renamed communicator, bug fixes and added work on onionfragment.py
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@ -567,6 +567,7 @@ class OnionrCommunicatorDaemon:
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# when inserting a block, we try to upload it to a few peers to add some deniability
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triedPeers = []
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finishedUploads = []
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self.blocksToUpload = self._core._crypto.randomShuffle(self.blocksToUpload)
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if len(self.blocksToUpload) != 0:
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for bl in self.blocksToUpload:
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if not self._core._utils.validateHash(bl):
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@ -99,6 +99,7 @@ class Core:
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logger.warn('Warning: address bootstrap file not found ' + self.bootstrapFileLocation)
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self._utils = onionrutils.OnionrUtils(self)
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self.blockCache = onionrstorage.BlockCache()
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# Initialize the crypto object
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self._crypto = onionrcrypto.OnionrCrypto(self)
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self._blacklist = onionrblacklist.OnionrBlackList(self)
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@ -33,7 +33,7 @@ import onionrutils
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import netcontroller
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from netcontroller import NetController
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from onionrblockapi import Block
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import onionrproofs, onionrexceptions, onionrusers, communicator2
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import onionrproofs, onionrexceptions, onionrusers, communicator
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try:
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from urllib3.contrib.socks import SOCKSProxyManager
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@ -710,7 +710,6 @@ class Onionr:
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'''
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Starts the Onionr communication daemon
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'''
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communicatorDaemon = './communicator2.py'
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# remove runcheck if it exists
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if os.path.isfile('data/.runcheck'):
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@ -750,10 +749,8 @@ class Onionr:
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logger.debug('Using public key: %s' % (logger.colors.underline + self.onionrCore._crypto.pubKey))
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time.sleep(1)
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# TODO: make runable on windows
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#communicatorProc = subprocess.Popen([communicatorDaemon, 'run', str(net.socksPort)])
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self.onionrCore.torPort = net.socksPort
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communicatorThread = Thread(target=communicator2.startCommunicator, args=(self, str(net.socksPort)))
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communicatorThread = Thread(target=communicator.startCommunicator, args=(self, str(net.socksPort)))
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communicatorThread.start()
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while self.communicatorInst is None:
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@ -940,7 +937,8 @@ class Onionr:
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logger.error('Block hash is invalid')
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return
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Block.mergeChain(bHash, fileName)
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with open(fileName, 'wb') as myFile:
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myFile.write(base64.b64decode(Block(bHash, core=self.onionrCore).bcontent))
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return
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def addWebpage(self):
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@ -963,12 +961,9 @@ class Onionr:
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return
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logger.info('Adding file... this might take a long time.')
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try:
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if singleBlock:
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with open(filename, 'rb') as singleFile:
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blockhash = self.onionrCore.insertBlock(base64.b64encode(singleFile.read()), header=blockType)
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else:
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blockhash = Block.createChain(file = filename)
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logger.info('File %s saved in block %s.' % (filename, blockhash))
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logger.info('File %s saved in block %s' % (filename, blockhash))
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except:
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logger.error('Failed to save file in block.', timestamp = False)
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else:
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@ -1,7 +1,7 @@
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'''
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Onionr - P2P Anonymous Storage Network
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This class contains the OnionrBlocks class which is a class for working with Onionr blocks
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This file contains the OnionrBlocks class which is a class for working with Onionr blocks
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'''
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'''
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This program is free software: you can redistribute it and/or modify
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@ -56,18 +56,7 @@ class Block:
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if self.getCore() is None:
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self.core = onionrcore.Core()
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# update the blocks' contents if it exists
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if not self.getHash() is None:
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if not self.core._utils.validateHash(self.hash):
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logger.debug('Block hash %s is invalid.' % self.getHash())
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raise onionrexceptions.InvalidHexHash('Block hash is invalid.')
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elif not self.update():
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logger.debug('Failed to open block %s.' % self.getHash())
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else:
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pass
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#logger.debug('Did not update block.')
