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Copy pathclasses.py
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451 lines (344 loc) · 12.6 KB
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# class Dog:
# def __init__(self,name,age):
# self.name = name
# self.age = age
# def sit(self):
# print(f"{self.name} is now sitting ")
# def roll_over(self):
# print(f"{self.name} rolled over")
# dog = Dog("john", 2)
# sit = dog.sit()
# sit = dog.roll_over()
#9-1 Restaruant
# class Restaruant:
# def __init__(self,name,cuisine,open):
# self.name = name
# self.cuisine = cuisine
# self.open = open
# def restaruant_name(self):
# print(f"Welcome to {self.name} Restaruant!")
# def describe_restaruant(self):
# print(f"{self.name} is a five star restaruant, We serve alot of Gourmet"
# "\nThe only place with nice meals")
# def open_restaruant(self):
# if self.open == True:
# print(f"{self.name} is now, opened!")
# else:
# print(f"Sorry {self.name} isn't opened currently")
# def lines(self):
# print("------------------------------------")
# restaruant1 = Restaruant("KFC","Fried rice",False)
# r1 = restaruant1.restaruant_name()
# r1 = restaruant1.describe_restaruant()
# r1 = restaruant1.open_restaruant()
# r1 = restaruant1.lines()
# # 9-2 creating like three calls
# restaruant2 = Restaruant("Juspizza","Pizza",True)
# r2 = restaruant2.restaruant_name()
# r2 = restaruant2.describe_restaruant()
# r2 = restaruant2.open_restaruant()
# r2 = restaruant2.lines()
# restaruant3 = Restaruant("Mcdonalds","Buger",False)
# r3 = restaruant3.restaruant_name()
# r3 = restaruant3.describe_restaruant()
# r3 = restaruant3.open_restaruant()
# r3 = restaruant3.lines()
# restaruant4 = Restaruant("Lemon's lime","lime juice",True)
# r4 = restaruant4.restaruant_name()
# r4 = restaruant4.describe_restaruant()
# r4 = restaruant4.open_restaruant()
# r4 = restaruant4.lines()
#9-3 User class
# class User:
# def __init__(self,name=str,gender=str,age=int,active=bool):
# self.name = name
# self.gender = gender
# self.age = age
# self.active = active
# def describe_user(self):
# self.user_name()
# self.user_gender()
# self.user_age()
# self.user_active()
# def user_name(self):
# print(f"Welcome User:{self.name}\nHow you feeling today XD")
# def user_gender(self):
# print(f"The Gender of User,{self.name} is a {self.gender}")
# def user_age(self):
# print(f"User: {self.name} is {self.age} years old")
# def user_active(self):
# if self.active == True:
# print(f"The User's account is active")
# else:
# print(f"The account isn't active")
# def lines(self):
# print("------------------------------------")
# john = User("Rocky","MALE",20,True)
# # user = john.user_name()
# # user = john.user_gender()
# # user = john.user_age()
# # user = john.user_active()
# # user = john.lines
# user = john.describe_user()
#creating a Car class
# class Car:
# def __init__(self,make,model,year=int):
# self.make = make
# self.model = model
# self.year = year
# def get_descriptive_name(self):
# long_name = f"{self.year} {self.make} {self.model}"
# return long_name.title()
# my_car = Car("audi", 'a4',2025)
# print(my_car.get_descriptive_name())
#setting a default value for an attribute
# class Car:
# def __init__(self,make,model,year,mileage):
# self.make = make
# self.model = model
# self.year = year
# self.odometer_reading = mileage
# def get_descriptive_name(self):
# long_name = f"{self.year} {self.make} {self.model}"
# return long_name
# def read_odometer(self):
# print(f"This car has {self.odometer_reading} mile on it.")
# def update_odometer(self,mileage):
# if mileage >= self.odometer_reading:
# self.odometer_reading = mileage
# else:
# print("You can't roll back an odometer")
# def increment_odometer(self,miles):
# self.odometer_reading += miles
# my_new_car = Car("audi","a4",2024,mileage=100)
# print(my_new_car.get_descriptive_name())
# my_new_car.update_odometer(23_500)
# my_new_car.read_odometer()
# my_new_car.increment_odometer(500)
# my_new_car.read_odometer()
#9-4 Number served
