Node) - function in kotlin.Pedestrian
- compareTo(Node) - function in kotlin.Pedestrian2D
- compareTo(T) - function in java.lang.EnvironmentNode
- compareTo(T) - function in java.lang.CellNode
- compareTo(T) - function in java.lang.CellWithCircularArea
- compareTo(T) - function in java.lang.CircularDeformableCell
- compareTo(T) - function in java.lang.ILsaNode
- compareTo(T) - function in java.lang.ILsaMolecule
- compareTo(T) - function in java.lang.Node
- compareTo(T) - function in java.lang.Time
- compareTo(T) - function in java.lang.Reaction
- compareTo(T) - function in java.lang.GPSPoint
- compareTo(Node) - function in kotlin.PhysicalNode
- compareTo(Node) - function in kotlin.PhysicalPedestrian
- compareTo(Node) - function in kotlin.PhysicalPedestrian2D
- compareTo(GPSPoint) - function in it.unibo.alchemist.model.implementations.positions.GPSPointImpl
- compareTo(Node) - function in kotlin.NodeWithShape
- compareTo(Time) - function in it.unibo.alchemist.model.implementations.times.DoubleTime
- compareTo(ILsaMolecule) - function in it.unibo.alchemist.model.implementations.molecules.LsaMolecule
- completeWhen(Function0) - function in tornadofx.ListKeybindsView
- completeWhen(Function0) - function in tornadofx.EditKeybindView
- Complexity - class in it.unibo.alchemist.grid.simulation
- An entity which represents a simulation's complexity.
- ComplexityImpl - class in it.unibo.alchemist.grid.simulation
- Complexity implementation.
- Compliance - class in it.unibo.alchemist.model.cognitiveagents.impact.individual
- The level of compliance of an agent considering its gender and its age.
- Compliance.Companion - class in it.unibo.alchemist.model.cognitiveagents.impact.individual.Compliance
- ComplianceSpec - class in it.unibo.alchemist.model.cognitiveagents.impact.individual
- A specification of the parameters regarding compliance to load from a config file.
- ComponentViewPort - class in it.unibo.alchemist.boundary.wormhole.implementation.adapter
- Adapter class that adapts the AWT Component class to a generic ViewPort for usage in it.unibo.alchemist.boundary.wormhole.implementation.AbstractWormhole2D.
- ComputationalRoundComplete - class in it.unibo.alchemist.model.implementations.conditions
- computeActualInsertionPosition(Node,Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.environments.Continuous2DEnvironment
- computeActualInsertionPosition(Node,Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.environments.ImageEnvironmentWithGraph
- computeAreaInScreen() - function in javafx.scene.FXStepMonitor
- computeAreaInScreen() - function in javafx.scene.PlayPauseMonitor
- computeAreaInScreen() - function in javafx.scene.FXTimeMonitor
- computeAreaInScreen() - function in javafx.scene.NumericLabelMonitor
- computeAreaInScreen() - function in javafx.scene.EffectGroupCell
- computeAreaInScreen() - function in javafx.scene.EffectCell
- computeAreaInScreen() - function in javafx.scene.AbstractEffectCell
- computeAreaInScreen() - function in javafx.scene.CustomLeafletMapView
- computeAreaInScreen() - function in javafx.scene.AbstractFXDisplay
- computeAreaInScreen() - function in javafx.scene.FX2DDisplay
- computeAreaInScreen() - function in javafx.scene.LeafletMapDisplay
- computeChildMaxAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMaxAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMaxAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.FX2DDisplay
- computeChildMaxAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildMaxAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMaxAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMaxAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeChildMaxAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildMinAreaHeight(Node,Insets) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMinAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMinAreaHeight(Node,Insets) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMinAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMinAreaHeight(Node,Insets) - function in javafx.scene.layout.FX2DDisplay
- computeChildMinAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.FX2DDisplay
- computeChildMinAreaHeight(Node,Insets) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildMinAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildMinAreaWidth(Node,Insets) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMinAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildMinAreaWidth(Node,Insets) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMinAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildMinAreaWidth(Node,Insets) - function in javafx.scene.layout.FX2DDisplay
- computeChildMinAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeChildMinAreaWidth(Node,Insets) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildMinAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildPrefAreaHeight(Node,Insets) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildPrefAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildPrefAreaHeight(Node,Insets) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildPrefAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildPrefAreaHeight(Node,Insets) - function in javafx.scene.layout.FX2DDisplay
- computeChildPrefAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.FX2DDisplay
- computeChildPrefAreaHeight(Node,Insets) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildPrefAreaHeight(Node,Double,Insets,Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildPrefAreaWidth(Node,Insets) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildPrefAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeChildPrefAreaWidth(Node,Insets) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildPrefAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeChildPrefAreaWidth(Node,Insets) - function in javafx.scene.layout.FX2DDisplay
- computeChildPrefAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeChildPrefAreaWidth(Node,Insets) - function in javafx.scene.layout.LeafletMapDisplay
- computeChildPrefAreaWidth(Node,Double,Insets,Double,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeComplexity() - function in it.unibo.alchemist.grid.simulation.SimulationSetImpl
- computeComplexity() - function in it.unibo.alchemist.grid.simulation.SimulationSet
- computeDerivedDepthTest() - function in javafx.scene.CustomLeafletMapView
- computeDerivedDepthTest() - function in javafx.scene.AbstractFXDisplay
- computeDerivedDepthTest() - function in javafx.scene.FX2DDisplay
- computeDerivedDepthTest() - function in javafx.scene.LeafletMapDisplay
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.AbstractEffect
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.EffectStack
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.EffectFX
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawDot
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawDot
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawColoredDot
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawColoredDot
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.EffectGroup
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawLinks
- Computes a queue of commands to Draw something.
