mirror of https://github.com/MISP/PyMISP
592 lines
23 KiB
Python
592 lines
23 KiB
Python
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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import datetime
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import time
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import json
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from json import JSONEncoder
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import os
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import warnings
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import base64
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from io import BytesIO
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from zipfile import ZipFile
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import hashlib
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try:
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from dateutil.parser import parse
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except ImportError:
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pass
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try:
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import jsonschema
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except ImportError:
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pass
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try:
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# pyme renamed to gpg the 2016-10-28
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import gpg
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from gpg.constants.sig import mode
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has_pyme = True
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except ImportError:
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try:
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# pyme renamed to gpg the 2016-10-28
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import pyme as gpg
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from pyme.constants.sig import mode
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has_pyme = True
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except ImportError:
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has_pyme = False
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from .exceptions import PyMISPError, NewEventError, NewAttributeError
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# Least dirty way to support python 2 and 3
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try:
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basestring
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unicode
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warnings.warn("You're using python 2, it is strongly recommended to use python >=3.4")
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except NameError:
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basestring = str
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unicode = str
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class MISPAttribute(object):
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def __init__(self, describe_types):
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self.categories = describe_types['categories']
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self.types = describe_types['types']
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self.category_type_mapping = describe_types['category_type_mappings']
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self.sane_default = describe_types['sane_defaults']
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self._reinitialize_attribute()
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def _reinitialize_attribute(self):
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# Default values
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self.category = None
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self.type = None
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self.value = None
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self.to_ids = False
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self.comment = ''
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self.distribution = 5
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# other possible values
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self.data = None
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self.encrypt = False
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self.id = None
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self.uuid = None
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self.timestamp = None
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self.sharing_group_id = None
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self.deleted = None
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self.sig = None
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self.SharingGroup = []
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self.ShadowAttribute = []
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self.disable_correlation = False
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self.RelatedAttribute = []
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self.Tag = []
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def _serialize(self):
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return '{type}{category}{to_ids}{uuid}{timestamp}{comment}{deleted}{value}'.format(
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type=self.type, category=self.category, to_ids=self.to_ids, uuid=self.uuid, timestamp=self.timestamp,
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comment=self.comment, deleted=self.deleted, value=self.value).encode()
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def sign(self, gpg_uid, passphrase=None):
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if not has_pyme:
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raise Exception('pyme is required, please install: pip install --pre pyme3. You will also need libgpg-error-dev and libgpgme11-dev.')
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to_sign = self._serialize()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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c.signers = keys[:1]
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if passphrase:
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c.set_passphrase_cb(lambda *args: passphrase)
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signed, _ = c.sign(to_sign, mode=mode.DETACH)
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self.sig = base64.b64encode(signed).decode()
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def delete(self):
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self.deleted = True
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def add_tag(self, tag):
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self.Tag.append({'name': tag})
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def verify(self, gpg_uid):
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if not has_pyme:
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raise Exception('pyme is required, please install: pip install --pre pyme3. You will also need libgpg-error-dev and libgpgme11-dev.')
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signed_data = self._serialize()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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try:
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c.verify(signed_data, signature=base64.b64decode(self.sig), verify=keys[:1])
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return {self.uuid: True}
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except:
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return {self.uuid: False}
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def set_all_values(self, **kwargs):
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if kwargs.get('type') and kwargs.get('category'):
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if kwargs['type'] not in self.category_type_mapping[kwargs['category']]:
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raise NewAttributeError('{} and {} is an invalid combinaison, type for this category has to be in {}'.format(kwargs.get('type'), kwargs.get('category'), (', '.join(self.category_type_mapping[kwargs['category']]))))
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# Required
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if kwargs.get('type'):
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self.type = kwargs['type']
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if self.type not in self.types:
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raise NewAttributeError('{} is invalid, type has to be in {}'.format(self.type, (', '.join(self.types))))
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elif not self.type:
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raise NewAttributeError('The type of the attribute is required.')
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type_defaults = self.sane_default[self.type]
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if kwargs.get('value'):
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self.value = kwargs['value']
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elif not self.value:
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raise NewAttributeError('The value of the attribute is required.')
