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Comrad/komrade/backend/the_operator.py

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"""
There is only one operator!
Running on node prime.
"""
# internal imports
import os,sys; sys.path.append(os.path.abspath(os.path.join(os.path.abspath(os.path.join(os.path.dirname(__file__),'..')),'..')))
from komrade import *
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from komrade.backend import *
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# print(PATH_OPERATOR_WEB_KEYS_URL)
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class TheOperator(Operator):
"""
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The remote operator
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"""
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@property
def phone(self):
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global TELEPHONE
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from komrade.backend.the_telephone import TheTelephone
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if not TELEPHONE: TELEPHONE=TheTelephone()
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return TELEPHONE
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def __init__(self, name = OPERATOR_NAME, passphrase='acc'):
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"""
Boot up the operator. Requires knowing or setting a password of memory.
"""
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super().__init__(
name,
passphrase,
path_crypt_keys=PATH_CRYPT_OP_KEYS,
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path_crypt_data=PATH_CRYPT_OP_DATA
)
self._keychain = self.operator_keychain
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def ring(self,
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from_caller=None,
to_caller=None,
json_phone2phone={},
json_caller2phone={}, # (person) -> operator or operator -> (person)
json_caller2caller={}):
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encr_msg_to_send = super().ring(
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from_phone=self,
to_phone=self.phone,
from_caller=from_caller,
to_caller=to_caller,
json_phone2phone=json_phone2phone,
json_caller2phone=json_caller2phone, # (person) -> operator
json_caller2caller=json_caller2caller)
return self.send(encr_msg_to_send)
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# ends the ring_ring() chain
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def answer_phone(self,data_b):
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# route incoming call from the switchboard
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self.log('Hello, this is the Operator. You said: ',data_b)
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# unseal
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msg_obj = self.unseal_msg(data_b)
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self.log(f'Operator understood message: {msg_obj}')
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# decrypt all of it!
msg_obj.decrypt()
self.log('I am now decrypted!',msg_obj)
#self.log(f'Operator understood message route: {msg_obj.route}')
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self.log('meta msg!',msg_obj.meta_msg)
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# carry out message instructions
route_result = self.route(msg_obj)
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self.log('route_result <-',route_result)
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# turn msg back around
msg_obj = self.compose_msg_to(route_result,self.phone)
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self.log('returning msg:',msg_obj)
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# send back down encrypted
msg_sealed = self.seal_msg(msg_obj)
# return back to phone and back down to chain
return msg_sealed
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def find_pubkey(self):
return self.operator_keychain['pubkey']
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def send(self,encr_data_b):
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self.log(type(encr_data_b),encr_data_b,'sending!')
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return encr_data_b
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def route(self, msg_obj):
# get route from msg
route = msg_obj.route
# no route?
if not msg_obj.route: raise KomradeException('no route!')
# what we working with?
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self.log(f'route() got incoming msg = {msg_obj} and route = {route}')
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# pass on data
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# data = msg_obj.msg
# if type(data)==dict and ROUTE_KEYNAME in data:
# del data[ROUTE_KEYNAME]
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## hard code the acceptable routes
if route == 'forge_new_keys':
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return self.forge_new_keys(msg_obj)
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elif route == 'does_username_exist':
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return self.does_username_exist(msg_obj)
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# otherwise, hang up and try again
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return OPERATOR_INTERCEPT_MESSAGE
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### ROUTES
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def forge_new_keys(self,msg_obj):
self.log('about to make some new keys!',msg_obj.msg_d)
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# return {'_route':'well_hello_to_you_too'}
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# get keys
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forged_keys_plus_id = super().forge_new_keys(**data)
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# return to Telephone/Caller
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return forged_keys_plus_id
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def does_username_exist(self,data):
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assert type(data)==dict and 'name' in data and data['name']
# find pubkey?
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name=data.get('name')
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pubkey=self.crypt_keys.get(name,prefix='/pubkey/')
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self.log(f'looking for {name}, found {pubkey} as pubkey')
return bool(pubkey)
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def test_op():
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from komrade.backend.the_telephone import TheTelephone
op = TheOperator()
# op.boot()
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keychain_op = op.keychain(force=True)
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phone = TheTelephone()
# phone.boot()
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keychain_ph = phone.keychain(force=True)
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from pprint import pprint
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print('REASSEMBLED OPERATOR KEYCHAIN')
pprint(keychain_op)
# stop
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print('REASSEMBLED TELEPHONE KEYCHAIN')
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pprint(keychain_ph)
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# print(op.pubkey(keychain=keychain))
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# print(op.crypt_keys.get(op.pubkey(), prefix='/privkey_encr/'))
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# print(op.crypt_keys.get(op.name, prefix='/pubkey_encr/'))
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# print(op.pubkey_)
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# stop
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# pubkey = op.keychain()['pubkey']
# pubkey_b64 = b64encode(pubkey)
# print(pubkey)
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if __name__ == '__main__': test_op()