fixed p2p for new shares
[p2pool.git] / p2pool / p2p.py
1 from __future__ import division
2
3 import random
4 import time
5
6 from twisted.internet import defer, protocol, reactor
7 from twisted.python import log
8
9 import p2pool
10 from p2pool import data as p2pool_data
11 from p2pool.bitcoin import p2p as bitcoin_p2p
12 from p2pool.bitcoin import data as bitcoin_data
13 from p2pool.util import deferral, variable, dicts
14
15 # mode
16 #     0: send hash first (high latency, low bandwidth)
17 #     1: send entire share (low latency, high bandwidth)
18
19 class Protocol(bitcoin_p2p.BaseProtocol):
20     version = 1
21     sub_version = p2pool.__version__
22     
23     def __init__(self, node):
24         self.node = node
25         
26         self._prefix = self.node.net.PREFIX
27     
28     max_payload_length = 1000000
29     use_checksum = True
30     
31     other_version = None
32     node_var_watch = None
33     connected2 = False
34     
35     @property
36     def mode(self):
37         return min(self.node.mode_var.value, self.other_mode_var.value)
38     
39     def connectionMade(self):
40         bitcoin_p2p.BaseProtocol.connectionMade(self)
41         
42         self.addr = self.transport.getPeer().host, self.transport.getPeer().port
43         
44         self.send_version(
45             version=self.version,
46             services=0,
47             addr_to=dict(
48                 services=0,
49                 address=self.transport.getPeer().host,
50                 port=self.transport.getPeer().port,
51             ),
52             addr_from=dict(
53                 services=0,
54                 address=self.transport.getHost().host,
55                 port=self.transport.getHost().port,
56             ),
57             nonce=self.node.nonce,
58             sub_version=self.sub_version,
59             mode=self.node.mode_var.value,
60             best_share_hash=self.node.current_work.value['best_share_hash'],
61         )
62         
63         self.node_var_watch = self.node.mode_var.changed.watch(lambda new_mode: self.send_setmode(mode=new_mode))
64         
65         reactor.callLater(10, self._connect_timeout)
66         self.timeout_delayed = reactor.callLater(100, self._timeout)
67     
68     def _connect_timeout(self):
69         if not self.connected2 and self.transport.connected:
70             print 'Handshake timed out, disconnecting from %s:%i' % self.addr
71             self.transport.loseConnection()
72     
73     def gotPacket(self):
74         if not self.timeout_delayed.called:
75             self.timeout_delayed.cancel()
76             self.timeout_delayed = reactor.callLater(100, self._timeout)
77     
78     def _timeout(self):
79         if self.transport.connected:
80             print 'Connection timed out, disconnecting from %s:%i' % self.addr
81             self.transport.loseConnection()
82     
83     @defer.inlineCallbacks
84     def _think(self):
85         while self.connected2:
86             self.send_ping()
87             yield deferral.sleep(random.expovariate(1/100))
88     
89     @defer.inlineCallbacks
90     def _think2(self):
91         while self.connected2:
92             self.send_addrme(port=self.node.port)
93             #print 'sending addrme'
94             yield deferral.sleep(random.expovariate(1/(100*len(self.node.peers) + 1)))
95     
96     message_version = bitcoin_data.ComposedType([
97         ('version', bitcoin_data.StructType('<I')),
98         ('services', bitcoin_data.StructType('<Q')),
99         ('addr_to', bitcoin_data.address_type),
100         ('addr_from', bitcoin_data.address_type),
101         ('nonce', bitcoin_data.StructType('<Q')),
102         ('sub_version', bitcoin_data.VarStrType()),
103         ('mode', bitcoin_data.StructType('<I')),
104         ('best_share_hash', bitcoin_data.PossiblyNoneType(0, bitcoin_data.HashType())),
105     ])
106     def handle_version(self, version, services, addr_to, addr_from, nonce, sub_version, mode, best_share_hash):
107         self.other_version = version
108         self.other_sub_version = sub_version[:512]
109         self.other_services = services
110         self.other_mode_var = variable.Variable(mode)
111         
112         if nonce == self.node.nonce:
113             #print 'Detected connection to self, disconnecting from %s:%i' % self.addr
114             self.transport.loseConnection()
115             return
116         if nonce in self.node.peers:
117             #print 'Detected duplicate connection, disconnecting from %s:%i' % self.addr
118             self.transport.loseConnection()
119             return
120         
121         self.nonce = nonce
122         self.connected2 = True
123         self.node.got_conn(self)
124         
125         self._think()
126         self._think2()
127         
128         if best_share_hash is not None:
129             self.handle_share0s(hashes=[best_share_hash])
130     
131     
132     message_setmode = bitcoin_data.ComposedType([
133         ('mode', bitcoin_data.StructType('<I')),
134     ])
135     def handle_setmode(self, mode):
136         self.other_mode_var.set(mode)
137     
138     message_ping = bitcoin_data.ComposedType([])
139     def handle_ping(self):
140         pass
141     
142     message_addrme = bitcoin_data.ComposedType([
143         ('port', bitcoin_data.StructType('<H')),
144     ])
145     def handle_addrme(self, port):
146         host = self.transport.getPeer().host
147         #print 'addrme from', host, port
148         if host == '127.0.0.1':
149             if random.random() < .8 and self.node.peers:
150                 random.choice(self.node.peers.values()).send_addrme(port=port) # services...
