komentarze dla bambusków
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parent
30ccb27ab8
commit
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@ -1,3 +1,4 @@
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#definicje
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import os
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import os
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import pygame
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import pygame
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BLOCK_SIZE = 60
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BLOCK_SIZE = 60
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2
field.py
2
field.py
@ -1,5 +1,5 @@
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class Field:
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class Field:
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def __init__(self, plant, rect, soil):
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def __init__(self, plant, rect, soil): #składa się z rośliny oraz gleby, plus koordynaty danego pola
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self.plant = plant
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self.plant = plant
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self.rect = rect
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self.rect = rect
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self.soil = soil
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self.soil = soil
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8
map.py
8
map.py
@ -5,12 +5,12 @@ import pygame
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import soil
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import soil
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class Map:
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class Map:
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def __init__(self, fields):
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def __init__(self, fields):
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self.fields = fields
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self.fields = fields #przechowuje wszystkie pola (Field)
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def get_fields(self):
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def get_fields(self):
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return self.fields
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return self.fields
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def set_fields(self, fields):
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def set_fields(self, fields):
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self.fields = fields
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self.fields = fields
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def create_base_map(self):
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def create_base_map(self): #wypełnia mapę polami z bazowymi logicznymi wartościami
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for i in range(definitions.WIDTH_AMOUNT):
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for i in range(definitions.WIDTH_AMOUNT):
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temp_map_field = []
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temp_map_field = []
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for j in range(definitions.HEIGHT_AMOUNT):
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for j in range(definitions.HEIGHT_AMOUNT):
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@ -23,7 +23,7 @@ class Map:
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temp_field = field.Field(temp_plant, temp_rect, temp_soil)
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temp_field = field.Field(temp_plant, temp_rect, temp_soil)
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temp_map_field.append(temp_field)
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temp_map_field.append(temp_field)
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self.fields.append(temp_map_field)
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self.fields.append(temp_map_field)
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def fill_map(self):
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def fill_map(self): #wypełnia mapę teksturami na podstawie logicznego stanu pól
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for i in range(definitions.WIDTH_AMOUNT):
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for i in range(definitions.WIDTH_AMOUNT):
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for j in range(definitions.HEIGHT_AMOUNT):
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for j in range(definitions.HEIGHT_AMOUNT):
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field = self.fields[i][j]
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field = self.fields[i][j]
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@ -81,7 +81,7 @@ class Map:
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elif block != definitions.DIRT or block != definitions.FARMLAND_DRY or block != definitions.FARMLAND_WET:
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elif block != definitions.DIRT or block != definitions.FARMLAND_DRY or block != definitions.FARMLAND_WET:
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definitions.WINDOW.blit(definitions.FARMLAND_WET, (rect.x, rect.y))
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definitions.WINDOW.blit(definitions.FARMLAND_WET, (rect.x, rect.y))
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definitions.WINDOW.blit(block, (rect.x, rect.y))
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definitions.WINDOW.blit(block, (rect.x, rect.y))
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def draw_window(self, tractor1_rect):
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def draw_window(self, tractor1_rect): #rysuje mapę
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self.fill_map()
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self.fill_map()
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definitions.WINDOW.blit(definitions.TRACTOR, (tractor1_rect.x, tractor1_rect.y))
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definitions.WINDOW.blit(definitions.TRACTOR, (tractor1_rect.x, tractor1_rect.y))
