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18 A Class representing an O-RAN distributed unit (ORanDu)
20 import model.python.hexagon as Hexagon
21 from model.python.hexagon import Hex
22 from model.python.cube import Cube
23 from model.python.o_ran_ru import ORanRu
24 from model.python.o_ran_object import IORanObject
25 from model.python.o_ran_node import ORanNode
26 import xml.etree.ElementTree as ET
29 # Define the "IORanDu" interface
30 class IORanDu(IORanObject):
31 def __init__(self, o_ran_ru_count: int, **kwargs):
32 super().__init__(**kwargs)
33 self._o_ran_ru_count = o_ran_ru_count
36 # Define an abstract O-RAN Node class
37 class ORanDu(ORanNode, IORanDu):
38 def __init__(self, o_ran_du_data: IORanDu = None, **kwargs):
39 super().__init__(o_ran_du_data, **kwargs)
40 self._o_ran_ru_count = (
41 o_ran_du_data["oRanRuCount"] if o_ran_du_data and "oRanRuCount" in o_ran_du_data else 1
44 def toKml(self) -> ET.Element:
45 o_ran_du: ET.Element = ET.Element("Folder")
46 open: ET.Element = ET.SubElement(o_ran_du, "open")
48 name: ET.Element = ET.SubElement(o_ran_du, "name")
50 for tower in self.towers:
51 o_ran_du.append(tower.toKml())
54 def toSvg(self) -> None: