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980 lines
34 KiB
Python
980 lines
34 KiB
Python
""" Mailu config storage model
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"""
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import os
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import smtplib
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import json
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from datetime import date
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from email.mime import text
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from itertools import chain
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import flask_sqlalchemy
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import sqlalchemy
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import passlib.context
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import passlib.hash
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import passlib.registry
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import time
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import os
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import smtplib
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import idna
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import dns.resolver
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import dns.exception
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from flask import current_app as app
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from sqlalchemy.ext import declarative
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from sqlalchemy.ext.hybrid import hybrid_property
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from sqlalchemy.inspection import inspect
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from werkzeug.utils import cached_property
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from mailu import dkim, utils
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db = flask_sqlalchemy.SQLAlchemy()
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class IdnaDomain(db.TypeDecorator):
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""" Stores a Unicode string in it's IDNA representation (ASCII only)
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"""
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impl = db.String(80)
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cache_ok = True
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python_type = str
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def process_bind_param(self, value, dialect):
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""" encode unicode domain name to punycode """
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return idna.encode(value.lower()).decode('ascii')
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def process_result_value(self, value, dialect):
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""" decode punycode domain name to unicode """
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return idna.decode(value)
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class IdnaEmail(db.TypeDecorator):
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""" Stores a Unicode string in it's IDNA representation (ASCII only)
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"""
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impl = db.String(255)
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cache_ok = True
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python_type = str
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def process_bind_param(self, value, dialect):
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""" encode unicode domain part of email address to punycode """
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if not '@' in value:
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raise ValueError('invalid email address (no "@")')
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localpart, domain_name = value.lower().rsplit('@', 1)
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if '@' in localpart:
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raise ValueError('email local part must not contain "@"')
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return f'{localpart}@{idna.encode(domain_name).decode("ascii")}'
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def process_result_value(self, value, dialect):
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""" decode punycode domain part of email to unicode """
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localpart, domain_name = value.rsplit('@', 1)
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return f'{localpart}@{idna.decode(domain_name)}'
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class CommaSeparatedList(db.TypeDecorator):
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""" Stores a list as a comma-separated string, compatible with Postfix.
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"""
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impl = db.String
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cache_ok = True
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python_type = list
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def process_bind_param(self, value, dialect):
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""" join list of items to comma separated string """
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if not isinstance(value, (list, tuple, set)):
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raise TypeError('Must be a list of strings')
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for item in value:
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if ',' in item:
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raise ValueError('list item must not contain ","')
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return ','.join(sorted(set(value)))
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def process_result_value(self, value, dialect):
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""" split comma separated string to list """
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return list(filter(bool, (item.strip() for item in value.split(',')))) if value else []
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class JSONEncoded(db.TypeDecorator):
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""" Represents an immutable structure as a json-encoded string.
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"""
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impl = db.String
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cache_ok = True
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python_type = str
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def process_bind_param(self, value, dialect):
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""" encode data as json """
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return json.dumps(value) if value else None
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def process_result_value(self, value, dialect):
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""" decode json to data """
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return json.loads(value) if value else None
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class Base(db.Model):
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""" Base class for all models
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"""
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__abstract__ = True
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metadata = sqlalchemy.schema.MetaData(
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naming_convention={
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'fk': '%(table_name)s_%(column_0_name)s_fkey',
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'pk': '%(table_name)s_pkey'
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}
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)
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created_at = db.Column(db.Date, nullable=False, default=date.today)
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updated_at = db.Column(db.Date, nullable=True, onupdate=date.today)
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comment = db.Column(db.String(255), nullable=True, default='')
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def __str__(self):
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pkey = self.__table__.primary_key.columns.values()[0].name
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if pkey == 'email':
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# ugly hack for email declared attr. _email is not always up2date
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return str(f'{self.localpart}@{self.domain_name}')
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return str(getattr(self, pkey))
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def __repr__(self):
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return f'<{self.__class__.__name__} {str(self)!r}>'
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def __eq__(self, other):
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if isinstance(other, self.__class__):
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pkey = self.__table__.primary_key.columns.values()[0].name
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this = getattr(self, pkey, None)
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other = getattr(other, pkey, None)
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return this is not None and other is not None and str(this) == str(other)
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else:
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return NotImplemented
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# we need hashable instances here for sqlalchemy to update collections
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# in collections.bulk_replace, but auto-incrementing don't always have
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# a valid primary key, in this case we use the object's id
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__hashed = None
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def __hash__(self):
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if self.__hashed is None:
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primary = getattr(self, self.__table__.primary_key.columns.values()[0].name)
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self.__hashed = id(self) if primary is None else hash(primary)
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return self.__hashed
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# Many-to-many association table for domain managers
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managers = db.Table('manager', Base.metadata,
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db.Column('domain_name', IdnaDomain, db.ForeignKey('domain.name')),
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db.Column('user_email', IdnaEmail, db.ForeignKey('user.email'))
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)
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class Config(Base):
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""" In-database configuration values
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"""
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name = db.Column(db.String(255), primary_key=True, nullable=False)
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value = db.Column(JSONEncoded)
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def _save_dkim_keys(session):
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""" store DKIM keys after commit """
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for obj in session.identity_map.values():
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if isinstance(obj, Domain):
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obj.save_dkim_key()
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class Domain(Base):
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""" A DNS domain that has mail addresses associated to it.