# class Restaruant:
# def __init__(self,name,cuisine,open,c_served):
# self.name = name
# self.cuisine = cuisine
# self.open = open
# self.customer_served = c_served
# def restaruant_name(self):
# print(f"Welcome to {self.name} Restaruant!")
# def describe_restaruant(self):
# print(f"{self.name} is a five star restaruant, We serve alot of Gourmet"
# "\nThe only place with nice meals")
# def open_restaruant(self):
# if self.open == True:
# print(f"{self.name} is now, opened!")
# else:
# print(f"Sorry {self.name} isn't opened currently")
# def lines(self):
# print("------------------------------------")
# def number_served(self):
# print(f"{self.customer_served} customers have been served today. ")
# def increment_number_served(self,people):
# self.customer_served += people
# restaruant1 = Restaruant("KFC","Fried rice",False,c_served=18)
# restaruant1.increment_number_served(10)
# restaruant1.describe_restaruant()
# restaruant1.number_served()
#9-5
# class User:
# def __init__(self,name=str,gender=str,age=int,active=bool,attempts=0):
# self.name = name
# self.gender = gender
# self.age = age
# self.active = active
# self.attempts = attempts
# def describe_user(self):
# self.user_name()
# self.user_gender()
# self.user_age()
# self.user_active()
# def user_name(self):
# print(f"Welcome User:{self.name}\nHow you feeling today XD")
# def user_gender(self):
# print(f"The Gender of User,{self.name} is a {self.gender}")
# def user_age(self):
# print(f"User: {self.name} is {self.age} years old")
# def user_active(self):
# if self.active == True:
# print(f"The User's account is active")
# else:
# print(f"The account isn't active")
# def lines(self):
# print("------------------------------------")
# def increment_login_attempts(self):
# self.name == "John"
# if self.name != "John":
# self.attempts += 1
# if self.attempts != 3:
# print(f"You have {3-self.attempts} attempts left")
# else:
# print(f"You have {3-self.attempts} attempts left")
# else:
# pass
# def login_attempts(self):
# print(f"You have made this amount of attempts:{self.attempts} ")
# def rest_login_attempts(self):
# self.attempts = 0
# print("You have reseted the login attempts")
# #john = User("Rocky","MALE",20,True)
# john = User("Rocky","MALE",20,True)
# # user = john.user_name()
# # user = john.user_gender()
# # user = john.user_age()
# # user = john.user_active()
# # user = john.lines()
# john.increment_login_attempts()
# john.login_attempts()
# john.rest_login_attempts()
# john.login_attempts()
# #user = john.login_attempts()
# class Car:
# def __init__(self,make,model,year):
# self.make = make
# self.model = model
# self.year = year
# self.odometer_reading = 0
# def get_descriptive_name(self):
# long_name = f"{self.year} {self.make} {self.model} "
# return long_name.title()
# def read_odometer(self):
# print(f"This car has {self.odometer_reading} miles on it.")
# def update_odometer(self, mileage):
# if mileage >= self.odometer_reading:
# self.odometer_reading = mileage
# else:
# print("You can't roll back an odometer")
# def increment_odometer(self, miles):
# self.odometer_reading += miles
# class Battery:
# def __init__(self,battery_size=40):
# self.battery_size = battery_size
# def get_range(self):
# if self.battery_size == 40 :
# range = 150
# elif self.battery_size == 65:
# range = 225
# print(f"This car can go about {range} miles on a full charge.")
# class ElectricCar(Car):
# def __init__(self, make, model, year):
# super().__init__(make, model, year)
# self.battery = Battery()
# def describe_battery(self):
# print(f"This car has a {self.battery}-kWh battery.")
# my_leaf = ElectricCar('nissan', 'leaf', 2024)
# print(my_leaf.get_descriptive_name())
# my_leaf.describe_battery()
# my_leaf.battery.get_range()
#9-6