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# Default values
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if kwargs.get('category'):
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self.category = kwargs['category']
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if self.category not in self.categories:
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raise NewAttributeError('{} is invalid, category has to be in {}'.format(self.category, (', '.join(self.categories))))
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else:
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self.category = type_defaults['default_category']
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if kwargs.get('to_ids'):
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self.to_ids = kwargs['to_ids']
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if not isinstance(self.to_ids, bool):
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raise NewAttributeError('{} is invalid, to_ids has to be True or False'.format(self.to_ids))
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else:
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self.to_ids = bool(int(type_defaults['to_ids']))
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if kwargs.get('comment'):
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self.comment = kwargs['comment']
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if kwargs.get('distribution'):
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self.distribution = int(kwargs['distribution'])
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if self.distribution not in [0, 1, 2, 3, 4, 5]:
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raise NewAttributeError('{} is invalid, the distribution has to be in 0, 1, 2, 3, 4, 5'.format(self.distribution))
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# other possible values
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if kwargs.get('data'):
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self.data = kwargs['data']
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self._load_data()
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if kwargs.get('id'):
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self.id = int(kwargs['id'])
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if kwargs.get('uuid'):
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self.uuid = kwargs['uuid']
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if kwargs.get('timestamp'):
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self.timestamp = datetime.datetime.fromtimestamp(int(kwargs['timestamp']))
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if kwargs.get('sharing_group_id'):
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self.sharing_group_id = int(kwargs['sharing_group_id'])
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if kwargs.get('deleted'):
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self.deleted = kwargs['deleted']
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if kwargs.get('SharingGroup'):
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self.SharingGroup = kwargs['SharingGroup']
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if kwargs.get('ShadowAttribute'):
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self.ShadowAttribute = kwargs['ShadowAttribute']
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if kwargs.get('sig'):
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self.sig = kwargs['sig']
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if kwargs.get('Tag'):
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self.Tag = [t for t in kwargs['Tag'] if t]
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# If the user wants to disable correlation, let them. Defaults to False.
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self.disable_correlation = kwargs.get("disable_correlation", False)
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def _prepare_new_malware_sample(self):
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if '|' in self.value:
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# Get the filename, ignore the md5, because humans.
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self.malware_filename, md5 = self.value.split('|')
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else:
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# Assuming the user only passed the filename
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self.malware_filename = self.value
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m = hashlib.md5()
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m.update(self.data.getvalue())
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md5 = m.hexdigest()
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self.value = '{}|{}'.format(self.malware_filename, md5)
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self.malware_binary = self.data
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self.encrypt = True
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def _load_data(self):
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if not isinstance(self.data, BytesIO):
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self.data = BytesIO(base64.b64decode(self.data))
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if self.type == 'malware-sample':
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try:
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with ZipFile(self.data) as f:
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for name in f.namelist():
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if name.endswith('.txt'):
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with f.open(name, pwd=b'infected') as unpacked:
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self.malware_filename = unpacked.read().decode()
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else:
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with f.open(name, pwd=b'infected') as unpacked:
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self.malware_binary = BytesIO(unpacked.read())
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except:
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# not a encrypted zip file, assuming it is a new malware sample
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self._prepare_new_malware_sample()
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def _json(self):
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to_return = {'type': self.type, 'category': self.category, 'to_ids': self.to_ids,
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'distribution': self.distribution, 'value': self.value,
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'comment': self.comment, 'disable_correlation': self.disable_correlation}
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if self.uuid:
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to_return['uuid'] = self.uuid
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if self.sig:
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to_return['sig'] = self.sig
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if self.sharing_group_id:
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to_return['sharing_group_id'] = self.sharing_group_id
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if self.Tag:
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to_return['Tag'] = self.Tag
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if self.data:
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to_return['data'] = base64.b64encode(self.data.getvalue()).decode()
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if self.encrypt:
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to_return['entrypt'] = self.encrypt
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to_return = _int_to_str(to_return)
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return to_return
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def _json_full(self):
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to_return = self._json()
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if self.id:
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to_return['id'] = self.id
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if self.timestamp:
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# Should never be set on an update, MISP will automatically set it to now
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to_return['timestamp'] = int(time.mktime(self.timestamp.timetuple()))
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if self.deleted is not None:
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to_return['deleted'] = self.deleted
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if self.ShadowAttribute:
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to_return['ShadowAttribute'] = self.ShadowAttribute
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if self.SharingGroup:
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to_return['SharingGroup'] = self.SharingGroup
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to_return = _int_to_str(to_return)
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return to_return
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class EncodeUpdate(JSONEncoder):
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def default(self, obj):
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try:
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return obj._json()
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except AttributeError:
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return JSONEncoder.default(self, obj)
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class EncodeFull(JSONEncoder):
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def default(self, obj):
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try:
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return obj._json_full()
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except AttributeError:
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return JSONEncoder.default(self, obj)
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def _int_to_str(d):
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# transform all integer back to string
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for k, v in d.items():
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if isinstance(v, int) and not isinstance(v, bool):
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d[k] = str(v)
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return d
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class MISPEvent(object):
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def __init__(self, describe_types=None):
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self.ressources_path = os.path.join(os.path.abspath(os.path.dirname(__file__)), 'data')
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with open(os.path.join(self.ressources_path, 'schema.json'), 'r') as f:
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self.json_schema = json.load(f)
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with open(os.path.join(self.ressources_path, 'schema-lax.json'), 'r') as f:
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self.json_schema_lax = json.load(f)
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if not describe_types:
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t = json.load(open(os.path.join(self.ressources_path, 'describeTypes.json'), 'r'))
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describe_types = t['result']
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self.describe_types = describe_types
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self.categories = describe_types['categories']
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self.types = describe_types['types']
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self.category_type_mapping = describe_types['category_type_mappings']
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self.sane_default = describe_types['sane_defaults']
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self.new = True
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self.dump_full = False
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self._reinitialize_event()
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def _reinitialize_event(self):
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# Default values for a valid event to send to a MISP instance
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self.distribution = 3
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self.threat_level_id = 2
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self.analysis = 0
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self.info = None
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self.published = False
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self.date = datetime.date.today()
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self.attributes = []
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# All other keys
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self.sig = None
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self.global_sig = None
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self.id = None
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self.orgc_id = None
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self.org_id = None
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self.uuid = None
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self.attribute_count = None
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self.timestamp = None
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self.proposal_email_lock = None
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self.locked = None
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self.publish_timestamp = None
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self.sharing_group_id = None
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self.Org = None
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self.Orgc = None
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self.ShadowAttribute = []
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self.RelatedEvent = []
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self.Tag = []
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self.Galaxy = None
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def _serialize(self):
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return '{date}{threat_level_id}{info}{uuid}{analysis}{timestamp}'.format(
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date=self.date, threat_level_id=self.threat_level_id, info=self.info,
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uuid=self.uuid, analysis=self.analysis, timestamp=self.timestamp).encode()
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def _serialize_sigs(self):
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all_sigs = self.sig
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for a in self.attributes:
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all_sigs += a.sig
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return all_sigs.encode()
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def sign(self, gpg_uid, passphrase=None):
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if not has_pyme:
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raise Exception('pyme is required, please install: pip install --pre pyme3. You will also need libgpg-error-dev and libgpgme11-dev.')
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to_sign = self._serialize()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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c.signers = keys[:1]
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if passphrase:
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c.set_passphrase_cb(lambda *args: passphrase)
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signed, _ = c.sign(to_sign, mode=mode.DETACH)
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self.sig = base64.b64encode(signed).decode()
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for a in self.attributes:
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a.sign(gpg_uid, passphrase)
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to_sign_global = self._serialize_sigs()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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c.signers = keys[:1]
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if passphrase:
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c.set_passphrase_cb(lambda *args: passphrase)
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signed, _ = c.sign(to_sign_global, mode=mode.DETACH)
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self.global_sig = base64.b64encode(signed).decode()
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def verify(self, gpg_uid):
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if not has_pyme:
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raise Exception('pyme is required, please install: pip install --pre pyme3. You will also need libgpg-error-dev and libgpgme11-dev.')
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to_return = {}
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signed_data = self._serialize()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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try:
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c.verify(signed_data, signature=base64.b64decode(self.sig), verify=keys[:1])
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to_return[self.uuid] = True
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except:
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to_return[self.uuid] = False
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for a in self.attributes:
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to_return.update(a.verify(gpg_uid))
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to_verify_global = self._serialize_sigs()
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with gpg.Context() as c:
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keys = list(c.keylist(gpg_uid))
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try:
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c.verify(to_verify_global, signature=base64.b64decode(self.global_sig), verify=keys[:1])
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to_return['global'] = True
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except:
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to_return['global'] = False
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return to_return
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def load(self, json_event):
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self.new = False
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self.dump_full = True
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if isinstance(json_event, basestring) and os.path.exists(json_event):
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# NOTE: is it a good idea? (possible security issue if an untrusted user call this method)
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json_event = open(json_event, 'r')
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if hasattr(json_event, 'read'):
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# python2 and python3 compatible to find if we have a file
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json_event = json_event.read()
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if isinstance(json_event, basestring):
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json_event = json.loads(json_event)
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if json_event.get('response'):
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event = json_event.get('response')[0]
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else:
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event = json_event
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if not event:
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raise PyMISPError('Invalid event')
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# Invalid event created by MISP up to 2.4.52 (attribute_count is none instead of '0')
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if event.get('Event') and event.get('Event').get('attribute_count') is None:
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event['Event']['attribute_count'] = '0'
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jsonschema.validate(event, self.json_schema_lax)
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e = event.get('Event')
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self._reinitialize_event()
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self.set_all_values(**e)
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def set_date(self, date, ignore_invalid=False):
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if isinstance(date, basestring) or isinstance(date, unicode):
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self.date = parse(date).date()
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elif isinstance(date, datetime.datetime):
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self.date = date.date()
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elif isinstance(date, datetime.date):
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self.date = date
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else:
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if ignore_invalid:
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self.date = datetime.date.today()
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else:
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raise NewEventError('Invalid format for the date: {} - {}'.format(date, type(date)))
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def set_all_values(self, **kwargs):
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# Required value
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if kwargs.get('info'):
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self.info = kwargs['info']
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elif not self.info:
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raise NewAttributeError('The info field of the new event is required.')