- computeDrawCommands(Environment) - function in it.unibo.alchemist.boundary.gui.effects.DrawLinks
- Computes a queue of commands to Draw something.
- computeMaxHeight(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxHeight(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxHeight(Double) - function in javafx.scene.layout.FX2DDisplay
- computeMaxHeight(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaHeight(List,Callback,VPos,Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaHeight(List,Callback,VPos,Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaHeight(List,Callback,VPos,Double) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaHeight(List,Callback,VPos,Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaWidth(List,Callback) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxMinAreaWidth(List,Callback) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxMinAreaWidth(List,Callback) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeMaxMinAreaWidth(List,Callback) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxMinAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaHeight(List,Callback,Double,VPos) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaHeight(List,Callback,Double,VPos) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaHeight(List,Callback,Double,VPos) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaHeight(List,Callback,VPos) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaHeight(List,Callback,Double,VPos) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaHeight(List,Callback,DoubleArray,VPos) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaWidth(List,Callback) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxPrefAreaWidth(List,Callback) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxPrefAreaWidth(List,Callback) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.FX2DDisplay
- computeMaxPrefAreaWidth(List,Callback) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaWidth(List,Callback,Double,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxPrefAreaWidth(List,Callback,DoubleArray,Boolean) - function in javafx.scene.layout.LeafletMapDisplay
- computeMaxWidth(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeMaxWidth(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeMaxWidth(Double) - function in javafx.scene.layout.FX2DDisplay
- computeMaxWidth(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeMinHeight(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeMinHeight(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeMinHeight(Double) - function in javafx.scene.layout.FX2DDisplay
- computeMinHeight(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeMinWidth(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computeMinWidth(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computeMinWidth(Double) - function in javafx.scene.layout.FX2DDisplay
- computeMinWidth(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.interfaces.LinkingRule
- Produces a new neighborhood for specified node considering its position.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConnectionBeam
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.interfaces.AbstractLocallyConsistentLinkingRule
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.NoLinks
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.AdaptiveRange
- Subclasses may change the way a neighborhood is computed.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.interfaces.AdaptiveRange
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConditionalClosestN
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.interfaces.ConditionalClosestN
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ClosestN
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ObstaclesBreakConnection
- Subclasses may change the way a neighborhood is computed.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.interfaces.ObstaclesBreakConnection
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConnectWithinDistance
- Subclasses may change the way a neighborhood is computed.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConnectToAccessPoint
- Subclasses may change the way a neighborhood is computed.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConnectViaAccessPoint
- Subclasses may change the way a neighborhood is computed.
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.FullyConnected
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.SelectiveAdaptiveRange
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.CombinedLinkingRule
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.OffsetGraphStreamLinkingRule
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.LinkNodesWithinRoutingRange
- computeNeighborhood(Node,Environment) - function in it.unibo.alchemist.model.implementations.linkingrules.ConnectIfInLineOfSigthOnMap
- computeNextPosition(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.DistanceWeighted
- actions are partitioned in group steering actions and non-group steering actions.
- computeNextPosition(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.Filtered
- Delegated to steerStrategy after filtering the given actions.
- computeNextPosition(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.Nearest
- Delegated to steerStrategy after filtering the given actions.
- computeNextPosition(TypeAliased(typeAlias=GenericTypeConstructor(dri=it.unibo.alchemist.model.implementations.actions.steeringstrategies/SteeringActions///PointingToDeclaration/, projections=[], presentableName=null, extra=PropertyContainer(map={})), inner=GenericTypeConstructor(dri=java.util/List///PointingToDeclaration/, projections=[], presentableName=null, extra=PropertyContainer(map={})))) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.SinglePrevalent
- actions are partitioned in group steering actions and non-group steering actions.
- computeNextPosition(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.TypeBased
- actions are partitioned in group steering actions and non-group steering actions.
- computeNextPosition(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.Weighted
- actions are partitioned in group steering actions and non-group steering actions.
- computeNextPosition(List) - function in it.unibo.alchemist.model.interfaces.SteeringStrategy
- Computes the next position starting from the steering actions the pedestrian obey to, in relative coordinates with respect to its current position.
- computeNextPosition(P) - function in it.unibo.alchemist.model.interfaces.PhysicalSteeringStrategy
- Computes the next relative position reached by the node, given the overall intentional force.
- computeNextPosition(List) - function in it.unibo.alchemist.model.interfaces.PhysicalSteeringStrategy
- Computes the next relative position reached by the node, taking into account both the intentional and the physical forces acting on node (intentional forces = actions).
- computeNextPosition(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.actions.physicalstrategies.Sum
- Computes the next relative position reached by the node, given the overall intentional force.
- computeNextPosition(List) - function in it.unibo.alchemist.model.interfaces.Sum
- Computes the next relative position reached by the node, taking into account both the intentional and the physical forces acting on node (intentional forces = actions).