151         else:
152             self.node.got_addr((self.transport.getPeer().host, port), self.other_services, int(time.time()))
153             if random.random() < .8 and self.node.peers:
154                 random.choice(self.node.peers.values()).send_addrs(addrs=[
155                     dict(
156                         address=dict(
157                             services=self.other_services,
158                             address=host,
159                             port=port,
160                         ),
161                         timestamp=int(time.time()),
162                     ),
163                 ])
164     
165     message_addrs = bitcoin_data.ComposedType([
166         ('addrs', bitcoin_data.ListType(bitcoin_data.ComposedType([
167             ('timestamp', bitcoin_data.StructType('<Q')),
168             ('address', bitcoin_data.address_type),
169         ]))),
170     ])
171     def handle_addrs(self, addrs):
172         for addr_record in addrs:
173             self.node.got_addr((addr_record['address']['address'], addr_record['address']['port']), addr_record['address']['services'], min(int(time.time()), addr_record['timestamp']))
174             if random.random() < .8 and self.node.peers:
175                 random.choice(self.node.peers.values()).send_addrs(addrs=[addr_record])
176     
177     message_getaddrs = bitcoin_data.ComposedType([
178         ('count', bitcoin_data.StructType('<I')),
179     ])
180     def handle_getaddrs(self, count):
181         if count > 100:
182             count = 100
183         self.send_addrs(addrs=[
184             dict(
185                 timestamp=self.node.addr_store[host, port][2],
186                 address=dict(
187                     services=self.node.addr_store[host, port][0],
188                     address=host,
189                     port=port,
190                 ),
191             ) for host, port in
192             random.sample(self.node.addr_store.keys(), min(count, len(self.node.addr_store)))
193         ])
194     
195     message_getshares = bitcoin_data.ComposedType([
196         ('hashes', bitcoin_data.ListType(bitcoin_data.HashType())),
197         ('parents', bitcoin_data.VarIntType()),
198         ('stops', bitcoin_data.ListType(bitcoin_data.HashType())),
199     ])
200     def handle_getshares(self, hashes, parents, stops):
201         self.node.handle_get_shares(hashes, parents, stops, self)
202     
203     message_share0s = bitcoin_data.ComposedType([
204         ('hashes', bitcoin_data.ListType(bitcoin_data.HashType())),
205     ])
206     def handle_share0s(self, hashes):
207         self.node.handle_share_hashes(hashes, self)
208     
209     message_shares = bitcoin_data.ComposedType([
210         ('shares', bitcoin_data.ListType(p2pool_data.new_share_type)),
211     ])
212     def handle_shares(self, shares):
213         res = []
214         for share in shares:
215             share_obj = p2pool_data.NewShare.from_share(share, self.node.net)
216             share_obj.peer = self
217             res.append(share_obj)
218         self.node.handle_shares(res)
219     
220     message_share1as = bitcoin_data.ComposedType([
221         ('share1as', bitcoin_data.ListType(p2pool_data.share1a_type)),
222     ])
223     def handle_share1as(self, share1as):
224         shares = []
225         for share1a in share1as:
226             if self.node.net.BITCOIN_POW_FUNC(share1a['header']) <= share1a['header']['target']:
227                 print 'Dropping peer %s:%i due to invalid share' % self.addr
228                 self.transport.loseConnection()
229                 return
230             share = p2pool_data.Share.from_share1a(share1a, self.node.net)
231             share.peer = self # XXX
232             shares.append(share)
233         self.node.handle_shares(shares, self)
234     
235     message_share1bs = bitcoin_data.ComposedType([
236         ('share1bs', bitcoin_data.ListType(p2pool_data.share1b_type)),
237     ])
238     def handle_share1bs(self, share1bs):
239         shares = []
240         for share1b in share1bs:
241             if not self.node.net.BITCOIN_POW_FUNC(share1b['header']) <= share1b['header']['target']:
242                 print 'Dropping peer %s:%i due to invalid share' % self.addr
243                 self.transport.loseConnection()
244                 return
245             share = p2pool_data.Share.from_share1b(share1b, self.node.net)
246             share.peer = self # XXX
247             shares.append(share)