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"""
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__tablename__ = 'domain'
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name = db.Column(IdnaDomain, primary_key=True, nullable=False)
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managers = db.relationship('User', secondary=managers,
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backref=db.backref('manager_of'), lazy='dynamic')
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max_users = db.Column(db.Integer, nullable=False, default=-1)
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max_aliases = db.Column(db.Integer, nullable=False, default=-1)
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max_quota_bytes = db.Column(db.BigInteger, nullable=False, default=0)
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signup_enabled = db.Column(db.Boolean, nullable=False, default=False)
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_dkim_key = None
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_dkim_key_on_disk = None
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def _dkim_file(self):
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""" return filename for active DKIM key """
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return app.config['DKIM_PATH'].format(
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domain=self.name,
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selector=app.config['DKIM_SELECTOR']
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)
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def save_dkim_key(self):
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""" save changed DKIM key to disk """
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if self._dkim_key != self._dkim_key_on_disk:
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file_path = self._dkim_file()
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if self._dkim_key:
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with open(file_path, 'wb') as handle:
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handle.write(self._dkim_key)
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elif os.path.exists(file_path):
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os.unlink(file_path)
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self._dkim_key_on_disk = self._dkim_key
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@cached_property
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def dns_mx(self):
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""" return MX record for domain """
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hostname = app.config['HOSTNAME']
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return f'{self.name}. 600 IN MX 10 {hostname}.'
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@cached_property
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def dns_spf(self):
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""" return SPF record for domain """
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hostname = app.config['HOSTNAME']
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return f'{self.name}. 600 IN TXT "v=spf1 mx a:{hostname} ~all"'
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@property
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def dns_dkim(self):
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""" return DKIM record for domain """
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if self.dkim_key:
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selector = app.config['DKIM_SELECTOR']
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txt = f'v=DKIM1; k=rsa; p={self.dkim_publickey}'
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record = ' '.join(f'"{txt[p:p+250]}"' for p in range(0, len(txt), 250))
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return f'{selector}._domainkey.{self.name}. 600 IN TXT {record}'
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@cached_property
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def dns_dmarc(self):
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""" return DMARC record for domain """
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if self.dkim_key:
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domain = app.config['DOMAIN']
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rua = app.config['DMARC_RUA']
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rua = f' rua=mailto:{rua}@{domain};' if rua else ''
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ruf = app.config['DMARC_RUF']
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ruf = f' ruf=mailto:{ruf}@{domain};' if ruf else ''
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return f'_dmarc.{self.name}. 600 IN TXT "v=DMARC1; p=reject;{rua}{ruf} adkim=s; aspf=s"'
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@cached_property
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def dns_dmarc_report(self):
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""" return DMARC report record for mailu server """
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if self.dkim_key:
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domain = app.config['DOMAIN']
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return f'{self.name}._report._dmarc.{domain}. 600 IN TXT "v=DMARC1"'
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@cached_property
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def dns_autoconfig(self):
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""" return list of auto configuration records (RFC6186) """
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hostname = app.config['HOSTNAME']
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protocols = [
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('imap', 143, 20),
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('pop3', 110, 20),
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('submission', 587, 20),
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]
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if app.config['TLS_FLAVOR'] != 'notls':
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protocols.extend([
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('autodiscover', 443, 10),
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('submissions', 465, 10),
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('imaps', 993, 10),
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('pop3s', 995, 10),
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])
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return [
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f'_{proto}._tcp.{self.name}. 600 IN SRV {prio} 1 {port} {hostname}.'