- computePrefHeight(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computePrefHeight(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computePrefHeight(Double) - function in javafx.scene.layout.FX2DDisplay
- computePrefHeight(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computePrefWidth(Double) - function in javafx.scene.layout.CustomLeafletMapView
- computePrefWidth(Double) - function in javafx.scene.layout.AbstractFXDisplay
- computePrefWidth(Double) - function in javafx.scene.layout.FX2DDisplay
- computePrefWidth(Double) - function in javafx.scene.layout.LeafletMapDisplay
- computeRoute(Node,Node) - function in it.unibo.alchemist.model.interfaces.MapEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(Node,GeoPosition) - function in it.unibo.alchemist.model.interfaces.MapEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(Node,GeoPosition,O) - function in it.unibo.alchemist.model.interfaces.MapEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(GeoPosition,GeoPosition) - function in it.unibo.alchemist.model.interfaces.MapEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(GeoPosition,GeoPosition,O) - function in it.unibo.alchemist.model.interfaces.MapEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(GeoPosition,GeoPosition) - function in it.unibo.alchemist.model.implementations.environments.OSMEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(GeoPosition,GeoPosition,GraphHopperOptions) - function in it.unibo.alchemist.model.implementations.environments.OSMEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(Node,GeoPosition) - function in it.unibo.alchemist.model.implementations.environments.OSMEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(Node,GeoPosition,GraphHopperOptions) - function in it.unibo.alchemist.model.implementations.environments.OSMEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(Node,Node) - function in it.unibo.alchemist.model.implementations.environments.OSMEnvironment
- This method relies on the map data, and computes a route towards some absolute coordinate solving a TSP problem.
- computeRoute(P,P) - function in it.unibo.alchemist.model.interfaces.movestrategies.RoutingStrategy
- Computes a route between two positions.
- computeRoute(GeoPosition,GeoPosition) - function in it.unibo.alchemist.model.implementations.movestrategies.routing.OnStreets
- computeRoute(P,P) - function in it.unibo.alchemist.model.implementations.movestrategies.routing.IgnoreStreets
- computeTarget(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.DistanceWeighted
- If there's no SteeringActionWithTarget among the provided actions, a zero vector is returned.
- computeTarget(List) - function in it.unibo.alchemist.model.interfaces.Filtered
- Computes the target to reach starting from the steering actions the pedestrian obey to, in absolute coordinates.
- computeTarget(List) - function in it.unibo.alchemist.model.interfaces.Nearest
- Computes the target to reach starting from the steering actions the pedestrian obey to, in absolute coordinates.
- computeTarget(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.SinglePrevalent
- If there's no SteeringActionWithTarget among the provided actions, a zero vector is returned.
- computeTarget(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.TypeBased
- If there's no SteeringActionWithTarget among the provided actions, a zero vector is returned.
- computeTarget(List) - function in it.unibo.alchemist.model.implementations.actions.steeringstrategies.Weighted
- If there's no SteeringActionWithTarget among the provided actions, a zero vector is returned.
- computeTarget(List) - function in it.unibo.alchemist.model.interfaces.SteeringStrategy
- Computes the target to reach starting from the steering actions the pedestrian obey to, in absolute coordinates.
- computeTarget(List) - function in it.unibo.alchemist.model.interfaces.PhysicalSteeringStrategy
- Delegated to nonPhysicalStrategy.
- computeTarget(List) - function in it.unibo.alchemist.model.interfaces.Sum
- Delegated to nonPhysicalStrategy.
- concat(Object) - function in javafx.beans.binding.SerializableStringProperty
- Concentration - class in it.unibo.alchemist.model.interfaces
- This interface is a wrapper for concentrations.
- ConcentrationChanged - class in it.unibo.alchemist.model.implementations.conditions
- A condition that holds true only if the tracked Molecule changed its it.unibo.alchemist.model.interfaces.Concentration.
- ConcreteIsolinesFactory - class in it.unibo.alchemist.boundary.gui.isolines
- Condition - class in it.unibo.alchemist.model.interfaces
- ConditionalClosestN - class in it.unibo.alchemist.model.implementations.linkingrules
- A ClosestN rule that also checks that a Molecule has a specific concentration before allowing the connection.
- ConnectIfInLineOfSigthOnMap - class in it.unibo.alchemist.model.implementations.linkingrules
- This rule connects nodes that are within maxRange distance, but only if there are not too many obstacles separating their line of sight.
- ConnectionBeam - class in it.unibo.alchemist.model.implementations.linkingrules
- Connects two nodes if, throwing a beam from one to the other, there exists at least one path entirely inside the beam that connects the two nodes.
- ConnectToAccessPoint - class in it.unibo.alchemist.model.implementations.linkingrules
- connectToDB(String) - function in it.unibo.alchemist.loader.export.exporters.MongoService
- Connects to a specific database.
- ConnectViaAccessPoint - class in it.unibo.alchemist.model.implementations.linkingrules
- ConnectWithinDistance - class in it.unibo.alchemist.model.implementations.linkingrules
- LinkingRule which connects nodes whose euclidean distance is shorter than a given radius.
