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CoM-covert_sd_card_tool/covert_sd_card_tool.py
T
2024-11-08 12:43:20 -05:00

360 lines
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Python
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#!/usr/bin/env python3
import argparse
import subprocess
import sys
import os
import shutil
from datetime import datetime
import platform
import urllib.request
import tarfile
# Global variables
DEBUG = False
TIMESTAMP = datetime.now().strftime('%Y%m%d_%H%M%S')
LOG_FILE = f"covert_sd_setup_{TIMESTAMP}.log"
CREATE_KALI = False
CREATE_DOCS = False
KALI_ISO = ""
DRIVE = ""
def log(message):
with open(LOG_FILE, "a") as log_file:
log_file.write(message + "\n")
print(message)
def run_command(command, shell=False, interactive=False):
if DEBUG:
log(f"Running command: {command}")
try:
if interactive:
# Run the command without capturing output, allowing interaction
result = subprocess.run(command, shell=shell, check=True)
else:
# Run the command and capture output
result = subprocess.run(command, shell=shell, check=True, stdout=subprocess.PIPE, stderr=subprocess.STDOUT, universal_newlines=True)
if result.stdout:
log(result.stdout.strip())
except subprocess.CalledProcessError as e:
if interactive:
log(f"Command failed: {e}")
else:
log(f"Command failed: {e}\nOutput: {e.output}")
sys.exit(1)
def check_dependencies():
dependencies = ["parted", "cryptsetup", "lsblk", "dd", "sgdisk", "wipefs", "bc", "fdisk"]
missing = []
for dep in dependencies:
if not shutil.which(dep):
missing.append(dep)
if missing:
log(f"Missing dependencies: {', '.join(missing)}")
install = input(f"Do you want to install the missing dependencies? (y/n) [Default: y]: ") or "y"
if install.lower() == "y":
run_command(["sudo", "apt", "update"])
run_command(["sudo", "apt", "install", "-y"] + missing)
else:
log("Cannot proceed without installing dependencies. Exiting.")
sys.exit(1)
# Check for VeraCrypt separately
if not shutil.which("veracrypt"):
log("VeraCrypt is not installed. Attempting to install VeraCrypt...")
install_veracrypt()
def install_veracrypt():
# Determine system architecture
arch = platform.machine()
if arch == "x86_64":
veracrypt_arch = "x64"
elif arch == "i386" or arch == "i686":
veracrypt_arch = "x86"
else:
log(f"Unsupported architecture: {arch}. Please install VeraCrypt manually.")
sys.exit(1)
# Set VeraCrypt version
veracrypt_version = "1.25.9"
# Construct download URL
download_url = f"https://launchpad.net/veracrypt/trunk/{veracrypt_version}/+download/veracrypt-{veracrypt_version}-setup-console-{veracrypt_arch}.tar.bz2"
# Download VeraCrypt installer
log(f"Downloading VeraCrypt {veracrypt_version} for {veracrypt_arch}...")
installer_filename = f"veracrypt-{veracrypt_version}-setup-console-{veracrypt_arch}.tar.bz2"
try:
urllib.request.urlretrieve(download_url, installer_filename)
except Exception as e:
log(f"Failed to download VeraCrypt: {e}")
sys.exit(1)
# Extract the installer
log("Extracting VeraCrypt installer...")
try:
with tarfile.open(installer_filename, 'r:bz2') as tar:
tar.extractall()
except Exception as e:
log(f"Failed to extract VeraCrypt installer: {e}")
sys.exit(1)
# Run the installer silently
installer_script = f"veracrypt-{veracrypt_version}-setup-console-{veracrypt_arch}"
if not os.path.exists(installer_script):
log(f"Installer script not found: {installer_script}")
sys.exit(1)
log("Installing VeraCrypt...")
try:
# Automate license acceptance and install VeraCrypt
run_command(f"echo -e 'yes\n' | sudo ./{installer_script} --accept-license", shell=True)
except Exception as e:
log(f"Failed to install VeraCrypt: {e}")
sys.exit(1)
# Clean up installer files
os.remove(installer_filename)
os.remove(installer_script)
log("VeraCrypt installed successfully.")
