lessons period 2

This commit is contained in:
Ryan Bakkes 2023-12-05 13:50:23 +01:00
parent c9deff7fda
commit cb70a03d81
37 changed files with 1518 additions and 0 deletions

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alex.keys

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block.dat

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mike.keys

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import socket
HOST = socket.gethostbyname("localhost")
PORT = 5050
# create a message input
message = input("Please enter a message: ")
# create and bind socket
socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
socket.connect((HOST, PORT))
# send message
socket.sendall(message.encode())
# socket.recvmsg(1024)
print("Message sent")
socket.close()

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import socket
HOST = socket.gethostbyname("localhost")
PORT = 8080
# create and bind socket
socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
socket.bind((HOST, PORT))
# become a server socket
socket.listen(2)
# accept connections
while True:
connection, address = socket.accept()
print("Connection from", address)
data = connection.recv(1024)
print("Received: ", data.decode())
connection.close()
break

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import socket
HOST = socket.gethostbyname("145.137.113.215")
PORT = 5055
# create a message input
message = "1001519"
# create and bind socket
socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
socket.connect((HOST, PORT))
# send message
socket.sendall(bytes(message, "utf-8"))
data = socket.recv(1024)
# socket.recvmsg(1024)
print("Message sent")
socket.close()

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import socket
HOST = socket.gethostbyname("localhost")
PORT = 5052
def send(msg):
# create a message input
message = msg.encode("utf-8")
# create and bind socket
socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
socket.connect((HOST, PORT))
# send message
socket.send(b'-' * (64 - len(str(len(message)).encode("utf-8"))))
socket.send(message)
socket.recv(1024)
print("Message sent")
socket.close()
message = input("Please enter a message: ")
if message == "":
send("!DISCONNECT")
else:
send(message)

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import socket
# Get local machine name
HOST = socket.gethostname("localhost")
PORT = 5050
def handleClient(clientsocket):
while True:
# Receive no more than 1024 bytes
msg = clientsocket.recv(1024)
if not msg:
break
clientsocket.send(msg)
clientsocket.close()
def start():
# Create a socket object
serversocket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
# Bind to the port
serversocket.bind((HOST, PORT))
# Queue up to 5 requests
serversocket.listen(5)
while True:
# Establish a connection
clientsocket, addr = serversocket.accept()
print("Got a connection from %s" % str(addr))
msg = 'Thank you for connecting' + "\r\n"
clientsocket.send(msg.encode('ascii'))
clientsocket.close()

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import socket
HOST = socket.gethostbyname("localhost")
PORT = 5053
ADDR = (HOST, PORT)
HEADER = 64
FORMAT = "utf-8"
server = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
server.connect(ADDR)
def send(message):
message = message.encode(FORMAT)
msg_length = len(message)
send_length = str(msg_length).encode(FORMAT)
send_length += b' ' * (HEADER - len(send_length))
server.send(send_length)
server.send(message)
print(server.recv(2048).decode(FORMAT))
def handleSend():
connected = True
while connected:
message = input("Please enter a message: ")
if message == "!DISCONNECT":
connected = False
else:
send(message)
handleSend()

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import socket
import threading
HOST = socket.gethostbyname("localhost")
PORT = 5053
ADDR = (HOST, PORT)
HEADER = 64
FORMAT = "utf-8"
server = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
server.bind(ADDR)
def handleClient(conn, addr):
client_name = conn.recv(HEADER).decode(FORMAT)
print(f"[NEW CONNECTION] {client_name} connected.")
connected = True
while connected:
msg_length = conn.recv(HEADER).decode(FORMAT)
if msg_length:
msg_length = int(len(msg_length))
msg = conn.recv(msg_length).decode(FORMAT)
if msg == "!DISCONNECT":
connected = False
print(f"[{client_name}] {msg}")
conn.send("Msg received".encode(FORMAT))
conn.send("Bye bye".encode(FORMAT))
conn.close()
print(f"[DISCONNECTED] {client_name} disconnected.")
print(f"[ACTIVE CONNECTIONS] {threading.activeCount() - 2}]")
def start():
server.listen()
print(f"[LISTENING] Server is listening on {HOST}")
while True:
conn, addr = server.accept()
thread = threading.Thread(target=handleClient, args=(conn, addr))
thread.start()
print(f"[ACTIVE CONNECTIONS] {threading.activeCount() - 1}")
print("[STARTING] server is starting...")
start()