- connectWorkspaceActions(TabPane) - function in tornadofx.ListKeybindsView
- connectWorkspaceActions(StackPane) - function in tornadofx.ListKeybindsView
- connectWorkspaceActions(TabPane) - function in tornadofx.EditKeybindView
- connectWorkspaceActions(StackPane) - function in tornadofx.EditKeybindView
- CONREC - enum entry in it.unibo.alchemist.boundary.gui.isolines.IsolinesFactory.IsolineFinders
For each class extending IsolinesFinder there should be an element in this enum.
- ConrecIsolinesFinder - class in it.unibo.alchemist.boundary.gui.isolines
- Conrec algorithm adapter to IsolinesFinder interface.
- CONST - enum entry in it.unibo.alchemist.expressions.implementations.Type
- Constant - class in it.unibo.alchemist.loader.variables
- A constant value, expressed as a variable to promote code reuse in Alchemist specifications.
- ConstantDistanceRandomWalk - class in it.unibo.alchemist.model.implementations.actions
- Moves for distance toward a uniformly random chosen direction at a constant speed, then changes direction and walks another distance, and so on.
- ConstantSpace - class in it.unibo.alchemist.model.implementations.movestrategies.speed
- This strategy makes the node move every time of a fixed amount of space.
- ConstantSpeed - class in it.unibo.alchemist.model.implementations.movestrategies.speed
- This strategy makes the node move at an average constant speed, which is influenced by the it.unibo.alchemist.model.interfaces.TimeDistribution of the Reaction hosting this it.unibo.alchemist.model.interfaces.Action.
- ConstTreeNode - class in it.unibo.alchemist.expressions.implementations
- contains(Pedestrian) - function in it.unibo.alchemist.model.interfaces.Alone
- Whether a node belongs to this group or not.
- contains(Pedestrian) - function in it.unibo.alchemist.model.interfaces.Family
- Whether a node belongs to this group or not.
- contains(Pedestrian) - function in it.unibo.alchemist.model.interfaces.Friends
- Whether a node belongs to this group or not.
- contains(N) - function in it.unibo.alchemist.model.interfaces.GenericGroup
- Whether a node belongs to this group or not.
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.AbstractCognitivePedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.AbstractHeterogeneousPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.AbstractHomogeneousPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.AbstractOrientingPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CognitiveOrientingPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CognitivePedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.HeterogeneousPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.HomogeneousOrientingPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.HomogeneousPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.CircleNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.AbstractNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.IntNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.CircularDeformableCellImpl
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.CircularDeformableCellImpl
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.EnvironmentNodeImpl
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.IntegerNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.CellNodeImpl
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.DoubleNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.ProtelisNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.LsaNode
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.CognitiveOrientingPhysicalPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CognitivePhysicalPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.implementations.nodes.HomogeneousOrientingPhysicalPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.HomogeneousPhysicalPedestrian2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CognitivePedestrian
- contains(N) - function in it.unibo.alchemist.model.interfaces.Group
- Whether a node belongs to this group or not.
- contains(N) - function in it.unibo.alchemist.model.interfaces.GroupWithLeader
- Whether a node belongs to this group or not.
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.HeterogeneousPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.OrientingPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.Pedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.Pedestrian2D
- contains(Pedestrian) - function in it.unibo.alchemist.model.interfaces.PedestrianGroup
- Whether a node belongs to this group or not.
- contains(Pedestrian) - function in it.unibo.alchemist.model.interfaces.PedestrianGroup2D
- Whether a node belongs to this group or not.
- contains(double,double) - function in java.awt.Obstacle2D
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.EnvironmentNode
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CellNode
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CellWithCircularArea
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.CircularDeformableCell
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.ILsaNode
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.Node
- Tests whether a node contains a Molecule.
- contains(Node) - function in it.unibo.alchemist.model.interfaces.Neighborhood
- Verifies if a node is contained inside a neighborhood.
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.PhysicalNode
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.PhysicalPedestrian
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.PhysicalPedestrian2D
- contains(double,double) - function in it.unibo.alchemist.model.implementations.obstacles.RectObstacle2D
- contains(S) - function in it.unibo.alchemist.model.implementations.geometry.AdimensionalShape
- contains(Shape) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AbstractConvexPolygon
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.AbstractConvexPolygon
- Checks if the polygon contains a vector (= a point).
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AwtMutableConvexPolygon
- Delegated to AwtEuclidean2DShape (adopts the definition of insideness used by java.awt.Shapes).
- contains(Shape) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AwtMutableConvexPolygon
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.Ellipse
- contains(P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Segment2DImpl
- Checks if the segment contains a point.
- contains(P) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.SlopeInterceptLine2D
- Checks if the point belongs to this line.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.ExtendableConvexPolygonInEnvironment
- Delegated to AwtEuclidean2DShape (adopts the definition of insideness used by java.awt.Shapes).
- contains(Shape) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.ExtendableConvexPolygonInEnvironment
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(V) - function in it.unibo.alchemist.model.interfaces.geometry.ConvexGeometricShape
- contains(S) - function in it.unibo.alchemist.model.interfaces.geometry.GeometricShape
- Check if the shape contains a vector.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ConvexPolygon
- Checks if the polygon contains a vector (= a point).
- contains(Shape) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ConvexPolygon
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Line2D
- Checks if the point belongs to this line.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.MutableConvexPolygon
- Checks if the polygon contains a vector (= a point).
- contains(Shape) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.MutableConvexPolygon
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Segment2D
- Checks if the segment contains a point.
- contains(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ExtendableConvexPolygon
- Checks if the polygon contains a vector (= a point).
