fix: num_accounts should return only confirmed bip32 accounts
[electrum-nvc.git] / lib / wallet.py
1 #!/usr/bin/env python
2 #
3 # Electrum - lightweight Bitcoin client
4 # Copyright (C) 2011 thomasv@gitorious
5 #
6 # This program is free software: you can redistribute it and/or modify
7 # it under the terms of the GNU General Public License as published by
8 # the Free Software Foundation, either version 3 of the License, or
9 # (at your option) any later version.
10 #
11 # This program is distributed in the hope that it will be useful,
12 # but WITHOUT ANY WARRANTY; without even the implied warranty of
13 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 # GNU General Public License for more details.
15 #
16 # You should have received a copy of the GNU General Public License
17 # along with this program. If not, see <http://www.gnu.org/licenses/>.
18
19 import sys
20 import base64
21 import os
22 import re
23 import hashlib
24 import copy
25 import operator
26 import ast
27 import threading
28 import random
29 import aes
30 import Queue
31 import time
32 import math
33
34 from util import print_msg, print_error, format_satoshis
35 from bitcoin import *
36 from account import *
37 from transaction import Transaction
38 from plugins import run_hook
39 import bitcoin
40 from synchronizer import WalletSynchronizer
41
42 COINBASE_MATURITY = 100
43 DUST_THRESHOLD = 5430
44
45 # internal ID for imported account
46 IMPORTED_ACCOUNT = '/x'
47
48
49
50 from version import *
51
52
53 class WalletStorage:
54
55     def __init__(self, config):
56         self.lock = threading.Lock()
57         self.config = config
58         self.data = {}
59         self.file_exists = False
60         self.path = self.init_path(config)
61         print_error( "wallet path", self.path )
62         if self.path:
63             self.read(self.path)
64
65
66     def init_path(self, config):
67         """Set the path of the wallet."""
68
69         # command line -w option
70         path = config.get('wallet_path')
71         if path:
72             return path
73
74         # path in config file
75         path = config.get('default_wallet_path')
76         if path:
77             return path
78
79         # default path
80         dirpath = os.path.join(config.path, "wallets")
81         if not os.path.exists(dirpath):
82             os.mkdir(dirpath)
83
84         new_path = os.path.join(config.path, "wallets", "default_wallet")
85
86         # default path in pre 1.9 versions
87         old_path = os.path.join(config.path, "electrum.dat")
88         if os.path.exists(old_path) and not os.path.exists(new_path):
89             os.rename(old_path, new_path)
90
91         return new_path
92
93
94     def read(self, path):
95         """Read the contents of the wallet file."""
96         try:
97             with open(self.path, "r") as f:
98                 data = f.read()
99         except IOError:
100             return
101         try:
102             d = ast.literal_eval( data )  #parse raw data from reading wallet file
103         except Exception:
104             raise IOError("Cannot read wallet file.")
105
106         self.data = d
107         self.file_exists = True
108
109
110     def get(self, key, default=None):
111         v = self.data.get(key)
112         if v is None: 
113             v = default
114         return v
115
116     def put(self, key, value, save = True):
117
118         with self.lock:
119             if value is not None:
120                 self.data[key] = value
121             else:
122                 self.data.pop(key)
123             if save: 
124                 self.write()
125
126     def write(self):
127         s = repr(self.data)
128         f = open(self.path,"w")
129         f.write( s )
130         f.close()
131         if 'ANDROID_DATA' not in os.environ:
132             import stat
133             os.chmod(self.path,stat.S_IREAD | stat.S_IWRITE)
134
135
136
137     
138
139         
140
141 class Abstract_Wallet:
142
143     def __init__(self, storage):
144
145         self.storage = storage
146         self.electrum_version = ELECTRUM_VERSION
147         self.gap_limit_for_change = 3 # constant
148         # saved fields
149         self.seed_version          = storage.get('seed_version', NEW_SEED_VERSION)
150         self.gap_limit             = storage.get('gap_limit', 5)
151         self.use_change            = storage.get('use_change',True)
152         self.use_encryption        = storage.get('use_encryption', False)
153         self.seed                  = storage.get('seed', '')               # encrypted
154         self.labels                = storage.get('labels', {})
155         self.frozen_addresses      = storage.get('frozen_addresses',[])
156         self.addressbook           = storage.get('contacts', [])
157
158         self.history               = storage.get('addr_history',{})        # address -> list(txid, height)
159
160         self.fee                   = int(storage.get('fee_per_kb', 10000))
161
162         self.master_public_keys = storage.get('master_public_keys',{})
163         self.master_private_keys = storage.get('master_private_keys', {})
164
165         self.next_addresses = storage.get('next_addresses',{})
166
167
168         # This attribute is set when wallet.start_threads is called.