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from cryptography.hazmat.backends import default_backend
from cryptography.hazmat.primitives import hashes
class CBlock:
data = None
previousHash = None
previousBlock = None
def __init__(self, data, previousBlock):
self.data = data
self.blockHash = None
self.previousBlock = previousBlock
if previousBlock != None:
self.previousHash = previousBlock.computeHash()
def computeHash(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data),'utf8'))
digest.update(bytes(str(self.previousHash),'utf8'))
return digest.finalize()
def is_valid(self):
if self.previousBlock == None:
return True
return self.previousBlock.computeHash() == self.previousHash

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from cryptography.exceptions import *
from cryptography.hazmat.primitives.asymmetric import rsa
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.primitives.asymmetric import padding
from cryptography.hazmat.primitives import serialization
def generate_keys():
private_key = rsa.generate_private_key(public_exponent=65537,key_size=2048)
public_key = private_key.public_key()
pbc_ser = public_key.public_bytes(
encoding=serialization.Encoding.PEM,
format=serialization.PublicFormat.SubjectPublicKeyInfo)
return private_key, pbc_ser
def sign(message, private_key):
message = bytes(str(message), 'utf-8')
signature = private_key.sign(
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()), salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return signature
def verify(message, signature, pbc_ser):
message = bytes(str(message), 'utf-8')
public_key = serialization.load_pem_public_key(pbc_ser)
try:
public_key.verify(
signature,
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()),
salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return True
except InvalidSignature:
return False
except:
print("Error executing 'public_key.verify'")
return False

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from gzip import READ
from operator import truediv
from optparse import AmbiguousOptionError
REWARD_VALUE = 25.0
NORMAL = 0
REWARD = 1
from Signature import *
class Tx:
def __init__(self, type = NORMAL):
self.type = type
self.inputs = []
self.outputs = []
self.sigs = []
self.reqd = []
def add_input(self, from_addr, amount):
self.inputs.append((from_addr, amount))
def add_output(self, to_addr, amount):
self.outputs.append((to_addr, amount))
def add_reqd(self, addr):
self.reqd.append(addr)
def sign(self, private):
message = self.__gather()
newsig = sign(message, private)
self.sigs.append(newsig)
def is_valid(self):
if self.type == REWARD:
if len(self.inputs)!=0 and len(self.outputs)!=1:
return False
return True
else:
total_in = 0
total_out = 0
message = self.__gather()
for addr,amount in self.inputs:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
# print ("No good sig found for " + str(message))
return False
if amount < 0:
return False
total_in = total_in + amount
for addr in self.reqd:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
return False
for addr,amount in self.outputs:
if amount < 0:
return False
total_out = total_out + amount
if total_out > total_in:
# print("Outputs exceed inputs")
return False
return True
def __gather(self):
data=[]
data.append(self.inputs)
data.append(self.outputs)
data.append(self.reqd)
return data
def __repr__(self):
repr_str = "INPUTS:\n"
for addr, amt in self.inputs:
repr_str = repr_str + str(amt) + "from" + str(addr) + "\n"
repr_str += "OUTPUTS:\n"
for addr, amt in self.outputs:
repr_str = repr_str + str(amt) + "to" + str(addr) + "\n"
repr_str += "EXTRA REQUIRED SIGNATURES:\n"
for req_sig in self.reqd:
repr_str = repr_str + str(req_sig) + "\n"
repr_str += "SIGNATURES:\n"
for sig in self.sigs:
repr_str = repr_str + str(sig) + "\n"
repr_str += "END\n"
return repr_str

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from BlockChain import CBlock
from Signature import generate_keys, sign, verify
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.backends import default_backend
import random
REWARD_VALUE = 25.0
leading_zeros = 2
next_char_limit = 20
class TxBlock (CBlock):
def __init__(self, previousBlock):
self.nonce = "A random nonce"
super(TxBlock, self).__init__([], previousBlock)
def addTx(self, Tx_in):
self.data.append(Tx_in)
def __count_totals(self):
total_in = 0
total_out = 0
for tx in self.data:
for addr, amt in tx.inputs:
total_in = total_in + amt
for addr, amt in tx.outputs:
total_out = total_out + amt
return total_in, total_out
def is_valid(self):
if not super(TxBlock, self).is_valid():
return False
for tx in self.data:
if not tx.is_valid():
return False
if self.nonce != "A random nonce":
if not self.good_nonce():
return False
total_in, total_out = self.__count_totals()
Tx_Balance = round(total_out - total_in, 10)
if Tx_Balance > REWARD_VALUE:
return False
return True
def good_nonce(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data), 'utf8'))
digest.update(bytes(str(self.previousHash), 'utf8'))
digest.update(bytes(str(self.nonce), 'utf8'))
this_hash = digest.finalize()
return this_hash[:leading_zeros] == b'\x00'*leading_zeros
def find_nonce(self):
for i in range(10000000):
self.nonce = i
if self.good_nonce():
return self.nonce
return None