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for proto, port, prio
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in protocols
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]+[f'autoconfig.{self.name}. 600 IN CNAME {hostname}.']
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@cached_property
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def dns_tlsa(self):
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""" return TLSA record for domain when using letsencrypt """
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hostname = app.config['HOSTNAME']
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if app.config['TLS_FLAVOR'] in ('letsencrypt', 'mail-letsencrypt'):
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# current ISRG Root X1 (RSA 4096, O = Internet Security Research Group, CN = ISRG Root X1) @20210902
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return f'_25._tcp.{hostname}. 86400 IN TLSA 2 1 1 0b9fa5a59eed715c26c1020c711b4f6ec42d58b0015e14337a39dad301c5afc3'
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@property
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def dkim_key(self):
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""" return private DKIM key """
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if self._dkim_key is None:
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file_path = self._dkim_file()
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if os.path.exists(file_path):
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with open(file_path, 'rb') as handle:
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self._dkim_key = self._dkim_key_on_disk = handle.read()
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else:
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self._dkim_key = self._dkim_key_on_disk = b''
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return self._dkim_key if self._dkim_key else None
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@dkim_key.setter
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def dkim_key(self, value):
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""" set private DKIM key """
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old_key = self.dkim_key
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self._dkim_key = value if value is not None else b''
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if self._dkim_key != old_key:
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if not sqlalchemy.event.contains(db.session, 'after_commit', _save_dkim_keys):
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sqlalchemy.event.listen(db.session, 'after_commit', _save_dkim_keys)
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@property
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def dkim_publickey(self):
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""" return public part of DKIM key """
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dkim_key = self.dkim_key
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if dkim_key:
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return dkim.strip_key(dkim_key).decode('utf8')
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def generate_dkim_key(self):
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""" generate new DKIM key """
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self.dkim_key = dkim.gen_key()
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def has_email(self, localpart):
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""" checks if localpart is configured for domain """
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localpart = localpart.lower()
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for email in chain(self.users, self.aliases):
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if email.localpart == localpart:
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return True
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return False
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def check_mx(self):
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""" checks if MX record for domain points to mailu host """
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try:
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hostnames = set(app.config['HOSTNAMES'].split(','))
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return any(
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rset.exchange.to_text().rstrip('.') in hostnames
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for rset in dns.resolver.resolve(self.name, 'MX')
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)
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except dns.exception.DNSException:
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return False
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class Alternative(Base):
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""" Alternative name for a served domain.
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The name "domain alias" was avoided to prevent some confusion.
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"""
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__tablename__ = 'alternative'
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name = db.Column(IdnaDomain, primary_key=True, nullable=False)
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domain_name = db.Column(IdnaDomain, db.ForeignKey(Domain.name))
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domain = db.relationship(Domain,
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backref=db.backref('alternatives', cascade='all, delete-orphan'))
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class Relay(Base):
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""" Relayed mail domain.
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The domain is either relayed publicly or through a specified SMTP host.
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"""
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__tablename__ = 'relay'
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name = db.Column(IdnaDomain, primary_key=True, nullable=False)
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smtp = db.Column(db.String(80), nullable=True)
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class Email(object):
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""" Abstraction for an email address (localpart and domain).
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"""
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localpart = db.Column(db.String(80), nullable=False)
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@declarative.declared_attr
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def domain_name(cls):
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""" the domain part of the email address """
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return db.Column(IdnaDomain, db.ForeignKey(Domain.name),
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nullable=False, default=IdnaDomain)
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# This field is redundant with both localpart and domain name.
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# It is however very useful for quick lookups without joining tables,
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# especially when the mail server is reading the database.
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@declarative.declared_attr
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def _email(cls):
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""" the complete email address (localpart@domain) """
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def updater(ctx):
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key = f'{cls.__tablename__}_email'
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if key in ctx.current_parameters:
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return ctx.current_parameters[key]
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return '{localpart}@{domain_name}'.format_map(ctx.current_parameters)
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return db.Column('email', IdnaEmail, primary_key=True, nullable=False, onupdate=updater)
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# We need to keep email, localpart and domain_name in sync.
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# But IMHO using email as primary key was not a good idea in the first place.