- contains(Shape) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ExtendableConvexPolygon
- Checks if the polygon contains a polygonal java.awt.Shape (i.e.
- contains(Molecule) - function in it.unibo.alchemist.model.interfaces.NodeWithShape
- contains(double,double) - function in javafx.scene.FXStepMonitor
- contains(double,double) - function in javafx.scene.PlayPauseMonitor
- contains(double,double) - function in javafx.scene.FXTimeMonitor
- contains(double,double) - function in javafx.scene.NumericLabelMonitor
- contains(Object) - function in it.unibo.alchemist.boundary.gui.effects.EffectStack
- contains(Object) - function in java.util.EffectGroup
- contains(int,int) - function in java.awt.EffectBuilder
- contains(int,int) - function in javax.swing.JEffectsTab
- contains(int,int) - function in javax.swing.JEffectRepresentation
- contains(int,int) - function in java.awt.AlchemistSwingUI
- contains(int,int) - function in javax.swing.StatusBar
- contains(int,int) - function in javax.swing.ReactivityPanel
- contains(int,int) - function in javax.swing.FileMenu
- contains(int,int) - function in javax.swing.SimControlPanel
- contains(int,int) - function in javax.swing.SimControlButton
- contains(int,int) - function in javax.swing.AbstractMenu
- contains(int,int) - function in javax.swing.NumericTextField
- contains(double,double) - function in javafx.scene.EffectGroupCell
- contains(double,double) - function in javafx.scene.EffectCell
- contains(double,double) - function in javafx.scene.AbstractEffectCell
- contains(ClosedRange,ClosedRange) - function in it.unibo.alchemist.RangeExtensionKt
- Checks whether the range contains the other one.
- contains(Double,Double) - function in javafx.scene.CustomLeafletMapView
- contains(Point2D) - function in javafx.scene.CustomLeafletMapView
- contains(Rectangle,Point) - function in it.unibo.alchemist.boundary.RectangleExtensionsKt
- Returns whether the Rectangle contains point.
- contains(Direction2D) - function in it.unibo.alchemist.boundary.interactions.Direction2D
- Returns whether this direction contains other.
- contains(Double,Double) - function in javafx.scene.AbstractFXDisplay
- contains(Point2D) - function in javafx.scene.AbstractFXDisplay
- contains(Double,Double) - function in javafx.scene.FX2DDisplay
- contains(Point2D) - function in javafx.scene.FX2DDisplay
- contains(Double,Double) - function in javafx.scene.LeafletMapDisplay
- contains(Point2D) - function in javafx.scene.LeafletMapDisplay
- contains(int,int) - function in javax.swing.TimeStepMonitor
- contains(int,int) - function in javax.swing.NodeTracker
- contains(int,int) - function in javax.swing.MapDisplay
- contains(int,int) - function in javax.swing.Generic2DDisplay
- contains(int,int) - function in javax.swing.MoleculeInjectorGUI
- contains(Node) - function in it.unibo.alchemist.model.implementations.neighborhoods.SimpleNeighborhood
- contains(P) - function in it.unibo.alchemist.loader.shapes.Rectangle
- contains(P) - function in it.unibo.alchemist.loader.shapes.Rectangle
- contains(P) - function in it.unibo.alchemist.loader.shapes.Abstract2DShape
- contains(P) - function in it.unibo.alchemist.loader.shapes.Circle
- contains(P) - function in it.unibo.alchemist.loader.shapes.Circle
- contains(P) - function in it.unibo.alchemist.loader.shapes.Shape
- contains(int,int) - function in javax.swing.JOutputMonitorRepresentation
- contains(int,int) - function in javax.swing.JTape
- contains(int,int) - function in javax.swing.JTapeTab
- contains(int,int) - function in javax.swing.JTapeSection
- contains(int,int) - function in javax.swing.JTapeMainFeature
- contains(int,int) - function in javax.swing.JTapeFeatureStack
- contains(int,int) - function in javax.swing.JTapeGroup
- containsAll(Collection) - function in it.unibo.alchemist.boundary.gui.effects.EffectStack
- containsAll(Collection) - function in java.util.EffectGroup
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AbstractConvexPolygon
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AwtMutableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.ExtendableConvexPolygonInEnvironment
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ConvexPolygon
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.MutableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryExcluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ExtendableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon, boundary excluded.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AbstractConvexPolygon
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.AwtMutableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.ExtendableConvexPolygonInEnvironment
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ConvexPolygon
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.MutableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsBoundaryIncluded(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.ExtendableConvexPolygon
- Checks if a vector (= a point) is contained in the polygon or lies on its boundary.
- containsEdge(N,N) - function in org.jgrapht.BaseNavigationGraph
- containsEdge(E) - function in org.jgrapht.BaseNavigationGraph
- containsEdge(N,N) - function in org.jgrapht.DirectedNavigationGraph
- containsEdge(E) - function in org.jgrapht.DirectedNavigationGraph
- containsEdge(N,N) - function in org.jgrapht.UndirectedNavigationGraph
- containsEdge(E) - function in org.jgrapht.UndirectedNavigationGraph
- containsEdge(N,N) - function in org.jgrapht.NavigationGraph
- containsEdge(E) - function in org.jgrapht.NavigationGraph
- containsJunction(Junction) - function in it.unibo.alchemist.model.implementations.nodes.CircularDeformableCellImpl
- Return true if a junction is present in the current node, false otherwise.
