work on new peer profiling system
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docs/api.md
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docs/api.md
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BLOCK HEADERS (simple ID system to identify block type)
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-----------------------------------------------
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-crypt- (encrypted block)
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-bin- (binary file)
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-txt- (plaintext)
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HTTP API
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------------------------------------------------
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/client/ (Private info, not publicly accessible)
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- hello
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- hello world
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- shutdown
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- exit onionr
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- stats
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- show node stats
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/public/
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- firstConnect
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- initialize with peer
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- ping
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- pong
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- setHMAC
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- set a created symmetric key
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- getDBHash
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- get the hash of the current hash database state
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- getPGP
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- export node's PGP public key
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- getData
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- get a data block
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- getBlockHashes
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- get a list of the node's hashes
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-------------------------------------------------
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TODO
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@ -1,57 +0,0 @@
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# Onionr Protocol Spec v2
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A P2P platform for Tor & I2P
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# Overview
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Onionr is an encrypted microblogging & mailing system designed in the spirit of Twitter.
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There are no central servers and all traffic is peer to peer by default (routed via Tor or I2P).
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User IDs are simply Tor onion service/I2P host id + Ed25519 key fingerprint.
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Private blocks are only able to be read by the intended peer.
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All traffic is over Tor/I2P, connecting only to Tor onion and I2P hidden services.
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## Goals:
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• Selective sharing of information
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• Secure & semi-anonymous direct messaging
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• Forward secrecy
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• Defense in depth
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• Data should be secure for years to come
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• Decentralization
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* Avoid browser-based exploits that plague similar software
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* Avoid timing attacks & unexpected metadata leaks
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## Protocol
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Onionr nodes use HTTP (over Tor/I2P) to exchange keys, metadata, and blocks. Blocks are identified by their sha3_256 hash. Nodes sync a table of blocks hashes and attempt to download blocks they do not yet have from random peers.
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Blocks may be encrypted using Curve25519 or Salsa20.
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Blocks have IDs in the following format:
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-Optional hash of public key of publisher (base64)-optional signature (non-optional if publisher is specified) (Base64)-block type-block hash(sha3-256)
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pubkeyHash-signature-type-hash
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## Connections
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When a node first comes online, it attempts to bootstrap using a default list provided by a client.
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When two peers connect, they exchange Ed25519 keys (if applicable) then Salsa20 keys.
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Salsa20 keys are regenerated either every X many communications with a peer or every X minutes.
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Every 100kb or every 2 hours is a recommended default.
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All valid requests with HMAC should be recorded until used HMAC's expiry to prevent replay attacks.
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Peer Types
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* Friends:
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* Encrypted ‘friends only’ posts to one another
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* Usually less strict rate & storage limits
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* Strangers:
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* Used for storage of encrypted or public information
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* Can only read public posts
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* Usually stricter rate & storage limits
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## Spam mitigation
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To send or receive data, a node can optionally request that the other node generate a hash that when in hexadecimal representation contains a random string at a random location in the string. Clients will configure what difficulty to request, and what difficulty is acceptable for themselves to perform. Difficulty should correlate with recent network & disk usage and data size. Friends can be configured to have less strict (to non existent) limits, separately from strangers. (proof of work).
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Rate limits can be strict, as Onionr is not intended to be an instant messaging application.
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@ -20,7 +20,7 @@
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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 sys, os, core, config, json, onionrblockapi as block, requests, time, logger, threading, onionrplugins as plugins, base64, onionr
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import onionrexceptions
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import onionrexceptions, onionrpeers
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from defusedxml import minidom
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class OnionrCommunicatorDaemon:
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# lists of connected peers and peers we know we can't reach currently
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self.onlinePeers = []
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self.offlinePeers = []
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self.peerProfiles = [] # list of peer's profiles (onionrpeers.PeerProfile instances)
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# amount of threads running by name, used to prevent too many
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self.threadCounts = {}
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'''Adds a new random online peer to self.onlinePeers'''
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retData = False
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tried = self.offlinePeers
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peerScores = {}
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if peer != '':
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if self._core._utils.validateID(peer):
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peerList = [peer]
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# Avoid duplicating bootstrap addresses in peerList
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self.addBootstrapListToPeerList(peerList)
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for address in peerList:
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# Load peer's profiles into a list
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profile = onionrpeers.PeerProfiles(address, self._core)
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peerScores[address] = profile.score
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# Sort peers by their score, greatest to least
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peerList = sorted(peerScores, key=peerScores.get, reverse=True)
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for address in peerList:
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if len(address) == 0 or address in tried or address in self.onlinePeers:
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continue
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logger.info(i)
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def peerAction(self, peer, action, data=''):
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'''Perform a get request to a peer'''
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'''Perform a get request to a peer'''
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if len(peer) == 0:
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return False
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logger.info('Performing ' + action + ' with ' + peer + ' on port ' + str(self.proxyPort))
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self.decrementThreadCount('daemonCommands')
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def uploadBlock(self):
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'''Upload our block to a few peers'''
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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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if not self._core._utils.validateHash(self.blockToUpload):
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logger.warn('Requested to upload invalid block')
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@ -575,9 +575,10 @@ class Core:
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# TODO: validate key on whitelist
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if key not in ('address', 'type', 'knownPeer', 'speed', 'success', 'DBHash', 'failure', 'lastConnect'):
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raise Exception("Got invalid database key when setting address info")
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c.execute('UPDATE adders SET ' + key + ' = ? WHERE address=?', command)
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conn.commit()
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conn.close()
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else:
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c.execute('UPDATE adders SET ' + key + ' = ? WHERE address=?', command)
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conn.commit()
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conn.close()
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return
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def getBlockList(self, unsaved = False): # TODO: Use unsaved??
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'''
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Onionr - P2P Microblogging Platform & Social network.
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This file contains both the OnionrCommunicate class for communcating with peers
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This file contains both the PeerProfiles class for network profiling of Onionr nodes
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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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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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'''
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import core
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class PeerProfiles:
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'''
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PeerProfiles
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'''
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def __init__(self, address, coreInst):
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self.address = address # node address
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self.score = None
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self.friendSigCount = 0
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self.success = 0
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self.failure = 0
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if not isinstance(coreInst, core.Core):
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raise TypeError("coreInst must be a type of core.Core")
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self.coreInst = coreInst
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assert isinstance(self.coreInst, core.Core)
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self.loadScore()
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return
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def loadScore(self):
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'''Load the node's score from the database'''
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try:
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self.success = int(self.coreInst.getAddressInfo('success'))
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except TypeError:
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self.success = 0
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try:
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self.failure = int(self.coreInst.getAddressInfo('failure'))
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except TypeError:
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self.failure = 0
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self.score = self.success - self.failure
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def saveScore(self):
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'''Save the node's score to the database'''
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self.coreInst.setAddressInfo(self.address, 'success', self.success)
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self.coreInst.setAddressInfo(self.address, 'failure', self.failure)
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return
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def getScoreSortedPeerList(coreInst):
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if not type(coreInst is core.Core):
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raise TypeError('coreInst must be instance of core.Core')
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peerList = coreInst.listAdders()
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peerScores = {}
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for address in peerList:
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# Load peer's profiles into a list
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profile = PeerProfiles(address, coreInst)
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peerScores[address] = profile.score
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# Sort peers by their score, greatest to least
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peerList = sorted(peerScores, key=peerScores.get, reverse=True)
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return peerList
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"netTotal": 1000000000,
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"blockCache" : 5000000,
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"blockCacheTotal" : 50000000
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},
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"peers":{
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"minimumScore": 5
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}
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}
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