This patch adds the script used to generate setup directories, needed
for the device u2f-emulated configuration in directory mode:
    python u2f-setup-gen.py $DIR
    qemu -usb -device u2f-emulated,dir=$DIR
Signed-off-by: César Belley <cesar.belley@lse.epita.fr>
Message-id: 20200826114209.28821-11-cesar.belley@lse.epita.fr
Signed-off-by: Gerd Hoffmann <kraxel@redhat.com>
		
	
			
		
			
				
	
	
		
			171 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			171 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			Python
		
	
	
		
			Executable File
		
	
	
	
	
#!/usr/bin/env python3
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#
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# Libu2f-emu setup directory generator for USB U2F key emulation.
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#
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# Copyright (c) 2020 César Belley <cesar.belley@lse.epita.fr>
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# Written by César Belley <cesar.belley@lse.epita.fr>
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#
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# This work is licensed under the terms of the GNU GPL, version 2
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# or, at your option, any later version.  See the COPYING file in
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# the top-level directory.
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import sys
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import os
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from random import randint
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from typing import Tuple
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from cryptography.hazmat.backends import default_backend
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from cryptography.hazmat.primitives.asymmetric import ec
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from cryptography.hazmat.primitives.serialization import Encoding, \
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    NoEncryption, PrivateFormat, PublicFormat
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from OpenSSL import crypto
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def write_setup_dir(dirpath: str, privkey_pem: bytes, cert_pem: bytes,
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                    entropy: bytes, counter: int) -> None:
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    """
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    Write the setup directory.
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    Args:
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        dirpath: The directory path.
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        key_pem: The private key PEM.
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        cert_pem: The certificate PEM.
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        entropy: The 48 bytes of entropy.
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        counter: The counter value.
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    """
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    # Directory
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    os.mkdir(dirpath)
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    # Private key
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    with open(f'{dirpath}/private-key.pem', 'bw') as f:
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        f.write(privkey_pem)
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    # Certificate
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    with open(f'{dirpath}/certificate.pem', 'bw') as f:
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        f.write(cert_pem)
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    # Entropy
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    with open(f'{dirpath}/entropy', 'wb') as f:
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        f.write(entropy)
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    # Counter
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    with open(f'{dirpath}/counter', 'w') as f:
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        f.write(f'{str(counter)}\n')
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def generate_ec_key_pair() -> Tuple[str, str]:
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    """
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    Generate an ec key pair.
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    Returns:
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        The private and public key PEM.
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    """
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    # Key generation
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    privkey = ec.generate_private_key(ec.SECP256R1, default_backend())
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    pubkey = privkey.public_key()
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    # PEM serialization
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    privkey_pem = privkey.private_bytes(encoding=Encoding.PEM,
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                                        format=PrivateFormat.TraditionalOpenSSL,
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                                        encryption_algorithm=NoEncryption())
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    pubkey_pem = pubkey.public_bytes(encoding=Encoding.PEM,
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                                     format=PublicFormat.SubjectPublicKeyInfo)
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    return privkey_pem, pubkey_pem
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def generate_certificate(privkey_pem: str, pubkey_pem: str) -> str:
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    """
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    Generate a x509 certificate from a key pair.
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    Args:
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        privkey_pem: The private key PEM.
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        pubkey_pem: The public key PEM.
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    Returns:
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        The certificate PEM.
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    """
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    # Convert key pair
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    privkey = crypto.load_privatekey(crypto.FILETYPE_PEM, privkey_pem)
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    pubkey = crypto.load_publickey(crypto.FILETYPE_PEM, pubkey_pem)
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    # New x509v3 certificate
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    cert = crypto.X509()
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    cert.set_version(0x2)
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    # Serial number
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    cert.set_serial_number(randint(1, 2 ** 64))
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    # Before / After
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    cert.gmtime_adj_notBefore(0)
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    cert.gmtime_adj_notAfter(4 * (365 * 24 * 60 * 60))
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    # Public key
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    cert.set_pubkey(pubkey)
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    # Subject name and issueer
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    cert.get_subject().CN = "U2F emulated"
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    cert.set_issuer(cert.get_subject())
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    # Extensions
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    cert.add_extensions([
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        crypto.X509Extension(b"subjectKeyIdentifier",
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                             False, b"hash", subject=cert),
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    ])
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    cert.add_extensions([
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        crypto.X509Extension(b"authorityKeyIdentifier",
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                             False, b"keyid:always", issuer=cert),
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    ])
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    cert.add_extensions([
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        crypto.X509Extension(b"basicConstraints", True, b"CA:TRUE")
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    ])
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    # Signature
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    cert.sign(privkey, 'sha256')
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    return crypto.dump_certificate(crypto.FILETYPE_PEM, cert)
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def generate_setup_dir(dirpath: str) -> None:
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    """
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    Generates the setup directory.
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    Args:
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        dirpath: The directory path.
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    """
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    # Key pair
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    privkey_pem, pubkey_pem = generate_ec_key_pair()
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    # Certificate
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    certificate_pem = generate_certificate(privkey_pem, pubkey_pem)
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    # Entropy
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    entropy = os.urandom(48)
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    # Counter
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    counter = 0
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    # Write
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    write_setup_dir(dirpath, privkey_pem, certificate_pem, entropy, counter)
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def main() -> None:
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    """
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    Main function
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    """
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    # Dir path
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    if len(sys.argv) != 2:
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        sys.stderr.write(f'Usage: {sys.argv[0]} <setup_dir>\n')
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        exit(2)
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    dirpath = sys.argv[1]
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    # Dir non existence
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    if os.path.exists(dirpath):
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        sys.stderr.write(f'Directory: {dirpath} already exists.\n')
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        exit(1)
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    generate_setup_dir(dirpath)
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if __name__ == '__main__':
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    main()
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