import tkinter as tk
import os
import sys
import time
import threading
import netifaces
from scapy.all import *
from scapy.layers.l2 import ARP


class ArpDetector:
    def __init__(self, interface):
        self.interface = interface
        self.ip_mac_map = {}
        self.attacker_ip = None
        self.attacker_mac = None
        self.thread = None
        self.stop_event = threading.Event()

    def start(self):
        self.thread = threading.Thread(target=self.run)
        self.thread.start()

    def stop(self):
        self.stop_event.set()
        self.thread.join()

    def run(self):
        self.attacker_ip = netifaces.ifaddresses(self.interface)[netifaces.AF_INET][0]['addr']
        self.attacker_mac = get_mac_address(ip=self.attacker_ip)
        print(f'Attacker IP: {self.attacker_ip}, MAC: {self.attacker_mac}')

        while not self.stop_event.is_set():
            self.scan_network()
            self.detect_arp_spoofing()
            time.sleep(5)

    def scan_network(self):
        for ip in netifaces.ifaddresses(self.interface)[netifaces.AF_INET][0]['addr'].split('.')[:-1]:
            for i in range(1, 255):
                target_ip = f'{ip}.{i}'
                if target_ip != self.attacker_ip:
                    arp_request = ARP(pdst=target_ip)
                    arp_reply = sr1(arp_request, timeout=1, verbose=0)
                    if arp_reply and arp_reply.hwsrc not in ('00:00:00:00:00:00', self.attacker_mac):
                        self.ip_mac_map[target_ip] = arp_reply.hwsrc

    def detect_arp_spoofing(self):
        for target_ip, target_mac in self.ip_mac_map.items():
            arp_request = ARP(op=1, pdst=target_ip, hwdst=target_mac, psrc=self.attacker_ip, hwsrc=self.attacker_mac)
            arp_reply = sr1(arp_request, timeout=1, verbose=0)
            if arp_reply and arp_reply.hwsrc != target_mac:
                print(f'ARP spoofing detected: {target_ip} ({target_mac}) -> {arp_reply.hwsrc}')

class IcmpFloodDetector:
    def __init__(self, interface):
        self.interface = interface
        self.attacker_ip = None
        self.thread = None
        self.stop_event = threading.Event()

    def start(self):
        self.thread = threading.Thread(target=self.run)
        self.thread.start()

    def stop(self):
        self.stop_event.set()
        self.thread.join()

    def run(self):
        self.attacker_ip = netifaces.ifaddresses(self.interface)[netifaces.AF_INET][0]['addr']
        print(f'Attacker IP: {self.attacker_ip}')

        while not self.stop_event.is_set():
            self.detect_icmp_flood()
            time.sleep(5)

    def detect_icmp_flood(self):
        icmp_packets = sniff(filter=f'icmp and src host {self.attacker_ip}', timeout=1, count=10)
        if len(icmp_packets) == 10:
            print('ICMP flood detected')

class TcpAttackDetector:
    def __init__(self, interface):
        self.interface = interface
        self.attacker_ip = None
        self.thread = None
        self.stop_event = threading.Event()

    def start(self):
        self.thread = threading.Thread(target=self.run)
        self.thread.start()

    def stop(self):
        self.stop_event.set()
        self.thread.join()

    def run(self):
        self.attacker_ip = netifaces.ifaddresses(self.interface)[netifaces.AF_INET][0]['addr']
        print(f'Attacker IP: {self.attacker_ip}')

        while not self.stop_event.is_set():
            self.detect_tcp_attack()
            time.sleep(5)

    def detect_tcp_attack(self):
        tcp_packets = sniff(filter=f'tcp and src host {self.attacker_ip}', timeout=1, count=10)
        if len(tcp_packets) == 10:
            print('TCP attack detected')

class NetworkScanner:
    def __init__(self, interface):
        self.interface = interface
        self.ip_mac_map = {}
        self.thread = None
        self.stop_event = threading.Event()

    def start(self):
        self.thread = threading.Thread(target=self.run)
        self.thread.start()

    def stop(self):
        self.stop_event.set()
        self.thread.join()

    def run(self):
        while not self.stop_event.is_set():
            self.scan_network()
            time.sleep(10)

    def scan_network(self):
        for ip in netifaces.ifaddresses(self.interface)[netifaces.AF_INET][0]['addr'].split('.')[:-1]:
            for i in range(1, 255):
                target_ip = f'{ip}.{i}'
                if target_ip not in self.ip_mac_map:
                    arp_request = ARP(pdst=target_ip)
                    arp_reply = sr1(arp_request, timeout=1, verbose=0)
                    if arp_reply and arp_reply.hwsrc not in ('00:00:00:00:00:00', 'ff:ff:ff:ff:ff:ff'):
                        self.ip_mac_map[target_ip] = arp_reply.hwsrc
                        print(f'Found: {target_ip} ({arp_reply.hwsrc})')
                        self.save_to_file(target_ip, arp_reply.hwsrc)

