Make PoW optional in disseminatePreEncryptedMsg
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parent
44a4a370a6
commit
7836538290
30
src/api.py
30
src/api.py
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@ -66,7 +66,7 @@ import socket
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import subprocess # nosec B404
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import subprocess # nosec B404
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import time
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import time
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from binascii import hexlify, unhexlify
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from binascii import hexlify, unhexlify
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from struct import pack
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from struct import pack, unpack
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import six
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import six
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from six.moves import configparser, http_client, xmlrpc_server
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from six.moves import configparser, http_client, xmlrpc_server
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@ -1292,28 +1292,24 @@ class BMRPCDispatcher(object):
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Handle a request to disseminate an encrypted message.
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Handle a request to disseminate an encrypted message.
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The device issuing this command to PyBitmessage supplies a msg object
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The device issuing this command to PyBitmessage supplies a msg object
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that has already been encrypted but which still needs the PoW
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that has already been encrypted but which may still need the PoW
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to be done. PyBitmessage accepts this msg object and sends it out
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to be done. PyBitmessage accepts this msg object and sends it out
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to the rest of the Bitmessage network as if it had generated
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to the rest of the Bitmessage network as if it had generated
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the message itself.
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the message itself.
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*encryptedPayload* is a hex encoded string
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*encryptedPayload* is a hex encoded string starting with the nonce,
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8 zero bytes in case of no PoW done.
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"""
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"""
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encryptedPayload = b'\x00' * 8 + self._decode(encryptedPayload, "hex")
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encryptedPayload = self._decode(encryptedPayload, "hex")
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# compatibility stub ^, since disseminatePreEncryptedMsg
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# still expects the encryptedPayload without a nonce
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nonce, = unpack('>Q', encryptedPayload[:8])
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objectType, toStreamNumber, expiresTime = \
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objectType, toStreamNumber, expiresTime = \
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protocol.decodeObjectParameters(encryptedPayload)
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protocol.decodeObjectParameters(encryptedPayload)
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if nonce == 0: # Let us do the POW and attach it to the front
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encryptedPayload = encryptedPayload[8:]
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encryptedPayload = encryptedPayload[8:]
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TTL = expiresTime - time.time() + 300 # a bit of extra padding
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TTL = expiresTime - time.time() + 300 # a bit of extra padding
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# Let us do the POW and attach it to the front
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# Let us do the POW and attach it to the front
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target = 2**64 / (
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nonceTrialsPerByte * (
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len(encryptedPayload) + 8 + payloadLengthExtraBytes + ((
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TTL * (
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len(encryptedPayload) + 8 + payloadLengthExtraBytes
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)) / (2 ** 16))
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))
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logger.debug("expiresTime: %s", expiresTime)
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logger.debug("expiresTime: %s", expiresTime)
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logger.debug("TTL: %s", TTL)
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logger.debug("TTL: %s", TTL)
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logger.debug("objectType: %s", objectType)
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logger.debug("objectType: %s", objectType)
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@ -1326,6 +1322,13 @@ class BMRPCDispatcher(object):
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/ networkDefaultPayloadLengthExtraBytes,
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/ networkDefaultPayloadLengthExtraBytes,
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)
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)
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powStartTime = time.time()
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powStartTime = time.time()
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target = 2**64 / (
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nonceTrialsPerByte * (
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len(encryptedPayload) + 8 + payloadLengthExtraBytes + ((
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TTL * (
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len(encryptedPayload) + 8 + payloadLengthExtraBytes
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)) / (2 ** 16))
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))
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initialHash = hashlib.sha512(encryptedPayload).digest()
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initialHash = hashlib.sha512(encryptedPayload).digest()
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trialValue, nonce = proofofwork.run(target, initialHash)
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trialValue, nonce = proofofwork.run(target, initialHash)
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logger.info(
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logger.info(
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@ -1335,6 +1338,7 @@ class BMRPCDispatcher(object):
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nonce / (time.time() - powStartTime)
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nonce / (time.time() - powStartTime)
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)
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)
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encryptedPayload = pack('>Q', nonce) + encryptedPayload
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encryptedPayload = pack('>Q', nonce) + encryptedPayload
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inventoryHash = calculateInventoryHash(encryptedPayload)
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inventoryHash = calculateInventoryHash(encryptedPayload)
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Inventory()[inventoryHash] = (
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Inventory()[inventoryHash] = (
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objectType, toStreamNumber, encryptedPayload,
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objectType, toStreamNumber, encryptedPayload,
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