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import pickle
import socket
PORT = 5005
def sendObj(ip_address, obj):
sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
sock.connect((ip_address, PORT))
sock.send(pickle.dumps(obj))
sock.close()
return False

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from TxBlock import *
from Transaction import *
from Signature import *
from client import *
SERVER = 'localhost'
TCP_PORT = 5050
if __name__ == "__main__":
alex_prv, alex_pbc = generate_keys()
mike_prv, mike_pbc = generate_keys()
rose_prv, rose_pbc = generate_keys()
mara_prv, mara_pbc = generate_keys()
Tx1 = Tx()
Tx1.add_input(alex_pbc, 2.3)
Tx1.add_output(mike_pbc, 1.0)
Tx1.add_output(rose_pbc, 1.1)
Tx1.sign(alex_prv)
Tx2 = Tx()
Tx2.add_input(rose_pbc, 2.3)
Tx2.add_input(mike_pbc, 1.0)
Tx2.add_output(alex_pbc, 3.1)
Tx2.sign(mike_prv)
Tx2.sign(rose_prv)
B1 = TxBlock(None)
B1.addTx(Tx1)
B1.addTx(Tx2)
sendObj(SERVER, B1)
sendObj(SERVER, Tx2)

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import socket
import pickle
import TxBlock
PORT = 5050
def newConnection(ip_address):
sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
sock.bind((ip_address, PORT))
sock.listen(2)
return sock
def recvObj(socket):
new_sock, address = socket.accept()
data = new_sock.recv(1024)
print("Received: ", data)
data = pickle.loads(data)
new_sock.close()
return data

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import TxBlock
import socket
import pickle
from server import *
SERVER = 'localhost'
TCP_PORT = 5050
# BUFFER_SIZE = 1024
if __name__ == "__main__":
server = newConnection(SERVER)
newB = recvObj(server)
# print(newB.data[0])
# print(newB.data[1])
if (newB.is_valid()):
print("Success! Transaction is valid.")
else:
print("Error! Transaction invalid.")
if newB.data[0].inputs[0][1] == 2.3:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[0].outputs[1][1] == 1.1:
print("Success! Output value matches.")
else:
print("Error! Wrong output value for block 1, transaction 1.")
if newB.data[1].inputs[0][1] == 2.3:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[1].inputs[1][1] == 1.0:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[1].outputs[0][1] == 3.1:
print("Success! Output value matches.")
else:
print("Error! Wrong output value for block 1, transaction 1.")
newTx = recvObj(server)
# print(newTx)

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from TxBlock import *
from Transaction import *
from Signature import *
from client import *
SERVER = 'localhost'
TCP_PORT = 5005
if __name__ == "__main__":
alex_prv, alex_pbc = generate_keys()
mike_prv, mike_pbc = generate_keys()
rose_prv, rose_pbc = generate_keys()
mara_prv, mara_pbc = generate_keys()
Tx1 = Tx()
Tx1.add_input(alex_pbc, 2.3)
Tx1.add_output(mike_pbc, 1.0)
Tx1.add_output(rose_pbc, 1.1)
Tx1.sign(alex_prv)
Tx2 = Tx()
Tx2.add_input(rose_pbc, 2.3)
Tx2.add_input(mike_pbc, 1.0)
Tx2.add_output(alex_pbc, 3.1)
Tx2.sign(mike_prv)
Tx2.sign(rose_prv)
B1 = TxBlock.TxBlock(None)
B1.addTx(Tx1)
B1.addTx(Tx2)
sendObj(SERVER, B1)
sendObj(SERVER, Tx2)