def list_drives():
log("Available drives:")
result = subprocess.run(["lsblk", "-d", "-o", "NAME,SIZE,TYPE"], capture_output=True, text=True)
for line in result.stdout.strip().splitlines():
if "disk" in line:
name_size = line.strip().split()
drive = f"/dev/{name_size[0]} {name_size[1]}"
log(drive)
def prepare_drive(drive):
# Unmount all mounted partitions on the drive
result = subprocess.run(["lsblk", "-lnp", drive], capture_output=True, text=True)
for line in result.stdout.strip().splitlines():
parts = line.strip().split()
if len(parts) >= 7 and parts[6]: # If mountpoint is not empty
part = parts[0]
log(f"Unmounting {part}...")
run_command(["sudo", "umount", part])
# Disable swap on any swap partitions on the drive
with open("/proc/swaps") as swaps_file:
for line in swaps_file:
if drive in line:
swap_part = line.strip().split()[0]
log(f"Disabling swap on {swap_part}...")
run_command(["sudo", "swapoff", swap_part])
def setup_kali_usb():
global DRIVE
log("Setting up Kali bootable USB...")
list_drives()
DRIVE = input("Enter the drive to use for Kali USB (e.g., /dev/sda) [Default: /dev/sda]: ") or "/dev/sda"
# Confirm the selected drive
confirm = input(f"You have selected {DRIVE}. Is this correct? (y/n) [Default: y]: ") or "y"
if confirm.lower() != "y":
log("Drive selection canceled. Exiting.")
sys.exit(1)
prepare_drive(DRIVE)
# Wipe drive if needed
wipe = input(f"Do you want to wipe the drive {DRIVE} before starting? (y/n) [Default: n]: ") or "n"
if wipe.lower() == "y":
log(f"Wiping {DRIVE} and clearing any existing file system or encryption signatures...")
run_command(["sudo", "wipefs", "--all", DRIVE])
run_command(["sudo", "sgdisk", "--zap-all", DRIVE])
run_command(["sudo", "dd", "if=/dev/zero", f"of={DRIVE}", "bs=1M", "count=10"])
log(f"{DRIVE} wiped successfully.")
# Get Kali ISO path if not already provided
global KALI_ISO
if not KALI_ISO:
KALI_ISO = input("Enter the path to the Kali ISO file: ")
if not os.path.isfile(KALI_ISO):
log(f"Error: Kali ISO file not found at {KALI_ISO}")
sys.exit(1)
# Write the ISO to the USB drive
log(f"Writing Kali ISO to {DRIVE}...")
run_command(f"sudo dd if='{KALI_ISO}' of='{DRIVE}' bs=4M status=progress", shell=True, interactive=True)
log(f"Kali ISO written to {DRIVE} successfully.")
# Fix the partition table to reclaim remaining space
fix_partition_table()
def fix_partition_table():
log("Fixing partition table to reclaim remaining space...")
# Delete partition 2 (created by the ISO)
run_command(f"sudo parted -s {DRIVE} rm 2", shell=True)
log("Deleted partition 2.")
# Get the end of partition 1
result = subprocess.run(["sudo", "parted", "-s", DRIVE, "unit", "MB", "print"], capture_output=True, text=True)
end_of_p1 = None
for line in result.stdout.strip().splitlines():
if line.strip().startswith("1"):
parts = line.strip().split()
end_of_p1 = parts[2] # End of partition 1
break
if end_of_p1 is None:
log("Error: Could not find end of partition 1.")
sys.exit(1)
log(f"End of partition 1: {end_of_p1}")
# Ask for the size of the persistence partition
size_persistence = input("Enter size for persistence partition in GB (e.g., 4): ") or "4"
try:
size_persistence_gb = float(size_persistence)
except ValueError:
log("Invalid size entered for persistence partition. Exiting.")
sys.exit(1)
# Calculate the end point of the persistence partition
start_persistence_mb = float(end_of_p1.replace('MB', ''))
end_persistence_mb = start_persistence_mb + (size_persistence_gb * 1024)
end_persistence = f"{end_persistence_mb}MB"
# Get the total size of the drive in MB
result = subprocess.run(["sudo", "parted", "-s", DRIVE, "unit", "MB", "print", "free"], capture_output=True, text=True)
total_size_mb = None
for line in result.stdout.strip().splitlines():
if "Disk" in line and "MB" in line:
total_size_mb = float(line.strip().split()[2].replace('MB', ''))
break
if total_size_mb is None:
log("Error: Could not determine total drive size.")
sys.exit(1)
# Ensure the end_persistence_mb does not exceed the total drive size
if end_persistence_mb > total_size_mb:
log("Error: Persistence partition size exceeds available space.")
sys.exit(1)
# Create persistence partition (partition 2)
run_command(f"sudo parted -s {DRIVE} mkpart primary {start_persistence_mb}MB {end_persistence_mb}MB", shell=True)
log("Created persistence partition.")
