![]() Horizontal-Vertical Tree Layout is one of the tree layouts in Visual Paradigm which arranges shapes in a tree structure horizontally and vertically. Aspect Ratio: the relation of the tree width to the tree height. Connector Length: the vertical distance of the connector segments. Vertical Spacing: the vertical spacing between the shapes. Horizontal Spacing: the horizontal spacing between the shapes. The aspect ratio (relation of tree width to tree height) of the resultant tree can be set. Root Node Policy: determines which node is chosen as the tree root node for layout – directed root, center root, and weighted center root.Ĭompact Tree Layout is one of the tree layouts in Visual Paradigm which arranges shapes in a tree structure. Preferred Root Wedge: the angle at which a node will be placed around the root node. Preferred Child Wedge: the angle at which the child node will be placed around its parent node. Connector Length: the minimal distance between the connectors and shapes. It is the best way for users to arrange large trees. ![]() Orthogonal Connector: whether the connectors will be arranged in orthogonal.īalloon Tree Layout, which is one of the tree layouts in Visual Paradigm, arranges shapes in a tree structure in a radial fashion. Connector End Point Style: how the connector end points will be placed – shape centered, border centered, border distributed. Orientation: the layout direction for arranging nodes and connectors – top to bottom, left to right, bottom to top, and right to left. Shape Distance: the minimal vertical distance between the shapes. Layer Distance: the minimal horizontal distance between the shapes. It is the best way for users to arrange shapes except those which have hierarchical relationships, such as generalization relationships and realization relationships. Shape Placement: affects the horizontal spacing between shapes, and the number of bends of the connectors -pendulum, linear segments, polyline, tree and simplex.ĭirected Tree Layout is one of the tree layouts in Visual Paradigm which arranges shapes in a tree structure. Orientation: the layout direction for arranging nodes and connectors -top to bottom, left to right, bottom to top, and right to left. Connector Distance: the minimal vertical distance of the connector segments. It is the best way for users to arrange shapes that have hierarchical relationships, such as generalization relationships and realization relationships. Hierarchic Layout arranges shapes in a flow. ![]() Each shape will be placed in accordance with its center point lays on a virtual grid point. Layout Grid Size: the virtual grid size for layout. As it is default layout in Visual Paradigm, every time you drag the models from the Model Tree to a diagram, the orthogonal layout will be applied to arrange the newly created shapes in the Class Diagram. It is the best way for users to arrange shapes and connectors in Class Diagrams. Shapes are arranged based on the topology-shape-metrics approach in orthogonal layout. To apply Auto Layout to the diagram, right click on the diagram and select Layout > Auto Layout from the pop-up menu.Ĭlass diagram (Hierarchy base / factory class diagram)Ĭlass diagram (Navigation base / mediator class diagram) It is the best choice for users when they have no preference in selecting a specific layout. Selecting auto layout signifies that the most suitable layout is arranged for shapes automatically. There are a few different kinds of layouts: Auto Layout, Orthogonal Layout, Hierarchic Layout, Directed Tree Layout, Balloon Tree Layout, Compact Tree Layout, Horizontal-Vertical Tree Layout, BBC Compact Circular Layout, BBC Isolated Circular Layout, Single Cycle Circular Layout, Organic Layout and Smart Organic Layout. Different layout styles and configurable options are provided, which allows extremely flexible and sophisticated layouts to be applied to diagrams. Diagram elements do not overlap and the relationship links do not cross over one another. Visual Paradigm provides a layout facility for arranging diagram elements in diagrams.
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