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import TxBlock
import socket
import pickle
from server import *
local_hostname = socket.gethostname()
# local_ip = socket.gethostbyname(local_hostname)
local_ip = '192.168.1.103'
TCP_PORT = 5005
BUFFER_SIZE = 1024
if __name__ == "__main__":
server = newConnection(local_ip)
print(f"[LISTENING] Server is listening on {local_ip}")
newB = recvObj(server)
# print(newB.data[0])
# print(newB.data[1])
if (newB.is_valid()):
print("Success! Transaction is valid.")
else:
print("Error! Transaction invalid.")
if newB.data[0].inputs[0][1] == 2.3:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[0].outputs[1][1] == 1.1:
print("Success! Output value matches.")
else:
print("Error! Wrong output value for block 1, transaction 1.")
if newB.data[1].inputs[0][1] == 2.3:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[1].inputs[1][1] == 1.0:
print("Success! Input value matches.")
else:
print("Error! Wrong input value for block 1, transaction 1.")
if newB.data[1].outputs[0][1] == 3.1:
print("Success! Output value matches.")
else:
print("Error! Wrong output value for block 1, transaction 1.")
newTx = recvObj(server)
# print(newTx)

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import socket
from threading import Timer
HEADER = 64
PORT = 5053
FORMAT = 'utf-8'
DISCONNECT_MESSAGE = "!DISCONNECT"
HOST_IP = 'localhost'
ADDR = (HOST_IP, PORT)
client = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
client.connect(ADDR)
client_name = input('please enter your name: ')
client.send(client_name.encode(FORMAT))
print(client.recv(2048).decode(FORMAT))
def send(msg):
message = msg.encode(FORMAT)
msg_length = len(message)
send_length = str(msg_length).encode(FORMAT)
send_length += b' ' * (HEADER - len(send_length))
client.send(send_length)
client.send(message)
print(client.recv(2048).decode(FORMAT))
def stop_the_client():
global cont_flag
mes = DISCONNECT_MESSAGE
send(mes)
cont_flag = False
cont_flag = True
while cont_flag:
timeout = 20
timeout_thread = Timer(timeout, send, args=(DISCONNECT_MESSAGE,))
timeout_thread.start()
if not cont_flag:
print("the connection is closed by the server")
break
print('--------------------------')
print('You can send a message to server')
print('to stop connection, press enter on a blank message')
mes = input('Your message: ')
if mes:
send(mes)
else:
send(DISCONNECT_MESSAGE)
cont_flag = False
timeout_thread.cancel()

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import socket
import threading
import select
HEADER = 64
PORT = 5053
local_ip = socket.gethostbyname('localhost')
ADDR = (local_ip, PORT)
FORMAT = 'utf-8'
DISCONNECT_MESSAGE = "!DISCONNECT"
server = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
server.bind(ADDR)
def handle_client(conn, addr):
client_name = conn.recv(2048).decode(FORMAT)
print(f"\n[NEW CONNECTION] {client_name}@{addr} is connected.")
connection_message = f"...\nHi {client_name}! \nYou are successfully connected to the server {ADDR}"
conn.send(connection_message.encode(FORMAT))
connected = True
while connected:
ready_to_read, ready_to_write, in_error = select.select([conn], [], [conn], 20)
print(f"ready_to_read: {ready_to_read}")
if len(ready_to_read):
print(f"ready_to_read: {ready_to_read}")
msg_length = conn.recv(HEADER).decode(FORMAT)
print(f"msg_length: {msg_length}")
if msg_length:
msg_length = int(msg_length)
msg = conn.recv(msg_length).decode(FORMAT)
if msg == DISCONNECT_MESSAGE:
connected = False
print(f"[{client_name}@{addr}]>> {msg}")
return_message = f'Server received your message: "{msg}"'
conn.send(return_message.encode(FORMAT))
else:
connected = False
return_message = f"\nTimeout! {client_name} is disconnected from the server {ADDR}"
conn.send(return_message.encode(FORMAT))
bye_message = f"\nBye {client_name}!"
conn.send(bye_message.encode(FORMAT))
conn.close()
print(f"[ACTIVE CONNECTIONS] {threading.active_count() - 2}")
# bye_message = f"\nBye {client_name}!"
# conn.send(bye_message.encode(FORMAT))
conn.close()
print(f"[ACTIVE CONNECTIONS] {threading.active_count() - 2}")
def start():
server.listen()
print(f"[LISTENING] Server is listening on {local_ip}")
while True:
conn, addr = server.accept()
thread = threading.Thread(target=handle_client, args=(conn, addr))
thread.start()
print(f"[ACTIVE CONNECTIONS] {threading.active_count() - 1}")
print("[STARTING] server is starting...")
start()