    def save_to_file(self, ip, mac):
        with open('network_scan.txt', 'a') as f:
            f.write(f'{ip},{mac}
')

class LoginWindow:
    def __init__(self):
        self.root = tk.Tk()
        self.root.title('Login')
        self.root.geometry('300x150')

        tk.Label(self.root, text='Username').place(x=50, y=30)
        self.username_entry = tk.Entry(self.root)
        self.username_entry.place(x=120, y=30)

        tk.Label(self.root, text='Password').place(x=50, y=60)
        self.password_entry = tk.Entry(self.root, show='*')
        self.password_entry.place(x=120, y=60)

        self.login_button = tk.Button(self.root, text='Login', command=self.login)
        self.login_button.place(x=100, y=100)

        self.register_button = tk.Button(self.root, text='Register', command=self.register)
        self.register_button.place(x=170, y=100)

        self.root.mainloop()
user = {'username':'admin','password':'admin'}
def login(self):
        username = self.username_entry.get()
        password = self.password_entry.get()
        if user['username'] == username and user['password'] == password:
            # 登录成功,跳转到主界面
            self.show_main_window()
            return
        # 登录失败,弹出错误提示
        messagebox.showinfo('错误', '用户名或密码错误')


def register(self):
        username = self.username_entry.get()
        password = self.password_entry.get()
        if user['username'] == username:
            # 用户名已存在,弹出错误提示
            messagebox.showerror('错误', '用户名已存在')
            return

        # 用户名不存在,将新用户添加到用户列表中
        users.append({'username': username, 'password': password})
        # 注册成功,弹出成功提示
        messagebox.showinfo('提示', '注册成功,请登录')
        # TODO: 实现用户注册逻辑


class MainWindow:
    def __init__(self):
        self.root = tk.Tk()
        self.root.title('ARP Detector')
        self.root.geometry('400x300')

        self.status_label = tk.Label(self.root, text='Idle')
        self.status_label.pack()

        self.start_button = tk.Button(self.root, text='Start', command=self.start_detection)
        self.start_button.pack()

        self.stop_button = tk.Button(self.root, text='Stop', command=self.stop_detection, state=tk.DISABLED)
        self.stop_button.pack()

        self.root.mainloop()

    def start_detection(self):
        self.status_label.config(text='Running')
        self.start_button.config(state=tk.DISABLED)
        self.stop_button.config(state=tk.NORMAL)

        self.arp_detector = ArpDetector('ens33')
        self.arp_detector.start()

        self.icmp_flood_detector = IcmpFloodDetector('ens33')
        self.icmp_flood_detector.start()

        self.tcp_attack_detector = TcpAttackDetector('ens33')
        self.tcp_attack_detector.start()

        self.network_scanner = NetworkScanner('ens33')
        self.network_scanner.start()

    def stop_detection(self):
        self.status_label.config(text='Idle')
        self.start_button.config(state=tk.NORMAL)
        self.stop_button.config(state=tk.DISABLED)

        self.arp_detector.stop()
        self.icmp_flood_detector.stop()
        self.tcp_attack_detector.stop()
        self.network_scanner.stop()

if __name__ == '__main__':
    login_window = LoginWindow()
    main_window = MainWindow()

代码说明:

  1. 导入必要的库:

    • tkinter:用于创建图形界面
    • os:用于系统交互
    • sys:用于系统交互
    • time:用于延时
    • threading:用于多线程
    • netifaces:用于获取网络接口信息
    • scapy.all:用于网络数据包操作
    • scapy.layers.l2:用于访问 ARP 层
  2. 定义攻击检测类:

    • ArpDetector:检测 ARP 欺骗
    • IcmpFloodDetector:检测 ICMP 洪泛
    • TcpAttackDetector:检测 TCP 攻击
    • NetworkScanner:扫描网络,获取 IP 和 MAC 地址映射
  3. 定义登录窗口类:

    • LoginWindow:包含用户名、密码输入框,登录和注册按钮
  4. 定义主窗口类:

    • MainWindow:包含状态标签、启动和停止按钮
  5. 启动程序:

    • 创建登录窗口和主窗口对象,启动 GUI 循环

使用说明:

  1. 确保已安装 scapy 库:pip install scapy
  2. 运行代码,输入用户名和密码登录
  3. 在主窗口中点击“Start”按钮开始检测
  4. 点击“Stop”按钮停止检测

注意:

  • 代码中的 ens33 是网络接口名称,根据实际情况修改
  • 可以根据需要修改攻击检测时间间隔和网络扫描范围
  • 代码仅供学习和参考,请勿用于非法目的
Python 网络攻击检测工具:ARP欺骗、ICMP洪泛、TCP攻击检测

原文地址: https://www.cveoy.top/t/topic/jnTf 著作权归作者所有。请勿转载和采集!

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