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1 change: 1 addition & 0 deletions .gitignore
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node_modules
**/.venv/
22 changes: 22 additions & 0 deletions sprint5-prep-exercises/classes_and_objects.py
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class Person:
def __init__(self, name: str, age: int, preferred_operating_system: str) -> None:
self.name = name
self.age = age
self.preferred_operating_system = preferred_operating_system


def is_adult(person: Person) -> bool:
return person.age >= 18


def get_postal_address(person: Person) -> str:
return person.address


imran = Person("Imran", 22, "Ubuntu")
eliza = Person("Eliza", 34, "Arch Linux")

print(imran.name)
print(eliza.name)
print(is_adult(imran))
print(is_adult(eliza))
30 changes: 30 additions & 0 deletions sprint5-prep-exercises/dataclass_exercise.py
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from dataclasses import dataclass
from datetime import date


@dataclass(frozen=True)
class Person:
name: str
date_of_birth: date
preferred_operating_system: str

def is_adult(self) -> bool:
today = date.today()
has_had_birthday_this_year = (today.month, today.day) >= (
self.date_of_birth.month,
self.date_of_birth.day,
)
age = today.year - self.date_of_birth.year
if not has_had_birthday_this_year:
age -= 1
return age >= 18


imran = Person("Imran", date(2002, 6, 15), "Ubuntu")
imran2 = Person("Imran", date(2002, 6, 15), "Ubuntu")
eliza = Person("Eliza", date(1990, 11, 20), "Arch Linux")

print(imran)
print(imran == imran2)
print(imran.is_adult())
print(eliza.is_adult())
108 changes: 108 additions & 0 deletions sprint5-prep-exercises/enums.py
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from dataclasses import dataclass
from enum import Enum
import sys
from typing import List


class OperatingSystem(Enum):
MACOS = "macOS"
ARCH = "Arch Linux"
UBUNTU = "Ubuntu"


@dataclass(frozen=True)
class Person:
name: str
age: int
preferred_operating_system: OperatingSystem


@dataclass(frozen=True)
class Laptop:
id: int
manufacturer: str
model: str
screen_size_in_inches: float
operating_system: OperatingSystem


def find_possible_laptops(laptops: List[Laptop], person: Person) -> List[Laptop]:
possible_laptops = []
for laptop in laptops:
if laptop.operating_system == person.preferred_operating_system:
possible_laptops.append(laptop)
return possible_laptops


def parse_age(raw_age: str) -> int:
age = int(raw_age)
if age <= 0:
raise ValueError("Age must be a positive integer")
return age


def parse_operating_system(raw_operating_system: str) -> OperatingSystem:
normalised_value = raw_operating_system.strip().lower()
for operating_system in OperatingSystem:
if normalised_value == operating_system.value.lower() or normalised_value == operating_system.name.lower():
return operating_system

valid_values = ", ".join(operating_system.value for operating_system in OperatingSystem)
raise ValueError(f"Preferred operating system must be one of: {valid_values}")


def create_person_from_input() -> Person:
name = input("Name: ").strip()
if not name:
raise ValueError("Name cannot be empty")

raw_age = input("Age: ").strip()
raw_operating_system = input("Preferred operating system (Ubuntu, Arch Linux, macOS): ").strip()

age = parse_age(raw_age)
preferred_operating_system = parse_operating_system(raw_operating_system)

return Person(name=name, age=age, preferred_operating_system=preferred_operating_system)


def count_laptops_for_operating_system(laptops: List[Laptop], operating_system: OperatingSystem) -> int:
return sum(1 for laptop in laptops if laptop.operating_system == operating_system)


def find_most_available_operating_system(laptops: List[Laptop]) -> OperatingSystem:
counts = {
operating_system: count_laptops_for_operating_system(laptops, operating_system)
for operating_system in OperatingSystem
}
return max(counts, key=lambda operating_system: counts[operating_system])

def main() -> None:
laptops = [
Laptop(id=1, manufacturer="Dell", model="XPS", screen_size_in_inches=13, operating_system=OperatingSystem.ARCH),
Laptop(id=2, manufacturer="Dell", model="XPS", screen_size_in_inches=15, operating_system=OperatingSystem.UBUNTU),
Laptop(id=3, manufacturer="Dell", model="XPS", screen_size_in_inches=15, operating_system=OperatingSystem.UBUNTU),
Laptop(id=4, manufacturer="Apple", model="macBook", screen_size_in_inches=13, operating_system=OperatingSystem.MACOS),
]

try:
person = create_person_from_input()
except ValueError as error:
print(error, file=sys.stderr)
raise SystemExit(1)

possible_laptops = find_possible_laptops(laptops, person)
preferred_count = len(possible_laptops)
print(f"The library has {preferred_count} laptop(s) with {person.preferred_operating_system.value}.")

best_operating_system = find_most_available_operating_system(laptops)
best_count = count_laptops_for_operating_system(laptops, best_operating_system)

if best_operating_system != person.preferred_operating_system and best_count > preferred_count:
print(
f"If you're willing to accept {best_operating_system.value}, "
f"you're more likely to get a laptop ({best_count} available)."
)


if __name__ == "__main__":
main()
35 changes: 35 additions & 0 deletions sprint5-prep-exercises/generics_exercise.py
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from dataclasses import dataclass
from datetime import date
from typing import List


@dataclass(frozen=True)
class Person:
name: str
date_of_birth: date
children: List["Person"]