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from cryptography.hazmat.backends import default_backend
from cryptography.hazmat.primitives import hashes
class CBlock:
data = None
previousHash = None
previousBlock = None
def __init__(self, data, previousBlock):
self.data = data
self.previousBlock = previousBlock
if previousBlock != None:
self.previousHash = previousBlock.computeHash()
def computeHash(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data),'utf8'))
digest.update(bytes(str(self.previousHash),'utf8'))
return digest.finalize()
def is_valid(self):
if self.previousBlock == None:
return True
return self.previousBlock.computeHash() == self.previousHash

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from TxBlock import *
from Transaction import *
from Signature import *
from SocketUtil import *
SERVER = 'localhost'
TCP_PORT = 5050
if __name__ == "__main__":
alex_prv, alex_pbc = generate_keys()
mike_prv, mike_pbc = generate_keys()
rose_prv, rose_pbc = generate_keys()
mara_prv, mara_pbc = generate_keys()
Tx1 = Tx()
Tx1.add_input(alex_pbc, 2.3)
Tx1.add_output(mike_pbc, 1.0)
Tx1.add_output(rose_pbc, 1.1)
Tx1.sign(alex_prv)
Tx2 = Tx()
Tx2.add_input(rose_pbc, 2.3)
Tx2.add_input(mike_pbc, 1.0)
Tx2.add_output(alex_pbc, 3.1)
Tx2.sign(mike_prv)
Tx2.sign(rose_prv)
B1 = TxBlock(None)
B1.addTx(Tx1)
B1.addTx(Tx2)
server = newServerSocket(SERVER)
print('A connection to the server is established.')
# -------------------------------------
sendObj(SERVER, Tx2)
print('Server is in Receiving mode ...')
Obj = recvObj(server)
if Obj:
print('Data: ', type(Obj),'\n')
else:
print('No object received')
# -------------------------------------
sendObj(SERVER, B1)
print('Server is in Receiving mode ...')
Obj = recvObj(server)
if Obj:
print('Data: ', type(Obj),'\n')
else:
print('No object received')
# -------------------------------------
print('Server is in Receiving mode ...')
Obj = recvObj(server)
if Obj:
print(Obj)
else:
print('No object received')
print("Success! The connection is released.") # If returns after time, then successful
server.close()

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from cryptography.exceptions import *
from cryptography.hazmat.primitives.asymmetric import rsa
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.primitives.asymmetric import padding
from cryptography.hazmat.primitives import serialization
def generate_keys():
private_key = rsa.generate_private_key(public_exponent=65537,key_size=2048)
public_key = private_key.public_key()
pbc_ser = public_key.public_bytes(
encoding=serialization.Encoding.PEM,
format=serialization.PublicFormat.SubjectPublicKeyInfo)
return private_key, pbc_ser
def sign(message, private_key):
message = bytes(str(message), 'utf-8')
signature = private_key.sign(
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()), salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return signature
def verify(message, signature, pbc_ser):
message = bytes(str(message), 'utf-8')
public_key = serialization.load_pem_public_key(pbc_ser)
try:
public_key.verify(
signature,
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()),
salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return True
except InvalidSignature:
return False
except:
print("Error executing 'public_key.verify'")
return False

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import socket
import pickle
import select
TCP_PORT = 5050
BUFFER_SIZE = 1024
def newServerSocket(ip_addr):
server_socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
server_socket.bind((ip_addr, TCP_PORT))
server_socket.listen()
return server_socket
def recvObj(socket):
ready_to_read, ready_to_write, in_error = select.select([socket], [], [socket], 20)
if socket in ready_to_read:
print('Server is ready to receive data ...')
connected_socket, addr = socket.accept()
print('Server is receiving data ...')
all_data = b''
while True:
data = connected_socket.recv(BUFFER_SIZE)
if not data:
break
all_data = all_data + data
return pickle.loads(all_data)
return None
def sendObj(ip_addr, obj):
soc = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
soc.connect((ip_addr, TCP_PORT))
data = pickle.dumps(obj)
soc.send(data)
soc.close()
return False

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from TxBlock import *
from Transaction import *
from Signature import *
from SocketUtil import *
TCP_PORT = 5050
BUFFER_SIZE = 1024
SERVER = 'localhost'
if __name__ == "__main__":
server = newServerSocket(SERVER)
print('A connection to the server is established.')
Obj = recvObj(server)
print("Success! The connection is released.") # If returns after time, then successful
server.close()