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@hybrid_property
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def email(self):
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""" getter for email - gets _email """
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return self._email
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@email.setter
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def email(self, value):
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""" setter for email - sets _email, localpart and domain_name at once """
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self._email = value.lower()
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self.localpart, self.domain_name = self._email.rsplit('@', 1)
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@staticmethod
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def _update_localpart(target, value, *_):
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if target.domain_name:
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target._email = f'{value}@{target.domain_name}'
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@staticmethod
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def _update_domain_name(target, value, *_):
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if target.localpart:
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target._email = f'{target.localpart}@{value}'
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@classmethod
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def __declare_last__(cls):
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# gets called after mappings are completed
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sqlalchemy.event.listen(cls.localpart, 'set', cls._update_localpart, propagate=True)
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sqlalchemy.event.listen(cls.domain_name, 'set', cls._update_domain_name, propagate=True)
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def sendmail(self, subject, body):
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""" send an email to the address """
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f_addr = f'{app.config["POSTMASTER"]}@{idna.encode(app.config["DOMAIN"]).decode("ascii")}'
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with smtplib.SMTP(app.config['HOST_AUTHSMTP'], port=10025) as smtp:
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to_address = f'{self.localpart}@{idna.encode(self.domain_name).decode("ascii")}'
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msg = text.MIMEText(body)
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msg['Subject'] = subject
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msg['From'] = f_addr
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msg['To'] = to_address
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smtp.sendmail(f_addr, [to_address], msg.as_string())
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@classmethod
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def resolve_domain(cls, email):
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""" resolves domain alternative to real domain """
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localpart, domain_name = email.rsplit('@', 1) if '@' in email else (None, email)
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if alternative := Alternative.query.get(domain_name):
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domain_name = alternative.domain_name
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return (localpart, domain_name)
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@classmethod
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def resolve_destination(cls, localpart, domain_name, ignore_forward_keep=False):
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""" return destination for email address localpart@domain_name """
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localpart_stripped = None
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stripped_alias = None
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delim = os.environ.get('RECIPIENT_DELIMITER')
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if delim in localpart:
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localpart_stripped = localpart.rsplit(delim, 1)[0]
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user = User.query.get(f'{localpart}@{domain_name}')
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if not user and localpart_stripped:
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user = User.query.get(f'{localpart_stripped}@{domain_name}')
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if user:
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email = f'{localpart}@{domain_name}'
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if user.forward_enabled:
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destination = user.forward_destination
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if user.forward_keep or ignore_forward_keep:
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destination.append(email)
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else:
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destination = [email]
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return destination
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pure_alias = Alias.resolve(localpart, domain_name)
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if pure_alias and not pure_alias.wildcard:
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return pure_alias.destination
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if stripped_alias := Alias.resolve(localpart_stripped, domain_name):
