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e512edcde5
Author | SHA1 | Date | |
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e512edcde5 | |||
18507c7d79 |
369
credentailsex.py
369
credentailsex.py
@ -31,168 +31,275 @@ creates a new credential for it, and authenticates the credential.
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This works with both FIDO 2.0 devices as well as with U2F devices.
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This works with both FIDO 2.0 devices as well as with U2F devices.
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On Windows, the native WebAuthn API will be used.
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On Windows, the native WebAuthn API will be used.
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"""
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"""
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import time
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import fido2.webauthn
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from fido2.hid import CtapHidDevice
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from fido2.hid import CtapHidDevice
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from fido2.client import Fido2Client, WindowsClient, UserInteraction
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from fido2.client import Fido2Client, WindowsClient, UserInteraction
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from fido2.server import Fido2Server
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from fido2.server import Fido2Server
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from getpass import getpass
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from getpass import getpass
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import sys
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import sys
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import ctypes
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import ctypes
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from fido2.ctap2 import Ctap2
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REGISTER = False
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gotAaguid = None
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while True:
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while True:
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dev = next(CtapHidDevice.list_devices(), None)
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if dev:
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ctap2 = Ctap2(dev)
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info = ctap2.get_info()
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gotAaguid = info.aaguid
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print(str(gotAaguid))
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break
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print("Waiting for device...")
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time.sleep(0.1)
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# Handle user interaction
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class CliInteraction(UserInteraction):
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def prompt_up(self):
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print("\nTouch your authenticator device now...\n")
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def request_pin(self, permissions, rd_id):
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return getpass("Enter PIN: ")
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def request_uv(self, permissions, rd_id):
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print("User Verification required.")
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return True
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if REGISTER:
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uv = "discouraged"
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if WindowsClient.is_available() and not ctypes.windll.shell32.IsUserAnAdmin():
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# Use the Windows WebAuthn API if available, and we're not running as admin
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client = WindowsClient("https://example.com")
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else:
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# Locate a device
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dev = next(CtapHidDevice.list_devices(), None)
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if dev is not None:
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print("Use USB HID channel.")
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else:
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try:
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from fido2.pcsc import CtapPcscDevice
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dev = next(CtapPcscDevice.list_devices(), None)
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print("Use NFC channel.")
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except Exception as e:
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print("NFC channel search error:", e)
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if not dev:
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print("No FIDO device found")
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sys.exit(1)
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# Set up a FIDO 2 client using the origin https://example.com
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client = Fido2Client(dev, "https://example.com", user_interaction=CliInteraction())
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# Prefer UV if supported and configured
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if client.info.options.get("uv") or client.info.options.get("pinUvAuthToken"):
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uv = "preferred"
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print("Authenticator supports User Verification")
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# Handle user interaction
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server = Fido2Server({"id": "example.com", "name": "Example RP"}, attestation="direct")
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class CliInteraction(UserInteraction):
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def prompt_up(self):
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print("\nTouch your authenticator device now...\n")
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def request_pin(self, permissions, rd_id):
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user = {"id": b"user_id", "name": "A. User"}
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return getpass("Enter PIN: ")
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def request_uv(self, permissions, rd_id):
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print("User Verification required.")