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from Signature import *
class Tx:
inputs = None
outputs =None
sigs = None
reqd = None
def __init__(self):
self.inputs = []
self.outputs = []
self.sigs = []
self.reqd = []
def add_input(self, from_addr, amount):
self.inputs.append((from_addr, amount))
def add_output(self, to_addr, amount):
self.outputs.append((to_addr, amount))
def add_reqd(self, addr):
self.reqd.append(addr)
def sign(self, private):
message = self.__gather()
newsig = sign(message, private)
self.sigs.append(newsig)
def is_valid(self):
total_in = 0
total_out = 0
message = self.__gather()
for addr,amount in self.inputs:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
# print ("No good sig found for " + str(message))
return False
if amount < 0:
return False
total_in = total_in + amount
for addr in self.reqd:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
return False
for addr,amount in self.outputs:
if amount < 0:
return False
total_out = total_out + amount
# if total_out > total_in:
# # print("Outputs exceed inputs")
# return False
return True
def __gather(self):
data=[]
data.append(self.inputs)
data.append(self.outputs)
data.append(self.reqd)
return data
def __repr__(self):
repr_str = "INPUTS:\n"
for addr, amt in self.inputs:
repr_str = repr_str + str(amt) + "from" + str(addr) + "\n"
repr_str += "OUTPUTS:\n"
for addr, amt in self.outputs:
repr_str = repr_str + str(amt) + "to" + str(addr) + "\n"
repr_str += "EXTRA REQUIRED SIGNATURES:\n"
for req_sig in self.reqd:
repr_str = repr_str + str(req_sig) + "\n"
repr_str += "SIGNATURES:\n"
for sig in self.sigs:
repr_str = repr_str + str(sig) + "\n"
repr_str += "END\n"
return repr_str

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from BlockChain import CBlock
from Signature import generate_keys, sign, verify
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.backends import default_backend
import random
reward = 25.0
leading_zeros = 2
next_char_limit = 20
class TxBlock(CBlock):
nonce = "A random nonce"
def __init__(self, previousBlock):
super(TxBlock, self).__init__([], previousBlock)
def addTx(self, Tx_in):
self.data.append(Tx_in)
def __count_totals(self):
total_in = 0
total_out = 0
for tx in self.data:
for addr, amt in tx.inputs:
total_in = total_in + amt
for addr, amt in tx.outputs:
total_out = total_out + amt
return total_in, total_out
def is_valid(self):
if not super(TxBlock, self).is_valid():
return False
for tx in self.data:
if not tx.is_valid():
return False
total_in, total_out = self.__count_totals()
if total_out - total_in - reward > 0.000000000001:
return False
return True
def good_nonce(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data), 'utf8'))
digest.update(bytes(str(self.previousHash), 'utf8'))
digest.update(bytes(str(self.nonce), 'utf8'))
this_hash = digest.finalize()
if this_hash[:leading_zeros] != bytes(''.join(['\x4f' for i in range(leading_zeros)]), 'utf8'):
return False
return int(this_hash[leading_zeros]) < next_char_limit
def find_nonce(self):
for i in range(1000000):
self.nonce = ''.join([
chr(random.randint(0, 255)) for i in range(10*leading_zeros)])
if self.good_nonce():
return self.nonce
return None

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from cryptography.hazmat.backends import default_backend
from cryptography.hazmat.primitives import hashes
class CBlock:
data = None
previousHash = None
previousBlock = None
def __init__(self, data, previousBlock):
self.data = data
self.previousBlock = previousBlock
if previousBlock != None:
self.previousHash = previousBlock.computeHash()
def computeHash(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data),'utf8'))
digest.update(bytes(str(self.previousHash),'utf8'))
return digest.finalize()
def is_valid(self):
if self.previousBlock == None:
return True
return self.previousBlock.computeHash() == self.previousHash