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return stripped_alias.destination
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if pure_alias:
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return pure_alias.destination
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return None
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class User(Base, Email):
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""" A user is an email address that has a password to access a mailbox.
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"""
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__tablename__ = 'user'
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_ctx = None
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_credential_cache = {}
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domain = db.relationship(Domain,
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backref=db.backref('users', cascade='all, delete-orphan'))
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password = db.Column(db.String(255), nullable=False)
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quota_bytes = db.Column(db.BigInteger, nullable=False, default=10**9)
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quota_bytes_used = db.Column(db.BigInteger, nullable=False, default=0)
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global_admin = db.Column(db.Boolean, nullable=False, default=False)
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enabled = db.Column(db.Boolean, nullable=False, default=True)
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# Features
|
|
enable_imap = db.Column(db.Boolean, nullable=False, default=True)
|
|
enable_pop = db.Column(db.Boolean, nullable=False, default=True)
|
|
|
|
# Filters
|
|
forward_enabled = db.Column(db.Boolean, nullable=False, default=False)
|
|
forward_destination = db.Column(CommaSeparatedList, nullable=True, default=list)
|
|
forward_keep = db.Column(db.Boolean, nullable=False, default=True)
|
|
reply_enabled = db.Column(db.Boolean, nullable=False, default=False)
|
|
reply_subject = db.Column(db.String(255), nullable=True, default=None)
|
|
reply_body = db.Column(db.Text, nullable=True, default=None)
|
|
reply_startdate = db.Column(db.Date, nullable=False,
|
|
default=date(1900, 1, 1))
|
|
reply_enddate = db.Column(db.Date, nullable=False,
|
|
default=date(2999, 12, 31))
|
|
|
|
# Settings
|
|
displayed_name = db.Column(db.String(160), nullable=False, default='')
|
|
spam_enabled = db.Column(db.Boolean, nullable=False, default=True)
|
|
spam_threshold = db.Column(db.Integer, nullable=False, default=80)
|
|
|
|
# Flask-login attributes
|
|
is_authenticated = True
|
|
is_active = True
|
|
is_anonymous = False
|
|
|
|
def get_id(self):
|
|
""" return users email address """
|
|
return self.email
|
|
|
|
@property
|
|
def destination(self):
|
|
""" returns comma separated string of destinations """
|
|
if self.forward_enabled:
|
|
result = list(self.forward_destination)
|
|
if self.forward_keep:
|
|
result.append(self.email)
|
|
return ','.join(result)
|
|
else:
|
|
return self.email
|
|
|
|
@property
|
|
def reply_active(self):
|
|
""" returns status of autoreply function """
|
|
now = date.today()
|
|
return (
|
|
self.reply_enabled and
|
|
self.reply_startdate < now and
|
|
self.reply_enddate > now
|
|
)
|
|
|
|
@property
|
|
def sender_limiter(self):
|
|
return utils.limiter.get_limiter(
|
|
app.config["MESSAGE_RATELIMIT"], "sender", self.email
|
|
)
|
|
|
|
@classmethod
|
|
def get_password_context(cls):
|
|
""" create password context for hashing and verification
|
|
"""
|
|
if cls._ctx:
|
|
return cls._ctx
|
|
|
|
# compile schemes
|
|
# - skip scrypt (throws a warning if the native wheels aren't found)
|
|
# - skip plaintext schemes (will be misidentified)
|
|
schemes = [
|
|
scheme for scheme in passlib.registry.list_crypt_handlers()
|
|
if not (scheme == 'scrypt' or scheme.endswith('plaintext'))
|
|
]
|
|
cls._ctx = passlib.context.CryptContext(
|
|
schemes=schemes,
|
|
default='bcrypt_sha256',
|
|
bcrypt_sha256__rounds=app.config['CREDENTIAL_ROUNDS'],
|
|
deprecated='auto'
|
|
)
|
|
return cls._ctx
|
|
|
|
def check_password(self, password):
|
|
""" verifies password against stored hash
|
|
and updates hash if outdated
|
|
"""
|
|
if password == '':
|
|
return False
|
|
cache_result = self._credential_cache.get(self.get_id())
|
|
current_salt = self.password.split('$')[3] if len(self.password.split('$')) == 5 else None
|
|
if cache_result and current_salt:
|
|
cache_salt, cache_hash = cache_result
|
|
if cache_salt == current_salt:
|
|
return passlib.hash.pbkdf2_sha256.verify(password, cache_hash)
|
|
else:
|
|
# the cache is local per gunicorn; the password has changed
|
|
# so the local cache can be invalidated
|
|
del self._credential_cache[self.get_id()]
|
|
reference = self.password
|
|
# strip {scheme} if that's something mailu has added
|
|
# passlib will identify *crypt based hashes just fine
|
|
# on its own
|
|
if reference.startswith(('{PBKDF2}', '{BLF-CRYPT}', '{SHA512-CRYPT}', '{SHA256-CRYPT}', '{MD5-CRYPT}', '{CRYPT}')):
|
|
reference = reference.split('}', 1)[1]
|
|
|
|
result, new_hash = User.get_password_context().verify_and_update(password, reference)
|
|
if new_hash:
|
|
self.password = new_hash
|
|
db.session.add(self)
|
|
db.session.commit()
|
|
|
|
if result:
|
|
"""The credential cache uses a low number of rounds to be fast.
|
|
While it's not meant to be persisted to cold-storage, no additional measures
|
|
are taken to ensure it isn't (mlock(), encrypted swap, ...) on the basis that
|
|
we have little control over GC and string interning anyways.
|
|
|
|
An attacker that can dump the process' memory is likely to find credentials
|
|
in clear-text regardless of the presence of the cache.
