Restructuring and packet format
This commit is contained in:
parent
4c92493bc2
commit
3ea36ff9b3
@ -1,8 +1,7 @@
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import base64
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import math
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from Identity import Identity
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from Transport import Transport
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from Packet import Packet
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import FPE
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from cryptography.fernet import Fernet
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from cryptography.hazmat.primitives import hashes
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from cryptography.hazmat.backends import default_backend
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@ -10,15 +9,17 @@ from cryptography.hazmat.primitives import serialization
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from cryptography.hazmat.primitives.asymmetric import rsa
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from cryptography.hazmat.primitives.asymmetric import padding
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class Destination:
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KEYSIZE = Identity.KEYSIZE;
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PADDINGSIZE= Identity.PADDINGSIZE;
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KEYSIZE = FPE.Identity.KEYSIZE;
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PADDINGSIZE= FPE.Identity.PADDINGSIZE;
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# Constants
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SINGLE = 0x01;
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GROUP = 0x02;
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PLAIN = 0x03;
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types = [SINGLE, GROUP, PLAIN]
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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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IN = 0x11;
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OUT = 0x12;
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@ -70,7 +71,7 @@ class Destination:
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self.callback = None
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Transport.registerDestination(self)
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FPE.Transport.registerDestination(self)
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def __str__(self):
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@ -1,4 +1,6 @@
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from Interfaces import *
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import FPE
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import ConfigParser
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import jsonpickle
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from vendor.configobj import ConfigObj
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@ -25,8 +27,9 @@ class FlexPE:
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if os.path.isfile(self.configpath):
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self.config = ConfigObj(self.configpath)
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FPE.log("Configuration loaded from "+self.configpath)
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else:
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print("Could not load config file, creating default configuration...")
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FPE.log("Could not load config file, creating default configuration...")
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self.createDefaultConfig()
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self.applyConfig()
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@ -39,23 +42,26 @@ class FlexPE:
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@staticmethod
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def incoming(data):
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header = struct.unpack("B", data[0])
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hash = data[1:11]
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type = header[0] & 0x03
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packet = FPE.Packet(None, data)
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packet.unpack()
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for destination in FlexPE.destinations:
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if destination.hash == hash and destination.type == type:
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destination.receive(data[11:])
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if destination.hash == packet.destination_hash and destination.type == packet.destination_type:
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destination.receive(packet.data)
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@staticmethod
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def outbound(raw):
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for interface in FlexPE.interfaces:
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if interface.OUT:
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FPE.log("Transmitting via: "+str(interface), FPE.LOG_DEBUG)
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interface.processOutgoing(raw)
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def applyConfig(self):
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for option in self.config["logging"]:
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value = self.config["logging"][option]
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if option == "loglevel":
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FPE.loglevel = int(value)
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for name in self.config["interfaces"]:
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c = self.config["interfaces"][name]
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try:
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@ -91,8 +97,8 @@ class FlexPE:
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FlexPE.interfaces.append(interface)
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except Exception as e:
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print("The interface \""+name+"\" could not be created. Check your configuration file for errors!")
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print("The contained error was: "+str(e))
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FPE.log("The interface \""+name+"\" could not be created. Check your configuration file for errors!", FPE.LOG_ERROR)
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FPE.log("The contained exception was: "+str(e), FPE.LOG_ERROR)
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@ -1,5 +1,6 @@
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import base64
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import math
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import FPE
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from cryptography.hazmat.primitives import hashes
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from cryptography.hazmat.backends import default_backend
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from cryptography.hazmat.primitives import serialization
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@ -51,8 +52,7 @@ class Identity:
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self.hash = Identity.getHash(self.pub_bytes)
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self.hexhash = self.hash.encode("hex_codec")
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print("Identity keys created, private length is "+str(len(self.prv_bytes)))
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print("Identity keys created, public length is "+str(len(self.pub_bytes)))
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FPE.log("Identity keys created, private length is "+str(len(self.prv_bytes))+" public length is "+str(len(self.pub_bytes)), FPE.LOG_INFO)
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def getPrivateKey(self):
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return self.prv_bytes
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@ -83,7 +83,7 @@ class Identity:
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if self.prv != None:
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chunksize = (Identity.KEYSIZE-Identity.PADDINGSIZE)/8
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chunks = int(math.ceil(len(plaintext)/(float(chunksize))))
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print("Plaintext size is "+str(len(plaintext))+", with "+str(chunks)+" chunks")
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# TODO: Remove debug output print("Plaintext size is "+str(len(plaintext))+", with "+str(chunks)+" chunks")
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ciphertext = "";
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for chunk in range(chunks):
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@ -92,7 +92,7 @@ class Identity:
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if (chunk+1)*chunksize > len(plaintext):
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end = len(plaintext)
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print("Processing chunk "+str(chunk+1)+" of "+str(chunks)+". Starting at "+str(start)+" and stopping at "+str(end)+". The length is "+str(len(plaintext[start:end])))
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# TODO: Remove debug output print("Processing chunk "+str(chunk+1)+" of "+str(chunks)+". Starting at "+str(start)+" and stopping at "+str(end)+". The length is "+str(len(plaintext[start:end])))
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ciphertext += self.pub.encrypt(
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plaintext[start:end],
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@ -102,7 +102,7 @@ class Identity:
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label=None
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)
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)
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print("Plaintext encrypted, ciphertext length is "+str(len(ciphertext))+" bytes.")
