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This is preliminary documentation. You've been warned.

KLay Layered supports a whole bunch of layout options. Every single one of them is documented here.

Contents

Overview

For a general introduction on layout options, see the KIML documentation. KLay Layered supports layout options defined by KIML and defines additional custom layout options.

Supported KIML Layout Options

KLay Layered supports the following standard layout options defined by KIML. Note that the default value may be altered (highlighted yellow).

OptionIDTypeApplies toDefault
Alignmentde.cau.cs.kieler.alignmentEnumNodesAUTOMATIC
Aspect Ratiode.cau.cs.kieler.aspectRatioFloatParents1.6
Border Spacingde.cau.cs.kieler.borderSpacingFloatParents20
Comment Box XXde.cau.cs.kieler.commentBoxBooleanNodesfalse
Debug Modede.cau.cs.kieler.debugModeBooleanParentsfalse
Diagram Typede.cau.cs.kieler.diagramTypeString  
Directionde.cau.cs.kieler.directionEnumParentsRIGHT
Edge Label Placement XXde.cau.cs.kieler.edgeLabelPlacementEnumLabelsUNDEFINED
Edge Routingde.cau.cs.kieler.edgeRoutingEnumParentsPOLYLINE
Hypernode XXde.cau.cs.kieler.hypernodeBooleanNodesfalse
Label Spacing XXde.cau.cs.kieler.labelSpacingFloatEdges
Nodes
-1.0
Layout Hierarchyde.cau.cs.kieler.layoutHierarchyBooleanParentsfalse
Minimal Height XXde.cau.cs.kieler.minHeightFloat

Nodes
Parents

0.0
Minimal Width XXde.cau.cs.kieler.minWidthFloat

Nodes
Parents

0.0
No Layout XXde.cau.cs.kieler.noLayoutBoolean false
Node Label Placementde.cau.cs.kieler.nodeLabelPlacementEnumSetNodes 
Port Constraintsde.cau.cs.kieler.portConstraintsEnumNodesUNDEFINED
Port Label Placementde.cau.cs.kieler.portLabelPlacementEnumNodesOUTSIDE
Port Offset XXde.cau.cs.kieler.offsetFloatPorts 
Port Side XXde.cau.cs.kieler.portSideEnumPortsUNDEFINED
Priorityde.cau.cs.kieler.priorityIntEdges
Nodes
 
Randomization Seedde.cau.cs.kieler.randomSeedIntParents1
Separate Connected Componentsde.cau.cs.kieler.separateConnCompBooleanParentstrue
Size Constraintde.cau.cs.kieler.sizeConstraintEnumSetNodes 
Size Optionsde.cau.cs.kieler.sizeOptionsEnumSetNodesDEFAULT_MINIMUM_SIZE
Spacingde.cau.cs.kieler.spacingFloatParents20

Custom Layout Options

OptionIDTypeApplies toDefault
Crossing Minimizationde.cau.cs.kieler.klay.layered.crossMinEnumParentsLAYER_SWEEP
Cycle Breakingde.cau.cs.kieler.klay.layered.cycleBreakingEnumParentsGREEDY
Distribute Nodesde.cau.cs.kieler.klay.layered.distributeNodesBooleanParentsfalse
Edge Spacing Factorde.cau.cs.kieler.klay.layered.edgeSpacingFactorFloatParents0.5
Feedback Edgesde.cau.cs.kieler.klay.layered.feedBackEdgesBooleanParentsfalse
Fixed Alignmentde.cau.cs.kieler.klay.layered.fixedAlignmentEnumParentsNONE
Interactive Reference Pointde.cau.cs.kieler.klay.layered.interactiveReferencePointEnumParentsCENTER
Label Sidede.cau.cs.kieler.klay.layered.LabelSideEnumParentsSMART
Layer Constraintde.cau.cs.kieler.klay.layered.layerConstraintEnumNodesNONE
Merge Edgesde.cau.cs.kieler.klay.layered.mergePortsBooleanParentsfalse
Node Layeringde.cau.cs.kieler.klay.layered.nodeLayeringEnumParentsNETWORK_SIMPLEX
Node Placementde.cau.cs.kieler.klay.layered.nodePlaceEnumParentsBRANDES_KOEPF
Port Anchor Offsetde.cau.cs.kieler.klay.layered.portAnchorObjectPorts 
Thoroughnessde.cau.cs.kieler.klay.layered.thoroughnessIntParents7

The Most Important Options

TODO: Write a bit of documentation about the most important layout options and how to use them, possibly with a simple example or something.

Detailed Documentation

This section explains every layout option in more detail. See the KIML documentation for more information on KIML layout options. Those options are only mentioned here if KLay Layered adds some custom behavior.

Crossing Minimization

Crossing minimization determines the ordering of nodes in each layer, which influences the number of edge crossings. This option switches between one of several algorithms that can be used to minimize crossings. Possible values are:

  • LAYER_SWEEP
    The layer sweep algorithm iterates multiple times over the layers, trying to find node orderings that minimize the number of crossings. The algorithm uses randomization to increase the odds of finding a good result. To improve its results, consider increasing the Thoroughness option, which influences the number of iterations done. The Randomization seed also influences results.
  • INTERACTIVE
    Orders the nodes of each layer by comparing their positions before the layout algorithm was started. The idea is that the relative order of nodes as it was before layout was applied is not changed. This of course requires valid positions for all nodes to have been set on the input graph before calling the layout algorithm. The interactive layer sweep algorithm uses the Interactive Reference Point option to determine which reference point of nodes are used to compare positions.

Interactive Reference Point

Interactive layering and crossing minimization algorithms use node positions to sort nodes into layers or to determine the order of nodes in each layer. However, it is unclear if for example the top left corners of nodes should be compared, or the bottom left corners — different settings might lead to different results. The interactive reference point determines which part of nodes is used to compare their positions. It provides the following settings:

  • TOP_LEFT
    The top left corner of a node is taken as the reference point.
  • CENTER
    The center of a node is taken as the reference point.

Thoroughness

There are heuristics in use all over KLay Layered whose results often improve with the number of iterations computed. The thoroughness is a measure for telling KLay Layered to compute more iterations to improve the quality of results, at the expense of performance.

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