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571 lines
17 KiB
571 lines
17 KiB
#!/usr/bin/env python
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#
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# Electrum - lightweight Bitcoin client
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# Copyright (C) 2011 thomasv@gitorious
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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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#
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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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#
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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 <http://www.gnu.org/licenses/>.
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import random, ast, re, errno, os
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import threading, traceback, sys, time, json, Queue
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import socks
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import socket
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import ssl
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from version import ELECTRUM_VERSION, PROTOCOL_VERSION
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from util import print_error, print_msg
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from simple_config import SimpleConfig
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DEFAULT_TIMEOUT = 5
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proxy_modes = ['socks4', 'socks5', 'http']
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def check_cert(host, cert):
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from OpenSSL import crypto as c
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_cert = c.load_certificate(c.FILETYPE_PEM, cert)
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m = "host: %s\n"%host
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m += "has_expired: %s\n"% _cert.has_expired()
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m += "pubkey: %s bits\n" % _cert.get_pubkey().bits()
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m += "serial number: %s\n"% _cert.get_serial_number()
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#m += "issuer: %s\n"% _cert.get_issuer()
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#m += "algo: %s\n"% _cert.get_signature_algorithm()
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m += "version: %s\n"% _cert.get_version()
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print_msg(m)
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def cert_has_expired(cert_path):
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try:
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import OpenSSL
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except:
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print_error("Warning: cannot import OpenSSL")
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return False
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from OpenSSL import crypto as c
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with open(cert_path) as f:
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cert = f.read()
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_cert = c.load_certificate(c.FILETYPE_PEM, cert)
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return _cert.has_expired()
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def check_certificates():
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config = SimpleConfig()
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mydir = os.path.join(config.path, "certs")
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certs = os.listdir(mydir)
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for c in certs:
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print c
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p = os.path.join(mydir,c)
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with open(p) as f:
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cert = f.read()
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check_cert(c, cert)
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def cert_verify_hostname(s):
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# hostname verification (disabled)
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from backports.ssl_match_hostname import match_hostname, CertificateError
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try:
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match_hostname(s.getpeercert(True), host)
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print_error("hostname matches", host)
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except CertificateError, ce:
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print_error("hostname did not match", host)
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class Interface(threading.Thread):
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def __init__(self, server, config = None):
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threading.Thread.__init__(self)
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self.daemon = True
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self.config = config if config is not None else SimpleConfig()
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self.connect_event = threading.Event()
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self.subscriptions = {}
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self.lock = threading.Lock()
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self.rtime = 0
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self.bytes_received = 0
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self.is_connected = False
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self.poll_interval = 1
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self.debug = False # dump network messages. can be changed at runtime using the console
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#json
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self.message_id = 0
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self.unanswered_requests = {}
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self.pending_transactions_for_notifications= []
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# parse server
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self.server = server
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try:
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host, port, protocol = self.server.split(':')
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port = int(port)
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except:
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self.server = None
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return
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if protocol not in 'ghst':
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raise BaseException('Unknown protocol: %s'%protocol)
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self.host = host
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self.port = port
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self.protocol = protocol
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self.use_ssl = ( protocol in 'sg' )
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self.proxy = self.parse_proxy_options(self.config.get('proxy'))
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if self.proxy:
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self.proxy_mode = proxy_modes.index(self.proxy["mode"]) + 1
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def queue_json_response(self, c):
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# uncomment to debug
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if self.debug:
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print_error( "<--",c )
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msg_id = c.get('id')
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error = c.get('error')
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if error:
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print_error("received error:", c)
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if msg_id is not None:
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with self.lock:
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method, params, callback = self.unanswered_requests.pop(msg_id)
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callback(self,{'method':method, 'params':params, 'error':error, 'id':msg_id})
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return
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if msg_id is not None:
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with self.lock:
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method, params, callback = self.unanswered_requests.pop(msg_id)
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result = c.get('result')
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else:
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# notification
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method = c.get('method')
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params = c.get('params')
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if method == 'blockchain.numblocks.subscribe':
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result = params[0]
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params = []
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elif method == 'blockchain.headers.subscribe':
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result = params[0]
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params = []
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elif method == 'blockchain.address.subscribe':
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addr = params[0]
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result = params[1]
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params = [addr]
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with self.lock:
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for k,v in self.subscriptions.items():
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if (method, params) in v:
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callback = k
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break
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else:
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print_error( "received unexpected notification", method, params)
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print_error( self.subscriptions )
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return
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callback(self, {'method':method, 'params':params, 'result':result, 'id':msg_id})
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def on_version(self, i, result):
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self.server_version = result
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def start_http(self):
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self.session_id = None
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self.is_connected = True
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self.connection_msg = ('https' if self.use_ssl else 'http') + '://%s:%d'%( self.host, self.port )
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try:
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self.poll()
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except:
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print_error("http init session failed")
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self.is_connected = False
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return
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if self.session_id:
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print_error('http session:',self.session_id)
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self.is_connected = True
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else:
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self.is_connected = False
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def run_http(self):
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self.is_connected = True
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while self.is_connected:
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try:
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if self.session_id:
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self.poll()
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time.sleep(self.poll_interval)
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except socket.gaierror:
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break
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except socket.error:
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break
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except:
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traceback.print_exc(file=sys.stdout)
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break
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self.is_connected = False
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def poll(self):
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self.send([], None)
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def send_http(self, messages, callback):
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import urllib2, json, time, cookielib
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print_error( "send_http", messages )
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if self.proxy:
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socks.setdefaultproxy(self.proxy_mode, self.proxy["host"], int(self.proxy["port"]) )
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socks.wrapmodule(urllib2)
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cj = cookielib.CookieJar()
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opener = urllib2.build_opener(urllib2.HTTPCookieProcessor(cj))
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urllib2.install_opener(opener)
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t1 = time.time()
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data = []
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for m in messages:
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method, params = m
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if type(params) != type([]): params = [params]
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data.append( { 'method':method, 'id':self.message_id, 'params':params } )
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self.unanswered_requests[self.message_id] = method, params, callback
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self.message_id += 1
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if data:
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data_json = json.dumps(data)
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else:
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# poll with GET
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data_json = None
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headers = {'content-type': 'application/json'}
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if self.session_id:
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headers['cookie'] = 'SESSION=%s'%self.session_id
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try:
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req = urllib2.Request(self.connection_msg, data_json, headers)
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response_stream = urllib2.urlopen(req, timeout=DEFAULT_TIMEOUT)
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except:
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return
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for index, cookie in enumerate(cj):
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if cookie.name=='SESSION':
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self.session_id = cookie.value
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response = response_stream.read()
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self.bytes_received += len(response)
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if response:
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response = json.loads( response )
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if type(response) is not type([]):
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self.queue_json_response(response)
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else:
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for item in response:
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self.queue_json_response(item)
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if response:
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self.poll_interval = 1
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else:
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if self.poll_interval < 15:
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self.poll_interval += 1
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#print self.poll_interval, response
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self.rtime = time.time() - t1
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self.is_connected = True
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def start_tcp(self):
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self.connection_msg = self.host + ':%d' % self.port
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if self.proxy is not None:
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socks.setdefaultproxy(self.proxy_mode, self.proxy["host"], int(self.proxy["port"]))
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socket.socket = socks.socksocket
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# prevent dns leaks, see http://stackoverflow.com/questions/13184205/dns-over-proxy
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def getaddrinfo(*args):
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return [(socket.AF_INET, socket.SOCK_STREAM, 6, '', (args[0], args[1]))]
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socket.getaddrinfo = getaddrinfo
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if self.use_ssl:
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cert_path = os.path.join( self.config.path, 'certs', self.host)
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if not os.path.exists(cert_path):
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is_new = True
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# get server certificate.
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# Do not use ssl.get_server_certificate because it does not work with proxy
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s = socket.socket( socket.AF_INET, socket.SOCK_STREAM )
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try:
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s.connect((self.host, self.port))
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except:
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# print_error("failed to connect", self.host, self.port)
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return
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try:
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s = ssl.wrap_socket(s, ssl_version=ssl.PROTOCOL_SSLv3, cert_reqs=ssl.CERT_NONE, ca_certs=None)
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except ssl.SSLError, e:
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print_error("SSL error:", self.host, e)
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return
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dercert = s.getpeercert(True)
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s.close()
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cert = ssl.DER_cert_to_PEM_cert(dercert)
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# workaround android bug
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cert = re.sub("([^\n])-----END CERTIFICATE-----","\\1\n-----END CERTIFICATE-----",cert)
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temporary_path = cert_path + '.temp'
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with open(temporary_path,"w") as f:
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f.write(cert)
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else:
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is_new = False
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s = socket.socket( socket.AF_INET, socket.SOCK_STREAM )
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s.settimeout(2)
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s.setsockopt(socket.SOL_SOCKET, socket.SO_KEEPALIVE, 1)
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try:
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s.connect(( self.host.encode('ascii'), int(self.port)))
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except:
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print_error("failed to connect", self.host, self.port)
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return
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if self.use_ssl:
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try:
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s = ssl.wrap_socket(s,
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ssl_version=ssl.PROTOCOL_SSLv3,
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cert_reqs=ssl.CERT_REQUIRED,
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ca_certs= (temporary_path if is_new else cert_path),
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do_handshake_on_connect=True)
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except ssl.SSLError, e:
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print_error("SSL error:", self.host, e)
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if e.errno != 1:
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return
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if is_new:
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os.rename(temporary_path, cert_path + '.rej')
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else:
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if cert_has_expired(cert_path):
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print_error("certificate has expired:", cert_path)
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os.unlink(cert_path)
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else:
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print_msg("wrong certificate", self.host)
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return
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except:
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print_error("wrap_socket failed", self.host)
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traceback.print_exc(file=sys.stdout)
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return
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if is_new:
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print_error("saving certificate for", self.host)
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os.rename(temporary_path, cert_path)
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s.settimeout(60)
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self.s = s
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self.is_connected = True
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print_error("connected to", self.host, self.port)
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def run_tcp(self):
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try:
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#if self.use_ssl: self.s.do_handshake()
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out = ''
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while self.is_connected:
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try:
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timeout = False
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msg = self.s.recv(1024)
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except socket.timeout:
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timeout = True
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except ssl.SSLError:
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timeout = True
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except socket.error, err:
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if err.errno in [11, 10035]:
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print_error("socket errno", err.errno)
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time.sleep(0.1)
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continue
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else:
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traceback.print_exc(file=sys.stdout)
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raise
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if timeout:
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# ping the server with server.version, as a real ping does not exist yet
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self.send([('server.version', [ELECTRUM_VERSION, PROTOCOL_VERSION])], self.on_version)
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continue
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out += msg
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self.bytes_received += len(msg)
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if msg == '':
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self.is_connected = False
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while True:
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s = out.find('\n')
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if s==-1: break
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c = out[0:s]
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out = out[s+1:]
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c = json.loads(c)
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self.queue_json_response(c)
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except:
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traceback.print_exc(file=sys.stdout)
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self.is_connected = False
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def send_tcp(self, messages, callback):
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"""return the ids of the requests that we sent"""
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out = ''
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ids = []
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for m in messages:
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method, params = m
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request = json.dumps( { 'id':self.message_id, 'method':method, 'params':params } )
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self.unanswered_requests[self.message_id] = method, params, callback
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ids.append(self.message_id)
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if self.debug:
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print "-->", request
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self.message_id += 1
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out += request + '\n'
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while out:
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try:
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sent = self.s.send( out )
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out = out[sent:]
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except socket.error,e:
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if e[0] in (errno.EWOULDBLOCK,errno.EAGAIN):
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print_error( "EAGAIN: retrying")
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time.sleep(0.1)
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continue
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else:
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traceback.print_exc(file=sys.stdout)
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# this happens when we get disconnected
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print_error( "Not connected, cannot send" )
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return None
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return ids
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def start_interface(self):
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if self.protocol in 'st':
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self.start_tcp()
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elif self.protocol in 'gh':
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self.start_http()
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self.connect_event.set()
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def stop_subscriptions(self):
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for callback in self.subscriptions.keys():
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callback(self, None)
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self.subscriptions = {}
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def send(self, messages, callback):
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sub = []
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for message in messages:
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m, v = message
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if m[-10:] == '.subscribe':
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sub.append(message)
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if sub:
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with self.lock:
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if self.subscriptions.get(callback) is None:
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self.subscriptions[callback] = []
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for message in sub:
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if message not in self.subscriptions[callback]:
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self.subscriptions[callback].append(message)
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if not self.is_connected:
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print_error("interface: trying to send while not connected")
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return
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if self.protocol in 'st':
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with self.lock:
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out = self.send_tcp(messages, callback)
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else:
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# do not use lock, http is synchronous
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out = self.send_http(messages, callback)
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return out
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def parse_proxy_options(self, s):
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if type(s) == type({}): return s # fixme: type should be fixed
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if type(s) != type(""): return None
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if s.lower() == 'none': return None
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proxy = { "mode":"socks5", "host":"localhost" }
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args = s.split(':')
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n = 0
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if proxy_modes.count(args[n]) == 1:
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proxy["mode"] = args[n]
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n += 1
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if len(args) > n:
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proxy["host"] = args[n]
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n += 1
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if len(args) > n:
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proxy["port"] = args[n]
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else:
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proxy["port"] = "8080" if proxy["mode"] == "http" else "1080"
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return proxy
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def stop(self):
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if self.is_connected and self.protocol in 'st' and self.s:
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self.s.shutdown(socket.SHUT_RDWR)
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self.s.close()
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def is_up_to_date(self):
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return self.unanswered_requests == {}
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def start(self, queue = None, wait = False):
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if not self.server:
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return
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self.queue = queue if queue else Queue.Queue()
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threading.Thread.start(self)
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if wait:
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self.connect_event.wait()
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def run(self):
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self.start_interface()
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if self.is_connected:
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self.send([('server.version', [ELECTRUM_VERSION, PROTOCOL_VERSION])], self.on_version)
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self.change_status()
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self.run_tcp() if self.protocol in 'st' else self.run_http()
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self.change_status()
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def change_status(self):
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#print "change status", self.server, self.is_connected
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self.queue.put(self)
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if __name__ == "__main__":
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check_certificates()
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