174 lines
5.5 KiB
Python
174 lines
5.5 KiB
Python
from cryptography.hazmat.backends import default_backend
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from cryptography.hazmat.primitives import hashes
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from cryptography.hazmat.primitives import serialization
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from cryptography.hazmat.primitives.asymmetric import ec
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from cryptography.hazmat.primitives.kdf.hkdf import HKDF
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from cryptography.fernet import Fernet
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import base64
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import RNS
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import traceback
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class LinkCallbacks:
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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.resource_started = None
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self.resource_completed = None
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class Link:
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CURVE = ec.SECP256R1()
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ECPUBSIZE = 91
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PENDING = 0x00
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ACTIVE = 0x01
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@staticmethod
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def validateRequest(owner, data, packet):
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if len(data) == (Link.ECPUBSIZE):
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try:
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link = Link(owner = owner, peer_pub_bytes = data[:Link.ECPUBSIZE])
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link.setLinkID(packet)
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RNS.log("Validating link request "+RNS.prettyhexrep(link.link_id), RNS.LOG_VERBOSE)
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link.handshake()
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link.attached_interface = packet.receiving_interface
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link.prove()
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RNS.Transport.registerLink(link)
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if link.owner.callbacks.link_established != None:
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link.owner.callbacks.link_established(link)
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RNS.log("Incoming link request "+str(link)+" accepted", RNS.LOG_VERBOSE)
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except Exception as e:
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RNS.log("Validating link request failed", RNS.LOG_VERBOSE)
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return None
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else:
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RNS.log("Invalid link request payload size, dropping request", RNS.LOG_VERBOSE)
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return None
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def __init__(self, destination=None, owner=None, peer_pub_bytes = None):
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self.callbacks = LinkCallbacks()
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self.status = Link.PENDING
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self.type = RNS.Destination.LINK
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self.owner = owner
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self.destination = destination
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self.attached_interface = None
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if self.destination == None:
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self.initiator = False
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else:
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self.initiator = True
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self.prv = ec.generate_private_key(Link.CURVE, default_backend())
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self.pub = self.prv.public_key()
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self.pub_bytes = self.pub.public_bytes(
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encoding=serialization.Encoding.DER,
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format=serialization.PublicFormat.SubjectPublicKeyInfo
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)
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if peer_pub_bytes == None:
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self.peer_pub = None
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self.peer_pub_bytes = None
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else:
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self.loadPeer(peer_pub_bytes)
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if (self.initiator):
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self.request_data = self.pub_bytes
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self.packet = RNS.Packet(destination, self.request_data, packet_type=RNS.Packet.LINKREQUEST)
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self.packet.pack()
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self.setLinkID(self.packet)
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RNS.Transport.registerLink(self)
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self.packet.send()
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RNS.log("Link request "+RNS.prettyhexrep(self.link_id)+" sent to "+str(self.destination), RNS.LOG_VERBOSE)
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def loadPeer(self, peer_pub_bytes):
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self.peer_pub_bytes = peer_pub_bytes
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self.peer_pub = serialization.load_der_public_key(peer_pub_bytes, backend=default_backend())
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self.peer_pub.curce = Link.CURVE
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def setLinkID(self, packet):
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self.link_id = RNS.Identity.truncatedHash(packet.raw)
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self.hash = self.link_id
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def handshake(self):
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self.shared_key = self.prv.exchange(ec.ECDH(), self.peer_pub)
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self.derived_key = HKDF(
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algorithm=hashes.SHA256(),
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length=32,
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salt=self.getSalt(),
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info=self.getContext(),
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backend=default_backend()
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).derive(self.shared_key)
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def prove(self):
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signed_data = self.link_id+self.pub_bytes
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signature = self.owner.identity.sign(signed_data)
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proof_data = self.pub_bytes+signature
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proof = RNS.Packet(self, proof_data, packet_type=RNS.Packet.PROOF, header_type=RNS.Packet.HEADER_3)
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proof.send()
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def validateProof(self, packet):
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peer_pub_bytes = packet.data[:Link.ECPUBSIZE]
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signed_data = self.link_id+peer_pub_bytes
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signature = packet.data[Link.ECPUBSIZE:RNS.Identity.KEYSIZE/8+Link.ECPUBSIZE]
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if self.destination.identity.validate(signature, signed_data):
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self.loadPeer(peer_pub_bytes)
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self.handshake()
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self.attached_interface = packet.receiving_interface
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RNS.Transport.activateLink(self)
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if self.callbacks.link_established != None:
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self.callbacks.link_established(self)
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RNS.log("Link "+str(self)+" established with "+str(self.destination), RNS.LOG_VERBOSE)
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else:
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RNS.log("Invalid link proof signature received by "+str(self), RNS.LOG_VERBOSE)
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def getSalt(self):
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return self.link_id
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def getContext(self):
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return None
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def receive(self, packet):
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if packet.receiving_interface != self.attached_interface:
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RNS.log("Link-associated packet received on unexpected interface! Someone might be trying to manipulate your communication!", RNS.LOG_ERROR)
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else:
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plaintext = self.decrypt(packet.data)
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if (self.callbacks.packet != None):
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self.callbacks.packet(plaintext, packet)
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def encrypt(self, plaintext):
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try:
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fernet = Fernet(base64.urlsafe_b64encode(self.derived_key))
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ciphertext = base64.urlsafe_b64decode(fernet.encrypt(plaintext))
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return ciphertext
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except Exception as e:
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RNS.log("Encryption on link "+str(self)+" failed. The contained exception was: "+str(e), RNS.LOG_ERROR)
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def decrypt(self, ciphertext):
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try:
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fernet = Fernet(base64.urlsafe_b64encode(self.derived_key))
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plaintext = fernet.decrypt(base64.urlsafe_b64encode(ciphertext))
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return plaintext
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except Exception as e:
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RNS.log("Decryption failed on link "+str(self)+". The contained exception was: "+str(e), RNS.LOG_ERROR)
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def link_established_callback(self, callback):
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self.callbacks.link_established = callback
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def packet_callback(self, callback):
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self.callbacks.packet = callback
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def resource_started_callback(self, callback):
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self.callbacks.resource_started = callback
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def resource_completed_callback(self, callback):
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self.callbacks.resource_completed = callback
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def __str__(self):
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return RNS.prettyhexrep(self.link_id) |