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https://github.com/IfcOpenShell/IfcOpenShell.git
synced 2026-08-10 09:48:32 +00:00
Implement feature for manipulating cost values, with support for calculation of subtotals
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@@ -11,7 +11,6 @@ class Usecase:
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def execute(self):
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quantity = self.file.create_entity(self.settings["ifc_class"], Name="Unnamed")
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quantity[3] = 0.0
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cost_item = ifcopenshell.api.run("root.create_entity", self.file, ifc_class="IfcCostItem")
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quantities = list(self.settings["cost_item"].CostQuantities or [])
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quantities.append(quantity)
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self.settings["cost_item"].CostQuantities = quantities
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@@ -0,0 +1,16 @@
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import ifcopenshell.api
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class Usecase:
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def __init__(self, file, **settings):
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self.file = file
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self.settings = {"cost_item": None, "ifc_class": "IfcQuantityCount"}
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for key, value in settings.items():
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self.settings[key] = value
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def execute(self):
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value = self.file.create_entity("IfcCostValue")
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values = list(self.settings["cost_item"].CostValues or [])
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values.append(value)
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self.settings["cost_item"].CostValues = values
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return value
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@@ -6,6 +6,7 @@ class Data:
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cost_schedules = {}
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cost_items = {}
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physical_quantities = {}
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cost_values = {}
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@classmethod
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def purge(cls):
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@@ -13,49 +14,126 @@ class Data:
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cls.cost_schedules = {}
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cls.cost_items = {}
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cls.physical_quantities = {}
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cls.cost_values = {}
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@classmethod
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def load(cls, file):
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cls.file = file
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cls.cost_schedules = {}
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cls.cost_items = {}
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cls.physical_quantities = {}
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cls.cost_values = {}
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for cost_schedule in file.by_type("IfcCostSchedule"):
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for cost_schedule in cls.file.by_type("IfcCostSchedule"):
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data = cost_schedule.get_info()
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del data["OwnerHistory"]
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if data["SubmittedOn"]:
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data["SubmittedOn"] = ifcopenshell.util.date.ifc2datetime(data["SubmittedOn"])
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if data["UpdateDate"]:
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data["UpdateDate"] = ifcopenshell.util.date.ifc2datetime(data["UpdateDate"])
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data["RelatedObjects"] = []
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data["Controls"] = []
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for rel in cost_schedule.Controls:
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for related_object in rel.RelatedObjects:
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if related_object.is_a("IfcCostItem"):
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data["RelatedObjects"].append(related_object.id())
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break # We are only allowed one summary cost item
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data["Controls"].append(related_object.id())
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break # We are only allowed one summary cost item
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cls.cost_schedules[cost_schedule.id()] = data
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for cost_item in file.by_type("IfcCostItem"):
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for cost_item in cls.file.by_type("IfcCostItem"):
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data = cost_item.get_info()
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del data["OwnerHistory"]
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del data["CostValues"]
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data["RelatedObjects"] = []
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data["IsNestedBy"] = []
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data["Controls"] = []
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for rel in cost_item.IsNestedBy:
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[data["RelatedObjects"].append(o.id()) for o in rel.RelatedObjects if o.is_a("IfcCostItem")]
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[data["IsNestedBy"].append(o.id()) for o in rel.RelatedObjects if o.is_a("IfcCostItem")]
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for rel in cost_item.Controls:
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[data["Controls"].append(o.id()) for o in rel.RelatedObjects or []]
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cls.cost_items[cost_item.id()] = data
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cls.load_cost_item_quantities(cost_item, data)
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cls.is_loaded=True
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cls.load_cost_item_values(cost_item, data)
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cls.is_loaded = True
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@classmethod
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def load_cost_item_quantities(cls, cost_item, data):
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data["CostQuantities"] = []
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data["TotalCostQuantities"] = 0.0
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data["TotalCostQuantity"] = cls.get_total_quantity(cost_item)
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for quantity in cost_item.CostQuantities or []:
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quantity_data = quantity.get_info()
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del quantity_data["Unit"]
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cls.physical_quantities[quantity.id()] = quantity_data
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data["CostQuantities"].append(quantity.id())
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data["TotalCostQuantities"] += quantity[3]
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@classmethod
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def load_cost_item_values(cls, cost_item, data):