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return True
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uv = "discouraged"
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# Prepare parameters for makeCredential
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create_options, state = server.register_begin(
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user, user_verification=uv, authenticator_attachment="cross-platform"
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)
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# Create a credential
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result = client.make_credential(create_options["publicKey"])
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# Complete registration
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auth_data = server.register_complete(
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state, result.client_data, result.attestation_object
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)
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credentials = [auth_data.credential_data]
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AAGUID = auth_data.credential_data.aaguid
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cred_id = auth_data.credential_data.credential_id
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pk_algo = auth_data.credential_data.public_key.ALGORITHM
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pk_1 = auth_data.credential_data.public_key.get(1)
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pk_3 = auth_data.credential_data.public_key.get(3)
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pk__1 = auth_data.credential_data.public_key.get(-1)
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pk__2 = auth_data.credential_data.public_key.get(-2)
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pk__3 = auth_data.credential_data.public_key.get(-3)
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import psycopg2
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# Replace these variables with your connection parameters
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dbname = "CNSA-276-FP-DAS"
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user = "FP-DEV-USER"
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password = "purchase-immortal-prescribe-repave-detention-seizing-candied-antiques-episode-list"
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host = "postgres.eggtech.net"
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# Function to connect to the PostgreSQL database and insert data
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def insert_data(aaguid, cred_id, pk_algo, pk_1, pk_3, pk__1, pk__2, pk__3):
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conn = None
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try:
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# Connect to the PostgreSQL server
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conn = psycopg2.connect(dbname=dbname, user=user, password=password, host=host)
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cur = conn.cursor()
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# Define the SQL query for inserting data
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insert_query = '''
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INSERT INTO credential_data ("AAGUID", "credential_id", "pk_algo", "pk_1", "pk_3", "pk_neg1", "pk_neg2", "pk_neg3")
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VALUES (%s, %s, %s, %s, %s, %s, %s, %s);
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'''
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# Execute the SQL query
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cur.execute(insert_query, (aaguid, cred_id, pk_algo, pk_1, pk_3, pk__1, pk__2, pk__3))
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# Commit the changes
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conn.commit()
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# Close communication with the database
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cur.close()
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except (Exception, psycopg2.DatabaseError) as error:
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print(error)
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finally:
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if conn is not None:
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conn.close()
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# Assuming auth_data is defined and you've extracted your data as you've shown above
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insert_data(
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AAGUID,
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cred_id,
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pk_algo,
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pk_1,
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pk_3,
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pk__1,
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pk__2,
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pk__3
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)
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print("New credential created!")
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print("CLIENT DATA:", result.client_data)
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print("ATTESTATION OBJECT:", result.attestation_object)
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print()
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print("CREDENTIAL DATA:", auth_data.credential_data)
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if WindowsClient.is_available() and not ctypes.windll.shell32.IsUserAnAdmin():
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# Use the Windows WebAuthn API if available, and we're not running as admin
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client = WindowsClient("https://example.com")
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else:
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# Locate a device
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dev = next(CtapHidDevice.list_devices(), None)
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if dev is not None:
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print("Use USB HID channel.")
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else:
|
else:
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try:
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server = Fido2Server({"id": "example.com", "name": "Example RP"}, attestation="direct")
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from fido2.pcsc import CtapPcscDevice
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uv = "discouraged"
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dev = next(CtapPcscDevice.list_devices(), None)
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# Set up a FIDO 2 client using the origin https://example.com
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print("Use NFC channel.")
