Dodanie rodzaju towaru w paczce, oraz temperatury i wilgotności na polu w magazynie
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agent.py
1
agent.py
@ -236,3 +236,4 @@ class Agent:
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pack.lays_on_field.capacity -= pack.size
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pack.status = PackStatus.STORED
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self.warehouse.packages.append(pack)
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print(tile.air_temperature, tile.humidity)
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33
products_types.py
Normal file
33
products_types.py
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@ -0,0 +1,33 @@
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PRODUCT_TYPES = {
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"freezed": [
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"frozen food",
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"seeds",
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"frozen liquids"
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],
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"fragile": [
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"glass",
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"porcelain",
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"vials",
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"phials",
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"plate",
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],
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"keep_dry": [
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"electronic",
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"drugs",
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"books",
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"clothes",
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"cardboard"
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],
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"normal": [
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"cosmetics",
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"wood",
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"metal",
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"plastic"
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],
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"flammable": [
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"gasoline",
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"lacquer",
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"ammo"
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]
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}
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50
warehouse.py
50
warehouse.py
@ -1,4 +1,5 @@
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from attributes import PackStatus
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from products_types import PRODUCT_TYPES
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import random
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import queue
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from collections import namedtuple
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@ -20,6 +21,8 @@ class Pack:
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def __init__(self, size=5, categ='general', lays_on_field=None):
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self.size = size
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self.category = categ
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self.products_inside = self.set_products_inside()
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assert isinstance(lays_on_field, Tile), AssertionError("Attribute lays_on_field must be a Tile object! You know, package cannot lay in void :)")
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self.lays_on_field = lays_on_field
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self.status = self.set_status()
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@ -35,6 +38,26 @@ class Pack:
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status = PackStatus.STORED
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return status
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def set_products_inside(self):
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seed = random.random()
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products_category = None
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if seed < 0.6:
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products_category = "normal"
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elif 0.6 <= seed < 0.75:
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products_category = "keep_dry"
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elif 0.75 <= seed < 0.9:
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products_category = "fragile"
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elif 0.9 <= seed < 0.98:
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products_category = "freezed"
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elif 0.96 <= seed <= 1.0:
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products_category = "flammable"
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products_in_category = PRODUCT_TYPES.get(products_category, ["food"])
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product_inside = random.choice(products_in_category)
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print(product_inside)
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return product_inside
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CATEGORY = {
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'floor': CategoryData('Floor', True, False), #lava
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'rack': CategoryData('Rack', False, True),
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@ -53,7 +76,10 @@ class Warehouse:
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self.no_of_packages = no_of_packages
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self.generate_racks()
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self.open_isolated_areas()
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self.set_temperature(20, 30)
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self.set_humidity()
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self.create_fridge(10)
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print([row[0].air_temperature for row in self.tiles])
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self.packages = self.place_packages(no_of_packages)
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self.tiles[1][1] = Tile('floor', 1, 1)
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def __str__(self):
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@ -97,6 +123,21 @@ class Warehouse:
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node_y = next_node.y_position
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self.tiles[node_x][node_y] = Tile('rack', node_x, node_y)
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def set_temperature(self, min_temperature=20, max_temperature=30):
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for num, row in enumerate(self.tiles):
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row_temperature = min_temperature + round(num/2)
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for cell in row:
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cell.air_temperature = row_temperature
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def set_humidity(self, min_humidity=0.2, max_humidity=0.7):
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current_humidity = min_humidity
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for y in range(self.height):
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current_humidity += (0.1/4)
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for x in range(self.width):
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self.tiles[x][y].humidity = round(current_humidity, 1)
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# print(round(current_humidity, 1))
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def create_fridge(self, size):
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x_corner = random.choice(['left', 'right'])
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y_corner = random.choice(['top', 'bottom'])
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@ -124,9 +165,9 @@ class Warehouse:
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for num, row in enumerate(rows, start_x):
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for index, tile in enumerate(row[start_y:end_y], start_y):
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if self.tiles[num][index].category.name == "Floor":
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self.tiles[num][index] = Tile('fridge_floor', num, index)
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self.tiles[num][index] = Tile('fridge_floor', num, index, temperature=-5)
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else:
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self.tiles[num][index] = Tile('fridge', num, index, capacity=random.randrange(10, 12))
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self.tiles[num][index] = Tile('fridge', num, index, capacity=random.randrange(10, 12), temperature=-15)
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def get_not_rack_nodes(self, node_x, node_y):
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adjacent_tiles = self.get_adjacent_tiles(node_x, node_y)
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@ -181,6 +222,7 @@ class Warehouse:
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self.tiles[bottom_left.x][bottom_left.y]
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]
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return diagonals
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def get_all_racks(self):
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""":return list of Tile objects"""
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racks = []
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@ -247,10 +289,12 @@ class Warehouse:
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return wall
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class Tile:
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def __init__(self, category, x_position, y_position, capacity=10):
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def __init__(self, category, x_position, y_position, capacity=10, temperature: int=24, humidity: float=0.3):
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self.category = CATEGORY.get(category, CATEGORY['floor'])
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self.x_position = x_position
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self.y_position = y_position
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self.air_temperature = temperature
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self.humidity = humidity
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self.capacity = capacity
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