mirror of
https://github.com/markqvist/Reticulum.git
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491 lines
21 KiB
Python
Executable File
491 lines
21 KiB
Python
Executable File
# MIT License
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#
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# Copyright (c) 2016-2022 Mark Qvist / unsigned.io
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#
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# Permission is hereby granted, free of charge, to any person obtaining a copy
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# of this software and associated documentation files (the "Software"), to deal
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# in the Software without restriction, including without limitation the rights
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# to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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# copies of the Software, and to permit persons to whom the Software is
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# furnished to do so, subject to the following conditions:
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#
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# The above copyright notice and this permission notice shall be included in all
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# copies or substantial portions of the Software.
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#
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# THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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# IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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# FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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# AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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# LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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# OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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# SOFTWARE.
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import math
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import time
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import RNS
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from RNS.Cryptography import Fernet
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class Callbacks:
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def __init__(self):
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self.link_established = None
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self.packet = None
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self.proof_requested = None
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class Destination:
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"""
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A class used to describe endpoints in a Reticulum Network. Destination
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instances are used both to create outgoing and incoming endpoints. The
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destination type will decide if encryption, and what type, is used in
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communication with the endpoint. A destination can also announce its
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presence on the network, which will also distribute necessary keys for
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encrypted communication with it.
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:param identity: An instance of :ref:`RNS.Identity<api-identity>`. Can hold only public keys for an outgoing destination, or holding private keys for an ingoing.
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:param direction: ``RNS.Destination.IN`` or ``RNS.Destination.OUT``.
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:param type: ``RNS.Destination.SINGLE``, ``RNS.Destination.GROUP`` or ``RNS.Destination.PLAIN``.
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:param app_name: A string specifying the app name.
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:param \*aspects: Any non-zero number of string arguments.
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"""
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# Constants
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SINGLE = 0x00
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GROUP = 0x01
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PLAIN = 0x02
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LINK = 0x03
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types = [SINGLE, GROUP, PLAIN, LINK]
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PROVE_NONE = 0x21
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PROVE_APP = 0x22
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PROVE_ALL = 0x23
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proof_strategies = [PROVE_NONE, PROVE_APP, PROVE_ALL]
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ALLOW_NONE = 0x00
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ALLOW_ALL = 0x01
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ALLOW_LIST = 0x02
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request_policies = [ALLOW_NONE, ALLOW_ALL, ALLOW_LIST]
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IN = 0x11;
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OUT = 0x12;
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directions = [IN, OUT]
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PR_TAG_WINDOW = 30
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@staticmethod
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def expand_name(identity, app_name, *aspects):
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"""
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:returns: A string containing the full human-readable name of the destination, for an app_name and a number of aspects.
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"""
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# Check input values and build name string
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if "." in app_name: raise ValueError("Dots can't be used in app names")
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name = app_name
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for aspect in aspects:
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if "." in aspect: raise ValueError("Dots can't be used in aspects")
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name += "." + aspect
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if identity != None:
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name += "." + identity.hexhash
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return name
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@staticmethod
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def hash(identity, app_name, *aspects):
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"""
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:returns: A destination name in adressable hash form, for an app_name and a number of aspects.
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"""
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name_hash = RNS.Identity.full_hash(Destination.expand_name(None, app_name, *aspects).encode("utf-8"))[:(RNS.Identity.NAME_HASH_LENGTH//8)]
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addr_hash_material = name_hash
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if identity != None:
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if isinstance(identity, RNS.Identity):
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addr_hash_material += identity.hash
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elif isinstance(identity, bytes) and len(identity) == RNS.Reticulum.TRUNCATED_HASHLENGTH//8:
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addr_hash_material += identity
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else:
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raise TypeError("Invalid material supplied for destination hash calculation")
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return RNS.Identity.full_hash(addr_hash_material)[:RNS.Reticulum.TRUNCATED_HASHLENGTH//8]
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@staticmethod
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def app_and_aspects_from_name(full_name):
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"""
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:returns: A tuple containing the app name and a list of aspects, for a full-name string.
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"""
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components = full_name.split(".")
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return (components[0], components[1:])
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@staticmethod
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def hash_from_name_and_identity(full_name, identity):
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"""
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:returns: A destination name in adressable hash form, for a full name string and Identity instance.