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pygame.display.update()
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pygame.display.update()
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6
plant.py
6
plant.py
@ -1,8 +1,8 @@
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import definitions
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import definitions
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class Plant:
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class Plant:
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def __init__(self, name, state):
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def __init__(self, name, state):
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self.name = name
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self.name = name #nazwa rośliny np. "wheat"
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self.state = state
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self.state = state #etap rozwoju rośliny
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def get_name(self):
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def get_name(self):
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return self.name
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return self.name
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def set_name(self, name):
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def set_name(self, name):
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@ -12,7 +12,7 @@ class Plant:
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def set_state(self, state):
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def set_state(self, state):
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self.state = state
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self.state = state
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@staticmethod
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@staticmethod
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def grow_plants(map1):
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def grow_plants(map1): #metoda statyczna, która zwiększa pole state (etap rozwoju rośliny) dla danej rośliny na danym polu o 1
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for i in range(definitions.WIDTH_AMOUNT):
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for i in range(definitions.WIDTH_AMOUNT):
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for j in range(definitions.HEIGHT_AMOUNT):
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for j in range(definitions.HEIGHT_AMOUNT):
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field = map1.get_fields()[i][j]
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field = map1.get_fields()[i][j]
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3
py.py
3
py.py
@ -6,6 +6,7 @@ import station
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import tractor
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import tractor
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pygame.display.set_caption("Smart Tractor")
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pygame.display.set_caption("Smart Tractor")
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def main():
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def main():
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#tworzenie podstawowych obiektów
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map1 = map.Map([])
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map1 = map.Map([])
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map1.create_base_map()
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map1.create_base_map()
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amount_of_seeds_dict = {"beetroot": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "carrot": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "potato": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "wheat": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE}
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amount_of_seeds_dict = {"beetroot": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "carrot": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "potato": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE, "wheat": definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE}
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@ -16,7 +17,7 @@ def main():
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tractor1_rect = pygame.Rect(tractor1.get_x(), tractor1.get_y(), definitions.BLOCK_SIZE, definitions.BLOCK_SIZE)
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tractor1_rect = pygame.Rect(tractor1.get_x(), tractor1.get_y(), definitions.BLOCK_SIZE, definitions.BLOCK_SIZE)
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clock = pygame.time.Clock()
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clock = pygame.time.Clock()
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run = True
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run = True
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while run:
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while run: #pętla główna programu
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clock.tick(definitions.FPS)
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clock.tick(definitions.FPS)
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for event in pygame.event.get():
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for event in pygame.event.get():
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if event.type == pygame.QUIT:
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if event.type == pygame.QUIT:
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6
soil.py
6
soil.py
@ -1,8 +1,8 @@
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class Soil:
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class Soil:
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def __init__(self, is_fertilized, state, water_level):
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def __init__(self, is_fertilized, state, water_level):
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self.is_fertilized = is_fertilized