|
|
"""
|
|
self._credential_cache[self.get_id()] = (self.password.split('$')[3], passlib.hash.pbkdf2_sha256.using(rounds=1).hash(password))
|
|
return result
|
|
|
|
def set_password(self, password, raw=False):
|
|
""" Set password for user
|
|
@password: plain text password to encrypt (or, if raw is True: the hash itself)
|
|
"""
|
|
self.password = password if raw else User.get_password_context().hash(password)
|
|
|
|
def get_managed_domains(self):
|
|
""" return list of domains this user can manage """
|
|
if self.global_admin:
|
|
return Domain.query.all()
|
|
else:
|
|
return self.manager_of
|
|
|
|
def get_managed_emails(self, include_aliases=True):
|
|
""" returns list of email addresses this user can manage """
|
|
emails = []
|
|
for domain in self.get_managed_domains():
|
|
emails.extend(domain.users)
|
|
if include_aliases:
|
|
emails.extend(domain.aliases)
|
|
return emails
|
|
|
|
def send_welcome(self):
|
|
""" send welcome email to user """
|
|
if app.config['WELCOME']:
|
|
self.sendmail(app.config['WELCOME_SUBJECT'], app.config['WELCOME_BODY'])
|
|
|
|
@classmethod
|
|
def get(cls, email):
|
|
""" find user object for email address """
|
|
return cls.query.get(email)
|
|
|
|
@classmethod
|
|
def login(cls, email, password):
|
|
""" login user when enabled and password is valid """
|
|
user = cls.query.get(email)
|
|
return user if (user and user.enabled and user.check_password(password)) else None
|
|
|
|
|
|
class Alias(Base, Email):
|
|
""" An alias is an email address that redirects to some destination.
|
|
"""
|
|
|
|
__tablename__ = 'alias'
|
|
|
|
domain = db.relationship(Domain,
|
|
backref=db.backref('aliases', cascade='all, delete-orphan'))
|
|
wildcard = db.Column(db.Boolean, nullable=False, default=False)
|
|
destination = db.Column(CommaSeparatedList, nullable=False, default=list)
|
|
|
|
@classmethod
|
|
def resolve(cls, localpart, domain_name):
|
|
""" find aliases matching email address localpart@domain_name """
|
|
|
|
alias_preserve_case = cls.query.filter(
|
|
sqlalchemy.and_(cls.domain_name == domain_name,
|
|
sqlalchemy.or_(
|
|
sqlalchemy.and_(
|
|
cls.wildcard == False,
|
|
cls.localpart == localpart
|
|
), sqlalchemy.and_(
|
|
cls.wildcard == True,
|
|
sqlalchemy.bindparam('l', localpart).like(cls.localpart)
|
|
)
|
|
)
|
|
)
|
|
).order_by(cls.wildcard, sqlalchemy.func.char_length(cls.localpart).desc()).first()
|
|
|
|
localpart_lower = localpart.lower() if localpart else None
|
|
alias_lower_case = cls.query.filter(
|
|
sqlalchemy.and_(cls.domain_name == domain_name,
|
|
sqlalchemy.or_(
|
|
sqlalchemy.and_(
|
|
cls.wildcard == False,
|
|
sqlalchemy.func.lower(cls.localpart) == localpart_lower
|
|
), sqlalchemy.and_(
|
|
cls.wildcard == True,
|
|
sqlalchemy.bindparam('l', localpart_lower).like(
|
|
sqlalchemy.func.lower(cls.localpart))
|
|
)
|
|
)
|
|
)
|
|
).order_by(cls.wildcard, sqlalchemy.func.char_length(
|
|
sqlalchemy.func.lower(cls.localpart)).desc()).first()
|
|
|
|
if alias_preserve_case and alias_lower_case:
|
|
return alias_lower_case if alias_preserve_case.wildcard else alias_preserve_case
|
|
|
|
if alias_preserve_case and not alias_lower_case:
|
|
return alias_preserve_case
|
|
|
|
if alias_lower_case and not alias_preserve_case:
|
|
return alias_lower_case
|
|
|
|
return None
|
|
|
|
|
|
class Token(Base):
|
|
""" A token is an application password for a given user.
