201 lines
7.2 KiB
Python
Executable File
201 lines
7.2 KiB
Python
Executable File
'''
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Onionr - P2P Anonymous Storage Network
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Contains abstractions for interacting with users of Onionr
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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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import onionrblockapi, logger, onionrexceptions, json, sqlite3
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import nacl.exceptions
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def deleteExpiredKeys(coreInst):
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# Fetch the keys we generated for the peer, that are still around
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conn = sqlite3.connect(coreInst.forwardKeysFile, timeout=10)
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c = conn.cursor()
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curTime = coreInst._utils.getEpoch()
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c.execute("DELETE from myForwardKeys where expire <= ?", (curTime,))
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conn.commit()
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conn.execute("VACUUM")
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conn.close()
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return
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class OnionrUser:
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def __init__(self, coreInst, publicKey, saveUser=False):
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'''
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OnionrUser is an abstraction for "users" of the network.
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Takes an instance of onionr core, a base32 encoded ed25519 public key, and a bool saveUser
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saveUser determines if we should add a user to our peer database or not.
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'''
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self.trust = 0
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self._core = coreInst
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self.publicKey = publicKey
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if saveUser:
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self._core.addPeer(publicKey)
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self.trust = self._core.getPeerInfo(self.publicKey, 'trust')
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return
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def setTrust(self, newTrust):
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'''Set the peers trust. 0 = not trusted, 1 = friend, 2 = ultimate'''
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self._core.setPeerInfo(self.publicKey, 'trust', newTrust)
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def isFriend(self):
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if self._core.getPeerInfo(self.publicKey, 'trust') == 1:
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return True
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return False
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def getName(self):
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retData = 'anonymous'
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name = self._core.getPeerInfo(self.publicKey, 'name')
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try:
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if len(name) > 0:
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retData = name
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except ValueError:
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pass
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return retData
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def encrypt(self, data):
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encrypted = coreInst._crypto.pubKeyEncrypt(data, self.publicKey, encodedData=True)
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return encrypted
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def decrypt(self, data, anonymous=True):
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decrypted = coreInst._crypto.pubKeyDecrypt(data, self.publicKey, encodedData=True)
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return decrypted
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def forwardEncrypt(self, data):
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retData = ''
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forwardKey = self._getLatestForwardKey()
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if self._core._utils.validatePubKey(forwardKey):
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retData = self._core._crypto.pubKeyEncrypt(data, forwardKey, encodedData=True, anonymous=True)
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else:
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raise onionrexceptions.InvalidPubkey("No valid forward secrecy key available for this user")
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#self.generateForwardKey()
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return (retData, forwardKey)
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def forwardDecrypt(self, encrypted):
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retData = ""
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for key in self.getGeneratedForwardKeys(False):
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try:
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retData = self._core._crypto.pubKeyDecrypt(encrypted, privkey=key[1], anonymous=True, encodedData=True)
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except nacl.exceptions.CryptoError:
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retData = False
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else:
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break
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else:
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raise onionrexceptions.DecryptionError("Could not decrypt forward secrecy content")
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return retData
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def _getLatestForwardKey(self):
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# Get the latest forward secrecy key for a peer
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key = ""
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conn = sqlite3.connect(self._core.peerDB, timeout=10)
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c = conn.cursor()
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for row in c.execute("SELECT forwardKey FROM forwardKeys WHERE peerKey = ? ORDER BY date DESC", (self.publicKey,)):
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key = row[0]
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break
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conn.commit()
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conn.close()
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return key
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def _getForwardKeys(self):
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conn = sqlite3.connect(self._core.peerDB, timeout=10)
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c = conn.cursor()
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keyList = []
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for row in c.execute("SELECT forwardKey FROM forwardKeys WHERE peerKey = ? ORDER BY date DESC", (self.publicKey,)):
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key = row[0]
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keyList.append(key)
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conn.commit()
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conn.close()
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return list(keyList)
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def generateForwardKey(self, expire=604800):
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# Generate a forward secrecy key for the peer
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conn = sqlite3.connect(self._core.forwardKeysFile, timeout=10)
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c = conn.cursor()
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# Prepare the insert
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time = self._core._utils.getEpoch()
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newKeys = self._core._crypto.generatePubKey()
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newPub = self._core._utils.bytesToStr(newKeys[0])
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newPriv = self._core._utils.bytesToStr(newKeys[1])
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time = self._core._utils.getEpoch()
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command = (self.publicKey, newPub, newPriv, time, expire + time)
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c.execute("INSERT INTO myForwardKeys VALUES(?, ?, ?, ?, ?);", command)
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conn.commit()
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conn.close()
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return newPub
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def getGeneratedForwardKeys(self, genNew=True):
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# Fetch the keys we generated for the peer, that are still around
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conn = sqlite3.connect(self._core.forwardKeysFile, timeout=10)
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c = conn.cursor()
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pubkey = self.publicKey
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pubkey = self._core._utils.bytesToStr(pubkey)
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command = (pubkey,)
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keyList = [] # list of tuples containing pub, private for peer
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for result in c.execute("SELECT * FROM myForwardKeys WHERE peer = ?", command):
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keyList.append((result[1], result[2]))
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if len(keyList) == 0:
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if genNew:
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self.generateForwardKey()
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keyList = self.getGeneratedForwardKeys()
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return list(keyList)
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def addForwardKey(self, newKey, expire=604800):
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if not self._core._utils.validatePubKey(newKey):
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raise onionrexceptions.InvalidPubkey(newKey)
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if newKey in self._getForwardKeys():
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return False
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# Add a forward secrecy key for the peer
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conn = sqlite3.connect(self._core.peerDB, timeout=10)
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c = conn.cursor()
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# Prepare the insert
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time = self._core._utils.getEpoch()
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command = (self.publicKey, newKey, time, time + expire)
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c.execute("INSERT INTO forwardKeys VALUES(?, ?, ?, ?);", command)
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conn.commit()
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conn.close()
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return
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def findAndSetID(self):
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'''Find any info about the user from existing blocks and cache it to their DB entry'''
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infoBlocks = []
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for bHash in self._core.getBlocksByType('userInfo'):
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block = onionrblockapi.Block(bHash, core=self._core)
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if block.signer == self.publicKey:
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if block.verifySig():
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newName = block.getMetadata('name')
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if newName.isalnum():
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logger.info('%s is now using the name %s.' % (self.publicKey, self._core._utils.escapeAnsi(newName)))
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self._core.setPeerInfo(self.publicKey, 'name', newName)
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else:
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raise onionrexceptions.InvalidPubkey
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