# If creating documents partition
if CREATE_DOCS:
# Documents partition starts where persistence partition ends
start_docs_mb = end_persistence_mb
end_docs = "100%"
# Create documents partition (partition 3)
run_command(f"sudo parted -s {DRIVE} mkpart primary {start_docs_mb}MB {end_docs}", shell=True)
log("Created documents partition.")
run_command(f"sudo partprobe {DRIVE}", shell=True)
# Proceed to set up the persistence partition
setup_kali_partition()
# Proceed to set up the documents partition if required
if CREATE_DOCS:
setup_docs_partition()
def setup_kali_partition():
global DRIVE
# The persistence partition is partition 2
PERSIST_PART = f"{DRIVE}2"
# Wipe existing signatures on the partition
run_command(["sudo", "wipefs", "--all", PERSIST_PART])
# Encrypt and format persistence partition with stronger encryption
log("Configuring encrypted persistence partition...")
# Specify stronger encryption options
luks_format_cmd = (
f"sudo cryptsetup luksFormat "
f"--cipher aes-xts-plain64 "
f"--key-size 512 "
f"--hash sha512 "
f"--iter-time 5000 "
f"'{PERSIST_PART}'"
)
run_command(luks_format_cmd, shell=True, interactive=True)
run_command(f"sudo cryptsetup luksOpen '{PERSIST_PART}' kali_USB", shell=True, interactive=True)
run_command("sudo mkfs.ext4 -L persistence /dev/mapper/kali_USB", shell=True)
# Create persistence.conf
run_command("sudo mkdir -p /mnt/kali_USB", shell=True)
run_command("sudo mount /dev/mapper/kali_USB /mnt/kali_USB", shell=True)
run_command('echo "/ union" | sudo tee /mnt/kali_USB/persistence.conf', shell=True)
run_command("sudo umount /dev/mapper/kali_USB", shell=True)
run_command("sudo cryptsetup luksClose kali_USB", shell=True)
log("Kali persistence setup complete.")
def setup_docs_partition():
global DRIVE
# The documents partition is partition 3
DOCS_PART = f"{DRIVE}3"
# Wipe existing signatures on the partition
run_command(["sudo", "wipefs", "--all", DOCS_PART])
log("Configuring VeraCrypt encryption for documents partition...")
# Specify stronger encryption options
veracrypt_create_cmd = (
f"veracrypt --text --create '{DOCS_PART}' "
f"--encryption AES-Twofish-Serpent "
f"--hash whirlpool "
f"--filesystem exfat "
f"--volume-type normal "
f"--size=100%"
)
run_command(veracrypt_create_cmd, shell=True, interactive=True)
log("Encrypted documents partition setup complete.")
def main():
global DEBUG, CREATE_KALI, CREATE_DOCS, KALI_ISO, DRIVE
parser = argparse.ArgumentParser(description="Covert SD Card Tool")
parser.add_argument("-a", "--all", action="store_true", help="Set up both Kali bootable USB and documents partition")
parser.add_argument("-k", "--kali", action="store_true", help="Create Kali bootable USB and persistence partition")
parser.add_argument("-d", "--docs", action="store_true", help="Create encrypted documents partition")
parser.add_argument("-i", "--iso", help="Path to the Kali ISO file")
parser.add_argument("--debug", action="store_true", help="Enable debug mode")
args = parser.parse_args()
if not any([args.all, args.kali, args.docs]):
parser.print_help()
sys.exit(1)
DEBUG = args.debug
if DEBUG:
log("Debug mode enabled")
CREATE_KALI = args.all or args.kali
CREATE_DOCS = args.all or args.docs
if args.iso:
KALI_ISO = args.iso
check_dependencies()
if CREATE_KALI:
setup_kali_usb()
else:
# If not creating Kali USB, we still need to set the DRIVE variable
list_drives()
DRIVE = input("Enter the drive to use (e.g., /dev/sda) [Default: /dev/sda]: ") or "/dev/sda"
prepare_drive(DRIVE)
# If creating documents partition only
if CREATE_DOCS:
fix_partition_table()
setup_docs_partition()
log("Partition setup complete.")
if __name__ == "__main__":
main()