|
|
"""
|
|
|
|
__tablename__ = 'token'
|
|
|
|
id = db.Column(db.Integer, primary_key=True)
|
|
user_email = db.Column(db.String(255), db.ForeignKey(User.email),
|
|
nullable=False)
|
|
user = db.relationship(User,
|
|
backref=db.backref('tokens', cascade='all, delete-orphan'))
|
|
password = db.Column(db.String(255), nullable=False)
|
|
ip = db.Column(db.String(255))
|
|
|
|
def check_password(self, password):
|
|
""" verifies password against stored hash
|
|
and updates hash if outdated
|
|
"""
|
|
if self.password.startswith("$5$"):
|
|
if passlib.hash.sha256_crypt.verify(password, self.password):
|
|
self.set_password(password)
|
|
db.session.add(self)
|
|
db.session.commit()
|
|
return True
|
|
return False
|
|
return passlib.hash.pbkdf2_sha256.verify(password, self.password)
|
|
|
|
def set_password(self, password):
|
|
""" sets password using pbkdf2_sha256 (1 round) """
|
|
# tokens have 128bits of entropy, they are not bruteforceable
|
|
self.password = passlib.hash.pbkdf2_sha256.using(rounds=1).hash(password)
|
|
|
|
def __repr__(self):
|
|
return f'<Token #{self.id}: {self.comment or self.ip or self.password}>'
|
|
|
|
|
|
class Fetch(Base):
|
|
""" A fetched account is a remote POP/IMAP account fetched into a local
|
|
account.
|
|
"""
|
|
|
|
__tablename__ = 'fetch'
|
|
|
|
id = db.Column(db.Integer, primary_key=True)
|
|
user_email = db.Column(db.String(255), db.ForeignKey(User.email),
|
|
nullable=False)
|
|
user = db.relationship(User,
|
|
backref=db.backref('fetches', cascade='all, delete-orphan'))
|
|
protocol = db.Column(db.Enum('imap', 'pop3'), nullable=False)
|
|
host = db.Column(db.String(255), nullable=False)
|
|
port = db.Column(db.Integer, nullable=False)
|
|
tls = db.Column(db.Boolean, nullable=False, default=False)
|
|
username = db.Column(db.String(255), nullable=False)
|
|
password = db.Column(db.String(255), nullable=False)
|
|
keep = db.Column(db.Boolean, nullable=False, default=False)
|
|
last_check = db.Column(db.DateTime, nullable=True)
|
|
error = db.Column(db.String(1023), nullable=True)
|
|
|
|
def __repr__(self):
|
|
return (
|
|
f'<Fetch #{self.id}: {self.protocol}{"s" if self.tls else ""}:'
|
|
f'//{self.username}@{self.host}:{self.port}>'
|
|
)
|
|
|
|
|
|
class MailuConfig:
|
|
""" Class which joins whole Mailu config for dumping
|
|
and loading
|
|
"""
|
|
|
|
class MailuCollection:
|
|
""" Provides dict- and list-like access to instances
|
|
of a sqlalchemy model
|
|
"""
|
|
|
|
def __init__(self, model : db.Model):
|
|
self.model = model
|
|
|
|
def __repr__(self):
|
|
return f'<{self.model.__name__}-Collection>'
|
|
|
|
@cached_property
|
|
def _items(self):
|
|
return {
|
|
inspect(item).identity: item
|
|
for item in self.model.query.all()
|
|
}
|
|
|
|
def __len__(self):
|
|
return len(self._items)
|
|
|
|
def __iter__(self):
|
|
return iter(self._items.values())
|
|
|
|
def __getitem__(self, key):
|
|
return self._items[key]
|
|
|
|
def __setitem__(self, key, item):
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
if key != inspect(item).identity:
|
|
raise ValueError(f'item identity != key {key!r}')
|
|
self._items[key] = item
|
|
|
|
def __delitem__(self, key):
|
|
del self._items[key]
|
|
|
|
def append(self, item, update=False):
|
|
""" list-like append """
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
key = inspect(item).identity
|
|
if key in self._items:
|
|
if not update:
|
|
raise ValueError(f'item {key!r} already present in collection')
|
|
self._items[key] = item
|
|
|
|
def extend(self, items, update=False):
|
|
""" list-like extend """
|
|
add = {}
|
|
for item in items:
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
key = inspect(item).identity
|
|
if not update and key in self._items:
|
|
raise ValueError(f'item {key!r} already present in collection')
|
|
add[key] = item
|
|
self._items.update(add)
|
|
|
|
def pop(self, *args):
|
|
""" list-like (no args) and dict-like (1 or 2 args) pop """
|
|
if args:
|
|
if len(args) > 2:
|
|
raise TypeError(f'pop expected at most 2 arguments, got {len(args)}')
|
|