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# Default values for a valid event to send to a MISP instance
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if kwargs.get('distribution') is not None:
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self.distribution = int(kwargs['distribution'])
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if self.distribution not in [0, 1, 2, 3, 4]:
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raise NewEventError('{} is invalid, the distribution has to be in 0, 1, 2, 3, 4'.format(self.distribution))
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if kwargs.get('threat_level_id') is not None:
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self.threat_level_id = int(kwargs['threat_level_id'])
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if self.threat_level_id not in [1, 2, 3, 4]:
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raise NewEventError('{} is invalid, the threat_level has to be in 1, 2, 3, 4'.format(self.threat_level_id))
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if kwargs.get('analysis') is not None:
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self.analysis = int(kwargs['analysis'])
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if self.analysis not in [0, 1, 2]:
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raise NewEventError('{} is invalid, the analysis has to be in 0, 1, 2'.format(self.analysis))
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if kwargs.get('published') is not None:
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self.unpublish()
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if kwargs.get("published") == True:
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self.publish()
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if kwargs.get('date'):
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self.set_date(kwargs['date'])
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if kwargs.get('Attribute'):
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for a in kwargs['Attribute']:
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attribute = MISPAttribute(self.describe_types)
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attribute.set_all_values(**a)
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self.attributes.append(attribute)
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# All other keys
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if kwargs.get('id'):
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self.id = int(kwargs['id'])
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if kwargs.get('orgc_id'):
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self.orgc_id = int(kwargs['orgc_id'])
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if kwargs.get('org_id'):
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self.org_id = int(kwargs['org_id'])
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if kwargs.get('uuid'):
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self.uuid = kwargs['uuid']
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if kwargs.get('attribute_count'):
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self.attribute_count = int(kwargs['attribute_count'])
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if kwargs.get('timestamp'):
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self.timestamp = datetime.datetime.fromtimestamp(int(kwargs['timestamp']))
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if kwargs.get('proposal_email_lock'):
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self.proposal_email_lock = kwargs['proposal_email_lock']
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if kwargs.get('locked'):
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self.locked = kwargs['locked']
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if kwargs.get('publish_timestamp'):
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self.publish_timestamp = datetime.datetime.fromtimestamp(int(kwargs['publish_timestamp']))
|
|
if kwargs.get('sharing_group_id'):
|
|
self.sharing_group_id = int(kwargs['sharing_group_id'])
|
|
if kwargs.get('Org'):
|
|
self.Org = kwargs['Org']
|
|
if kwargs.get('Orgc'):
|
|
