Onionr/onionr/communicator.py

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#!/usr/bin/env python3
'''
Onionr - P2P Microblogging Platform & Social network.
This file contains both the OnionrCommunicate class for communcating with peers
and code to operate as a daemon, getting commands from the command queue database (see core.Core.daemonQueue)
'''
'''
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This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <https://www.gnu.org/licenses/>.
'''
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import sqlite3, requests, hmac, hashlib, time, sys, os, math, logger, urllib.parse, random
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import core, onionrutils, onionrcrypto, onionrproofs, btc, config, onionrplugins as plugins
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class OnionrCommunicate:
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def __init__(self, debug, developmentMode):
'''
OnionrCommunicate
This class handles communication with nodes in the Onionr network.
'''
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self._core = core.Core()
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self._utils = onionrutils.OnionrUtils(self._core)
self._crypto = onionrcrypto.OnionrCrypto(self._core)
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'''
logger.info('Starting Bitcoin Node... with Tor socks port:' + str(sys.argv[2]))
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try:
self.bitcoin = btc.OnionrBTC(torP=int(sys.argv[2]))
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except _gdbm.error:
pass
logger.info('Bitcoin Node started, on block: ' + self.bitcoin.node.getBlockHash(self.bitcoin.node.getLastBlockHeight()))
'''
#except:
#logger.fatal('Failed to start Bitcoin Node, exiting...')
#exit(1)
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blockProcessTimer = 0
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blockProcessAmount = 5
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heartBeatTimer = 0
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heartBeatRate = 5
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pexTimer = 5 # How often we should check for new peers
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pexCount = 0
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logger.debug('Communicator debugging enabled.')
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torID = open('data/hs/hostname').read()
self.peerData = {} # Session data for peers (recent reachability, speed, etc)
if os.path.exists(self._core.queueDB):
self._core.clearDaemonQueue()
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# Loads in and starts the enabled plugins
plugins.reload()
while True:
command = self._core.daemonQueue()
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# Process blocks based on a timer
blockProcessTimer += 1
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heartBeatTimer += 1
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pexCount += 1
if pexTimer == pexCount:
self.getNewPeers()
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pexCount = 0
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if heartBeatRate == heartBeatTimer:
logger.debug('Communicator heartbeat')
heartBeatTimer = 0
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if blockProcessTimer == blockProcessAmount:
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self.lookupBlocks()
self.processBlocks()
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blockProcessTimer = 0
if command != False:
if command[0] == 'shutdown':
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logger.info('Daemon recieved exit command.')
break
time.sleep(1)
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return
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def getNewPeers(self):
'''
Get new peers
'''
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peersCheck = 5 # Amount of peers to ask for new peers + keys
peersChecked = 0
peerList = list(self._core.listAdders()) # random ordered list of peers
newKeys = []
newAdders = []
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if len(peerList) > 0:
maxN = len(peerList) - 1
else:
peersCheck = 0
maxN = 0
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if len(peerList) > peersCheck:
peersCheck = len(peerList)
while peersCheck > peersChecked:
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i = random.randint(0, maxN)
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logger.info('Using ' + peerList[i] + ' to find new peers')
try:
newAdders = self.performGet('pex', peerList[i], skipHighFailureAddress=True)
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self._utils.mergeAdders(newAdders)
except requests.exceptions.ConnectionError:
logger.info(peerList[i] + ' connection failed')
continue
else:
try:
logger.info('Using ' + peerList[i] + ' to find new keys')
newKeys = self.performGet('kex', peerList[i], skipHighFailureAddress=True)
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# TODO: Require keys to come with POW token (very large amount of POW)
self._utils.mergeKeys(newKeys)
except requests.exceptions.ConnectionError:
logger.info(peerList[i] + ' connection failed')
continue
else:
peersChecked += 1
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return
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def lookupBlocks(self):
'''
Lookup blocks and merge new ones
'''
peerList = self._core.listAdders()
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blocks = ''
for i in peerList:
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lastDB = self._core.getAddressInfo(i, 'DBHash')
if lastDB == None:
logger.debug('Fetching hash from ' + i + ' No previous known.')
else:
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logger.debug('Fetching hash from ' + str(i) + ', ' + lastDB + ' last known')
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currentDB = self.performGet('getDBHash', i)
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if currentDB != False:
logger.debug(i + " hash db (from request): " + currentDB)
else:
logger.warn("Error getting hash db status for " + i)
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if currentDB != False:
if lastDB != currentDB:
logger.debug('Fetching hash from ' + i + ' - ' + currentDB + ' current hash.')
