Chore App Build, Test, and Push Docker Images / build-and-push (push) Successful in 3m17s
433 lines
17 KiB
Python
433 lines
17 KiB
Python
import pytest
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from werkzeug.security import generate_password_hash, check_password_hash
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from flask import Flask
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from api.auth_api import auth_api, _hash_token
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from db.db import users_db, refresh_tokens_db
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from tinydb import Query
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from models.user import User
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from datetime import datetime, timedelta, timezone
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from tests.conftest import TEST_SECRET_KEY, TEST_REFRESH_TOKEN_EXPIRY_DAYS
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@pytest.fixture
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def client():
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"""Setup Flask test client with auth blueprint."""
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app = Flask(__name__)
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app.register_blueprint(auth_api, url_prefix='/auth')
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app.config['TESTING'] = True
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app.config['SECRET_KEY'] = TEST_SECRET_KEY
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app.config['REFRESH_TOKEN_EXPIRY_DAYS'] = TEST_REFRESH_TOKEN_EXPIRY_DAYS
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app.config['FRONTEND_URL'] = 'http://localhost:5173'
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with app.test_client() as client:
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yield client
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def test_signup_hashes_password(client):
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"""Test that signup hashes the password."""
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# Clean up any existing user
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users_db.remove(Query().email == 'test@example.com')
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data = {
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'first_name': 'Test',
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'last_name': 'User',
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'email': 'test@example.com',
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'password': 'password123'
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}
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response = client.post('/auth/signup', json=data)
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assert response.status_code == 201
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# Check that password is hashed in DB
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user_dict = users_db.get(Query().email == 'test@example.com')
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assert user_dict is not None
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assert user_dict['password'].startswith('scrypt:')
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def test_login_with_correct_password(client):
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"""Test login succeeds with correct password."""
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# Clean up and create a user with hashed password
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users_db.remove(Query().email == 'test@example.com')
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hashed_pw = generate_password_hash('password123')
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user = User(
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first_name='Test',
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last_name='User',
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email='test@example.com',
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password=hashed_pw,
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verified=True
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)
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users_db.insert(user.to_dict())
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data = {'email': 'test@example.com', 'password': 'password123'}
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response = client.post('/auth/login', json=data)
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assert response.status_code == 200
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cookies = response.headers.getlist('Set-Cookie')
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cookie_str = ' '.join(cookies)
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assert 'access_token=' in cookie_str
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assert 'refresh_token=' in cookie_str
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def test_login_with_incorrect_password(client):
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"""Test login fails with incorrect password."""
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# Clean up and create a user with hashed password
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users_db.remove(Query().email == 'test@example.com')
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hashed_pw = generate_password_hash('password123')
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user = User(
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first_name='Test',
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last_name='User',
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email='test@example.com',
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password=hashed_pw,
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verified=True
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)
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users_db.insert(user.to_dict())
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data = {'email': 'test@example.com', 'password': 'wrongpassword'}
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response = client.post('/auth/login', json=data)
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assert response.status_code == 401
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assert response.json['code'] == 'INVALID_CREDENTIALS'
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def test_reset_password_hashes_new_password(client):
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"""Test that reset-password hashes the new password."""