return self._items.pop(*args)
|
|
else:
|
|
return self._items.popitem()[1]
|
|
|
|
def popitem(self):
|
|
""" dict-like popitem """
|
|
return self._items.popitem()
|
|
|
|
def remove(self, item):
|
|
""" list-like remove """
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
key = inspect(item).identity
|
|
if not key in self._items:
|
|
raise ValueError(f'item {key!r} not found in collection')
|
|
del self._items[key]
|
|
|
|
def clear(self):
|
|
""" dict-like clear """
|
|
while True:
|
|
try:
|
|
self.pop()
|
|
except IndexError:
|
|
break
|
|
|
|
def update(self, items):
|
|
""" dict-like update """
|
|
for key, item in items:
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
if key != inspect(item).identity:
|
|
raise ValueError(f'item identity != key {key!r}')
|
|
self._items.update(items)
|
|
|
|
def setdefault(self, key, item=None):
|
|
""" dict-like setdefault """
|
|
if key in self._items:
|
|
return self._items[key]
|
|
if item is None:
|
|
return None
|
|
if not isinstance(item, self.model):
|
|
raise TypeError(f'expected {self.model.name}')
|
|
if key != inspect(item).identity:
|
|
raise ValueError(f'item identity != key {key!r}')
|
|
self._items[key] = item
|
|
return item
|
|
|
|
def __init__(self):
|
|
|
|
# section-name -> attr
|
|
self._sections = {
|
|
name: getattr(self, name)
|
|
for name in dir(self)
|
|
if isinstance(getattr(self, name), self.MailuCollection)
|
|
}
|
|
|
|
# known models
|
|
self._models = tuple(section.model for section in self._sections.values())
|
|
|
|
# model -> attr
|
|
self._sections.update({
|
|
section.model: section for section in self._sections.values()
|
|
})
|
|
|
|
def _get_model(self, section):
|
|
if section is None:
|
|
return None
|
|
model = self._sections.get(section)
|
|
if model is None:
|
|
raise ValueError(f'Invalid section: {section!r}')
|
|
if isinstance(model, self.MailuCollection):
|
|
return model.model
|
|
return model
|
|
|
|
def _add(self, items, section, update):
|
|
|
|
model = self._get_model(section)
|
|
if isinstance(items, self._models):
|
|
items = [items]
|
|
elif not hasattr(items, '__iter__'):
|
|
raise ValueError(f'{items!r} is not iterable')
|
|
|
|
for item in items:
|
|
if model is not None and not isinstance(item, model):
|
|
what = item.__class__.__name__.capitalize()
|
|
raise ValueError(f'{what} can not be added to section {section!r}')
|
|
self._sections[type(item)].append(item, update=update)
|
|
|
|
def add(self, items, section=None):
|
|
""" add item to config """
|
|
self._add(items, section, update=False)
|
|
|
|
def update(self, items, section=None):
|
|
""" add or replace item in config """
|
|
self._add(items, section, update=True)
|
|
|
|
def remove(self, items, section=None):
|
|
""" remove item from config """
|
|
model = self._get_model(section)
|
|
if isinstance(items, self._models):
|
|
items = [items]
|
|
elif not hasattr(items, '__iter__'):
|
|
raise ValueError(f'{items!r} is not iterable')
|
|
|
|
for item in items:
|
|
if isinstance(item, str):
|
|
if section is None:
|
|
raise ValueError(f'Cannot remove key {item!r} without section')
|
|
del self._sections[model][item]
|
|
elif model is not None and not isinstance(item, model):
|
|
what = item.__class__.__name__.capitalize()
|
|
raise ValueError(f'{what} can not be removed from section {section!r}')
|
|
self._sections[type(item)].remove(item,)
|
|
|
|
def clear(self, models=None):
|
|
""" remove complete configuration """
|
|
for model in self._models:
|
|
if models is None or model in models:
|
|
db.session.query(model).delete()
|
|
|
|
def check(self):
|
|
""" check for duplicate domain names """
|
|
dup = set()
|
|
for fqdn in chain(
|
|
db.session.query(Domain.name),
|
|
db.session.query(Alternative.name),
|
|
db.session.query(Relay.name)
|
|
):
|
|
if fqdn in dup:
|
|
raise ValueError(f'Duplicate domain name: {fqdn}')
|
|
dup.add(fqdn)
|
|
|
|
domain = MailuCollection(Domain)
|
|
user = MailuCollection(User)
|
|
alias = MailuCollection(Alias)
|
|
relay = MailuCollection(Relay)
|
|
config = MailuCollection(Config)
|