169         self.synchronizer = None
170
171         self.load_accounts()
172
173         self.transactions = {}
174         tx_list = self.storage.get('transactions',{})
175         for k,v in tx_list.items():
176             try:
177                 tx = Transaction(v)
178             except Exception:
179                 print_msg("Warning: Cannot deserialize transactions. skipping")
180                 continue
181
182             self.add_extra_addresses(tx)
183             self.transactions[k] = tx
184
185         for h,tx in self.transactions.items():
186             if not self.check_new_tx(h, tx):
187                 print_error("removing unreferenced tx", h)
188                 self.transactions.pop(h)
189
190
191         # not saved
192         self.prevout_values = {}     # my own transaction outputs
193         self.spent_outputs = []
194
195         # spv
196         self.verifier = None
197
198         # there is a difference between wallet.up_to_date and interface.is_up_to_date()
199         # interface.is_up_to_date() returns true when all requests have been answered and processed
200         # wallet.up_to_date is true when the wallet is synchronized (stronger requirement)
201         
202         self.up_to_date = False
203         self.lock = threading.Lock()
204         self.transaction_lock = threading.Lock()
205         self.tx_event = threading.Event()
206
207         for tx_hash, tx in self.transactions.items():
208             self.update_tx_outputs(tx_hash)
209
210
211     def add_extra_addresses(self, tx):
212         h = tx.hash()
213         # find the address corresponding to pay-to-pubkey inputs
214         tx.add_extra_addresses(self.transactions)
215         for o in tx.d.get('outputs'):
216             if o.get('is_pubkey'):
217                 for tx2 in self.transactions.values():
218                     tx2.add_extra_addresses({h:tx})
219
220
221     def get_action(self):
222         pass
223
224     def load_accounts(self):
225         self.accounts = {}
226         self.imported_keys = self.storage.get('imported_keys',{})
227         if self.imported_keys:
228             print_error("cannot load imported keys")
229
230         d = self.storage.get('accounts', {})
231         for k, v in d.items():
232             if k == 0:
233                 v['mpk'] = self.storage.get('master_public_key')
234                 self.accounts[k] = OldAccount(v)
235             elif v.get('imported'):
236                 self.accounts[k] = ImportedAccount(v)
237             elif v.get('xpub3'):
238                 self.accounts[k] = BIP32_Account_2of3(v)
239             elif v.get('xpub2'):
240                 self.accounts[k] = BIP32_Account_2of2(v)
241             elif v.get('xpub'):
242                 self.accounts[k] = BIP32_Account(v)
243             elif v.get('pending'):
244                 self.accounts[k] = PendingAccount(v)
245             else:
246                 print_error("cannot load account", v)
247
248
249     def synchronize(self):
250         pass
251
252     def can_create_accounts(self):
253         return False
254
255     def set_up_to_date(self,b):
256         with self.lock: self.up_to_date = b
257
258     def is_up_to_date(self):
259         with self.lock: return self.up_to_date
260
261
262     def update(self):
263         self.up_to_date = False
264         while not self.is_up_to_date(): 
265             time.sleep(0.1)
266
267     def is_imported(self, addr):
268         account = self.accounts.get(IMPORTED_ACCOUNT)
269         if account: 
270             return addr in account.get_addresses(0)
271         else:
272             return False
273
274     def import_key(self, sec, password):
275         try:
276             pubkey = public_key_from_private_key(sec)
277             address = public_key_to_bc_address(pubkey.decode('hex'))
278         except Exception:
279             raise Exception('Invalid private key')
280
281         if self.is_mine(address):
282             raise Exception('Address already in wallet')
283         
284         if self.accounts.get(IMPORTED_ACCOUNT) is None:
285             self.accounts[IMPORTED_ACCOUNT] = ImportedAccount({'imported':{}})
286         self.accounts[IMPORTED_ACCOUNT].add(address, pubkey, sec, password)
287         self.save_accounts()
288         
289         if self.synchronizer:
290             self.synchronizer.subscribe_to_addresses([address])
291         return address
292         
293
294     def delete_imported_key(self, addr):
295         account = self.accounts[IMPORTED_ACCOUNT]
296         account.remove(addr)
297         if not account.get_addresses(0):
298             self.accounts.pop(IMPORTED_ACCOUNT)
299         self.save_accounts()
300
301
302     def set_label(self, name, text = None):
303         changed = False
304         old_text = self.labels.get(name)
305         if text:
306             if old_text != text:
307                 self.labels[name] = text
308                 changed = True
309         else:
310             if old_text:
311                 self.labels.pop(name)
312                 changed = True
313
314         if changed:
315             self.storage.put('labels', self.labels, True)
316
317         run_hook('set_label', name, text, changed)
318         return changed
319
320
321
322
323     def addresses(self, include_change = True, _next=True):
324         o = []
325         for a in self.accounts.keys():
326             o += self.get_account_addresses(a, include_change)
327
328         if _next:
329             for addr in self.next_addresses.values():
330                 if addr not in o:
331                     o += [addr]