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# TODO: Remove debug output print("Plaintext encrypted, ciphertext length is "+str(len(ciphertext))+" bytes.")
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return ciphertext
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else:
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raise KeyError("Encryption failed because identity does not hold a private key")
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@ -110,7 +110,7 @@ class Identity:
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def decrypt(self, ciphertext):
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if self.prv != None:
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print("Ciphertext length is "+str(len(ciphertext))+". ")
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# TODO: Remove debug output print("Ciphertext length is "+str(len(ciphertext))+". ")
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chunksize = (Identity.KEYSIZE)/8
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chunks = int(math.ceil(len(ciphertext)/(float(chunksize))))
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@ -121,7 +121,7 @@ class Identity:
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if (chunk+1)*chunksize > len(ciphertext):
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end = len(ciphertext)
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print("Processing chunk "+str(chunk+1)+" of "+str(chunks)+". Starting at "+str(start)+" and stopping at "+str(end)+". The length is "+str(len(ciphertext[start:end])))
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# TODO: Remove debug output print("Processing chunk "+str(chunk+1)+" of "+str(chunks)+". Starting at "+str(start)+" and stopping at "+str(end)+". The length is "+str(len(ciphertext[start:end])))
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plaintext += self.prv.decrypt(
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ciphertext[start:end],
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@ -150,3 +150,5 @@ class Identity:
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else:
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raise KeyError("Signing failed because identity does not hold a private key")
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def announce(self):
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pass
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@ -1,8 +1,10 @@
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from __future__ import print_function
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from Interface import Interface
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from time import sleep
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import sys
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import serial
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import threading
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import FPE
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class SerialInterface(Interface):
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MAX_CHUNK = 32768
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@ -17,6 +19,7 @@ class SerialInterface(Interface):
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serial = None
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def __init__(self, owner, port, speed, databits, parity, stopbits):
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self.serial = None
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self.owner = owner
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self.port = port
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self.speed = speed
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@ -31,6 +34,7 @@ class SerialInterface(Interface):
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self.parity = serial.PARITY_ODD
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try:
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FPE.log("Opening serial port "+self.port+"...")