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# logic
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self.update()
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def decrypt(self, anonymous = True, encodedData = True):
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'''
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@ -140,13 +129,15 @@ class Block:
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Outputs:
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- (bool): indicates whether or not the operation was successful
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'''
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try:
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# import from string
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blockdata = data
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# import from file
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if blockdata is None:
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blockdata = onionrstorage.getData(self.core, self.getHash()).decode()
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'''
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filelocation = file
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readfile = True
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@ -169,6 +160,7 @@ class Block:
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#blockdata = f.read().decode()
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self.blockFile = filelocation
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'''
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else:
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self.blockFile = None
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# parse block
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@ -588,7 +580,7 @@ class Block:
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return list()
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def mergeChain(child, file = None, maximumFollows = 32, core = None):
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def mergeChain(child, file = None, maximumFollows = 1000, core = None):
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'''
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Follows a child Block to its root parent Block, merging content
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@ -635,7 +627,7 @@ class Block:
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blocks.append(block.getHash())
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buffer = ''
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buffer = b''
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# combine block contents
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for hash in blocks:
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@ -644,101 +636,17 @@ class Block:
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contents = base64.b64decode(contents.encode())
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if file is None:
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buffer += contents.decode()
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try:
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buffer += contents.encode()
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except AttributeError:
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buffer += contents
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else:
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file.write(contents)
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if file is not None:
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file.close()
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return (None if not file is None else buffer)
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def createChain(data = None, chunksize = 99800, file = None, type = 'chunk', sign = True, encrypt = False, verbose = False):
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'''
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Creates a chain of blocks to store larger amounts of data
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The chunksize is set to 99800 because it provides the least amount of PoW for the most amount of data.
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Inputs:
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- data (*): if `file` is None, the data to be stored in blocks
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- file (file/str): the filename or file object to read from (or None to read `data` instead)
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- chunksize (int): the number of bytes per block chunk
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- type (str): the type header for each of the blocks
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- sign (bool): whether or not to sign each block
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- encrypt (str): the public key to encrypt to, or False to disable encryption
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- verbose (bool): whether or not to return a tuple containing more info
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Outputs:
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- if `verbose`:
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- (tuple):
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- (str): the child block hash
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- (list): all block hashes associated with storing the file
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- if not `verbose`:
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- (str): the child block hash
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'''
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blocks = list()
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# initial datatype checks
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if data is None and file is None:
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return blocks
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elif not (file is None or (isinstance(file, str) and os.path.exists(file))):
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return blocks
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elif isinstance(file, str):
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file = open(file, 'rb')
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if not isinstance(data, str):
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data = str(data)
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if not file is None:
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filesize = os.stat(file.name).st_size
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offset = filesize % chunksize
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maxtimes = int(filesize / chunksize)
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for times in range(0, maxtimes + 1):
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# read chunksize bytes from the file (end -> beginning)
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if times < maxtimes:
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file.seek(- ((times + 1) * chunksize), 2)
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content = file.read(chunksize)
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else:
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file.seek(0, 0)
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content = file.read(offset)
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# encode it- python is really bad at handling certain bytes that
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# are often present in binaries.
