objectProcessorThread #582
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@ -149,7 +149,7 @@ class objectProcessor(threading.Thread):
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print 'Ignoring getpubkey request because it is for one of my chan addresses. The other party should already have the pubkey.'
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print 'Ignoring getpubkey request because it is for one of my chan addresses. The other party should already have the pubkey.'
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return
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return
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try:
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try:
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lastPubkeySendTime = int(config.get(
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lastPubkeySendTime = int(shared.config.get(
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myAddress, 'lastpubkeysendtime'))
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myAddress, 'lastpubkeysendtime'))
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except:
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except:
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lastPubkeySendTime = 0
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lastPubkeySendTime = 0
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@ -298,6 +298,15 @@ class objectProcessor(threading.Thread):
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self.possibleNewPubkey(ripe = ripe)
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self.possibleNewPubkey(ripe = ripe)
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if addressVersion == 4:
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if addressVersion == 4:
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"""
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There exist a function: shared.decryptAndCheckPubkeyPayload which does something almost
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the same as this section of code. There are differences, however; one being that
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decryptAndCheckPubkeyPayload requires that a cryptor object be created each time it is
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run which is an expensive operation. This, on the other hand, keeps them saved in
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the shared.neededPubkeys dictionary so that if an attacker sends us many
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incorrectly-tagged pubkeys, which would force us to try to decrypt them, this code
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would run and handle that event quite quickly.
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"""
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if len(data) < 350: # sanity check.
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if len(data) < 350: # sanity check.
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print '(within processpubkey) payloadLength less than 350. Sanity check failed.'
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print '(within processpubkey) payloadLength less than 350. Sanity check failed.'
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return
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return
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@ -321,7 +330,6 @@ class objectProcessor(threading.Thread):
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print 'Pubkey decryption was unsuccessful.'
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print 'Pubkey decryption was unsuccessful.'
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return
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return
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readPosition = 0
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readPosition = 0
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bitfieldBehaviors = decryptedData[readPosition:readPosition + 4]
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bitfieldBehaviors = decryptedData[readPosition:readPosition + 4]
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readPosition += 4
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readPosition += 4
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@ -260,7 +260,6 @@ class singleWorker(threading.Thread):
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payload = pack('>Q', (embeddedTime))
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payload = pack('>Q', (embeddedTime))
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payload += encodeVarint(addressVersionNumber) # Address version number
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payload += encodeVarint(addressVersionNumber) # Address version number
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payload += encodeVarint(streamNumber)
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payload += encodeVarint(streamNumber)
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dataToStoreInOurPubkeysTable = payload # used if this is a chan. We'll add more data further down.
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dataToEncrypt = '\x00\x00\x00\x01' # bitfield of features supported by me (see the wiki).
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dataToEncrypt = '\x00\x00\x00\x01' # bitfield of features supported by me (see the wiki).
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@ -291,8 +290,6 @@ class singleWorker(threading.Thread):
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dataToEncrypt += encodeVarint(shared.config.getint(
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dataToEncrypt += encodeVarint(shared.config.getint(
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myAddress, 'payloadlengthextrabytes'))
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myAddress, 'payloadlengthextrabytes'))
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dataToStoreInOurPubkeysTable += dataToEncrypt # dataToStoreInOurPubkeysTable is used if this is a chan
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signature = highlevelcrypto.sign(payload + dataToEncrypt, privSigningKeyHex)
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signature = highlevelcrypto.sign(payload + dataToEncrypt, privSigningKeyHex)
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dataToEncrypt += encodeVarint(len(signature))
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dataToEncrypt += encodeVarint(len(signature))
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dataToEncrypt += signature
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dataToEncrypt += signature
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@ -337,10 +334,8 @@ class singleWorker(threading.Thread):
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myAddress, 'lastpubkeysendtime', str(int(time.time())))
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myAddress, 'lastpubkeysendtime', str(int(time.time())))
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with open(shared.appdata + 'keys.dat', 'wb') as configfile:
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with open(shared.appdata + 'keys.dat', 'wb') as configfile:
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shared.config.write(configfile)
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shared.config.write(configfile)
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except:
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except Exception as err:
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# The user deleted the address out of the keys.dat file before this
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logger.error('Error: Couldn\'t add the lastpubkeysendtime to the keys.dat file. Error message: %s' % err)
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# finished.
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pass
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def sendBroadcast(self):
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def sendBroadcast(self):
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queryreturn = sqlQuery(
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queryreturn = sqlQuery(
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@ -686,7 +681,7 @@ class singleWorker(threading.Thread):
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ackdata, tr.translateText("MainWindow", "Doing work necessary to send message."))))
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ackdata, tr.translateText("MainWindow", "Doing work necessary to send message."))))
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embeddedTime = pack('>Q', (int(time.time()) + random.randrange(
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embeddedTime = pack('>Q', (int(time.time()) + random.randrange(
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-300, 300))) # the current time plus or minus five minutes. We will use this time both for our message and for the ackdata packed within our message.
