Add function to create self-signed certificates with PEM format
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								sk/certificates.py
									
									
									
									
									
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										86
									
								
								sk/certificates.py
									
									
									
									
									
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import datetime
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from cryptography.x509 import Name, NameAttribute, CertificateBuilder, BasicConstraints, random_serial_number
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from cryptography.x509.oid import NameOID
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from cryptography.hazmat.primitives import hashes, serialization
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from cryptography.hazmat.primitives.asymmetric import rsa
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import pathlib
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def create_self_signed_certificate(
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        file_path: str,
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        subject_name: str,
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        organization_name: str,
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        country_name: str,
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        valid_days: int = 365,
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        key_size: int = 2048
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):
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    """
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    Create a self-signed certificate. It saves the certificate and private key
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    in PEM format to the specified file path. Three files are created:
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    - <file_path>.crt : The public certificate
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    - <file_path>.key : The private key
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    - <file_path>.pem : The certificate and private key combined in one file
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    :param file_path: Base file path to save the certificate and key.
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    :param subject_name: Common Name (CN) for the certificate.
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    :param organization_name: Organization Name (O) for the certificate.
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    :param country_name: Country Name (C) for the certificate.
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    :param valid_days: Number of days the certificate is valid for.
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    :param key_size: Size of the RSA key.
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    Use the following command to replace any credentials already defined for the 
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    App Registration with that certificate:
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    az ad app credential reset --id <CLIENT_ID> --cert @<file_path>.crt
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    Use --append to add the certificate without removing existing credentials.
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    > Note: Do not upload the private key file (.key) nor the combined PEM file (.pem).
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    """
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    key = rsa.generate_private_key(public_exponent=65537, key_size=key_size)
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    subject = issuer = Name([
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        NameAttribute(NameOID.COUNTRY_NAME, country_name),
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        NameAttribute(NameOID.ORGANIZATION_NAME, organization_name),
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        NameAttribute(NameOID.COMMON_NAME, subject_name),
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    ])
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    cert = (
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        CertificateBuilder()
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        .subject_name(subject)
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        .issuer_name(issuer)
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        .public_key(key.public_key())
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        .serial_number(random_serial_number())
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        .not_valid_before(datetime.datetime.now(datetime.timezone.utc) - datetime.timedelta(days=1))
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        .not_valid_after(datetime.datetime.now(datetime.timezone.utc) + datetime.timedelta(days=valid_days))
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        .add_extension(BasicConstraints(ca=True, path_length=None), critical=True)
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        .sign(key, hashes.SHA256())
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    )
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    crt_path = pathlib.Path(file_path).with_suffix('.crt')
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    key_path = pathlib.Path(file_path).with_suffix('.key')
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    pem_path = pathlib.Path(file_path).with_suffix('.pem')
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    public_key = cert.public_bytes(serialization.Encoding.PEM)
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    private_key = key.private_bytes(
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        encoding=serialization.Encoding.PEM,
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        format=serialization.PrivateFormat.TraditionalOpenSSL,
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        encryption_algorithm=serialization.NoEncryption(),
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    )
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    # Write the certificate
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    with open(crt_path, "wb") as f:
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        f.write(public_key)
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    # Write the private key
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    with open(key_path, "wb") as f:
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        f.write(private_key)
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    with open(pem_path, "wb") as f:
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        f.write(public_key)
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        f.write(private_key)
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    print(f"Certificate created and saved.")
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    print(f" - Certificate: {crt_path}")
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    print(f" - Private Key: {key_path}")
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    print(f" - PEM File: {pem_path}")
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