- containsJunction(Junction) - function in it.unibo.alchemist.model.interfaces.CircularDeformableCellImpl
- Return true if a junction is present in the current node, false otherwise.
- containsJunction(Junction) - function in it.unibo.alchemist.model.implementations.nodes.CellNodeImpl
- Return true if a junction is present in the current node, false otherwise.
- containsJunction(Junction) - function in it.unibo.alchemist.model.interfaces.CellNode
- Return true if a junction is present in the current node, false otherwise.
- containsJunction(Junction) - function in it.unibo.alchemist.model.interfaces.CellWithCircularArea
- Return true if a junction is present in the current node, false otherwise.
- containsJunction(Junction) - function in it.unibo.alchemist.model.interfaces.CircularDeformableCell
- Return true if a junction is present in the current node, false otherwise.
- ContainsMolecule - class in it.unibo.alchemist.model.implementations.conditions
- The condition is valid if the node contains the molecule.
- containsVertex(N) - function in org.jgrapht.BaseNavigationGraph
- containsVertex(N) - function in org.jgrapht.DirectedNavigationGraph
- containsVertex(N) - function in org.jgrapht.UndirectedNavigationGraph
- containsVertex(N) - function in org.jgrapht.NavigationGraph
- contentDisplayProperty() - function in javafx.scene.control.FXStepMonitor
- contentDisplayProperty() - function in javafx.scene.control.PlayPauseMonitor
- contentDisplayProperty() - function in javafx.scene.control.FXTimeMonitor
- contentDisplayProperty() - function in javafx.scene.control.NumericLabelMonitor
- contentDisplayProperty() - function in javafx.scene.control.EffectGroupCell
- contentDisplayProperty() - function in javafx.scene.control.EffectCell
- contentDisplayProperty() - function in javafx.scene.control.AbstractEffectCell
- Context - class in it.unibo.alchemist.model.interfaces
- This enum describes the possible contexts for a given Action or Condition.
- contextMenuProperty() - function in javafx.scene.control.FXStepMonitor
- contextMenuProperty() - function in javafx.scene.control.PlayPauseMonitor
- contextMenuProperty() - function in javafx.scene.control.FXTimeMonitor
- contextMenuProperty() - function in javafx.scene.control.NumericLabelMonitor
- contextMenuProperty() - function in javafx.scene.control.EffectGroupCell
- contextMenuProperty() - function in javafx.scene.control.EffectCell
- contextMenuProperty() - function in javafx.scene.control.AbstractEffectCell
- Continuous2DEnvironment - class in it.unibo.alchemist.model.implementations.environments
- Implementation of Physics2DEnvironment.
- Continuous2DEnvironment.Companion - class in it.unibo.alchemist.model.implementations.environments.Continuous2DEnvironment
- Continuous2DObstacles - class in it.unibo.alchemist.model.implementations.environments
- ControlTypePopoverController - class in it.unibo.alchemist.boundary.gui.controller
- This class models a JavaFX controller for ControlTypePopoverLayout.fxml.
- ConvexGeometricShape - class in it.unibo.alchemist.model.interfaces.geometry
- A convex GeometricShape.
- ConvexPolygon - class in it.unibo.alchemist.model.interfaces.geometry.euclidean2d
- A simple polygon (i.e.
- copy() - function in javax.swing.text.NumericTextField
- copy() - function in it.unibo.alchemist.loader.export.statistic.CountDistinct
- copyWith(P,P) - function in it.unibo.alchemist.model.implementations.geometry.euclidean2d.Segment2DImpl
- Creates a copy of this Segment2D using the specified first and second points.
- copyWith(P,P) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Segment2D
- Creates a copy of this Segment2D using the specified first and second points.
- Cost() - function in it.unibo.alchemist.expressions.parser.Exp
- countComponents() - function in java.awt.EffectBuilder
- countComponents() - function in java.awt.JEffectsTab
- countComponents() - function in java.awt.JEffectRepresentation
- countComponents() - function in java.awt.AlchemistSwingUI
- countComponents() - function in java.awt.StatusBar
- countComponents() - function in java.awt.ReactivityPanel
- countComponents() - function in java.awt.FileMenu
- countComponents() - function in java.awt.SimControlPanel
- countComponents() - function in java.awt.SimControlButton
- countComponents() - function in java.awt.AbstractMenu
- countComponents() - function in java.awt.NumericTextField
- countComponents() - function in java.awt.TimeStepMonitor
- countComponents() - function in java.awt.NodeTracker
- countComponents() - function in java.awt.MapDisplay
- countComponents() - function in java.awt.Generic2DDisplay
- countComponents() - function in java.awt.MoleculeInjectorGUI
- countComponents() - function in java.awt.JOutputMonitorRepresentation
- countComponents() - function in java.awt.JTape
- countComponents() - function in java.awt.JTapeTab
- countComponents() - function in java.awt.JTapeSection
- countComponents() - function in java.awt.JTapeMainFeature
- countComponents() - function in java.awt.JTapeFeatureStack
- countComponents() - function in java.awt.JTapeGroup
- CountDistinct - class in it.unibo.alchemist.loader.export.statistic
- Counts the number of distinct entries.