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client = Fido2Client(dev, "https://example.com", user_interaction=CliInteraction())
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except Exception as e:
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print("NFC channel search error:", e)
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if not dev:
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import psycopg2
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print("No FIDO device found")
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sys.exit(1)
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# Set up a FIDO 2 client using the origin https://example.com
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# Replace these variables with your connection parameters
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client = Fido2Client(dev, "https://example.com", user_interaction=CliInteraction())
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dbname = "CNSA-276-FP-DAS"
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user = "FP-DEV-USER"
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password = "purchase-immortal-prescribe-repave-detention-seizing-candied-antiques-episode-list"
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host = "postgres.eggtech.net"
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# Prefer UV if supported and configured
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# Define the SQL query for retrieving data
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if client.info.options.get("uv") or client.info.options.get("pinUvAuthToken"):
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select_query = '''
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uv = "preferred"
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SELECT "AAGUID", credential_id, pk_algo, pk_1, pk_3, pk_neg1, pk_neg2, pk_neg3
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print("Authenticator supports User Verification")
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FROM credential_data
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WHERE "AAGUID" = %s;
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server = Fido2Server({"id": "example.com", "name": "Example RP"}, attestation="direct")
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user = {"id": b"user_id", "name": "A. User"}
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# Prepare parameters for makeCredential
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create_options, state = server.register_begin(
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user, user_verification=uv, authenticator_attachment="cross-platform"
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)
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# Create a credential
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result = client.make_credential(create_options["publicKey"])
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# Complete registration
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auth_data = server.register_complete(
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state, result.client_data, result.attestation_object
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)
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credentials = [auth_data.credential_data]
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AAGUID = auth_data.credential_data.aaguid
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cred_id = auth_data.credential_data.credential_id
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pk_algo = auth_data.credential_data.public_key.ALGORITHM
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pk_1 = auth_data.credential_data.public_key.get(1)
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pk_3 = auth_data.credential_data.public_key.get(3)
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pk__1 = auth_data.credential_data.public_key.get(-1)
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pk__2 = auth_data.credential_data.public_key.get(-2)
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pk__3 = auth_data.credential_data.public_key.get(-3)
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|
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|
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import psycopg2
|
|
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|
|
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# Replace these variables with your connection parameters
|
|
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dbname = "CNSA-276-FP-DAS"
|
|
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user = "FP-DEV-USER"
|
|
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password = "purchase-immortal-prescribe-repave-detention-seizing-candied-antiques-episode-list"
|
|
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host = "postgres.eggtech.net"
|
|
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|
|
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|
|
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# Function to connect to the PostgreSQL database and insert data
|
|
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def insert_data(aaguid, cred_id, pk_algo, pk_1, pk_3, pk__1, pk__2, pk__3):
|
|
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conn = None
|
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try:
|
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# Connect to the PostgreSQL server
|
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conn = psycopg2.connect(dbname=dbname, user=user, password=password, host=host)
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|
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cur = conn.cursor()
|
|
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# Define the SQL query for inserting data
|
|
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insert_query = '''
|
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INSERT INTO credential_data ("AAGUID", "credential_id", "pk_algo", "pk_1", "pk_3", "pk_neg1", "pk_neg2", "pk_neg3")
|
|
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VALUES (%s, %s, %s, %s, %s, %s, %s, %s);
|
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'''
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'''
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# Execute the SQL query
|
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cur.execute(insert_query, (aaguid, cred_id, pk_algo, pk_1, pk_3, pk__1, pk__2, pk__3))
|
|
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|
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# Commit the changes
|
# Function to connect to the PostgreSQL database and retrieve data
|
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conn.commit()
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def fetch_data(aaguid):
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|
conn = None
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|
try:
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|
# Connect to the PostgreSQL server
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|
conn = psycopg2.connect(dbname=dbname, user=user, password=password, host=host)
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|
cur = conn.cursor()
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|
|
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# Close communication with the database
|
# Execute the SQL query
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cur.close()
|
cur.execute(select_query, (gotAaguid,))
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except (Exception, psycopg2.DatabaseError) as error:
|
|
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print(error)
|
|
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finally:
|
|
||||||
if conn is not None:
|
|
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conn.close()
|
|
||||||
|
|
||||||
# Assuming auth_data is defined and you've extracted your data as you've shown above
|
# Fetch the results
|
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insert_data(
|
result = cur.fetchone()
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AAGUID,
|
if result:
|
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cred_id,
|
data = {
|
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pk_algo,
|
"AAGUID": result[0],
|
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pk_1,
|
"credential_id": result[1],
|
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pk_3,
|
"pk_algo": result[2],
|
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pk__1,
|
"pk_1": result[3],
|
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pk__2,
|
"pk_3": result[4],
|
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pk__3
|
"pk_neg1": result[5],
|
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)
|
"pk_neg2": result[6],
|
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|
"pk_neg3": result[7]
|
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|
}
|
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|
return data
|
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|
else:
|
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|
print("No data found for AAGUID:", aaguid)
|
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|
return None
|
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|
|
||||||
|
# Close communication with the database
|
||||||
|
cur.close()
|
||||||
|
except (Exception, psycopg2.DatabaseError) as error:
|
||||||
|
print(error)
|
||||||
|
finally:
|
||||||
|
if conn is not None:
|
||||||
|
conn.close()
|
||||||
|
|
||||||
|
|
||||||
|
# Example usage: Fetch data for a specific AAGUID and store in variables
|
||||||
|
aaguid_data = fetch_data("your_specific_aaguid_here")
|
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|
|
||||||
print("New credential created!")