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"""
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app_name, aspects = Destination.app_and_aspects_from_name(full_name)
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return Destination.hash(identity, app_name, *aspects)
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def __init__(self, identity, direction, type, app_name, *aspects):
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# Check input values and build name string
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if "." in app_name: raise ValueError("Dots can't be used in app names")
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if not type in Destination.types: raise ValueError("Unknown destination type")
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if not direction in Destination.directions: raise ValueError("Unknown destination direction")
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self.accept_link_requests = True
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self.callbacks = Callbacks()
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self.request_handlers = {}
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self.type = type
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self.direction = direction
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self.proof_strategy = Destination.PROVE_NONE
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self.mtu = 0
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self.path_responses = {}
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self.links = []
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if identity == None and direction == Destination.IN and self.type != Destination.PLAIN:
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identity = RNS.Identity()
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aspects = aspects+(identity.hexhash,)
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if identity != None and self.type == Destination.PLAIN:
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raise TypeError("Selected destination type PLAIN cannot hold an identity")
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self.identity = identity
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self.name = Destination.expand_name(identity, app_name, *aspects)
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# Generate the destination address hash
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self.hash = Destination.hash(self.identity, app_name, *aspects)
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self.name_hash = RNS.Identity.full_hash(self.expand_name(None, app_name, *aspects).encode("utf-8"))[:(RNS.Identity.NAME_HASH_LENGTH//8)]
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self.hexhash = self.hash.hex()
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self.default_app_data = None
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self.callback = None
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self.proofcallback = None
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RNS.Transport.register_destination(self)
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def __str__(self):
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"""
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:returns: A human-readable representation of the destination including addressable hash and full name.
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"""
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return "<"+self.name+"/"+self.hexhash+">"
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def announce(self, app_data=None, path_response=False, attached_interface=None, tag=None, send=True):
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"""
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Creates an announce packet for this destination and broadcasts it on all
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relevant interfaces. Application specific data can be added to the announce.
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:param app_data: *bytes* containing the app_data.
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:param path_response: Internal flag used by :ref:`RNS.Transport<api-transport>`. Ignore.
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"""
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if self.type != Destination.SINGLE:
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raise TypeError("Only SINGLE destination types can be announced")
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if self.direction != Destination.IN:
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raise TypeError("Only IN destination types can be announced")
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now = time.time()
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stale_responses = []
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for entry_tag in self.path_responses:
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entry = self.path_responses[entry_tag]
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if now > entry[0]+Destination.PR_TAG_WINDOW:
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stale_responses.append(entry_tag)
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for entry_tag in stale_responses:
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self.path_responses.pop(entry_tag)
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if (path_response == True and tag != None) and tag in self.path_responses:
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# This code is currently not used, since Transport will block duplicate
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# path requests based on tags. When multi-path support is implemented in
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# Transport, this will allow Transport to detect redundant paths to the
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# same destination, and select the best one based on chosen criteria,
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# since it will be able to detect that a single emitted announce was
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# received via multiple paths. The difference in reception time will
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# potentially also be useful in determining characteristics of the
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# multiple available paths, and to choose the best one.
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RNS.log("Using cached announce data for answering path request with tag "+RNS.prettyhexrep(tag), RNS.LOG_EXTREME)
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announce_data = self.path_responses[tag][1]
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else:
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destination_hash = self.hash
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random_hash = RNS.Identity.get_random_hash()[0:5]+int(time.time()).to_bytes(5, "big")
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if app_data == None and self.default_app_data != None:
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if isinstance(self.default_app_data, bytes):
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app_data = self.default_app_data
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elif callable(self.default_app_data):
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returned_app_data = self.default_app_data()
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if isinstance(returned_app_data, bytes):
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app_data = returned_app_data
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signed_data = self.hash+self.identity.get_public_key()+self.name_hash+random_hash
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if app_data != None:
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signed_data += app_data
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signature = self.identity.sign(signed_data)
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announce_data = self.identity.get_public_key()+self.name_hash+random_hash+signature
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if app_data != None:
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announce_data += app_data
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self.path_responses[tag] = [time.time(), announce_data]
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if path_response:
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announce_context = RNS.Packet.PATH_RESPONSE
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else:
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announce_context = RNS.Packet.NONE
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announce_packet = RNS.Packet(self, announce_data, RNS.Packet.ANNOUNCE, context = announce_context, attached_interface = attached_interface)
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if send:
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announce_packet.send()
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else:
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return announce_packet
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def accepts_links(self, accepts = None):
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"""
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Set or query whether the destination accepts incoming link requests.
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:param accepts: If ``True`` or ``False``, this method sets whether the destination accepts incoming link requests. If not provided or ``None``, the method returns whether the destination currently accepts link requests.