- creatableWhen(Function0) - function in tornadofx.ListKeybindsView
- creatableWhen(Function0) - function in tornadofx.EditKeybindView
- create(List) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.Intersection2D.Companion
- createAction(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createAction(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createAction(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createAction(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- createBufferStrategy(int) - function in java.awt.EffectBuilder
- createBufferStrategy(int) - function in java.awt.AlchemistSwingUI
- createButton() - function in it.unibo.alchemist.boundary.gui.SimControlCommand
- createCollection(String) - function in it.unibo.alchemist.loader.export.exporters.MongoService
- Creates a collection inside the Mongo database.
- createConcentration(String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createConcentration(String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createConcentration(String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createConcentration(String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- Creates a new concentration object of a specific concrete type.
- createCondition(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createCondition(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createCondition(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createCondition(RandomGenerator,Environment,Node,TimeDistribution,Reaction,String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- createControlPanel(Simulation) - function in it.unibo.alchemist.boundary.gui.SimControlPanel
- createDependencies(Reaction) - function in it.unibo.alchemist.core.implementations.JGraphTDependencyGraph
- createDependencies(Reaction) - function in it.unibo.alchemist.core.interfaces.DependencyGraph
- This method creates the dependencies when a new reaction is added to the environment.
- createDrawRectangleCommand(Canvas,Rectangle,Paint) - function in it.unibo.alchemist.boundary.CanvasExtensionsKt
- Returns a command for drawing the given rectangle on the caller canvas.
- createEmptyEnvironment(OutputMonitor) - function in it.unibo.alchemist.testsupport.AlchemistTesting
- Builds an empty environment, building a simulation Engine, and binding them.
- createImage(ImageProducer) - function in java.awt.EffectBuilder
- createImage(ImageProducer) - function in java.awt.JEffectsTab
- createImage(ImageProducer) - function in java.awt.JEffectRepresentation
- createImage(ImageProducer) - function in java.awt.AlchemistSwingUI
- createImage(ImageProducer) - function in java.awt.StatusBar
- createImage(ImageProducer) - function in java.awt.ReactivityPanel
- createImage(ImageProducer) - function in java.awt.FileMenu
- createImage(ImageProducer) - function in java.awt.SimControlPanel
- createImage(ImageProducer) - function in java.awt.SimControlButton
- createImage(ImageProducer) - function in java.awt.AbstractMenu
- createImage(ImageProducer) - function in java.awt.NumericTextField
- createImage(ImageProducer) - function in java.awt.TimeStepMonitor
- createImage(ImageProducer) - function in java.awt.NodeTracker
- createImage(ImageProducer) - function in java.awt.MapDisplay
- createImage(ImageProducer) - function in java.awt.Generic2DDisplay
- createImage(ImageProducer) - function in java.awt.MoleculeInjectorGUI
- createImage(ImageProducer) - function in java.awt.JOutputMonitorRepresentation
- createImage(ImageProducer) - function in java.awt.JTape
- createImage(ImageProducer) - function in java.awt.JTapeTab
- createImage(ImageProducer) - function in java.awt.JTapeSection
- createImage(ImageProducer) - function in java.awt.JTapeMainFeature
- createImage(ImageProducer) - function in java.awt.JTapeFeatureStack
- createImage(ImageProducer) - function in java.awt.JTapeGroup
- createIntersection(Rectangle2D) - function in java.awt.geom.RectObstacle2D
- createMolecule(String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createMolecule(String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createMolecule(String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createMolecule(String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- Parses a String, and provides a Molecule.
- createNode(RandomGenerator,Environment,String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createNode(RandomGenerator,Environment,String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createNode(RandomGenerator,Environment,String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createNode(RandomGenerator,Environment,String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- createPrimaryScene(UIComponent) - function in tornadofx.Keybinder
- createReaction(RandomGenerator,Environment,Node,TimeDistribution,String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createReaction(RandomGenerator,Environment,Node,TimeDistribution,String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createReaction(RandomGenerator,Environment,Node,TimeDistribution,String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createReaction(RandomGenerator,Environment,Node,TimeDistribution,String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- createSimulation(InitializedEnvironment) - function in it.unibo.alchemist.testsupport.AlchemistTesting
- Builds a new Engine, adding a GlobalExporter with the required it.unibo.alchemist.loader.export.Exporters.