@property
def age(self) -> int:
today = date.today()
has_had_birthday_this_year = (today.month, today.day) >= (
self.date_of_birth.month,
self.date_of_birth.day,
)
years = today.year - self.date_of_birth.year
if not has_had_birthday_this_year:
years -= 1
return years


fatma = Person(name="Fatma", date_of_birth=date(2017, 5, 3), children=[])
aisha = Person(name="Aisha", date_of_birth=date(2019, 9, 12), children=[])

imran = Person(name="Imran", date_of_birth=date(1991, 2, 10), children=[fatma, aisha])

def print_family_tree(person: Person) -> None:
print(person.name)
for child in person.children:
print(f"- {child.name} ({child.age})")

print_family_tree(imran)
47 changes: 47 additions & 0 deletions sprint5-prep-exercises/inheritance.py
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class Parent:
def __init__(self, first_name: str, last_name: str):
self.first_name = first_name
self.last_name = last_name

def get_name(self) -> str:
return f"{self.first_name} {self.last_name}"


class Child(Parent):
def __init__(self, first_name: str, last_name: str):
super().__init__(first_name, last_name)
self.previous_last_names: list[str] = []

def change_last_name(self, last_name: str) -> None:
self.previous_last_names.append(self.last_name)
self.last_name = last_name

def get_full_name(self) -> str:
suffix = ""
if len(self.previous_last_names) > 0:
suffix = f" (née {self.previous_last_names[0]})"
return f"{self.first_name} {self.last_name}{suffix}"

person1 = Child("Elizaveta", "Alekseeva")
print(person1.get_name())
print(person1.get_full_name())
person1.change_last_name("Tyurina")
print(person1.get_name())
print(person1.get_full_name())

person2 = Parent("Elizaveta", "Alekseeva")
print(person2.get_name())
if isinstance(person2, Child):
print(person2.get_full_name())
person2.change_last_name("Tyurina")
print(person2.get_name())
print(person2.get_full_name())
else:
print("Parent does not have get_full_name() or change_last_name().")

# Predictions vs actual output (play computer):
# 1) Child inherits get_name() from Parent.
# 2) Child-specific get_full_name() shows the maiden name after changing last name.
# 3) Parent supports get_name() only; Child-only methods are unavailable on Parent.

""" When I played computer, I predicted that Child would inherit get_name() from Parent, so person1.get_name() should work exactly like in Parent, while person1.get_full_name() would only exist on Child and add extra detail after a last-name change. Running the code confirmed this: before changing the name, both methods show “Elizaveta Alekseeva”, and after change_last_name("Tyurina"), get_full_name() includes the maiden-name suffix (née Alekseeva). For person2 (a Parent), only get_name() is available, which shows that inheritance gives Child all parent behavior plus additional child-specific methods, but not the other way around. """
28 changes: 28 additions & 0 deletions sprint5-prep-exercises/methods.py
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from datetime import date


class Person:
def __init__(self, name: str, date_of_birth: date, preferred_operating_system: str) -> None:
self.name = name
self.date_of_birth = date_of_birth
self.preferred_operating_system = preferred_operating_system

def is_adult(self) -> bool:
today = date.today()
has_had_birthday_this_year = (today.month, today.day) >= (
self.date_of_birth.month,
self.date_of_birth.day,
)
age = today.year - self.date_of_birth.year
if not has_had_birthday_this_year:
age -= 1
return age >= 18


imran = Person("Imran", date(2002, 6, 15), "Ubuntu")
eliza = Person("Eliza", date(1990, 11, 20), "Arch Linux")

print(imran.name)
print(imran.is_adult())
print(eliza.name)
print(eliza.is_adult())
30 changes: 30 additions & 0 deletions sprint5-prep-exercises/type_checking.py
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def open_account(balances: dict[str, int], name: str, amount: int) -> None:
balances[name] = amount

def sum_balances(accounts: dict[str, int]) -> int:
total = 0
for name, pence in accounts.items():
print(f"{name} had balance {pence}")
total += pence
return total

def format_pence_as_string(total_pence: int) -> str:
if total_pence < 100:
return f"{total_pence}p"
pounds = int(total_pence / 100)
pence = total_pence % 100
return f"£{pounds}.{pence:02d}"

balances = {
"Sima": 700,
"Linn": 545,
"Georg": 831,
}

open_account(balances, "Tobi", 913)
open_account(balances, "Olya", 713)

total_pence = sum_balances(balances)
total_string = format_pence_as_string(total_pence)

print(f"The bank accounts total {total_string}")
42 changes: 42 additions & 0 deletions sprint5-prep-exercises/type_guided_refactorings.py
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from dataclasses import dataclass
from typing import List

@dataclass(frozen=True)
class Person:
name: str
age: int
preferred_operating_systems: List[str]


@dataclass(frozen=True)
class Laptop:
id: int
manufacturer: str
model: str
screen_size_in_inches: float
operating_system: str


def find_possible_laptops(laptops: List[Laptop], person: Person) -> List[Laptop]:
possible_laptops = []
for laptop in laptops:
if laptop.operating_system in person.preferred_operating_systems:
possible_laptops.append(laptop)
return possible_laptops


people = [
Person(name="Imran", age=22, preferred_operating_systems=["Ubuntu", "Arch Linux"]),
Person(name="Eliza", age=34, preferred_operating_systems=["Arch Linux", "Ubuntu"]),
]

laptops = [
Laptop(id=1, manufacturer="Dell", model="XPS", screen_size_in_inches=13, operating_system="Arch Linux"),
Laptop(id=2, manufacturer="Dell", model="XPS", screen_size_in_inches=15, operating_system="Ubuntu"),
Laptop(id=3, manufacturer="Dell", model="XPS", screen_size_in_inches=15, operating_system="ubuntu"),
Laptop(id=4, manufacturer="Apple", model="macBook", screen_size_in_inches=13, operating_system="macOS"),
]

for person in people:
possible_laptops = find_possible_laptops(laptops, person)
print(f"Possible laptops for {person.name}: {possible_laptops}")