Intern
1. Escribir un objeto Python "switches" en formato YAML 2. Transformar "switches" para que solo queden los conmutadores "cisco" 3. Usando el módulo estándar ipaddress, obtener la última dirección del host en la red "172.16.0.0/28" 4. Analizar "dhcp_snooping_table" en una lista de diccionarios con el siguiente formato: ```python dhcp_snooping_table_parsed = [ { "mac": "00:E9:BC:3F:A6:50", "ip": "100.1.1.6", "interface": "FastEthernet0/20", }, { "mac": "00:E9:22:11:A6:50", "ip": "100.1.1.7", "interface": "FastEthernet0/21", } ] ``` 5. Escribir una clase "NetworkSubnet" que tenga 2 métodos: - get_subnet - devuelve la primera subred disponible de la longitud especificada como un objeto de la clase IPv4Network - show_network_pool - devuelve una lista de subredes disponibles ```python from ipaddress import IPv4Network class NetworkSubnet: def __init__(self, aggregate_network: str): ... def get_subnet(self, length: int) -> IPv4Network: ... def show_network_pool(self) -> list[IPv4Network]: ... net = NetworkSubnet(aggregate_network="172.16.0.0/24") net_1 = net.get_subnet(length=26) print(f"{net_1=}") net_1=IPv4Network('172.16.0.0/26') print(net.get_subnet(length=25)) 172.16.0.128/25 print(net.get_subnet(length=30)) 172.16.0.64/30 print(net.show_network_pool()) [IPv4Network('172.16.0.64/30'), IPv4Network('172.16.0.72/29'), IPv4Network('172.16.0.80/28'), IPv4Network('172.16.0.96/27')] ```
sobes.tech AI
Respuesta de la IA
- Пример объекта
switchesв YAML формате:
switches:
- name: switch1
vendor: cisco
ip: 192.168.1.1
- name: switch2
vendor: juniper
ip: 192.168.1.2
- name: switch3
vendor: cisco
ip: 192.168.1.3
- Преобразование, чтобы оставить только коммутаторы Cisco:
import yaml
with open('switches.yaml') as f:
data = yaml.safe_load(f)
cisco_switches = [sw for sw in data['switches'] if sw['vendor'].lower() == 'cisco']
print(cisco_switches)
- Получение последнего адреса хоста в сети "172.16.0.0/28":
import ipaddress
network = ipaddress.ip_network('172.16.0.0/28')
last_host = network.broadcast_address - 1
print(last_host) # 172.16.0.14
- Парсинг
dhcp_snooping_tableв список словарей:
dhcp_snooping_table = '''
MacAddress IpAddress Interface
00:E9:BC:3F:A6:50 100.1.1.6 FastEthernet0/20
00:E9:22:11:A6:50 100.1.1.7 FastEthernet0/21
'''
lines = dhcp_snooping_table.strip().split('\n')[1:] # пропускаем заголовок
parsed = []
for line in lines:
mac, ip, interface = line.split()
parsed.append({"mac": mac, "ip": ip, "interface": interface})
print(parsed)
- Класс
NetworkSubnetс требуемыми методами:
from ipaddress import IPv4Network
class NetworkSubnet:
def __init__(self, aggregate_network: str):
self.aggregate = IPv4Network(aggregate_network)
self.available_subnets = [self.aggregate]
def get_subnet(self, length: int) -> IPv4Network:
for i, subnet in enumerate(self.available_subnets):
if subnet.prefixlen <= length:
# Разбиваем подсеть на более мелкие
subnets = list(subnet.subnets(new_prefix=length))
if subnets:
allocated = subnets[0]
# Обновляем пул доступных подсетей
remaining = subnets[1:] + self.available_subnets[:i] + self.available_subnets[i+1:]
self.available_subnets = remaining
return allocated
raise ValueError("Нет доступных подсетей нужного размера")
def show_network_pool(self) -> list[IPv4Network]:
return self.available_subnets
# Пример использования
net = NetworkSubnet(aggregate_network="172.16.0.0/24")
net_1 = net.get_subnet(length=26)
print(f"{net_1=}") # 172.16.0.0/26
print(net.get_subnet(length=25)) # 172.16.0.64/25
print(net.get_subnet(length=30)) # 172.16.0.192/30
print(net.show_network_pool())