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self.is_fertilized = is_fertilized #nienawieziona lub nawieziona
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self.state = state
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self.state = state #niezaorana lub zaorana
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self.water_level = water_level
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self.water_level = water_level #niepodlana lub podlana
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def get_is_fertilized(self):
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def get_is_fertilized(self):
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return self.is_fertilized
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return self.is_fertilized
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def set_is_fertilized(self, is_fertilized):
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def set_is_fertilized(self, is_fertilized):
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class Station:
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class Station:
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def __init__(self, collected_plants):
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def __init__(self, collected_plants):
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self.collected_plants = collected_plants
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self.collected_plants = collected_plants #collected_plants to słownik, przechowuje informacje o oddanych plonach
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def get_collected_plants(self, name):
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def get_collected_plants(self, name): #zwraca łączną ilość oddanych plonów dla podanej rośliny (name)
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return self.collected_plants[name]
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return self.collected_plants[name]
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def set_collected_plants(self, name, value):
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def set_collected_plants(self, name, value): #dla podanej rośliny (name) ustawia łączną ilość oddanych plonów (value)
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self.collected_plants[name] = value
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self.collected_plants[name] = value
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46
tractor.py
46
tractor.py
@ -2,28 +2,28 @@ import definitions
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import random
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import random
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class Tractor:
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class Tractor:
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def __init__(self, amount_of_seeds, collected_plants, fertilizer, fuel, water_level, x, y):
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def __init__(self, amount_of_seeds, collected_plants, fertilizer, fuel, water_level, x, y):
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self.amount_of_seeds = amount_of_seeds
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self.amount_of_seeds = amount_of_seeds #amount_of_seeds to słownik, przechowuje informacje o posiadanej ilości ziaren dla danej rośliny
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self.collected_plants = collected_plants
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self.collected_plants = collected_plants #collected_plants to słownik, przechowuje informacje o zebranych plonach
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self.fertilizer = fertilizer
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self.fertilizer = fertilizer #fertilizer to słownik, przechowuje informacje o ilości posiadanego nawozu dla konkretnej rośliny
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self.fuel = fuel
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self.fuel = fuel #aktualna ilość paliwa
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self.water_level = water_level
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self.water_level = water_level #aktualna ilość wody do podlewania
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self.x = x
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self.x = x
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self.y = y
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self.y = y
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def get_all_amount_of_seeds(self):
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def get_all_amount_of_seeds(self): #zwraca łączną ilość ziaren (suma ziaren dla wszystkich roślin)
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return self.amount_of_seeds["beetroot"] + self.amount_of_seeds["carrot"] + self.amount_of_seeds["potato"] + self.amount_of_seeds["wheat"]
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return self.amount_of_seeds["beetroot"] + self.amount_of_seeds["carrot"] + self.amount_of_seeds["potato"] + self.amount_of_seeds["wheat"]
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def get_amount_of_seeds(self, name):
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def get_amount_of_seeds(self, name): #zwraca łączną ilość ziaren dla podanej rośliny (name)
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return self.amount_of_seeds[name]
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return self.amount_of_seeds[name]
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def set_amount_of_seeds(self, name, value):
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def set_amount_of_seeds(self, name, value): #dla podanej rośliny (name) ustawia łączną ilość ziaren (value)
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self.amount_of_seeds[name] = value
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self.amount_of_seeds[name] = value
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def get_all_collected_plants(self):
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def get_all_collected_plants(self): #zwraca łączną ilość zebranych plonów (suma plonów wszystkich roślin)
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return self.collected_plants["beetroot"] + self.collected_plants["carrot"] + self.collected_plants["potato"] + self.collected_plants["wheat"]