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self.serial = serial.Serial(
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port = self.port,
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baudrate = self.speed,
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@ -43,16 +47,16 @@ class SerialInterface(Interface):
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write_timeout = None,
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dsrdtr = False,
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)
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print(self.serial.inter_byte_timeout)
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except Exception as e:
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print("Could not create serial port", file=sys.stderr)
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FPE.log("Could not create serial port", FPE.LOG_ERROR)
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raise e
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#self.serial.open()
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if self.serial.is_open:
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thread = threading.Thread(target=self.readLoop)
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thread.setDaemon(True)
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thread.start()
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sleep(0.5)
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FPE.log("Serial port "+self.port+" is now open")
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else:
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raise IOError("Could not open serial port")
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@ -62,10 +66,13 @@ class SerialInterface(Interface):
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def processOutgoing(self,data):
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self.serial.write(data)
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written = self.serial.write(data)
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if written != len(data):
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raise IOError("Serial interface only wrote "+str(written)+" bytes of "+str(len(data)))
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def readLoop(self):
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#pass
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while self.serial.is_open:
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data = self.serial.read(size=self.owner.__class__.MTU)
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if not data == "":
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101
FPE/Packet.py
101
FPE/Packet.py
@ -1,30 +1,91 @@
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import struct
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from Transport import *
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import FPE
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class Packet:
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# Constants
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MESSAGE = 0x00;
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RESOURCE = 0x01;
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LINKREQUEST = 0x02;
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PROOF = 0x03;
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types = [MESSAGE, RESOURCE, LINKREQUEST, PROOF]
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def __init__(self, destination, data):
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self.destination = destination
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self.data = data
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self.flags = 0x00
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self.header = 0x00
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self.raw = None
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self.sent = False
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self.mtu = 0
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HEADER_1 = 0x00; # Normal header format
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HEADER_2 = 0x01; # Header format used for link packets in transport
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HEADER_3 = 0x02; # Reserved
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HEADER_4 = 0x03; # Reserved
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header_types = [HEADER_1, HEADER_2, HEADER_3, HEADER_4]
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def __init__(self, destination, data, packet_type = MESSAGE, transport_type = None, header_type = HEADER_1, transport_id = None):
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if destination != None:
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if transport_type == None:
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transport_type = FPE.Transport.BROADCAST
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self.header_type = header_type
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self.packet_type = packet_type
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self.transport_type = transport_type
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self.hops = 0;
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self.destination = destination
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self.transport_id = transport_id
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self.data = data
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self.flags = self.getPackedFlags()
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self.raw = None
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self.packed = False
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self.sent = False
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self.MTU = self.destination.MTU
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else:
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self.raw = data
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self.packed = True
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def getPackedFlags(self):
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packed_flags = (self.header_type << 6) | (self.transport_type << 4) | (self.destination.type << 2) | self.packet_type
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return packed_flags
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def pack(self):
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self.header = ""
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self.header += struct.pack("!B", self.flags)
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self.header += struct.pack("!B", self.hops)
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if self.header_type == Packet.HEADER_2:
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if t_destination != None:
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self.header += self.t_destination
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else:
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raise IOError("Packet with header type 2 must have a transport ID")
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self.header += self.destination.hash
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self.ciphertext = self.destination.encrypt(self.data)
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self.raw = self.header + self.ciphertext
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if len(self.raw) > self.MTU:
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raise IOError("Packet size of "+str(len(self.raw))+" exceeds MTU of "+str(self.MTU)+" bytes")
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self.packed = True
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def unpack(self):
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self.flags = ord(self.raw[0])
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self.hops = ord(self.raw[1])
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self.header_type = (self.flags & 0b11000000) >> 6
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self.transport_type = (self.flags & 0b00110000) >> 4
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self.destination_type = (self.flags & 0b00001100) >> 2
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self.packet_type = (self.flags & 0b00000011)
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if self.header_type == Packet.HEADER_2:
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self.transport_id = self.raw[2:12]
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self.destination_hash = self.raw[12:22]
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self.data = self.raw[22:]
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else:
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self.transport_id = None
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self.destination_hash = self.raw[2:12]
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self.data = self.raw[12:]
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self.packed = False
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def send(self):
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if not self.sent:
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self.MTU = self.destination.MTU
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self.header = struct.pack("!B", self.header ^ self.destination.type ^ self.flags)
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self.header += self.destination.hash
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self.ciphertext = self.destination.encrypt(self.data)
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self.raw = self.header + self.ciphertext
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if len(self.raw) > self.MTU:
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raise IOError("Packet size of "+str(len(self.raw))+" exceeds MTU of "+str(self.MTU)+" bytes")