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content = base64.b64encode(content).decode()
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# if it is the end of the file, exit
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if not content:
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break
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# create block
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block = Block()
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block.setType(type)
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block.setContent(content)
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block.setParent((blocks[-1] if len(blocks) != 0 else None))
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hash = block.save(sign = sign)
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# remember the hash in cache
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blocks.append(hash)
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elif not data is None:
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for content in reversed([data[n:n + chunksize] for n in range(0, len(data), chunksize)]):
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# encode chunk with base64
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content = base64.b64encode(content.encode()).decode()
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# create block
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block = Block()
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block.setType(type)
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block.setContent(content)
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block.setParent((blocks[-1] if len(blocks) != 0 else None))
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hash = block.save(sign = sign)
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# remember the hash in cache
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blocks.append(hash)
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# return different things depending on verbosity
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if verbose:
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return (blocks[-1], blocks)
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file.close()
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return blocks[-1]
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def exists(bHash):
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'''
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Checks if a block is saved to file or not
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@ -799,7 +707,7 @@ class Block:
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if block.getHash() in Block.getCache() and not override:
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return False
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# dump old cached blocks if the size exeeds the maximum
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# dump old cached blocks if the size exceeds the maximum
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if sys.getsizeof(Block.blockCacheOrder) >= config.get('allocations.block_cache_total', 50000000): # 50MB default cache size
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del Block.blockCache[blockCacheOrder.pop(0)]
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@ -34,7 +34,7 @@ class DaemonTools:
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'''Announce our node to our peers'''
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retData = False
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announceFail = False
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if config.get('general.security_level') == 0:
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if self.daemon._core.config('general.security_level') == 0:
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# Announce to random online peers
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for i in self.daemon.onlinePeers:
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if not i in self.announceCache:
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@ -53,6 +53,9 @@ class BlacklistedBlock(Exception):
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class DataExists(Exception):
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pass
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class NoDataAvailable(Exception):
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pass
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class InvalidHexHash(Exception):
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'''When a string is not a valid hex string of appropriate length for a hash value'''
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pass
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73
onionr/onionrfragment.py
Normal file
73
onionr/onionrfragment.py
Normal file
@ -0,0 +1,73 @@
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'''
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Onionr - P2P Anonymous Storage Network
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This file contains the OnionrFragment class which implements the fragment system
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'''
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'''
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <https://www.gnu.org/licenses/>.
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'''
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# onionr:10ch+10ch+10chgdecryptionkey
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import core, sys, binascii, os
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FRAGMENT_SIZE = 0.25
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TRUNCATE_LENGTH = 30
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class OnionrFragment:
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def __init__(self, uri=None):
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uri = uri.replace('onionr:', '')
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count = 0
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blocks = []
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appendData = ''
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key = ''
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for x in uri:
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if x == 'k':
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key = uri[uri.index('k') + 1:]
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appendData += x
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if count == TRUNCATE_LENGTH:
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blocks.append(appendData)
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appendData = ''
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count = 0
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count += 1
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self.key = key
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self.blocks = blocks
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return
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@staticmethod
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def generateFragments(data=None, coreInst=None):
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if coreInst is None:
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coreInst = core.Core()
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key = os.urandom(32)
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data = coreInst._crypto.symmetricEncrypt(data, key).decode()
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blocks = []
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blockData = b""
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uri = "onionr:"
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total = sys.getsizeof(data)
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for x in data:
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blockData += x.encode()
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if round(len(blockData) / len(data), 3) > FRAGMENT_SIZE:
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blocks.append(core.Core().insertBlock(blockData))
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blockData = b""
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for bl in blocks:
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uri += bl[:TRUNCATE_LENGTH]
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uri += "k"
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uri += binascii.hexlify(key).decode()
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return (uri, key)
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if __name__ == '__main__':
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uri = OnionrFragment.generateFragments("test")[0]
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print(uri)
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OnionrFragment(uri)
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@ -21,6 +21,13 @@ import core, sys, sqlite3, os, dbcreator
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DB_ENTRY_SIZE_LIMIT = 10000 # Will be a config option
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class BlockCache:
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def __init__(self):
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self.blocks = {}
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def cleanCache(self):
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while sys.getsizeof(self.blocks) > 100000000:
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self.blocks.pop(list(self.blocks.keys())[0])
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def dbCreate(coreInst):
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try:
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dbcreator.DBCreator(coreInst).createBlockDataDB()
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@ -62,6 +69,7 @@ def store(coreInst, data, blockHash=''):
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else:
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with open('%s/%s.dat' % (coreInst.blockDataLocation, blockHash), 'wb') as blockFile:
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blockFile.write(data)
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coreInst.blockCache.cleanCache()
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def getData(coreInst, bHash):
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assert isinstance(coreInst, core.Core)
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