[115] | 1 | """ |
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[1386] | 2 | Wrapper for Invirt VNC proxying |
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[115] | 3 | """ |
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| 4 | |
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| 5 | # twisted imports |
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| 6 | from twisted.internet import reactor, protocol, defer |
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| 7 | from twisted.python import log |
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| 8 | |
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| 9 | # python imports |
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[125] | 10 | import sys |
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[115] | 11 | import struct |
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| 12 | import string |
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| 13 | import cPickle |
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| 14 | # Python 2.5: |
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| 15 | #import hashlib |
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| 16 | import sha |
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| 17 | import hmac |
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| 18 | import base64 |
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| 19 | import socket |
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| 20 | import time |
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| 21 | import get_port |
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| 22 | |
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| 23 | TOKEN_KEY = "0M6W0U1IXexThi5idy8mnkqPKEq1LtEnlK/pZSn0cDrN" |
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| 24 | |
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[125] | 25 | def getPort(name, auth_data): |
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| 26 | if (auth_data["machine"] == name): |
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| 27 | port = get_port.findPort(name) |
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| 28 | if port is None: |
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| 29 | return 0 |
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| 30 | return int(port.split(':')[1]) |
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| 31 | else: |
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| 32 | return None |
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| 33 | |
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[115] | 34 | class VNCAuthOutgoing(protocol.Protocol): |
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| 35 | |
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| 36 | def __init__(self,socks): |
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| 37 | self.socks=socks |
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| 38 | |
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| 39 | def connectionMade(self): |
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| 40 | peer = self.transport.getPeer() |
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| 41 | self.socks.makeReply(200) |
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| 42 | self.socks.otherConn=self |
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| 43 | |
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| 44 | def connectionLost(self, reason): |
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| 45 | self.socks.transport.loseConnection() |
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| 46 | |
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| 47 | def dataReceived(self,data): |
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| 48 | self.socks.write(data) |
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| 49 | |
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| 50 | def write(self,data): |
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| 51 | self.transport.write(data) |
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| 52 | |
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| 53 | |
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| 54 | class VNCAuth(protocol.Protocol): |
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| 55 | |
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[289] | 56 | def __init__(self,server="localhost"): |
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[115] | 57 | self.server=server |
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| 58 | self.auth=None |
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| 59 | |
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| 60 | def connectionMade(self): |
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| 61 | self.buf="" |
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| 62 | self.otherConn=None |
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| 63 | |
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| 64 | def validateToken(self, token): |
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| 65 | global TOKEN_KEY |
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[288] | 66 | self.auth_error = "Invalid token" |
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[125] | 67 | try: |
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| 68 | token = base64.urlsafe_b64decode(token) |
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| 69 | token = cPickle.loads(token) |
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| 70 | m = hmac.new(TOKEN_KEY, digestmod=sha) |
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| 71 | m.update(token['data']) |
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| 72 | if (m.digest() == token['digest']): |
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| 73 | data = cPickle.loads(token['data']) |
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| 74 | expires = data["expires"] |
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| 75 | if (time.time() < expires): |
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| 76 | self.auth = data["user"] |
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| 77 | self.auth_error = None |
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| 78 | self.auth_machine = data["machine"] |
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| 79 | self.auth_data = data |
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| 80 | else: |
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| 81 | self.auth_error = "Token has expired; please try logging in again" |
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[288] | 82 | except (TypeError, cPickle.UnpicklingError): |
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| 83 | self.auth = None |
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[125] | 84 | print sys.exc_info() |
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[115] | 85 | |
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| 86 | def dataReceived(self,data): |
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| 87 | if self.otherConn: |
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| 88 | self.otherConn.write(data) |
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| 89 | return |
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| 90 | self.buf=self.buf+data |
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| 91 | if ('\r\n\r\n' in self.buf) or ('\n\n' in self.buf) or ('\r\r' in self.buf): |
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| 92 | lines = self.buf.splitlines() |
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| 93 | args = lines.pop(0).split() |
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| 94 | command = args.pop(0) |
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| 95 | headers = {} |
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| 96 | for line in lines: |
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| 97 | try: |
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| 98 | (header, data) = line.split(": ", 1) |
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| 99 | headers[header] = data |
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[288] | 100 | except ValueError: |
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[115] | 101 | pass |
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| 102 | |
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| 103 | if command == "AUTHTOKEN": |
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| 104 | user = args[0] |
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| 105 | token = headers["Auth-token"] |
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| 106 | if token == "1": #FIXME |
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| 107 | self.auth = user |
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| 108 | self.makeReply(200, "Authentication successful") |
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| 109 | else: |