|
if aaguid_data:
|
||||||
|
# Store each piece of data into a separate variable
|
||||||
|
testa = aaguid_data["AAGUID"]
|
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|
cred_id = aaguid_data["credential_id"]
|
||||||
|
pk_algo = aaguid_data["pk_algo"]
|
||||||
|
pk_1 = aaguid_data["pk_1"]
|
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|
pk_3 = aaguid_data["pk_3"]
|
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|
pk_neg1 = aaguid_data["pk_neg1"]
|
||||||
|
pk_neg2 = aaguid_data["pk_neg2"]
|
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|
pk_neg3 = aaguid_data["pk_neg3"]
|
||||||
|
auth_data = fido2.webauthn.AttestedCredentialData(testa, cred_id, pk_algo)
|
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|
# auth_data.aaguid = AAGUID
|
||||||
|
# auth_data.credential_id = cred_id
|
||||||
|
# auth_data.public_key.ALGORITHM= pk_algo
|
||||||
|
# auth_data.public_key.setdefault(1, pk_1)
|
||||||
|
# auth_data.public_key.setdefault(3, pk_3)
|
||||||
|
# auth_data.public_key.setdefault(-1, pk__1)
|
||||||
|
# auth_data.public_key.setdefault(-2, pk__2)
|
||||||
|
# auth_data.public_key.setdefault(-3,pk__3)
|
||||||
|
|
||||||
print("CLIENT DATA:", result.client_data)
|
credentials = [auth_data]
|
||||||
print("ATTESTATION OBJECT:", result.attestation_object)
|
|
||||||
print()
|
|
||||||
print("CREDENTIAL DATA:", auth_data.credential_data)
|
|
||||||
|
|
||||||
|
|
||||||
# Prepare parameters for getAssertion
|
# Prepare parameters for getAssertion
|
||||||
request_options, state = server.authenticate_begin(credentials, user_verification=uv)
|
request_options, state = server.authenticate_begin(credentials, user_verification=uv)
|
||||||
|
|
||||||
# Authenticate the credential
|
# Authenticate the credential
|
||||||
result = client.get_assertion(request_options["publicKey"])
|
result = client.get_assertion(request_options["publicKey"])
|
||||||
|
|
||||||
# Only one cred in allowCredentials, only one response.
|
# Only one cred in allowCredentials, only one response.
|
||||||
result = result.get_response(0)
|
result = result.get_response(0)
|
||||||
|
|
||||||
# Complete authenticator
|
# Complete authenticator
|
||||||
server.authenticate_complete(
|
server.authenticate_complete(
|
||||||
state,
|
state,
|
||||||
|
|
||||||
credentials,
|
credentials,
|
||||||
result.credential_id,
|
result.credential_id,
|
||||||
result.client_data,
|
result.client_data,
|
||||||
result.authenticator_data,
|
result.authenticator_data,
|
||||||
result.signature,
|
result.signature,
|
||||||
)
|
)
|
||||||
|
|
||||||
print("Credential authenticated!")
|
print("Credential authenticated!")
|
||||||
|
|
||||||
print("CLIENT DATA:", result.client_data)
|
print("CLIENT DATA:", result.client_data)
|
||||||
print()
|
print()
|
||||||
print("AUTH DATA:", result.authenticator_data)
|
print("AUTH DATA:", result.authenticator_data)
|
Loading…
Reference in New Issue
Block a user