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# Clean up and create a user with reset token
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users_db.remove(Query().email == 'test@example.com')
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user = User(
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first_name='Test',
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last_name='User',
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email='test@example.com',
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password=generate_password_hash('oldpassword'),
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verified=True,
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reset_token='validtoken',
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reset_token_created=datetime.utcnow().isoformat()
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)
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users_db.insert(user.to_dict())
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data = {'token': 'validtoken', 'password': 'newpassword123'}
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response = client.post('/auth/reset-password', json=data)
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assert response.status_code == 200
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# Check that password is hashed in DB
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user_dict = users_db.get(Query().email == 'test@example.com')
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assert user_dict is not None
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assert user_dict['password'].startswith('scrypt:')
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assert check_password_hash(user_dict['password'], 'newpassword123')
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def test_reset_password_invalidates_existing_jwt(client):
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users_db.remove(Query().email == 'test@example.com')
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user = User(
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first_name='Test',
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last_name='User',
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email='test@example.com',
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password=generate_password_hash('oldpassword123'),
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verified=True,
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reset_token='validtoken2',
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reset_token_created=datetime.utcnow().isoformat(),
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)
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users_db.insert(user.to_dict())
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login_response = client.post('/auth/login', json={'email': 'test@example.com', 'password': 'oldpassword123'})
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assert login_response.status_code == 200
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login_cookies = login_response.headers.getlist('Set-Cookie')
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login_cookie_str = ' '.join(login_cookies)
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assert 'access_token=' in login_cookie_str
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# Extract the old access token
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old_token = None
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for c in login_cookies:
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if c.startswith('access_token='):
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old_token = c.split('access_token=', 1)[1].split(';', 1)[0]
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break
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assert old_token
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reset_response = client.post('/auth/reset-password', json={'token': 'validtoken2', 'password': 'newpassword123'})
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assert reset_response.status_code == 200
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reset_cookies = reset_response.headers.getlist('Set-Cookie')
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reset_cookie_str = ' '.join(reset_cookies)
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assert 'access_token=' in reset_cookie_str
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# Verify all refresh tokens for this user are deleted
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user_dict = users_db.get(Query().email == 'test@example.com')
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user_tokens = refresh_tokens_db.search(Query().user_id == user_dict['id'])
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assert len(user_tokens) == 0
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# Set the old token as a cookie and test that it's now invalid
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client.set_cookie('access_token', old_token)
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me_response = client.get('/auth/me')
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assert me_response.status_code == 401
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assert me_response.json['code'] == 'INVALID_TOKEN'
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def test_migration_script_hashes_plain_text_passwords():
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"""Test the migration script hashes plain text passwords."""
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# Clean up
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users_db.remove(Query().email == 'test1@example.com')
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users_db.remove(Query().email == 'test2@example.com')
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# Create users with plain text passwords
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user1 = User(
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first_name='Test1',
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last_name='User',
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email='test1@example.com',
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password='plaintext1',
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verified=True
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)
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already_hashed = generate_password_hash('alreadyhashed')
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user2 = User(
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first_name='Test2',
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last_name='User',
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email='test2@example.com',
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password=already_hashed, # Already hashed
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verified=True
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)
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users_db.insert(user1.to_dict())
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users_db.insert(user2.to_dict())
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# Run migration script
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import sys
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import os
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sys.path.insert(0, os.path.join(os.path.dirname(__file__), '..'))
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from scripts.hash_passwords import main
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main()
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# Check user1 password is now hashed
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user1_dict = users_db.get(Query().email == 'test1@example.com')
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assert user1_dict['password'].startswith('scrypt:')
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assert check_password_hash(user1_dict['password'], 'plaintext1')
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# Check user2 password unchanged
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user2_dict = users_db.get(Query().email == 'test2@example.com')
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assert user2_dict['password'] == already_hashed
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def _extract_cookie_value(response, cookie_name):
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"""Extract a raw cookie value from a response's Set-Cookie headers."""
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for cookie in response.headers.getlist('Set-Cookie'):
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if cookie.startswith(f'{cookie_name}='):
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return cookie.split(f'{cookie_name}=', 1)[1].split(';', 1)[0]
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return None
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def _create_verified_user(email, password):
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"""Insert a verified user with the given credentials."""
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users_db.remove(Query().email == email)
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user = User(
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first_name='Test',
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last_name='User',
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email=email,
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password=generate_password_hash(password),
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verified=True,
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)
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users_db.insert(user.to_dict())
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return user
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def _set_refresh_cookie(client, raw_token):
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"""
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Set the refresh token cookie on a test client so it is sent to /auth/refresh.
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Production uses path='/api/auth' because the frontend calls /api/auth/refresh,
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but the test fixture exposes the blueprint at /auth/refresh directly.
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"""
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client.set_cookie('refresh_token', raw_token, path='/')
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def test_refresh_rotates_token(client):
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"""A successful refresh marks the old token used and issues a new one in the same family."""