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from SocketUtil import *
import TxBlock as Tx
# import Tx
SERVER = 'localhost'
wallet_list = [SERVER]
tx_list = []
def minerServer(my_ip, wallet_list):
miner_server_socket = newServerSocket(my_ip, 5050)
# receive 2 transactions
for i in range(10):
newTx = recvObj(miner_server_socket)
if isinstance(newTx, Tx):
tx_list.append(newTx)
print("Received Tx")
if len(tx_list) == 2:
break
if len(tx_list) < 2:
print("Error! Not enough transactions received.")
return
# collect into block
newBlock = TxBlock(None)
for tx in tx_list:
newBlock.addTx(tx)
# find nonce
newBlock.find_nonce()
if newBlock.good_nonce():
print("Success! Nonce is valid.")
else:
print("Error! Nonce is invalid.")
return
# send that block to each in wallet_list
for wallet in wallet_list:
sendObj(wallet, newBlock)
return
# Open Server Connection
# Rec'v 2 transactions
# Collect into block
# Find nonce
# Send that block to each in walle_list
# return
def minerServer(my_ip, wallet_list):
# open server connection for the miner
server_socket = newServerSocket(my_ip, 5050)
print('Server is ready to receive data ...')
# receive 2 transactions
data = recvObj(server_socket)
print('Server is receiving data ...')
if data:
print('Data: ', type(data), '\n')
else:
print('No object received')
# collect into block
if data:
block = TxBlock(None)
block.addTx(data)
data = recvObj(server_socket)
if data:
block.addTx(data)
server_socket.close()
# find nonce
block.find_nonce()
# send that block to each in wallet_list
for wallet in wallet_list:
sendObj(wallet, block)
return
minerServer('localhost', wallet_list)

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from cryptography.exceptions import *
from cryptography.hazmat.primitives.asymmetric import rsa
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.primitives.asymmetric import padding
from cryptography.hazmat.primitives import serialization
def generate_keys():
private_key = rsa.generate_private_key(public_exponent=65537,key_size=2048)
public_key = private_key.public_key()
pbc_ser = public_key.public_bytes(
encoding=serialization.Encoding.PEM,
format=serialization.PublicFormat.SubjectPublicKeyInfo)
return private_key, pbc_ser
def sign(message, private_key):
message = bytes(str(message), 'utf-8')
signature = private_key.sign(
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()), salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return signature
def verify(message, signature, pbc_ser):
message = bytes(str(message), 'utf-8')
public_key = serialization.load_pem_public_key(pbc_ser)
try:
public_key.verify(
signature,
message,
padding.PSS(mgf=padding.MGF1(hashes.SHA256()),
salt_length=padding.PSS.MAX_LENGTH),
hashes.SHA256()
)
return True
except InvalidSignature:
return False
except:
print("Error executing 'public_key.verify'")
return False

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import socket
import pickle
import select
BUFFER_SIZE = 1024
def newServerSocket(ip_addr, port):
server_socket = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
server_socket.bind((ip_addr, port))
server_socket.listen()
return server_socket
def recvObj(socket):
inputs, outputs, errs = select.select([socket], [], [socket], 6)
if socket in inputs:
connected_socket, addr = socket.accept()
all_data = b''
while True:
data = connected_socket.recv(BUFFER_SIZE)
if not data:
break
all_data = all_data + data
return pickle.loads(all_data)
return None
def sendObj(ip_addr, blk, port):
soc = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
soc.connect((ip_addr, port))
data = pickle.dumps(blk)
soc.send(data)
soc.close()
return False
# changes on newServerConnection
# We modified it to accept port number as a parameter, such that when
# we make a server we can specify on which port bind it

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from Signature import *
class Tx:
inputs = None
outputs =None
sigs = None
reqd = None
def __init__(self):
self.inputs = []
self.outputs = []
self.sigs = []
self.reqd = []
def add_input(self, from_addr, amount):
self.inputs.append((from_addr, amount))
def add_output(self, to_addr, amount):
self.outputs.append((to_addr, amount))
def add_reqd(self, addr):
self.reqd.append(addr)
def sign(self, private):
message = self.__gather()
newsig = sign(message, private)
self.sigs.append(newsig)
def is_valid(self):
total_in = 0
total_out = 0
message = self.__gather()
for addr,amount in self.inputs:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
# print ("No good sig found for " + str(message))
return False
if amount < 0:
return False
total_in = total_in + amount
for addr in self.reqd:
found = False
for s in self.sigs:
if verify(message, s, addr):
found = True
if not found:
return False
for addr,amount in self.outputs:
if amount < 0:
return False
total_out = total_out + amount
# if total_out > total_in:
# # print("Outputs exceed inputs")
# return False
return True
def __gather(self):
data=[]
data.append(self.inputs)
data.append(self.outputs)
data.append(self.reqd)
return data
def __repr__(self):
repr_str = "INPUTS:\n"
for addr, amt in self.inputs:
repr_str = repr_str + str(amt) + "from" + str(addr) + "\n"
repr_str += "OUTPUTS:\n"
for addr, amt in self.outputs:
repr_str = repr_str + str(amt) + "to" + str(addr) + "\n"
repr_str += "EXTRA REQUIRED SIGNATURES:\n"
for req_sig in self.reqd:
repr_str = repr_str + str(req_sig) + "\n"
repr_str += "SIGNATURES:\n"
for sig in self.sigs:
repr_str = repr_str + str(sig) + "\n"
repr_str += "END\n"
return repr_str