248         self.node.handle_shares(shares, self)
249     
250     def sendShares(self, shares, full=False):
251         share0s = []
252         share1as = []
253         share1bs = []
254         new_shares = []
255         # XXX doesn't need to send full block when it's not urgent
256         # eg. when getting history
257         for share in shares:
258             if isinstance(share, p2pool_data.NewShare):
259                 new_shares.append(share.as_share())
260             else:
261                 if share.pow_hash <= share.header['target']:
262                     share1bs.append(share.as_share1b())
263                 else:
264                     if self.mode == 0 and not full:
265                         share0s.append(share.hash)
266                     elif self.mode == 1 or full:
267                         share1as.append(share.as_share1a())
268                     else:
269                         raise ValueError(self.mode)
270         def att(f, **kwargs):
271             try:
272                 f(**kwargs)
273             except bitcoin_p2p.TooLong:
274                 att(f, **dict((k, v[:len(v)//2]) for k, v in kwargs.iteritems()))
275                 att(f, **dict((k, v[len(v)//2:]) for k, v in kwargs.iteritems()))
276         if share0s: att(self.send_share0s, hashes=share0s)
277         if share1as: att(self.send_share1as, share1as=share1as)
278         if share1bs: att(self.send_share1bs, share1bs=share1bs)
279         if new_shares: att(self.send_shares, shares=new_shares)
280     
281     def connectionLost(self, reason):
282         if self.node_var_watch is not None:
283             self.node.mode_var.changed.unwatch(self.node_var_watch)
284         
285         if self.connected2:
286             self.node.lost_conn(self)
287
288 class ServerFactory(protocol.ServerFactory):
289     def __init__(self, node):
290         self.node = node
291     
292     def buildProtocol(self, addr):
293         p = Protocol(self.node)
294         p.factory = self
295         return p
296
297 class ClientFactory(protocol.ClientFactory):
298     def __init__(self, node):
299         self.node = node
300     
301     def buildProtocol(self, addr):
302         p = Protocol(self.node)
303         p.factory = self
304         return p
305     
306     def startedConnecting(self, connector):
307         self.node.attempt_started(connector)
308     
309     def clientConnectionFailed(self, connector, reason):
310         self.node.attempt_failed(connector)
311     
312     def clientConnectionLost(self, connector, reason):
313         self.node.attempt_ended(connector)
314
315 addrdb_key = bitcoin_data.ComposedType([
316     ('address', bitcoin_data.IPV6AddressType()),
317     ('port', bitcoin_data.StructType('>H')),
318 ])
319 addrdb_value = bitcoin_data.ComposedType([
320     ('services', bitcoin_data.StructType('<Q')),
321     ('first_seen', bitcoin_data.StructType('<Q')),
322     ('last_seen', bitcoin_data.StructType('<Q')),
323 ])
324
325 class AddrStore(dicts.DictWrapper):
326     def encode_key(self, (address, port)):
327         return addrdb_key.pack(dict(address=address, port=port))
328     def decode_key(self, encoded_key):
329         k = addrdb_key.unpack(encoded_key)
330         return k['address'], k['port']
331     
332     def encode_value(self, (services, first_seen, last_seen)):
333         return addrdb_value.pack(dict(services=services, first_seen=first_seen, last_seen=last_seen))
334     def decode_value(self, encoded_value):
335         v = addrdb_value.unpack(encoded_value)
336         return v['services'], v['first_seen'], v['last_seen']
337
338 class Node(object):
339     def __init__(self, current_work, port, net, addr_store=None, preferred_addrs=set(), mode=0, desired_peers=10, max_attempts=100, preferred_storage=1000):
340         if addr_store is None:
341             addr_store = {}
342         
343         self.port = port
344         self.net = net
345         self.addr_store = AddrStore(addr_store)
346         self.preferred_addrs = preferred_addrs
347         self.mode_var = variable.Variable(mode)
348         self.desired_peers = desired_peers
349         self.max_attempts = max_attempts
350         self.current_work = current_work
351         self.preferred_storage = preferred_storage
352         
353         self.nonce = random.randrange(2**64)
354         self.attempts = {}
355         self.peers = {}
356         self.running = False
357     
358     def start(self):
359         if self.running:
360             raise ValueError('already running')