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email = 'refresh-rotate@test.com'
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password = 'password123'
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_create_verified_user(email, password)
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login_response = client.post('/auth/login', json={'email': email, 'password': password})
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assert login_response.status_code == 200
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old_refresh = _extract_cookie_value(login_response, 'refresh_token')
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assert old_refresh
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_set_refresh_cookie(client, old_refresh)
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refresh_response = client.post('/auth/refresh')
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assert refresh_response.status_code == 200
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new_refresh = _extract_cookie_value(refresh_response, 'refresh_token')
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assert new_refresh
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assert new_refresh != old_refresh
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user_dict = users_db.get(Query().email == email)
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old_hash = _hash_token(old_refresh)
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new_hash = _hash_token(new_refresh)
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old_record = refresh_tokens_db.get(Query().token_hash == old_hash)
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assert old_record is not None
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assert old_record['is_used'] is True
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assert old_record['rotated_at'] is not None
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new_record = refresh_tokens_db.get(Query().token_hash == new_hash)
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assert new_record is not None
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assert new_record['is_used'] is False
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assert new_record['token_family'] == old_record['token_family']
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def test_refresh_reuse_only_invalidates_family(client):
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"""Replay of a used refresh token only kills its own family, not other devices."""
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email = 'refresh-family@test.com'
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password = 'password123'
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user = _create_verified_user(email, password)
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# Device A logs in
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client_a = client
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login_a = client_a.post('/auth/login', json={'email': email, 'password': password})
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assert login_a.status_code == 200
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refresh_a = _extract_cookie_value(login_a, 'refresh_token')
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# Device B logs in (separate client = separate cookie jar)
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app = client_a.application
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client_b = app.test_client()
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login_b = client_b.post('/auth/login', json={'email': email, 'password': password})
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assert login_b.status_code == 200
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refresh_b = _extract_cookie_value(login_b, 'refresh_token')
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assert refresh_a != refresh_b
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# Device A refreshes normally
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_set_refresh_cookie(client_a, refresh_a)
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refresh_a_response = client_a.post('/auth/refresh')
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assert refresh_a_response.status_code == 200
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# Capture families before any purge so we can assert afterwards.
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family_a = refresh_tokens_db.get(Query().token_hash == _hash_token(refresh_a))['token_family']
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family_b = refresh_tokens_db.get(Query().token_hash == _hash_token(refresh_b))['token_family']
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assert family_a != family_b
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# Backdate rotation so the replay is past the grace period and treated as theft.
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old_hash_a = _hash_token(refresh_a)
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backdated = (datetime.now(timezone.utc) - timedelta(seconds=60)).isoformat()
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refresh_tokens_db.update({'rotated_at': backdated}, Query().token_hash == old_hash_a)
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# Attacker replays device A's old token
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_set_refresh_cookie(client_a, refresh_a)
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reuse_response = client_a.post('/auth/refresh')
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assert reuse_response.status_code == 401
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assert reuse_response.json['code'] == 'REFRESH_TOKEN_REUSE'
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# Device B's refresh token should still be valid
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_set_refresh_cookie(client_b, refresh_b)
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refresh_b_response = client_b.post('/auth/refresh')
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assert refresh_b_response.status_code == 200
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# Only family A should be purged; family B should remain
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remaining = refresh_tokens_db.search(Query().user_id == user.id)
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remaining_families = {t['token_family'] for t in remaining}
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assert family_a not in remaining_families
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assert family_b in remaining_families
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def test_refresh_reuse_within_grace_period_is_tolerated(client):
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"""A replay within the grace period is treated as a race condition, not theft."""
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email = 'refresh-race@test.com'
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password = 'password123'
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_create_verified_user(email, password)
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login_response = client.post('/auth/login', json={'email': email, 'password': password})
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assert login_response.status_code == 200
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refresh_token = _extract_cookie_value(login_response, 'refresh_token')
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# First refresh marks the token as used
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_set_refresh_cookie(client, refresh_token)
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first_refresh = client.post('/auth/refresh')
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assert first_refresh.status_code == 200
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# Immediate replay (same legitimate client racing) should succeed
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_set_refresh_cookie(client, refresh_token)
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race_response = client.post('/auth/refresh')
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assert race_response.status_code == 200
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# The family should still be valid
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user_dict = users_db.get(Query().email == email)
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family = refresh_tokens_db.get(Query().token_hash == _hash_token(refresh_token))['token_family']
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family_tokens = refresh_tokens_db.search(
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(Query().user_id == user_dict['id']) & (Query().token_family == family)
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)
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assert len(family_tokens) >= 1
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assert any(t['is_used'] is False for t in family_tokens)
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def test_refresh_reuse_after_grace_period_invalidates_family(client):
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"""A replay after the grace period is treated as theft and kills only that family."""