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from BlockChain import CBlock
from Signature import generate_keys, sign, verify
from cryptography.hazmat.primitives import hashes
from cryptography.hazmat.backends import default_backend
import random
reward = 25.0
leading_zeros = 2
next_char_limit = 20
class TxBlock (CBlock):
nonce = "A random nonce"
def __init__(self, previousBlock):
super(TxBlock, self).__init__([], previousBlock)
def addTx(self, Tx_in):
self.data.append(Tx_in)
def count_totals(self):
total_in = 0
total_out = 0
for tx in self.data:
for addr, amt in tx.inputs:
total_in = total_in + amt
for addr, amt in tx.outputs:
total_out = total_out + amt
return total_in, total_out
def is_valid(self):
if not super(TxBlock, self).is_valid():
return False
for tx in self.data:
if not tx.is_valid():
return False
total_in, total_out = self.count_totals()
if total_out - total_in - reward > 0.000000000001:
return False
return True
def good_nonce(self):
digest = hashes.Hash(hashes.SHA256(), backend=default_backend())
digest.update(bytes(str(self.data), 'utf8'))
digest.update(bytes(str(self.previousHash), 'utf8'))
digest.update(bytes(str(self.nonce), 'utf8'))
this_hash = digest.finalize()
if this_hash[:leading_zeros] != bytes(''.join(['\x4f' for i in range(leading_zeros)]), 'utf8'):
return False
return int(this_hash[leading_zeros]) < next_char_limit
def find_nonce(self):
for i in range(1000000):
self.nonce = ''.join([
chr(random.randint(0, 255)) for i in range(10*leading_zeros)])
if self.good_nonce():
return self.nonce
return None
# count_total() needs to be public to be used in Miner

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from SocketUtil import *
from Transaction import *
from Signature import *
M_SERVER_IP = 'localhost'
M_SERVER_PORT = 5005
W_SERVER_IP = 'localhost'
W_SERVER_PORT = 5006
alex_prv, alex_pbc = generate_keys()
mike_prv, mike_pbc = generate_keys()
rose_prv, rose_pbc = generate_keys()
mara_prv, mara_pbc = generate_keys()
Tx1 = Tx()
Tx1.add_input(alex_pbc, 4.0)
Tx1.add_input(mike_pbc, 1.0)
Tx1.add_output(rose_pbc, 4.8)
Tx1.sign(alex_prv)
Tx1.sign(mike_prv)
Tx2 = Tx()
Tx2.add_input(rose_pbc, 4.0)
Tx2.add_output(mike_pbc, 4.0)
Tx2.add_reqd(alex_pbc)
Tx2.sign(rose_prv)
Tx2.sign(alex_prv)
print(Tx1.is_valid())
print(Tx2.is_valid())
try:
sendObj(M_SERVER_IP, Tx1, M_SERVER_PORT)
print("Sent Tx1")
sendObj(M_SERVER_IP, Tx2, M_SERVER_PORT)
print("Sent Tx2")
except:
print("Error! Connection unsuccessful.")
wallet_server_socket = newServerSocket(W_SERVER_IP, W_SERVER_PORT)
for i in range(10):
newBlock = recvObj(wallet_server_socket)
if newBlock:
break
wallet_server_socket.close()
if newBlock.is_valid():
print("Success! Block is valid.")
if newBlock.good_nonce():
print("Success! Nonce is valid.")
tx1_found = tx2_found = False
for tx in newBlock.data:
try:
if tx.inputs[0][0] == alex_pbc and tx.inputs[0][1] == 4.0:
print("Tx1 is present.")
tx1_found = True
except:
pass
try:
if tx.inputs[0][0] == rose_pbc and tx.inputs[0][1] == 4.0:
print("Tx2 is present.")
tx2_found = True
except:
pass

BIN
rose.keys

Binary file not shown.