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-300, 300))) # the current time plus or minus five minutes.
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if fromAddressVersionNumber == 2:
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if fromAddressVersionNumber == 2:
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payload = '\x01' # Message version.
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payload = '\x01' # Message version.
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payload += encodeVarint(fromAddressVersionNumber)
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payload += encodeVarint(fromAddressVersionNumber)
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@ -726,7 +721,7 @@ class singleWorker(threading.Thread):
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payload += encodeVarint(len(messageToTransmit))
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payload += encodeVarint(len(messageToTransmit))
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payload += messageToTransmit
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payload += messageToTransmit
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fullAckPayload = self.generateFullAckMessage(
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fullAckPayload = self.generateFullAckMessage(
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ackdata, toStreamNumber, embeddedTime) # The fullAckPayload is a normal msg protocol message with the proof of work already completed that the receiver of this message can easily send out.
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ackdata, toStreamNumber) # The fullAckPayload is a normal msg protocol message with the proof of work already completed that the receiver of this message can easily send out.
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payload += encodeVarint(len(fullAckPayload))
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payload += encodeVarint(len(fullAckPayload))
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payload += fullAckPayload
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payload += fullAckPayload
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signature = highlevelcrypto.sign(payload, privSigningKeyHex)
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signature = highlevelcrypto.sign(payload, privSigningKeyHex)
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@ -795,7 +790,7 @@ class singleWorker(threading.Thread):
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fullAckPayload = ''
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fullAckPayload = ''
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else:
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else:
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fullAckPayload = self.generateFullAckMessage(
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fullAckPayload = self.generateFullAckMessage(
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ackdata, toStreamNumber, embeddedTime) # The fullAckPayload is a normal msg protocol message with the proof of work already completed that the receiver of this message can easily send out.
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ackdata, toStreamNumber) # The fullAckPayload is a normal msg protocol message with the proof of work already completed that the receiver of this message can easily send out.
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payload += encodeVarint(len(fullAckPayload))
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payload += encodeVarint(len(fullAckPayload))
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payload += fullAckPayload
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payload += fullAckPayload
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signature = highlevelcrypto.sign(payload, privSigningKeyHex)
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signature = highlevelcrypto.sign(payload, privSigningKeyHex)
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@ -934,7 +929,9 @@ class singleWorker(threading.Thread):
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shared.UISignalQueue.put(('updateSentItemStatusByHash', (ripe, tr.translateText("MainWindow",'Sending public key request. Waiting for reply. Requested at %1').arg(unicode(
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shared.UISignalQueue.put(('updateSentItemStatusByHash', (ripe, tr.translateText("MainWindow",'Sending public key request. Waiting for reply. Requested at %1').arg(unicode(
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strftime(shared.config.get('bitmessagesettings', 'timeformat'), localtime(int(time.time()))), 'utf-8')))))
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strftime(shared.config.get('bitmessagesettings', 'timeformat'), localtime(int(time.time()))), 'utf-8')))))
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def generateFullAckMessage(self, ackdata, toStreamNumber, embeddedTime):
|
def generateFullAckMessage(self, ackdata, toStreamNumber):
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embeddedTime = pack('>Q', (int(time.time()) + random.randrange(
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|
-300, 300))) # the current time plus or minus five minutes.
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payload = embeddedTime + encodeVarint(toStreamNumber) + ackdata
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payload = embeddedTime + encodeVarint(toStreamNumber) + ackdata
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target = 2 ** 64 / ((len(payload) + shared.networkDefaultPayloadLengthExtraBytes +
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target = 2 ** 64 / ((len(payload) + shared.networkDefaultPayloadLengthExtraBytes +
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8) * shared.networkDefaultProofOfWorkNonceTrialsPerByte)
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8) * shared.networkDefaultProofOfWorkNonceTrialsPerByte)
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|
|
|
@ -437,7 +437,7 @@ def decryptAndCheckPubkeyPayload(payload, address):
|
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print 'Pubkey decryption was UNsuccessful due to stream number mismatch. This shouldn\'t have happened.'
|
print 'Pubkey decryption was UNsuccessful due to stream number mismatch. This shouldn\'t have happened.'
|
||||||
return 'failed'
|
return 'failed'
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readPosition += varintLength
|
readPosition += varintLength
|
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signedData = payload[:readPosition] # Some of the signed data is not encrypted so let's keep it for now.
|
signedData = payload[8:readPosition] # Some of the signed data is not encrypted so let's keep it for now.
|
||||||
toTag = payload[readPosition:readPosition+32]
|
toTag = payload[readPosition:readPosition+32]
|
||||||
readPosition += 32 #for the tag
|
readPosition += 32 #for the tag
|
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encryptedData = payload[readPosition:]
|
encryptedData = payload[readPosition:]
|
||||||
|
|
Reference in New Issue
Block a user