mirror of
https://github.com/mail-in-a-box/mailinabox.git
synced 2024-11-22 02:17:26 +00:00
79966e36e3
The /admin/munin routes used the same Authorization: header logic as the other API routes, but they are browsed directly in the browser because they are handled as static pages or as a proxy to a CGI script. This required users to enter their email username/password for HTTP basic authentication in the standard browser auth prompt, which wasn't ideal (and may leak the password in browser storage). It also stopped working when MFA was enabled for user accounts. A token is now set in a cookie when visiting /admin/munin which is then checked in the routes that proxy the Munin pages. The cookie's lifetime is kept limited to limit the opportunity for any unknown CSRF attacks via the Munin CGI script.
167 lines
6.3 KiB
Python
167 lines
6.3 KiB
Python
import base64, os, os.path, hmac, json, secrets
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from datetime import timedelta
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from expiringdict import ExpiringDict
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import utils
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from mailconfig import get_mail_password, get_mail_user_privileges
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from mfa import get_hash_mfa_state, validate_auth_mfa
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DEFAULT_KEY_PATH = '/var/lib/mailinabox/api.key'
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DEFAULT_AUTH_REALM = 'Mail-in-a-Box Management Server'
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class AuthService:
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def __init__(self):
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self.auth_realm = DEFAULT_AUTH_REALM
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self.key_path = DEFAULT_KEY_PATH
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self.max_session_duration = timedelta(days=2)
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self.init_system_api_key()
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self.sessions = ExpiringDict(max_len=64, max_age_seconds=self.max_session_duration.total_seconds())
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def init_system_api_key(self):
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"""Write an API key to a local file so local processes can use the API"""
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def create_file_with_mode(path, mode):
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# Based on answer by A-B-B: http://stackoverflow.com/a/15015748
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old_umask = os.umask(0)
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try:
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return os.fdopen(os.open(path, os.O_WRONLY | os.O_CREAT, mode), 'w')
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finally:
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os.umask(old_umask)
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self.key = secrets.token_hex(32)
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os.makedirs(os.path.dirname(self.key_path), exist_ok=True)
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with create_file_with_mode(self.key_path, 0o640) as key_file:
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key_file.write(self.key + '\n')
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def authenticate(self, request, env, login_only=False, logout=False):
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"""Test if the HTTP Authorization header's username matches the system key, a session key,
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or if the username/password passed in the header matches a local user.
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Returns a tuple of the user's email address and list of user privileges (e.g.
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('my@email', []) or ('my@email', ['admin']); raises a ValueError on login failure.
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If the user used the system API key, the user's email is returned as None since
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this key is not associated with a user."""
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def parse_http_authorization_basic(header):
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def decode(s):
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return base64.b64decode(s.encode('ascii')).decode('ascii')
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if " " not in header:
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return None, None
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scheme, credentials = header.split(maxsplit=1)
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if scheme != 'Basic':
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return None, None
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credentials = decode(credentials)
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if ":" not in credentials:
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return None, None
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username, password = credentials.split(':', maxsplit=1)
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return username, password
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username, password = parse_http_authorization_basic(request.headers.get('Authorization', ''))
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if username in (None, ""):
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raise ValueError("Authorization header invalid.")
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if username.strip() == "" and password.strip() == "":
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raise ValueError("No email address, password, session key, or API key provided.")
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# If user passed the system API key, grant administrative privs. This key
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# is not associated with a user.
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if username == self.key and not login_only:
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return (None, ["admin"])
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# If the password corresponds with a session token for the user, grant access for that user.
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if self.get_session(username, password, "login", env) and not login_only:
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sessionid = password
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session = self.sessions[sessionid]
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if logout:
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# Clear the session.
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del self.sessions[sessionid]
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else:
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# Re-up the session so that it does not expire.
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self.sessions[sessionid] = session
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# If no password was given, but a username was given, we're missing some information.
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elif password.strip() == "":
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raise ValueError("Enter a password.")
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else:
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# The user is trying to log in with a username and a password
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# (and possibly a MFA token). On failure, an exception is raised.
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self.check_user_auth(username, password, request, env)
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# Get privileges for authorization. This call should never fail because by this
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# point we know the email address is a valid user --- unless the user has been
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# deleted after the session was granted. On error the call will return a tuple
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# of an error message and an HTTP status code.
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privs = get_mail_user_privileges(username, env)
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if isinstance(privs, tuple): raise ValueError(privs[0])
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# Return the authorization information.
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return (username, privs)
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def check_user_auth(self, email, pw, request, env):
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# Validate a user's login email address and password. If MFA is enabled,
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# check the MFA token in the X-Auth-Token header.
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#
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# On login failure, raises a ValueError with a login error message. On
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# success, nothing is returned.
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# Authenticate.
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try:
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# Get the hashed password of the user. Raise a ValueError if the
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# email address does not correspond to a user. But wrap it in the
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# same exception as if a password fails so we don't easily reveal
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# if an email address is valid.
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pw_hash = get_mail_password(email, env)
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# Use 'doveadm pw' to check credentials. doveadm will return
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# a non-zero exit status if the credentials are no good,
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# and check_call will raise an exception in that case.
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utils.shell('check_call', [
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"/usr/bin/doveadm", "pw",
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"-p", pw,
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"-t", pw_hash,
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])
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except:
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# Login failed.
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raise ValueError("Incorrect email address or password.")
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# If MFA is enabled, check that MFA passes.
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status, hints = validate_auth_mfa(email, request, env)
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if not status:
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# Login valid. Hints may have more info.
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raise ValueError(",".join(hints))
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def create_user_password_state_token(self, email, env):
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# Create a token that changes if the user's password or MFA options change
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# so that sessions become invalid if any of that information changes.
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msg = get_mail_password(email, env).encode("utf8")
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# Add to the message the current MFA state, which is a list of MFA information.
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# Turn it into a string stably.
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msg += b" " + json.dumps(get_hash_mfa_state(email, env), sort_keys=True).encode("utf8")
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# Make a HMAC using the system API key as a hash key.
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hash_key = self.key.encode('ascii')
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return hmac.new(hash_key, msg, digestmod="sha256").hexdigest()
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def create_session_key(self, username, env, type=None):
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# Create a new session.
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token = secrets.token_hex(32)
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self.sessions[token] = {
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"email": username,
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"password_token": self.create_user_password_state_token(username, env),
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"type": type,
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}
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return token
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def get_session(self, user_email, session_key, session_type, env):
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if session_key not in self.sessions: return None
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session = self.sessions[session_key]
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if session_type == "login" and session["email"] != user_email: return None
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if session["type"] != session_type: return None
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if session["password_token"] != self.create_user_password_state_token(session["email"], env): return None
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return session
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