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:returns: ``True`` or ``False`` depending on whether the destination accepts incoming link requests, if the *accepts* parameter is not provided or ``None``.
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"""
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if accepts == None:
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return self.accept_link_requests
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if accepts:
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self.accept_link_requests = True
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else:
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self.accept_link_requests = False
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def set_link_established_callback(self, callback):
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"""
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Registers a function to be called when a link has been established to
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this destination.
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:param callback: A function or method with the signature *callback(link)* to be called when a new link is established with this destination.
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"""
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self.callbacks.link_established = callback
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def set_packet_callback(self, callback):
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"""
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Registers a function to be called when a packet has been received by
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this destination.
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:param callback: A function or method with the signature *callback(data, packet)* to be called when this destination receives a packet.
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"""
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self.callbacks.packet = callback
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def set_proof_requested_callback(self, callback):
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"""
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Registers a function to be called when a proof has been requested for
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a packet sent to this destination. Allows control over when and if
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proofs should be returned for received packets.
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:param callback: A function or method to with the signature *callback(packet)* be called when a packet that requests a proof is received. The callback must return one of True or False. If the callback returns True, a proof will be sent. If it returns False, a proof will not be sent.
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"""
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self.callbacks.proof_requested = callback
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def set_proof_strategy(self, proof_strategy):
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"""
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Sets the destinations proof strategy.
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:param proof_strategy: One of ``RNS.Destination.PROVE_NONE``, ``RNS.Destination.PROVE_ALL`` or ``RNS.Destination.PROVE_APP``. If ``RNS.Destination.PROVE_APP`` is set, the `proof_requested_callback` will be called to determine whether a proof should be sent or not.
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"""
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if not proof_strategy in Destination.proof_strategies:
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raise TypeError("Unsupported proof strategy")
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else:
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self.proof_strategy = proof_strategy
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def register_request_handler(self, path, response_generator = None, allow = ALLOW_NONE, allowed_list = None):
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"""
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Registers a request handler.
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:param path: The path for the request handler to be registered.
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:param response_generator: A function or method with the signature *response_generator(path, data, request_id, link_id, remote_identity, requested_at)* to be called. Whatever this funcion returns will be sent as a response to the requester. If the function returns ``None``, no response will be sent.
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:param allow: One of ``RNS.Destination.ALLOW_NONE``, ``RNS.Destination.ALLOW_ALL`` or ``RNS.Destination.ALLOW_LIST``. If ``RNS.Destination.ALLOW_LIST`` is set, the request handler will only respond to requests for identified peers in the supplied list.
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:param allowed_list: A list of *bytes-like* :ref:`RNS.Identity<api-identity>` hashes.
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:raises: ``ValueError`` if any of the supplied arguments are invalid.
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"""
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if path == None or path == "":
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raise ValueError("Invalid path specified")
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elif not callable(response_generator):
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raise ValueError("Invalid response generator specified")
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elif not allow in Destination.request_policies:
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raise ValueError("Invalid request policy")
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else:
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path_hash = RNS.Identity.truncated_hash(path.encode("utf-8"))
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request_handler = [path, response_generator, allow, allowed_list]
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self.request_handlers[path_hash] = request_handler
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def deregister_request_handler(self, path):
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"""
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Deregisters a request handler.
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:param path: The path for the request handler to be deregistered.
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:returns: True if the handler was deregistered, otherwise False.
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"""
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path_hash = RNS.Identity.truncated_hash(path.encode("utf-8"))
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if path_hash in self.request_handlers:
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self.request_handlers.pop(path_hash)
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return True
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else:
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return False
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def receive(self, packet):
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if packet.packet_type == RNS.Packet.LINKREQUEST:
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plaintext = packet.data
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self.incoming_link_request(plaintext, packet)
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else:
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plaintext = self.decrypt(packet.data)
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if plaintext != None:
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if packet.packet_type == RNS.Packet.DATA:
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if self.callbacks.packet != None:
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try:
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self.callbacks.packet(plaintext, packet)
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except Exception as e:
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RNS.log("Error while executing receive callback from "+str(self)+". The contained exception was: "+str(e), RNS.LOG_ERROR)
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def incoming_link_request(self, data, packet):
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if self.accept_link_requests:
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link = RNS.Link.validate_request(self, data, packet)
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if link != None:
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self.links.append(link)
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def create_keys(self):
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"""
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For a ``RNS.Destination.GROUP`` type destination, creates a new symmetric key.