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return self.collected_plants["beetroot"] + self.collected_plants["carrot"] + self.collected_plants["potato"] + self.collected_plants["wheat"]
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def get_collected_plants(self, name):
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def get_collected_plants(self, name): #zwraca łączną ilość zebranych plonów dla podanej rośliny (name)
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return self.collected_plants[name]
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return self.collected_plants[name]
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def set_collected_plants(self, name, value):
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def set_collected_plants(self, name, value): #dla podanej rośliny (name) ustawia łączną ilość zebranych plonów (value)
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self.collected_plants[name] = value
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self.collected_plants[name] = value
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def get_fertilizer(self, name):
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def get_fertilizer(self, name): #zwraca łączną ilość posiadanego nawozu dla podanej rośliny (name)
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return self.fertilizer[name]
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return self.fertilizer[name]
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def set_fertilizer(self, name, value):
|
def set_fertilizer(self, name, value): #dla podanej rośliny (name) ustawia ilość posiadanego nawozu (value)
|
||||||
self.fertilizer[name] = value
|
self.fertilizer[name] = value
|
||||||
def get_fuel(self):
|
def get_fuel(self):
|
||||||
return self.fuel
|
return self.fuel
|
||||||
@ -49,18 +49,14 @@ class Tractor:
|
|||||||
self.x = self.x + definitions.BLOCK_SIZE
|
self.x = self.x + definitions.BLOCK_SIZE
|
||||||
def move_up(self):
|
def move_up(self):
|
||||||
self.y = self.y - definitions.BLOCK_SIZE
|
self.y = self.y - definitions.BLOCK_SIZE
|
||||||
def station_restore(self, station1):
|
def station_restore(self, station1): #aktualizuje stan stacji pod względem oddanych plonów oraz uzupełnia zapasy traktora
|
||||||
station1.set_collected_plants("beetroot",
|
station1.set_collected_plants("beetroot", station1.get_collected_plants("beetroot") + self.get_collected_plants("beetroot"))
|
||||||
station1.get_collected_plants("beetroot") + self.get_collected_plants("beetroot"))
|
|
||||||
self.set_collected_plants("beetroot", 0)
|
self.set_collected_plants("beetroot", 0)
|
||||||
station1.set_collected_plants("carrot",
|
station1.set_collected_plants("carrot", station1.get_collected_plants("carrot") + self.get_collected_plants("carrot"))
|
||||||
station1.get_collected_plants("carrot") + self.get_collected_plants("carrot"))
|
|
||||||
self.set_collected_plants("carrot", 0)
|
self.set_collected_plants("carrot", 0)
|
||||||
station1.set_collected_plants("potato",
|
station1.set_collected_plants("potato", station1.get_collected_plants("potato") + self.get_collected_plants("potato"))
|
||||||
station1.get_collected_plants("potato") + self.get_collected_plants("potato"))
|
|
||||||
self.set_collected_plants("potato", 0)
|
self.set_collected_plants("potato", 0)
|
||||||
station1.set_collected_plants("wheat",
|
station1.set_collected_plants("wheat", station1.get_collected_plants("wheat") + self.get_collected_plants("wheat"))
|
||||||
station1.get_collected_plants("wheat") + self.get_collected_plants("wheat"))
|
|
||||||
self.set_collected_plants("wheat", 0)
|
self.set_collected_plants("wheat", 0)
|
||||||
self.set_amount_of_seeds("beetroot", definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE)
|
self.set_amount_of_seeds("beetroot", definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE)
|
||||||
self.set_amount_of_seeds("carrot", definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE)
|
self.set_amount_of_seeds("carrot", definitions.TRACTOR_AMOUNT_OF_SEEDS_EACH_TYPE)
|
||||||
@ -72,7 +68,7 @@ class Tractor:
|
|||||||
self.set_fertilizer("wheat", definitions.TRACTOR_FERTILIZER)
|
self.set_fertilizer("wheat", definitions.TRACTOR_FERTILIZER)
|
||||||
self.set_fuel(definitions.TRACTOR_FUEL)
|
self.set_fuel(definitions.TRACTOR_FUEL)
|
||||||
self.set_water_level(definitions.TRACTOR_WATER_LEVEL)
|
self.set_water_level(definitions.TRACTOR_WATER_LEVEL)
|
||||||
def do_work(self, map1, station1, tractor1_rect):
|
def do_work(self, map1, station1, tractor1_rect): #jaką pracę traktor ma wykonać na danym polu, na którym aktualnie przebywa (zmienia stan logiczny danego pola)
|
||||||
loop = True
|
loop = True
|
||||||
if self.get_all_amount_of_seeds() == 0:
|
if self.get_all_amount_of_seeds() == 0:
|
||||||
loop = False
|
loop = False
|
||||||
@ -149,7 +145,7 @@ class Tractor:
|
|||||||
field.get_soil().set_water_level(False)
|
field.get_soil().set_water_level(False)
|
||||||
field.get_soil().set_state(False)
|
field.get_soil().set_state(False)
|
||||||
self.set_collected_plants("wheat", self.get_collected_plants("wheat") + 1)
|
self.set_collected_plants("wheat", self.get_collected_plants("wheat") + 1)
|
||||||
def is_move_allowed(self, move, tractor1_rect):
|
def is_move_allowed(self, move, tractor1_rect): #sprawdza czy dany ruch, który chce wykonać traktor jest możliwy, zwraca prawdę lub fałsz
|
||||||
if move == 1 and tractor1_rect.y + definitions.BLOCK_SIZE + definitions.BLOCK_SIZE <= definitions.HEIGHT:
|
if move == 1 and tractor1_rect.y + definitions.BLOCK_SIZE + definitions.BLOCK_SIZE <= definitions.HEIGHT:
|
||||||
return True
|
return True
|
||||||
elif move == 2 and tractor1_rect.x - definitions.BLOCK_SIZE >= 0:
|
elif move == 2 and tractor1_rect.x - definitions.BLOCK_SIZE >= 0:
|
||||||
@ -160,7 +156,7 @@ class Tractor:
|
|||||||
return True
|
return True
|
||||||
else:
|
else:
|
||||||
return False
|
return False
|
||||||
def tractor1_handle_movement(self, tractor1_rect):
|
def tractor1_handle_movement(self, tractor1_rect): #odpowiada za poruszanie się traktora po mapie
|
||||||
loop = True
|
loop = True
|
||||||
while loop and self.get_fuel() > 0:
|
while loop and self.get_fuel() > 0:
|
||||||
random1 = random.randint(1, 4)
|
random1 = random.randint(1, 4)
|
||||||
|
Loading…
Reference in New Issue
Block a user