self.Orgc = kwargs['Orgc']
|
|
if kwargs.get('ShadowAttribute'):
|
|
self.ShadowAttribute = kwargs['ShadowAttribute']
|
|
if kwargs.get('RelatedEvent'):
|
|
self.RelatedEvent = []
|
|
for rel_event in kwargs['RelatedEvent']:
|
|
sub_event = MISPEvent()
|
|
sub_event.load(rel_event)
|
|
self.RelatedEvent.append(sub_event)
|
|
if kwargs.get('Galaxy'):
|
|
self.Galaxy = kwargs['Galaxy']
|
|
if kwargs.get('Tag'):
|
|
self.Tag = [t for t in kwargs['Tag'] if t]
|
|
if kwargs.get('sig'):
|
|
self.sig = kwargs['sig']
|
|
if kwargs.get('global_sig'):
|
|
self.global_sig = kwargs['global_sig']
|
|
|
|
def _json(self):
|
|
to_return = {'Event': {}}
|
|
to_return['Event'] = {'distribution': self.distribution, 'info': self.info,
|
|
'date': self.date.isoformat(), 'published': self.published,
|
|
'threat_level_id': self.threat_level_id,
|
|
'analysis': self.analysis, 'Attribute': []}
|
|
if self.sig:
|
|
to_return['Event']['sig'] = self.sig
|
|
if self.global_sig:
|
|
to_return['Event']['global_sig'] = self.global_sig
|
|
if self.uuid:
|
|
to_return['Event']['uuid'] = self.uuid
|
|
if self.Tag:
|
|
to_return['Event']['Tag'] = self.Tag
|
|
if self.Orgc:
|
|
to_return['Event']['Orgc'] = self.Orgc
|
|
if self.Galaxy:
|
|
to_return['Event']['Galaxy'] = self.Galaxy
|
|
if self.sharing_group_id:
|
|
to_return['Event']['sharing_group_id'] = self.sharing_group_id
|
|
to_return['Event'] = _int_to_str(to_return['Event'])
|
|
if self.attributes:
|
|
to_return['Event']['Attribute'] = [a._json() for a in self.attributes]
|
|
jsonschema.validate(to_return, self.json_schema)
|
|
return to_return
|
|
|
|
def _json_full(self):
|
|
to_return = self._json()
|
|
if self.id:
|
|
to_return['Event']['id'] = self.id
|
|
if self.orgc_id:
|
|
to_return['Event']['orgc_id'] = self.orgc_id
|
|
if self.org_id:
|
|
to_return['Event']['org_id'] = self.org_id
|
|
if self.locked is not None:
|
|
to_return['Event']['locked'] = self.locked
|
|
if self.attribute_count is not None:
|
|
to_return['Event']['attribute_count'] = self.attribute_count
|
|
if self.RelatedEvent:
|
|
to_return['Event']['RelatedEvent'] = []
|
|
for rel_event in self.RelatedEvent:
|
|
to_return['Event']['RelatedEvent'].append(rel_event._json_full())
|
|
if self.Org:
|
|
to_return['Event']['Org'] = self.Org
|
|
if self.sharing_group_id:
|
|
to_return['Event']['sharing_group_id'] = self.sharing_group_id
|
|
if self.ShadowAttribute:
|
|
to_return['Event']['ShadowAttribute'] = self.ShadowAttribute
|
|
if self.proposal_email_lock is not None:
|
|
to_return['Event']['proposal_email_lock'] = self.proposal_email_lock
|
|
if self.locked is not None:
|
|
to_return['Event']['locked'] = self.locked
|
|
if self.publish_timestamp:
|
|
to_return['Event']['publish_timestamp'] = int(time.mktime(self.publish_timestamp.timetuple()))
|
|
if self.timestamp:
|
|
# Should never be set on an update, MISP will automatically set it to now
|
|
to_return['Event']['timestamp'] = int(time.mktime(self.timestamp.timetuple()))
|
|
to_return['Event'] = _int_to_str(to_return['Event'])
|
|
if self.attributes:
|
|
to_return['Event']['Attribute'] = [a._json_full() for a in self.attributes]
|
|
jsonschema.validate(to_return, self.json_schema)
|
|
return to_return
|
|
|
|
def add_tag(self, tag):
|
|
self.Tag.append({'name': tag})
|
|
|
|
def add_attribute_tag(self, tag, attribute_identifier):
|
|
attribute = None
|
|
for a in self.attributes:
|
|
if a.id == attribute_identifier or a.uuid == attribute_identifier or attribute_identifier in a.value:
|
|
a.add_tag(tag)
|
|
attribute = a
|
|
if not attribute:
|
|
raise Exception('No attribute with identifier {} found.'.format(attribute_identifier))
|
|
return attribute
|
|
|
|
def publish(self):
|
|
self.published = True
|
|
|
|
def unpublish(self):
|
|
self.published = False
|
|
|
|
def delete_attribute(self, attribute_id):
|
|
found = False
|
|
for a in self.attributes:
|
|
if a.id == attribute_id or a.uuid == attribute_id:
|
|
a.delete()
|
|
found = True
|
|
break
|
|
if not found:
|
|
raise Exception('No attribute with UUID/ID {} found.'.format(attribute_id))
|
|
|
|
def add_attribute(self, type, value, **kwargs):
|
|
attribute = MISPAttribute(self.describe_types)
|
|
attribute.set_all_values(type=type, value=value, **kwargs)
|
|
self.attributes.append(attribute)
|