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:raises: ``TypeError`` if called on an incompatible type of destination.
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"""
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if self.type == Destination.PLAIN:
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raise TypeError("A plain destination does not hold any keys")
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if self.type == Destination.SINGLE:
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raise TypeError("A single destination holds keys through an Identity instance")
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if self.type == Destination.GROUP:
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self.prv_bytes = Fernet.generate_key()
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self.prv = Fernet(self.prv_bytes)
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def get_private_key(self):
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"""
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For a ``RNS.Destination.GROUP`` type destination, returns the symmetric private key.
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:raises: ``TypeError`` if called on an incompatible type of destination.
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"""
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if self.type == Destination.PLAIN:
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raise TypeError("A plain destination does not hold any keys")
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elif self.type == Destination.SINGLE:
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raise TypeError("A single destination holds keys through an Identity instance")
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else:
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return self.prv_bytes
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def load_private_key(self, key):
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"""
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For a ``RNS.Destination.GROUP`` type destination, loads a symmetric private key.
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:param key: A *bytes-like* containing the symmetric key.
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:raises: ``TypeError`` if called on an incompatible type of destination.
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"""
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if self.type == Destination.PLAIN:
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raise TypeError("A plain destination does not hold any keys")
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if self.type == Destination.SINGLE:
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raise TypeError("A single destination holds keys through an Identity instance")
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if self.type == Destination.GROUP:
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self.prv_bytes = key
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self.prv = Fernet(self.prv_bytes)
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def load_public_key(self, key):
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if self.type != Destination.SINGLE:
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raise TypeError("Only the \"single\" destination type can hold a public key")
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else:
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raise TypeError("A single destination holds keys through an Identity instance")
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def encrypt(self, plaintext):
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"""
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Encrypts information for ``RNS.Destination.SINGLE`` or ``RNS.Destination.GROUP`` type destination.
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:param plaintext: A *bytes-like* containing the plaintext to be encrypted.
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:raises: ``ValueError`` if destination does not hold a necessary key for encryption.
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"""
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if self.type == Destination.PLAIN:
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return plaintext
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if self.type == Destination.SINGLE and self.identity != None:
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return self.identity.encrypt(plaintext)
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if self.type == Destination.GROUP:
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if hasattr(self, "prv") and self.prv != None:
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try:
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return self.prv.encrypt(plaintext)
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except Exception as e:
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RNS.log("The GROUP destination could not encrypt data", RNS.LOG_ERROR)
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RNS.log("The contained exception was: "+str(e), RNS.LOG_ERROR)
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else:
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raise ValueError("No private key held by GROUP destination. Did you create or load one?")
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def decrypt(self, ciphertext):
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"""
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Decrypts information for ``RNS.Destination.SINGLE`` or ``RNS.Destination.GROUP`` type destination.
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:param ciphertext: *Bytes* containing the ciphertext to be decrypted.
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:raises: ``ValueError`` if destination does not hold a necessary key for decryption.
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"""
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if self.type == Destination.PLAIN:
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return ciphertext
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if self.type == Destination.SINGLE and self.identity != None:
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return self.identity.decrypt(ciphertext)
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if self.type == Destination.GROUP:
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if hasattr(self, "prv") and self.prv != None:
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try:
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return self.prv.decrypt(ciphertext)
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except Exception as e:
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RNS.log("The GROUP destination could not decrypt data", RNS.LOG_ERROR)
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RNS.log("The contained exception was: "+str(e), RNS.LOG_ERROR)
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else:
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raise ValueError("No private key held by GROUP destination. Did you create or load one?")
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def sign(self, message):
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"""
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Signs information for ``RNS.Destination.SINGLE`` type destination.
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:param message: *Bytes* containing the message to be signed.
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:returns: A *bytes-like* containing the message signature, or *None* if the destination could not sign the message.
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"""
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if self.type == Destination.SINGLE and self.identity != None:
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return self.identity.sign(message)
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else:
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return None
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def set_default_app_data(self, app_data=None):
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"""
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Sets the default app_data for the destination. If set, the default
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app_data will be included in every announce sent by the destination,
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unless other app_data is specified in the *announce* method.
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:param app_data: A *bytes-like* containing the default app_data, or a *callable* returning a *bytes-like* containing the app_data.
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"""
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self.default_app_data = app_data
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def clear_default_app_data(self):
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"""
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Clears default app_data previously set for the destination.
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"""
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self.set_default_app_data(app_data=None) |