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blocks += self.performGet('getBlockHashes', i)
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if self._utils.validateHash(currentDB):
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self._core.setAddressInfo(i, "DBHash", currentDB)
if len(blocks.strip()) != 0:
logger.debug('BLOCKS:' + blocks)
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blockList = blocks.split('\n')
for i in blockList:
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if len(i.strip()) == 0:
continue
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if self._utils.hasBlock(i):
continue
logger.debug('Exchanged block (blockList): ' + i)
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if not self._utils.validateHash(i):
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# skip hash if it isn't valid
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logger.warn('Hash ' + i + ' is not valid')
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continue
else:
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logger.debug('Adding ' + i + ' to hash database...')
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self._core.addToBlockDB(i)
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return
def processBlocks(self):
'''
Work with the block database and download any missing blocks
This is meant to be called from the communicator daemon on its timer.
'''
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for i in self._core.getBlockList(True).split("\n"):
if i != "":
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logger.warn('UNSAVED BLOCK: ' + i)
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data = self.downloadBlock(i)
return
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def downloadBlock(self, hash):
'''
Download a block from random order of peers
'''
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peerList = self._core.listAdders()
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blocks = ''
for i in peerList:
hasher = hashlib.sha3_256()
data = self.performGet('getData', i, hash)
if data == False or len(data) > 10000000:
continue
hasher.update(data.encode())
digest = hasher.hexdigest()
if type(digest) is bytes:
digest = digest.decode()
if digest == hash.strip():
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self._core.setData(data)
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if data.startswith('-txt-'):
self._core.setBlockType(hash, 'txt')
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logger.info('Successfully obtained data for ' + hash)
if len(data) < 120:
logger.debug('Block text:\n' + data)
else:
logger.warn("Failed to validate " + hash)
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return
def urlencode(self, data):
'''
URL encodes the data
'''
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return urllib.parse.quote_plus(data)
def performGet(self, action, peer, data=None, skipHighFailureAddress=False, peerType='tor'):
'''
Performs a request to a peer through Tor or i2p (currently only Tor)
'''
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if not peer.endswith('.onion') and not peer.endswith('.onion/'):
raise PeerError('Currently only Tor .onion peers are supported. You must manually specify .onion')
# Store peer in peerData dictionary (non permanent)
if not peer in self.peerData:
self.peerData[peer] = {'connectCount': 0, 'failCount': 0, 'lastConnectTime': math.floor(time.time())}
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socksPort = sys.argv[2]
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'''We use socks5h to use tor as DNS'''
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proxies = {'http': 'socks5://127.0.0.1:' + str(socksPort), 'https': 'socks5://127.0.0.1:' + str(socksPort)}
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headers = {'user-agent': 'PyOnionr'}
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url = 'http://' + peer + '/public/?action=' + self.urlencode(action)
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if data != None:
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url = url + '&data=' + self.urlencode(data)
try:
if skipHighFailureAddress and self.peerData[peer]['failCount'] > 10:
retData = False
logger.debug('Skipping ' + peer + ' because of high failure rate')
else:
logger.debug('Contacting ' + peer + ' on port ' + socksPort)
r = requests.get(url, headers=headers, proxies=proxies, timeout=(15, 30))
retData = r.text
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except requests.exceptions.RequestException as e:
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logger.warn(action + " failed with peer " + peer + ": " + str(e))
retData = False
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if not retData:
self.peerData[peer]['failCount'] += 1
else:
self.peerData[peer]['connectCount'] += 1
self.peerData[peer]['lastConnectTime'] = math.floor(time.time())
return retData
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shouldRun = False
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debug = True
developmentMode = False
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if config.get('devmode', True):
developmentMode = True
try:
if sys.argv[1] == 'run':
shouldRun = True
except IndexError:
pass
if shouldRun:
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try:
OnionrCommunicate(debug, developmentMode)
except KeyboardInterrupt:
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sys.exit(1)
pass