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print("Size: "+str(len(self.raw)))
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Transport.outbound(self.raw)
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self.pack()
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FPE.log("Size: "+str(len(self.raw))+" header is "+str(len(self.header))+" payload is "+str(len(self.ciphertext)), FPE.LOG_DEBUG)
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FPE.Transport.outbound(self.raw)
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self.sent = True
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else:
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raise IOError("Packet was already sent")
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@ -1,10 +1,17 @@
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from FlexPE import FlexPE
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import FPE
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class Transport:
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# Constants
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BROADCAST = 0x00;
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TRANSPORT = 0x01;
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RELAY = 0x02;
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TUNNEL = 0x03;
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types = [BROADCAST, TRANSPORT, RELAY, TUNNEL]
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@staticmethod
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def outbound(raw):
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FlexPE.outbound(raw)
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FPE.FlexPE.outbound(raw)
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@staticmethod
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def registerDestination(destination):
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FlexPE.addDestination(destination)
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FPE.FlexPE.addDestination(destination)
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@ -1,11 +1,60 @@
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import os
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import glob
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import time
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from .Destination import Destination
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from .FlexPE import FlexPE
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from .Identity import Identity
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from .Packet import Packet
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from .Transport import Transport
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from .Destination import Destination
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from .Packet import Packet
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modules = glob.glob(os.path.dirname(__file__)+"/*.py")
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__all__ = [ os.path.basename(f)[:-3] for f in modules if not f.endswith('__init__.py')]
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LOG_CRITICAL = 0
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LOG_ERROR = 1
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LOG_WARNING = 2
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LOG_NOTICE = 3
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LOG_INFO = 4
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LOG_VERBOSE = 5
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LOG_DEBUG = 6
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LOG_STDOUT = 0x91
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LOG_FILE = 0x92
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loglevel = LOG_NOTICE
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logfile = None
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logdest = LOG_STDOUT
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logtimefmt = "%Y-%m-%d %H:%M:%S"
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def loglevelname(level):
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if (level == LOG_CRITICAL):
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return "Critical"
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if (level == LOG_ERROR):
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return "Error"
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if (level == LOG_WARNING):
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return "Warning"
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if (level == LOG_NOTICE):
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return "Notice"
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if (level == LOG_INFO):
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return "Info"
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if (level == LOG_VERBOSE):
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return "Verbose"
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if (level == LOG_DEBUG):
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return "Debug"
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return "Unknown"
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def log(msg, level=3):
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# TODO: not thread safe
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if loglevel >= level:
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timestamp = time.time()
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logstring = "["+time.strftime(logtimefmt)+"] ["+loglevelname(level)+"] "+msg
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if (logdest == LOG_STDOUT):
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print(logstring)
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if (logdest == LOG_FILE and logfile != None):
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file = open(logfile, "a")
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file.write(logstring+"\n")
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file.close()
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30
Notes/Header format
Normal file
30
Notes/Header format
Normal file
@ -0,0 +1,30 @@
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header types
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-----------------
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type 1 00 One byte header, one 10 byte address field
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type 2 01 One byte header, two 10 byte address fields
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type 3 10 Reserved
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type 4 11 Reserved
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propagation types
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-----------------
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broadcast 00
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transport 01
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relay 10
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tunnel 11
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destination types
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-----------------
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single 00
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group 01
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plain 10
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link 11
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packet types
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-----------------
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message 00
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resource 01
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link request 10
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proof 11
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29
t.py
29
t.py
@ -19,33 +19,32 @@ identity = Identity()
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d1=Destination(identity, Destination.IN, Destination.SINGLE, "messenger", "user")
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d1.setCallback(testCallback)
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d2=Destination(identity, Destination.IN, Destination.PLAIN, "messenger", "user")
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d2.setCallback(testCallback)
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# d2=Destination(identity, Destination.IN, Destination.PLAIN, "plainchat", "markqvist")
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# d2.setCallback(testCallback)
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print identity.hexhash
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print d1.name
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print d1.hexhash
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print d1.identity.pub
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print "---"
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print
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#print identity.hexhash
|
||||
#print d1.name
|
||||
#print d1.hexhash
|
||||
#print d1.identity.pub
|
||||
#print "---"
|
||||
#print
|
||||
|
||||
# p1=Packet(d1, "testmessage")
|
||||
# p1.send()
|
||||
msg=""
|
||||
for x in range(300):
|
||||
msg += "a"
|
||||
signed = d1.sign(msg)
|
||||
sl = len(signed)
|
||||
pl = len(d1.identity.pub_bytes)
|
||||
print("Signature length is "+str(sl))
|
||||
print("Minimum announce is "+str(pl+sl+8))
|
||||
#print("Signature length is "+str(sl))
|
||||
#print("Minimum announce is "+str(pl+sl+8))
|
||||
|
||||
p1=Packet(d1, msg)
|
||||
p1.send()
|
||||
|
||||
p2=Packet(d1, msg)
|
||||
p2.send()
|
||||
|
||||
# p2=Packet(d2, "something else")
|
||||
# p2=Packet(d2,"Test af msg")
|
||||
# p2.send()
|
||||
|
||||
raw_input()
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user