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data["CostValues"] = []
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data["TotalCostValue"] = 0.0
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data["TotalAppliedValue"] = 0.0
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for cost_value in cost_item.CostValues or []:
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cls.load_cost_item_value(cost_item, cost_value)
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data["CostValues"].append(cost_value.id())
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print('applied value is', cls.cost_values[cost_value.id()]["AppliedValue"])
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data["TotalAppliedValue"] += cls.cost_values[cost_value.id()]["AppliedValue"]
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data["TotalCostValue"] = data["TotalCostQuantity"] * data["TotalAppliedValue"]
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@classmethod
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def load_cost_item_value(cls, cost_item, cost_value):
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value_data = cost_value.get_info()
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del value_data["AppliedValue"]
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del value_data["UnitBasis"]
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if value_data["ApplicableDate"]:
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value_data["ApplicableDate"] = ifcopenshell.util.date.ifc2datetime(value_data["ApplicableDate"])
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if value_data["FixedUntilDate"]:
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value_data["FixedUntilDate"] = ifcopenshell.util.date.ifc2datetime(value_data["FixedUntilDate"])
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value_data["Components"] = [c.id() for c in value_data["Components"] or []]
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value_data["AppliedValue"] = cls.calculate_applied_value(cost_item, cost_value)
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cls.cost_values[cost_value.id()] = value_data
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@classmethod
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def calculate_applied_value(cls, cost_item, cost_value, category_filter=None):
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result = 0
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if cost_value.ArithmeticOperator and cost_value.Components:
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pass # TODO
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if cost_value.Category is None:
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return cls.get_primitive_applied_value(cost_value.AppliedValue)
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elif cost_value.Category == "*":
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if cost_item.IsNestedBy:
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return cls.sum_child_cost_items(cost_item)
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else:
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return cls.get_primitive_applied_value(cost_value.AppliedValue)
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elif cost_value.Category:
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if cost_item.IsNestedBy:
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return cls.sum_child_cost_items(cost_item, category_filter=cost_value.Category)
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else:
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return cls.get_primitive_applied_value(cost_value.AppliedValue)
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return result
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@classmethod
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def sum_child_cost_items(cls, cost_item, category_filter=None):
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result = 0
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for rel in cost_item.IsNestedBy:
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for child_cost_item in rel.RelatedObjects:
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for child_cost_value in child_cost_item.CostValues or []:
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if category_filter and child_cost_value.Category != category_filter:
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continue
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child_applied_value = cls.calculate_applied_value(child_cost_item, child_cost_value)
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child_quantity = cls.get_total_quantity(child_cost_item)
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result += child_applied_value * child_quantity
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return result
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@classmethod
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def get_total_quantity(cls, cost_item):
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return sum([q[3] for q in cost_item.CostQuantities or []]) or 1.0
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@classmethod
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def get_primitive_applied_value(cls, applied_value):
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print('applied value is ', applied_value)
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if not applied_value:
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return 0.0
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elif isinstance(applied_value, float):
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return applied_value
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elif hasattr(applied_value, "wrappedValue") and isinstance(applied_value.wrappedValue, float):
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return applied_value.wrappedValue
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elif applied_value.is_a("IfcMeasureWithUnit"):
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return applied_value.ValueComponent
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assert False, "Applied value {applied_value} not implemented"
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@@ -0,0 +1,13 @@
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class Usecase:
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def __init__(self, file, **settings):
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self.file = file
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self.settings = {"cost_value": None, "attributes": {}}
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for key, value in settings.items():
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self.settings[key] = value
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def execute(self):
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for name, value in self.settings["attributes"].items():
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if name == "AppliedValue" and value is not None:
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# TODO: support all applied value select types
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value = self.file.createIfcReal(value)
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setattr(self.settings["cost_value"], name, value)
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@@ -0,0 +1,9 @@
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class Usecase:
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def __init__(self, file, **settings):
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self.file = file
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self.settings = {"cost_value": None}
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for key, value in settings.items():
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self.settings[key] = value
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def execute(self):
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self.file.remove(self.settings["cost_value"])
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