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Fixed crash when no transformation was provided in 3mf file
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1 changed files with 49 additions and 45 deletions
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@ -50,54 +50,58 @@ class ThreeMFReader(MeshReader):
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node.setSelectable(True)
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# Magical python comprehension; looks for the matching transformation
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transformation = next((x for x in root.model.build.item if x["objectid"] == object["id"]), None)
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splitted_transformation = transformation["transform"].split()
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## Transformation is saved as:
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## M00 M01 M02 0.0
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## M10 M11 M12 0.0
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## M20 M21 M22 0.0
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## M30 M31 M32 1.0
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## We switch the row & cols as that is how everyone else uses matrices!
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temp_mat = Matrix()
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temp_mat._data[0,0] = splitted_transformation[0]
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temp_mat._data[1,0] = splitted_transformation[1]
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temp_mat._data[2,0] = splitted_transformation[2]
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temp_mat._data[0,1] = splitted_transformation[3]
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temp_mat._data[1,1] = splitted_transformation[4]
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temp_mat._data[2,1] = splitted_transformation[5]
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temp_mat._data[0,2] = splitted_transformation[6]
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temp_mat._data[1,2] = splitted_transformation[7]
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temp_mat._data[2,2] = splitted_transformation[8]
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temp_mat._data[0,3] = splitted_transformation[9]
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temp_mat._data[1,3] = splitted_transformation[10]
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temp_mat._data[2,3] = splitted_transformation[11]
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node.setPosition(Vector(temp_mat.at(0,3), temp_mat.at(1,3), temp_mat.at(2,3)))
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temp_quaternion = Quaternion()
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temp_quaternion.setByMatrix(temp_mat)
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node.setOrientation(temp_quaternion)
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# Magical scale extraction
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S2 = temp_mat.getTransposed().multiply(temp_mat)
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scale_x = math.sqrt(S2.at(0,0))
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scale_y = math.sqrt(S2.at(1,1))
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scale_z = math.sqrt(S2.at(2,2))
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node.setScale(Vector(scale_x,scale_y,scale_z))
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# We use a different coordinate frame, so rotate.
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rotation = Quaternion.fromAngleAxis(-0.5 * math.pi, Vector(1,0,0))
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node.rotate(rotation)
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if transformation["transform"]:
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splitted_transformation = transformation["transform"].split()
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## Transformation is saved as:
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## M00 M01 M02 0.0
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## M10 M11 M12 0.0
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## M20 M21 M22 0.0
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## M30 M31 M32 1.0
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## We switch the row & cols as that is how everyone else uses matrices!
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temp_mat = Matrix()
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temp_mat._data[0,0] = splitted_transformation[0]
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temp_mat._data[1,0] = splitted_transformation[1]
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temp_mat._data[2,0] = splitted_transformation[2]
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temp_mat._data[0,1] = splitted_transformation[3]
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temp_mat._data[1,1] = splitted_transformation[4]
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temp_mat._data[2,1] = splitted_transformation[5]
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temp_mat._data[0,2] = splitted_transformation[6]
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temp_mat._data[1,2] = splitted_transformation[7]
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temp_mat._data[2,2] = splitted_transformation[8]
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temp_mat._data[0,3] = splitted_transformation[9]
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temp_mat._data[1,3] = splitted_transformation[10]
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temp_mat._data[2,3] = splitted_transformation[11]
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node.setPosition(Vector(temp_mat.at(0,3), temp_mat.at(1,3), temp_mat.at(2,3)))
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temp_quaternion = Quaternion()
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temp_quaternion.setByMatrix(temp_mat)
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node.setOrientation(temp_quaternion)
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# Magical scale extraction
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S2 = temp_mat.getTransposed().multiply(temp_mat)
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scale_x = math.sqrt(S2.at(0,0))
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scale_y = math.sqrt(S2.at(1,1))
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scale_z = math.sqrt(S2.at(2,2))
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node.setScale(Vector(scale_x,scale_y,scale_z))
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# We use a different coordinate frame, so rotate.
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rotation = Quaternion.fromAngleAxis(-0.5 * math.pi, Vector(1,0,0))
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node.rotate(rotation)
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result.addChild(node)
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# If there is more then one object, group them.
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if len(root.model.resources.object) > 1:
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group_decorator = GroupDecorator()
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result.addDecorator(group_decorator)
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try:
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if len(root.model.resources.object) > 1:
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group_decorator = GroupDecorator()
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result.addDecorator(group_decorator)
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except:
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pass
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except Exception as e:
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print("EXCEPTION: " ,e)
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return result
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