361         
362         self.running = True
363         
364         self.listen_port = reactor.listenTCP(self.port, ServerFactory(self))
365         
366         self._think()
367         self._think2()
368     
369     @defer.inlineCallbacks
370     def _think(self):
371         while self.running:
372             try:
373                 if len(self.peers) < self.desired_peers and len(self.attempts) < self.max_attempts and (len(self.preferred_addrs) or len(self.addr_store)):
374                     if (random.randrange(2) and len(self.preferred_addrs)) or not len(self.addr_store):
375                         host, port = random.choice(list(self.preferred_addrs))
376                     else:
377                         host, port = random.choice(self.addr_store.keys())
378                     
379                     if (host, port) not in self.attempts:
380                         #print 'Trying to connect to', host, port
381                         reactor.connectTCP(host, port, ClientFactory(self), timeout=10)
382             except:
383                 log.err()
384             
385             yield deferral.sleep(random.expovariate(1/5))
386     
387     @defer.inlineCallbacks
388     def _think2(self):
389         while self.running:
390             try:
391                 if len(self.addr_store) < self.preferred_storage and self.peers:
392                     random.choice(self.peers.values()).send_getaddrs(count=8)
393             except:
394                 log.err()
395             
396             yield deferral.sleep(random.expovariate(1/20))
397     
398     def stop(self):
399         if not self.running:
400             raise ValueError('already stopped')
401         
402         self.running = False
403         
404         self.listen_port.stopListening()
405     
406     
407     def attempt_started(self, connector):
408         host, port = connector.getDestination().host, connector.getDestination().port
409         if (host, port) in self.attempts:
410             raise ValueError('already have attempt')
411         self.attempts[host, port] = connector
412     
413     def attempt_failed(self, connector):
414         self.attempt_ended(connector)
415     
416     def attempt_ended(self, connector):
417         host, port = connector.getDestination().host, connector.getDestination().port
418         if (host, port) not in self.attempts:
419             raise ValueError('''don't have attempt''')
420         if connector is not self.attempts[host, port]:
421             raise ValueError('wrong connector')
422         del self.attempts[host, port]
423     
424     
425     def got_conn(self, conn):
426         if conn.nonce in self.peers:
427             raise ValueError('already have peer')
428         self.peers[conn.nonce] = conn
429         
430         print 'Connected to peer %s:%i. p2pool version: %r' % (conn.addr[0], conn.addr[1], conn.other_sub_version)
431     
432     def lost_conn(self, conn):
433         if conn.nonce not in self.peers:
434             raise ValueError('''don't have peer''')
435         if conn is not self.peers[conn.nonce]:
436             raise ValueError('wrong conn')
437         del self.peers[conn.nonce]
438         
439         print 'Lost peer %s:%i' % (conn.addr[0], conn.addr[1])
440     
441     
442     def got_addr(self, (host, port), services, timestamp):
443         if (host, port) in self.addr_store:
444             old_services, old_first_seen, old_last_seen = self.addr_store[host, port]
445             self.addr_store[host, port] = services, old_first_seen, max(old_last_seen, timestamp)
446         else:
447             self.addr_store[host, port] = services, timestamp, timestamp
448     
449     def handle_shares(self, shares, peer):
450         print 'handle_shares', (shares, peer)
451     
452     def handle_share_hashes(self, hashes, peer):
453         print 'handle_share_hashes', (hashes, peer)
454     
455     def handle_get_shares(self, hashes, parents, stops, peer):
456         print 'handle_get_shares', (hashes, parents, stops, peer)
457
458 if __name__ == '__main__':
459     p = random.randrange(2**15, 2**16)
460     for i in xrange(5):
461         p2 = random.randrange(2**15, 2**16)
462         print p, p2
463         n = Node(p2, True, {addrdb_key.pack(dict(address='127.0.0.1', port=p)): addrdb_value.pack(dict(services=0, first_seen=int(time.time())-10, last_seen=int(time.time())))})
464         n.start()
465         p = p2
466     
467     reactor.run()