76 lines
3.7 KiB
XML
76 lines
3.7 KiB
XML
<?xml version="1.0" encoding="UTF-8" ?>
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<class name="CSGPolygon" inherits="CSGPrimitive" category="Core" version="3.1">
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<brief_description>
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Extrudes a 2D polygon shape to create a 3D mesh
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</brief_description>
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<description>
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This node takes a 2D polygon shape and extrudes it to create a 3D mesh.
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</description>
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<tutorials>
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</tutorials>
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<demos>
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</demos>
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<methods>
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</methods>
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<members>
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<member name="depth" type="float" setter="set_depth" getter="get_depth">
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Extrusion depth when [member mode] is [constant MODE_DEPTH]
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</member>
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<member name="material" type="Material" setter="set_material" getter="get_material">
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Material to use for the resulting mesh
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</member>
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<member name="mode" type="int" setter="set_mode" getter="get_mode" enum="CSGPolygon.Mode">
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Extrusion mode
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</member>
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<member name="path_interval" type="float" setter="set_path_interval" getter="get_path_interval">
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Interval at which a new extrusion slice is added along the path when [member mode] is [constant MODE_PATH]
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</member>
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<member name="path_node" type="NodePath" setter="set_path_node" getter="get_path_node">
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The [Shape] object containing the path along which we extrude when [member mode] is [constant MODE_PATH]
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</member>
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<member name="path_rotation" type="int" setter="set_path_rotation" getter="get_path_rotation" enum="CSGPolygon.PathRotation">
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The method by which each slice is rotated along the path when [member mode] is [constant MODE_PATH]
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</member>
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<member name="path_local" type="bool" setter="set_path_local" getter="is_path_local">
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If false we extrude centered on our path, if true we extrude in relation to the position of our CSGPolygon when [member mode] is [constant MODE_PATH]
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</member>
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<member name="path_continuous_u" type="bool" setter="set_path_continuous_u" getter="is_path_continuous_u">
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If true the u component of our uv will continuously increase in unison with the distance traveled along our path when [member mode] is [constant MODE_PATH]
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</member>
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<member name="path_joined" type="bool" setter="set_path_joined" getter="is_path_joined">
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If true the start and end of our path are joined together ensuring there is no seam when [member mode] is [constant MODE_PATH]
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</member>
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<member name="polygon" type="PoolVector2Array" setter="set_polygon" getter="get_polygon">
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Point array that defines the shape that we'll extrude
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</member>
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<member name="smooth_faces" type="bool" setter="set_smooth_faces" getter="get_smooth_faces">
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Generates smooth normals so smooth shading is applied to our mesh
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</member>
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<member name="spin_degrees" type="float" setter="set_spin_degrees" getter="get_spin_degrees">
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Degrees to rotate our extrusion for each slice when [member mode] is [constant MODE_SPIN]
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</member>
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<member name="spin_sides" type="int" setter="set_spin_sides" getter="get_spin_sides">
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Number of extrusion when [member mode] is [constant MODE_SPIN]
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</member>
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</members>
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<constants>
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<constant name="MODE_DEPTH" value="0" enum="Mode">
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Shape is extruded to [member depth]
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</constant>
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<constant name="MODE_SPIN" value="1" enum="Mode">
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Shape is extruded by rotating it around an axis
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</constant>
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<constant name="MODE_PATH" value="2" enum="Mode">
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Shape is extruded along a path set by a [Shape] set in [member path_node]
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</constant>
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<constant name="PATH_ROTATION_POLYGON" value="0" enum="PathRotation">
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Slice is not rotated
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</constant>
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<constant name="PATH_ROTATION_PATH" value="1" enum="PathRotation">
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Slice is rotated around the up vector of the path
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</constant>
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<constant name="PATH_ROTATION_PATH_FOLLOW" value="2" enum="PathRotation">
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Slice is rotate to match the path exactly
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</constant>
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</constants>
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</class>
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