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email = 'refresh-theft@test.com'
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password = 'password123'
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user = _create_verified_user(email, password)
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login_response = client.post('/auth/login', json={'email': email, 'password': password})
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assert login_response.status_code == 200
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refresh_token = _extract_cookie_value(login_response, 'refresh_token')
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# Refresh once, then backdate the rotation timestamp past the grace period
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_set_refresh_cookie(client, refresh_token)
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client.post('/auth/refresh')
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old_hash = _hash_token(refresh_token)
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old_record = refresh_tokens_db.get(Query().token_hash == old_hash)
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old_family = old_record['token_family']
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backdated = (datetime.now(timezone.utc) - timedelta(seconds=60)).isoformat()
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refresh_tokens_db.update({'rotated_at': backdated}, Query().token_hash == old_hash)
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# Replay now should be detected as theft
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_set_refresh_cookie(client, refresh_token)
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reuse_response = client.post('/auth/refresh')
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assert reuse_response.status_code == 401
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assert reuse_response.json['code'] == 'REFRESH_TOKEN_REUSE'
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remaining = refresh_tokens_db.search(Query().user_id == user.id)
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remaining_families = {t['token_family'] for t in remaining}
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assert old_family not in remaining_families
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def test_refresh_reuse_without_rotated_at_invalidates_family(client):
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"""Legacy used tokens without rotated_at are treated as theft, not race conditions."""
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email = 'refresh-legacy@test.com'
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password = 'password123'
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user = _create_verified_user(email, password)
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login_response = client.post('/auth/login', json={'email': email, 'password': password})
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assert login_response.status_code == 200
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refresh_token = _extract_cookie_value(login_response, 'refresh_token')
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# Rotate the token, then strip rotated_at to simulate pre-migration data
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_set_refresh_cookie(client, refresh_token)
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client.post('/auth/refresh')
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old_hash = _hash_token(refresh_token)
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refresh_tokens_db.update({'rotated_at': None}, Query().token_hash == old_hash)
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old_record = refresh_tokens_db.get(Query().token_hash == old_hash)
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old_family = old_record['token_family']
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# Replay should be treated as theft because rotated_at is missing
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_set_refresh_cookie(client, refresh_token)
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reuse_response = client.post('/auth/refresh')
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assert reuse_response.status_code == 401
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assert reuse_response.json['code'] == 'REFRESH_TOKEN_REUSE'
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remaining = refresh_tokens_db.search(Query().user_id == user.id)
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remaining_families = {t['token_family'] for t in remaining}
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assert old_family not in remaining_families
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def test_refresh_reuse_with_zero_grace_period(client):
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"""A grace period of 0 means any replay of a used token is treated as theft."""
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email = 'refresh-zero-grace@test.com'
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password = 'password123'
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user = _create_verified_user(email, password)
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# Configure the app with a 0-second grace period
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client.application.config['REFRESH_TOKEN_REUSE_GRACE_PERIOD_SECONDS'] = 0
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login_response = client.post('/auth/login', json={'email': email, 'password': password})
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assert login_response.status_code == 200
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refresh_token = _extract_cookie_value(login_response, 'refresh_token')
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# Rotate the token; rotated_at is within the normal default grace period
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_set_refresh_cookie(client, refresh_token)
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client.post('/auth/refresh')
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old_hash = _hash_token(refresh_token)
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old_record = refresh_tokens_db.get(Query().token_hash == old_hash)
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old_family = old_record['token_family']
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# Immediate replay should still be theft with a 0-second grace period
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_set_refresh_cookie(client, refresh_token)
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reuse_response = client.post('/auth/refresh')
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assert reuse_response.status_code == 401
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assert reuse_response.json['code'] == 'REFRESH_TOKEN_REUSE'
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remaining = refresh_tokens_db.search(Query().user_id == user.id)
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remaining_families = {t['token_family'] for t in remaining}
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assert old_family not in remaining_families
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