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| 110 | self.makeReply(401) |
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| 111 | elif command == "CONNECTVNC": |
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| 112 | vmname = args[0] |
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| 113 | if ("Auth-token" in headers): |
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| 114 | token = headers["Auth-token"] |
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[288] | 115 | self.validateToken(token) |
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| 116 | if self.auth is not None: |
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| 117 | port = getPort(vmname, self.auth_data) |
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| 118 | if port is not None: # FIXME |
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| 119 | if port != 0: |
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| 120 | d = self.connectClass(self.server, port, VNCAuthOutgoing, self) |
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| 121 | d.addErrback(lambda result, self=self: self.makeReply(404, result.getErrorMessage())) |
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[115] | 122 | else: |
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[288] | 123 | self.makeReply(404, "Unable to find VNC for VM "+vmname) |
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[115] | 124 | else: |
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[288] | 125 | self.makeReply(401, "Unauthorized to connect to VM "+vmname) |
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| 126 | else: |
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| 127 | if self.auth_error: |
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| 128 | self.makeReply(401, self.auth_error) |
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| 129 | else: |
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| 130 | self.makeReply(401, "Invalid token") |
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[115] | 131 | else: |
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| 132 | self.makeReply(401, "Login first") |
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| 133 | else: |
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| 134 | self.makeReply(501, "unknown method "+command) |
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| 135 | self.buf='' |
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| 136 | if False and '\000' in self.buf[8:]: |
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| 137 | head,self.buf=self.buf[:8],self.buf[8:] |
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| 138 | try: |
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| 139 | version,code,port=struct.unpack("!BBH",head[:4]) |
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| 140 | except struct.error: |
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| 141 | raise RuntimeError, "struct error with head='%s' and buf='%s'"%(repr(head),repr(self.buf)) |
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| 142 | user,self.buf=string.split(self.buf,"\000",1) |
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| 143 | if head[4:7]=="\000\000\000": # domain is after |
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| 144 | server,self.buf=string.split(self.buf,'\000',1) |
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| 145 | #server=gethostbyname(server) |
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| 146 | else: |
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| 147 | server=socket.inet_ntoa(head[4:8]) |
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| 148 | assert version==4, "Bad version code: %s"%version |
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| 149 | if not self.authorize(code,server,port,user): |
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| 150 | self.makeReply(91) |
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| 151 | return |
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| 152 | if code==1: # CONNECT |
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| 153 | d = self.connectClass(server, port, SOCKSv4Outgoing, self) |
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| 154 | d.addErrback(lambda result, self=self: self.makeReply(91)) |
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| 155 | else: |
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| 156 | raise RuntimeError, "Bad Connect Code: %s" % code |
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| 157 | assert self.buf=="","hmm, still stuff in buffer... %s" % repr(self.buf) |
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| 158 | |
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| 159 | def connectionLost(self, reason): |
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| 160 | if self.otherConn: |
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| 161 | self.otherConn.transport.loseConnection() |
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| 162 | |
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| 163 | def authorize(self,code,server,port,user): |
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| 164 | log.msg("code %s connection to %s:%s (user %s) authorized" % (code,server,port,user)) |
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| 165 | return 1 |
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| 166 | |
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| 167 | def connectClass(self, host, port, klass, *args): |
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| 168 | return protocol.ClientCreator(reactor, klass, *args).connectTCP(host,port) |
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| 169 | |
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| 170 | def makeReply(self,reply,message=""): |
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| 171 | self.transport.write("VNCProxy/1.0 %d %s\r\n\r\n" % (reply, message)) |
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| 172 | if int(reply / 100)!=2: self.transport.loseConnection() |
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| 173 | |
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| 174 | def write(self,data): |
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| 175 | self.transport.write(data) |
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| 176 | |
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| 177 | def log(self,proto,data): |
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| 178 | peer = self.transport.getPeer() |
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| 179 | their_peer = self.otherConn.transport.getPeer() |
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[289] | 180 | print "%s\t%s:%d %s %s:%d\n"%(time.ctime(), |
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[115] | 181 | peer.host,peer.port, |
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| 182 | ((proto==self and '<') or '>'), |
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[289] | 183 | their_peer.host,their_peer.port), |
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[115] | 184 | while data: |
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| 185 | p,data=data[:16],data[16:] |
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[289] | 186 | print string.join(map(lambda x:'%02X'%ord(x),p),' ')+' ', |
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| 187 | print ((16-len(p))*3*' '), |
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[115] | 188 | for c in p: |
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[289] | 189 | if len(repr(c))>3: print '.', |
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| 190 | else: print c, |
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| 191 | print "" |
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| 192 | print "" |
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[115] | 193 | |
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| 194 | |
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| 195 | class VNCAuthFactory(protocol.Factory): |
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| 196 | """A factory for a VNC auth proxy. |
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| 197 | |
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| 198 | Constructor accepts one argument, a log file name. |
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| 199 | """ |
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| 200 | |
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[289] | 201 | def __init__(self, server): |
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[115] | 202 | self.server = server |
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| 203 | |
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| 204 | def buildProtocol(self, addr): |
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[289] | 205 | return VNCAuth(self.server) |
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[115] | 206 | |
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