forked from LBRYCommunity/lbry-sdk
230 lines
6.2 KiB
Python
230 lines
6.2 KiB
Python
from lbrynet import conf
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from twisted.web.client import Agent, FileBodyProducer, Headers, ResponseDone
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from twisted.internet import threads, defer, protocol
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from Crypto.Hash import SHA
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from Crypto.PublicKey import RSA
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from Crypto.Signature import PKCS1_PSS
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from StringIO import StringIO
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import time
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import json
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import binascii
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class BeginningPrinter(protocol.Protocol):
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def __init__(self, finished):
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self.finished = finished
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self.data = ""
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def dataReceived(self, bytes):
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self.data = self.data + bytes
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def connectionLost(self, reason):
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if reason.check(ResponseDone) is not None:
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self.finished.callback(str(self.data))
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else:
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self.finished.errback(reason)
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def read_body(response):
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d = defer.Deferred()
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response.deliverBody(BeginningPrinter(d))
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return d
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def get_body(response):
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if response.code != 200:
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print "\n\n\n\nbad error code\n\n\n\n"
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raise ValueError(response.phrase)
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else:
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return read_body(response)
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def get_body_from_request(path, data):
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from twisted.internet import reactor
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jsondata = FileBodyProducer(StringIO(json.dumps(data)))
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agent = Agent(reactor)
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d = agent.request(
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'POST', conf.settings['pointtrader_server'] + path,
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Headers({'Content-Type': ['application/json']}), jsondata)
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d.addCallback(get_body)
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return d
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def print_response(response):
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pass
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def print_error(err):
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print err.getTraceback()
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return err
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def register_new_account(private_key):
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data = {}
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data['pub_key'] = private_key.publickey().exportKey()
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def get_success_from_body(body):
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r = json.loads(body)
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if not 'success' in r or r['success'] is False:
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return False
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return True
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d = get_body_from_request('/register/', data)
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d.addCallback(get_success_from_body)
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return d
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def send_points(private_key, recipient_public_key, amount):
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encoded_public_key = private_key.publickey().exportKey()
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timestamp = time.time()
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h = SHA.new()
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h.update(encoded_public_key)
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h.update(recipient_public_key)
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h.update(str(amount))
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h.update(str(timestamp))
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signer = PKCS1_PSS.new(private_key)
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signature = binascii.hexlify(signer.sign(h))
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data = {}
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data['sender_pub_key'] = encoded_public_key
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data['recipient_pub_key'] = recipient_public_key
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data['amount'] = amount
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data['timestamp'] = timestamp
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data['signature'] = signature
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def get_success_from_body(body):
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r = json.loads(body)
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if not 'success' in r or r['success'] is False:
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return False
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return True
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d = get_body_from_request('/send-points/', data)
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d.addCallback(get_success_from_body)
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return d
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def get_recent_transactions(private_key):
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encoded_public_key = private_key.publickey().exportKey()
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timestamp = time.time()
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h = SHA.new()
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h.update(encoded_public_key)
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h.update(str(timestamp))
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signer = PKCS1_PSS.new(private_key)
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signature = binascii.hexlify(signer.sign(h))
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data = {}
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data['pub_key'] = encoded_public_key
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data['timestamp'] = timestamp
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data['signature'] = signature
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data['end_time'] = 0
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data['start_time'] = 120
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def get_transactions_from_body(body):
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r = json.loads(body)
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if "transactions" not in r:
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raise ValueError("Invalid response: no 'transactions' field")
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else:
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return r['transactions']
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d = get_body_from_request('/get-transactions/', data)
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d.addCallback(get_transactions_from_body)
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return d
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def get_balance(private_key):
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encoded_public_key = private_key.publickey().exportKey()
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timestamp = time.time()
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h = SHA.new()
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h.update(encoded_public_key)
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h.update(str(timestamp))
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signer = PKCS1_PSS.new(private_key)
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signature = binascii.hexlify(signer.sign(h))
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data = {}
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data['pub_key'] = encoded_public_key
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data['timestamp'] = timestamp
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data['signature'] = signature
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def get_balance_from_body(body):
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r = json.loads(body)
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if not 'balance' in r:
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raise ValueError("Invalid response: no 'balance' field")
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else:
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return float(r['balance'])
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d = get_body_from_request('/get-balance/', data)
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d.addCallback(get_balance_from_body)
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return d
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def run_full_test():
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keys = []
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def save_key(private_key):
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keys.append(private_key)
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return private_key
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def check_balances_and_transactions(unused, bal1, bal2, num_transactions):
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def assert_balance_is(actual, expected):
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assert abs(actual - expected) < .05
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print "correct balance. actual:", str(actual), "expected:", str(expected)
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return True
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def assert_transaction_length_is(transactions, expected_length):
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assert len(transactions) == expected_length
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print "correct transaction length"
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return True
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d1 = get_balance(keys[0])
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d1.addCallback(assert_balance_is, bal1)
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d2 = get_balance(keys[1])
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d2.addCallback(assert_balance_is, bal2)
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d3 = get_recent_transactions(keys[0])
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d3.addCallback(assert_transaction_length_is, num_transactions)
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d4 = get_recent_transactions(keys[1])
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d4.addCallback(assert_transaction_length_is, num_transactions)
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dl = defer.DeferredList([d1, d2, d3, d4])
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return dl
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def do_transfer(unused, amount):
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d = send_points(keys[0], keys[1].publickey().exportKey(), amount)
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return d
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d1 = threads.deferToThread(RSA.generate, 4096)
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d1.addCallback(save_key)
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d1.addCallback(register_new_account)
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d2 = threads.deferToThread(RSA.generate, 4096)
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d2.addCallback(save_key)
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d2.addCallback(register_new_account)
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dlist = defer.DeferredList([d1, d2])
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dlist.addCallback(check_balances_and_transactions, 1000, 1000, 0)
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dlist.addCallback(do_transfer, 50)
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dlist.addCallback(check_balances_and_transactions, 950, 1050, 1)
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dlist.addCallback(do_transfer, 75)
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dlist.addCallback(check_balances_and_transactions, 875, 1125, 2)
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dlist.addErrback(print_error)
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if __name__ == "__main__":
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from twisted.internet import reactor
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reactor.callLater(1, run_full_test)
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reactor.callLater(25, reactor.stop)
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reactor.run()
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