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synced 2025-05-10 22:09:01 +08:00
Merge branch '4.6'
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commit
c79d7d89b3
@ -1254,7 +1254,11 @@ class MachineManager(QObject):
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return
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Logger.log("i", "Attempting to switch the printer type to [%s]", machine_name)
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# Get the definition id corresponding to this machine name
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machine_definition_id = CuraContainerRegistry.getInstance().findDefinitionContainers(name = machine_name)[0].getId()
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definitions = CuraContainerRegistry.getInstance().findDefinitionContainers(name=machine_name)
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if not definitions:
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Logger.log("e", "Unable to switch printer type since it could not be found!")
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return
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machine_definition_id = definitions[0].getId()
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# Try to find a machine with the same network key
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metadata_filter = {"group_id": self._global_container_stack.getMetaDataEntry("group_id")}
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new_machine = self.getMachine(machine_definition_id, metadata_filter = metadata_filter)
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@ -38,36 +38,38 @@ class RetractContinue(Script):
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current_x = self.getValue(line, "X", current_x)
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current_y = self.getValue(line, "Y", current_y)
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if self.getValue(line, "G") == 1:
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if self.getValue(line, "E"):
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new_e = self.getValue(line, "E")
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if new_e >= current_e: # Not a retraction.
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continue
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# A retracted travel move may consist of multiple commands, due to combing.
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# This continues retracting over all of these moves and only unretracts at the end.
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delta_line = 1
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dx = current_x # Track the difference in X for this move only to compute the length of the travel.
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dy = current_y
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while line_number + delta_line < len(lines) and self.getValue(lines[line_number + delta_line], "G") != 1:
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travel_move = lines[line_number + delta_line]
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if self.getValue(travel_move, "G") != 0:
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delta_line += 1
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continue
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travel_x = self.getValue(travel_move, "X", dx)
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travel_y = self.getValue(travel_move, "Y", dy)
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f = self.getValue(travel_move, "F", "no f")
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length = math.sqrt((travel_x - dx) * (travel_x - dx) + (travel_y - dy) * (travel_y - dy)) # Length of the travel move.
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new_e -= length * extra_retraction_speed # New retraction is by ratio of this travel move.
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if f == "no f":
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new_travel_move = "G1 X{travel_x} Y{travel_y} E{new_e}".format(travel_x = travel_x, travel_y = travel_y, new_e = new_e)
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else:
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new_travel_move = "G1 F{f} X{travel_x} Y{travel_y} E{new_e}".format(f = f, travel_x = travel_x, travel_y = travel_y, new_e = new_e)
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lines[line_number + delta_line] = new_travel_move
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delta_line += 1
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dx = travel_x
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dy = travel_y
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if not self.getValue(line, "E"): # Either None or 0: Not a retraction then.
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continue
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new_e = self.getValue(line, "E")
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if new_e - current_e >= -0.0001: # Not a retraction. Account for floating point rounding errors.
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current_e = new_e
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continue
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# A retracted travel move may consist of multiple commands, due to combing.
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# This continues retracting over all of these moves and only unretracts at the end.
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delta_line = 1
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dx = current_x # Track the difference in X for this move only to compute the length of the travel.
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dy = current_y
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while line_number + delta_line < len(lines) and self.getValue(lines[line_number + delta_line], "G") != 1:
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travel_move = lines[line_number + delta_line]
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if self.getValue(travel_move, "G") != 0:
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delta_line += 1
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continue
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travel_x = self.getValue(travel_move, "X", dx)
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travel_y = self.getValue(travel_move, "Y", dy)
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f = self.getValue(travel_move, "F", "no f")
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length = math.sqrt((travel_x - dx) * (travel_x - dx) + (travel_y - dy) * (travel_y - dy)) # Length of the travel move.
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new_e -= length * extra_retraction_speed # New retraction is by ratio of this travel move.
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if f == "no f":
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new_travel_move = "G1 X{travel_x} Y{travel_y} E{new_e}".format(travel_x = travel_x, travel_y = travel_y, new_e = new_e)
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else:
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new_travel_move = "G1 F{f} X{travel_x} Y{travel_y} E{new_e}".format(f = f, travel_x = travel_x, travel_y = travel_y, new_e = new_e)
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lines[line_number + delta_line] = new_travel_move
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delta_line += 1
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dx = travel_x
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dy = travel_y
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current_e = new_e
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new_layer = "\n".join(lines)
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data[layer_number] = new_layer
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