- createTimeDistribution(RandomGenerator,Environment,Node,String) - function in it.unibo.alchemist.model.BiochemistryIncarnation
- createTimeDistribution(RandomGenerator,Environment,Node,String) - function in it.unibo.alchemist.model.ProtelisIncarnation
- createTimeDistribution(RandomGenerator,Environment,Node,String) - function in it.unibo.alchemist.model.SAPEREIncarnation
- createTimeDistribution(RandomGenerator,Environment,Node,String) - function in it.unibo.alchemist.model.interfaces.Incarnation
- createToolTip() - function in javax.swing.JEffectsTab
- createToolTip() - function in javax.swing.JEffectRepresentation
- createToolTip() - function in javax.swing.StatusBar
- createToolTip() - function in javax.swing.ReactivityPanel
- createToolTip() - function in javax.swing.FileMenu
- createToolTip() - function in javax.swing.SimControlPanel
- createToolTip() - function in javax.swing.SimControlButton
- createToolTip() - function in javax.swing.AbstractMenu
- createToolTip() - function in javax.swing.NumericTextField
- createToolTip() - function in javax.swing.TimeStepMonitor
- createToolTip() - function in javax.swing.NodeTracker
- createToolTip() - function in javax.swing.MapDisplay
- createToolTip() - function in javax.swing.Generic2DDisplay
- createToolTip() - function in javax.swing.MoleculeInjectorGUI
- createToolTip() - function in javax.swing.JOutputMonitorRepresentation
- createToolTip() - function in javax.swing.JTape
- createToolTip() - function in javax.swing.JTapeTab
- createToolTip() - function in javax.swing.JTapeSection
- createToolTip() - function in javax.swing.JTapeMainFeature
- createToolTip() - function in javax.swing.JTapeFeatureStack
- createToolTip() - function in javax.swing.JTapeGroup
- createUnion(Rectangle2D) - function in java.awt.geom.RectObstacle2D
- createVolatileImage(int,int) - function in java.awt.EffectBuilder
- createVolatileImage(int,int) - function in java.awt.JEffectsTab
- createVolatileImage(int,int) - function in java.awt.JEffectRepresentation
- createVolatileImage(int,int) - function in java.awt.AlchemistSwingUI
- createVolatileImage(int,int) - function in java.awt.StatusBar
- createVolatileImage(int,int) - function in java.awt.ReactivityPanel
- createVolatileImage(int,int) - function in java.awt.FileMenu
- createVolatileImage(int,int) - function in java.awt.SimControlPanel
- createVolatileImage(int,int) - function in java.awt.SimControlButton
- createVolatileImage(int,int) - function in java.awt.AbstractMenu
- createVolatileImage(int,int) - function in java.awt.NumericTextField
- createVolatileImage(int,int) - function in java.awt.TimeStepMonitor
- createVolatileImage(int,int) - function in java.awt.NodeTracker
- createVolatileImage(int,int) - function in java.awt.MapDisplay
- createVolatileImage(int,int) - function in java.awt.Generic2DDisplay
- createVolatileImage(int,int) - function in java.awt.MoleculeInjectorGUI
- createVolatileImage(int,int) - function in java.awt.JOutputMonitorRepresentation
- createVolatileImage(int,int) - function in java.awt.JTape
- createVolatileImage(int,int) - function in java.awt.JTapeTab
- createVolatileImage(int,int) - function in java.awt.JTapeSection
- createVolatileImage(int,int) - function in java.awt.JTapeMainFeature
- createVolatileImage(int,int) - function in java.awt.JTapeFeatureStack
- createVolatileImage(int,int) - function in java.awt.JTapeGroup
- crossDoor(E) - function in it.unibo.alchemist.model.interfaces.AbstractNavigationAction
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentExplore
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentFollowRoute
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentGoalOrientedExplore
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentNavigationAction2D
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentPursue
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentReachDestination
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(Euclidean2DPassage) - function in it.unibo.alchemist.model.implementations.actions.CognitiveAgentReachKnownDestination
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossDoor(E) - function in it.unibo.alchemist.model.interfaces.NavigationAction
- Moves the pedestrian across the provided door, which must be among doorsInSight.
- crossingPointOnHead(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.graph.Euclidean2DPassage
- Provided the crossingPointOnTail that an agent has reached (or will reach), this method computes the point belonging to the boundary of head that the agent should point towards to cross the passage (i.e.
- crossingPointOnTail(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.graph.Euclidean2DPassage
- Provided the position of an agent that may want to cross this passage, this method computes the point belonging to passageShapeOnTail which is more convenient to cross.
- crossingPoints(Euclidean2DPosition) - function in it.unibo.alchemist.model.interfaces.geometry.euclidean2d.graph.Euclidean2DPassage
- Provided the position of an agent that may want to cross this passage, this method returns a pair containing both crossingPointOnTail and crossingPointOnHead.
- CSVExporter - class in it.unibo.alchemist.loader.export.exporters
- Writes on file data provided by a number of {@link Extractor}s.
- CSVExporter.Companion - class in it.unibo.alchemist.loader.export.exporters.CSVExporter
- cumulativeProbability(Double) - function in org.apache.commons.math3.distribution.DiracDeltaDistribution
- cumulativeProbability(Double,Double) - function in org.apache.commons.math3.distribution.DiracDeltaDistribution
- cursorProperty() - function in javafx.scene.FXStepMonitor
- cursorProperty() - function in javafx.scene.PlayPauseMonitor
- cursorProperty() - function in javafx.scene.FXTimeMonitor
- cursorProperty() - function in javafx.scene.NumericLabelMonitor
- cursorProperty() - function in javafx.scene.EffectGroupCell
- cursorProperty() - function in javafx.scene.EffectCell
- cursorProperty() - function in javafx.scene.AbstractEffectCell
- cursorProperty() - function in javafx.scene.CustomLeafletMapView
- cursorProperty() - function in javafx.scene.AbstractFXDisplay
- cursorProperty() - function in javafx.scene.FX2DDisplay
- cursorProperty() - function in javafx.scene.LeafletMapDisplay
- CustomLeafletMapView - class in it.unibo.alchemist.boundary
- A LeafletMapView that implements functions used to manage the map without any mouse events.
- CustomLeafletMapView.Companion - class in it.unibo.alchemist.boundary.CustomLeafletMapView
- cut() - function in javax.swing.text.NumericTextField