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Merge pull request #20352 from Ultimaker/CURA-12169_fix-autoarrange-for-disallowed-areas
CURA-12169 fix autoarrange for disallowed areas
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commit
650e7994cc
@ -40,7 +40,7 @@ class ArrangeObjectsJob(Job):
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found_solution_for_all = False
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try:
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found_solution_for_all = arranger.arrange()
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found_solution_for_all = arranger.arrange(only_if_full_success = True)
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except: # If the thread crashes, the message should still close
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Logger.logException("e",
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"Unable to arrange the objects on the buildplate. The arrange algorithm has crashed.")
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@ -16,12 +16,16 @@ class Arranger:
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"""
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raise NotImplementedError
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def arrange(self, add_new_nodes_in_scene: bool = False) -> bool:
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def arrange(self, add_new_nodes_in_scene: bool = False, only_if_full_success: bool = False) -> bool:
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"""
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Find placement for a set of scene nodes, and move them by using a single grouped operation.
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:param add_new_nodes_in_scene: Whether to create new scene nodes before applying the transformations and rotations
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:return: found_solution_for_all: Whether the algorithm found a place on the buildplate for all the objects
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"""
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grouped_operation, not_fit_count = self.createGroupOperationForArrange(add_new_nodes_in_scene)
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grouped_operation.push()
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return not_fit_count == 0
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full_success = not_fit_count == 0
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if full_success or not only_if_full_success:
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grouped_operation.push()
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return full_success
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@ -54,22 +54,6 @@ class Nest2DArrange(Arranger):
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machine_depth = self._build_volume.getDepth() - (edge_disallowed_size * 2)
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build_plate_bounding_box = Box(int(machine_width * self._factor), int(machine_depth * self._factor))
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if self._fixed_nodes is None:
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self._fixed_nodes = []
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# Add all the items we want to arrange
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node_items = []
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for node in self._nodes_to_arrange:
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hull_polygon = node.callDecoration("getConvexHull")
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if not hull_polygon or hull_polygon.getPoints is None:
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Logger.log("w", "Object {} cannot be arranged because it has no convex hull.".format(node.getName()))
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continue
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converted_points = []
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for point in hull_polygon.getPoints():
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converted_points.append(Point(int(point[0] * self._factor), int(point[1] * self._factor)))
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item = Item(converted_points)
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node_items.append(item)
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# Use a tiny margin for the build_plate_polygon (the nesting doesn't like overlapping disallowed areas)
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half_machine_width = 0.5 * machine_width - 1
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half_machine_depth = 0.5 * machine_depth - 1
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@ -80,37 +64,64 @@ class Nest2DArrange(Arranger):
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[half_machine_width, half_machine_depth]
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], numpy.float32))
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disallowed_areas = self._build_volume.getDisallowedAreas()
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for area in disallowed_areas:
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converted_points = []
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def _convert_points(points):
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if points is not None and len(points) > 2: # numpy array has to be explicitly checked against None
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converted_points = []
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for point in points:
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converted_points.append(Point(int(point[0] * self._factor), int(point[1] * self._factor)))
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return [converted_points]
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else:
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return []
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polygons_nodes_to_arrange = []
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for node in self._nodes_to_arrange:
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hull_polygon = node.callDecoration("getConvexHull")
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if not hull_polygon or hull_polygon.getPoints is None:
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Logger.log("w", "Object {} cannot be arranged because it has no convex hull.".format(node.getName()))
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continue
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polygons_nodes_to_arrange += _convert_points(hull_polygon.getPoints())
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polygons_disallowed_areas = []
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for area in self._build_volume.getDisallowedAreas():
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# Clip the disallowed areas so that they don't overlap the bounding box (The arranger chokes otherwise)
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clipped_area = area.intersectionConvexHulls(build_plate_polygon)
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if clipped_area.getPoints() is not None and len(
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clipped_area.getPoints()) > 2: # numpy array has to be explicitly checked against None
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for point in clipped_area.getPoints():
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converted_points.append(Point(int(point[0] * self._factor), int(point[1] * self._factor)))
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polygons_disallowed_areas += _convert_points(clipped_area.getPoints())
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disallowed_area = Item(converted_points)
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polygons_fixed_nodes = []
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if self._fixed_nodes is None:
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self._fixed_nodes = []
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for node in self._fixed_nodes:
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hull_polygon = node.callDecoration("getConvexHull")
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if hull_polygon is not None:
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polygons_fixed_nodes += _convert_points(hull_polygon.getPoints())
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strategies = [NfpConfig.Alignment.CENTER,
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NfpConfig.Alignment.BOTTOM_LEFT,
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NfpConfig.Alignment.BOTTOM_RIGHT,
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NfpConfig.Alignment.TOP_LEFT,
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NfpConfig.Alignment.TOP_RIGHT,
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NfpConfig.Alignment.DONT_ALIGN]
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found_solution_for_all = False
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while not found_solution_for_all and len(strategies) > 0:
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# Add all the items we want to arrange
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node_items = []
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for polygon in polygons_nodes_to_arrange:
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node_items.append(Item(polygon))
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for polygon in polygons_disallowed_areas:
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disallowed_area = Item(polygon)
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disallowed_area.markAsDisallowedAreaInBin(0)
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node_items.append(disallowed_area)
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for node in self._fixed_nodes:
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converted_points = []
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hull_polygon = node.callDecoration("getConvexHull")
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if hull_polygon is not None and hull_polygon.getPoints() is not None and len(
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hull_polygon.getPoints()) > 2: # numpy array has to be explicitly checked against None
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for point in hull_polygon.getPoints():
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converted_points.append(Point(int(point[0] * self._factor), int(point[1] * self._factor)))
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item = Item(converted_points)
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for polygon in polygons_fixed_nodes:
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item = Item(polygon)
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item.markAsFixedInBin(0)
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node_items.append(item)
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strategies = [NfpConfig.Alignment.CENTER] * 3 + [NfpConfig.Alignment.BOTTOM_LEFT] * 3
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found_solution_for_all = False
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while not found_solution_for_all and len(strategies) > 0:
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config = NfpConfig()
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config.accuracy = 1.0
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config.alignment = NfpConfig.Alignment.CENTER
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@ -84,6 +84,7 @@ class MultiplyObjectsJob(Job):
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arranger = Nest2DArrange(nodes, Application.getInstance().getBuildVolume(), fixed_nodes, factor=1000)
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group_operation, not_fit_count = arranger.createGroupOperationForArrange(add_new_nodes_in_scene=True)
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found_solution_for_all = not_fit_count == 0
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if nodes_to_add_without_arrange:
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for nested_node in nodes_to_add_without_arrange:
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