#9-4 Number served
# class Restaruant:
# def __init__(self,name,cuisine,open,c_served):
# self.name = name
# self.cuisine = cuisine
# self.open = open
# self.customer_served = c_served
# def restaruant_name(self):
# print(f"Welcome to {self.name} Restaruant!")
# def describe_restaruant(self):
# print(f"{self.name} is a five star restaruant, We serve alot of Gourmet"
# "\nThe only place with nice meals")
# def open_restaruant(self):
# if self.open == True:
# print(f"{self.name} is now, opened!")
# else:
# print(f"Sorry {self.name} isn't opened currently")
# def lines(self):
# print("------------------------------------")
# def number_served(self):
# print(f"{self.customer_served} customers have been served today. ")
# def increment_number_served(self,people):
# self.customer_served += people
# def get_flavor(self):
# return ["stawberry","blueberry","choco","mint"]
# class Icecream_stand(Restaruant):
# def __init__(self, name, cuisine, open, c_served,):
# super().__init__(name, cuisine, open, c_served,)
# self.flavor = self.get_flavor()
# iceStands = Restaruant("IceStand","Icecreams",False,c_served=18)
# print(iceStands.get_flavor())
#9-7
#9-3
# class User:
# def __init__(self, name: str, gender: str, age: int, active: bool):
# self.name = name
# self.gender = gender
# self.age = age
# self.active = active
# class Admin(User):
# def __init__(self, name: str, gender: str, age: int, active: bool):
# # Correctly call the parent class constructor
# super().__init__(name, gender, age, active)
# # Store the list of privileges directly as an attribute
# self.privileges = ['can add post', 'can delete post', 'can ban user']
# # Create a method to cleanly print or return them
# def show_privileges(self):
# print(f"Admin Privileges: {', '.join(self.privileges)}")
# return self.privileges
# # 1. Create an instance of Admin (not User)
# user1 = Admin('Admin', 'M', 20, True)
# # 2. Call the method to see the privileges
# user1.show_privileges()
#9-8
# class User:
# def __init__(self, name: str, gender: str, age: int, active: bool):
# self.name = name
# self.gender = gender
# self.age = age
# self.active = active
# class Privileges():
# def __init__(self):
# # Store the list of privileges directly as an attribute
# self.privileges = ['can add post', 'can delete post', 'can ban user']
# # Create a method to cleanly print or return them
# def show_privileges(self):
# print(f"Admin Privileges: {', '.join(self.privileges)}")
# return self.privileges
# class Admin(User):
# def __init__(self, name: str, gender: str, age: int, active: bool):
# # Correctly call the parent class constructor
# super().__init__(name, gender, age, active)
# # Connect the Privileges class to the Admin class
# self.privileges = Privileges()
# # 1. Create an instance of Admin (not User)
# user1 = Admin('Admin', 'M', 20, True)
# # 2. Call the method to see the privileges
# user1.privileges.show_privileges()
# from random import randint
# class Dice :
# def __init__(self,):
# self.side = 6
# def roll_dice(self):
# output = randint(1, 20)
# print(output)
# return output
# user= Dice()
# rolled_dice = 0
# while True:
# rolled_dice += 1
# vaule = user.roll_dice()
# if vaule == 20:
# break
# print("Number of rolls:", rolled_dice)
#9-14
# from random import choice, randint
# class Lottery:
# def __init__(self):
# pass
# def ruffle(self):
# letters = ["A", "T", "G", "Y", "L"]
# number = randint(1, 10)
# letter = choice(letters)
# output = f"{letter}{number}"
# print(output)
# return output
# game = Lottery()
# game.ruffle()