332         return o
333
334
335     def is_mine(self, address):
336         return address in self.addresses(True) 
337
338
339     def is_change(self, address):
340         if not self.is_mine(address): return False
341         acct, s = self.get_address_index(address)
342         if s is None: return False
343         return s[0] == 1
344
345
346     def get_address_index(self, address):
347
348         for account in self.accounts.keys():
349             for for_change in [0,1]:
350                 addresses = self.accounts[account].get_addresses(for_change)
351                 for addr in addresses:
352                     if address == addr:
353                         return account, (for_change, addresses.index(addr))
354
355         for k,v in self.next_addresses.items():
356             if v == address:
357                 return k, (0,0)
358
359         raise Exception("Address not found", address)
360
361
362     def getpubkeys(self, addr):
363         assert is_valid(addr) and self.is_mine(addr)
364         account, sequence = self.get_address_index(addr)
365         a = self.accounts[account]
366         return a.get_pubkeys( sequence )
367
368
369     def get_private_key(self, address, password):
370         if self.is_watching_only():
371             return []
372         account_id, sequence = self.get_address_index(address)
373         return self.accounts[account_id].get_private_key(sequence, self, password)
374
375
376     def get_public_keys(self, address):
377         account_id, sequence = self.get_address_index(address)
378         return self.accounts[account_id].get_pubkeys(sequence)
379
380
381     def add_keypairs_from_wallet(self, tx, keypairs, password):
382         for txin in tx.inputs:
383             address = txin['address']
384             if not self.is_mine(address):
385                 continue
386             private_keys = self.get_private_key(address, password)
387             for sec in private_keys:
388                 pubkey = public_key_from_private_key(sec)
389                 keypairs[ pubkey ] = sec
390
391
392
393     def add_keypairs_from_KeyID(self, tx, keypairs, password):
394         # first check the provided password
395         seed = self.get_seed(password)
396
397         for txin in tx.inputs:
398             keyid = txin.get('KeyID')
399             if keyid:
400                 roots = []
401                 for s in keyid.split('&'):
402                     m = re.match("bip32\((.*),(/\d+/\d+)\)", s)
403                     if not m: continue
404                     xpub = m.group(1)
405                     sequence = m.group(2)
406                     root = self.find_root_by_master_key(xpub)
407                     if not root: continue
408                     sequence = map(lambda x:int(x), sequence.strip('/').split('/'))
409                     root = root + '%d'%sequence[0]
410                     sequence = sequence[1:]
411                     roots.append((root,sequence)) 
412
413                 account_id = " & ".join( map(lambda x:x[0], roots) )
414                 account = self.accounts.get(account_id)
415                 if not account: continue
416                 addr = account.get_address(*sequence)
417                 txin['address'] = addr # fixme: side effect
418                 pk = self.get_private_key(addr, password)
419                 for sec in pk:
420                     pubkey = public_key_from_private_key(sec)
421                     keypairs[pubkey] = sec
422
423
424
425     def signrawtransaction(self, tx, input_info, private_keys, password):
426
427         # check that the password is correct
428         seed = self.get_seed(password)
429
430         # if input_info is not known, build it using wallet UTXOs
431         if not input_info:
432             input_info = []
433             unspent_coins = self.get_unspent_coins()
434             for txin in tx.inputs:
435                 for item in unspent_coins:
436                     if txin['prevout_hash'] == item['prevout_hash'] and txin['prevout_n'] == item['prevout_n']:
437                         info = { 'address':item['address'], 'scriptPubKey':item['scriptPubKey'] }
438                         self.add_input_info(info)
439                         input_info.append(info)
440                         break
441                 else:
442                     print_error( "input not in UTXOs" )
443                     input_info.append(None)
444
445         # add input_info to the transaction
446         print_error("input_info", input_info)
447         tx.add_input_info(input_info)
448
449         # build a list of public/private keys
450         keypairs = {}
451
452         # add private keys from parameter
453         for sec in private_keys:
454             pubkey = public_key_from_private_key(sec)
455             keypairs[ pubkey ] = sec
456
457         # add private_keys from KeyID
458         self.add_keypairs_from_KeyID(tx, keypairs, password)
459         # add private keys from wallet
460         self.add_keypairs_from_wallet(tx, keypairs, password)
461         # sign the transaction
462         self.sign_transaction(tx, keypairs, password)
463
464
465     def sign_message(self, address, message, password):
466         keys = self.get_private_key(address, password)
467         assert len(keys) == 1
468         sec = keys[0]
469         key = regenerate_key(sec)
470         compressed = is_compressed(sec)
471         return key.sign_message(message, compressed, address)
472
473
474
475     def decrypt_message(self, pubkey, message, password):
476         address = public_key_to_bc_address(pubkey.decode('hex'))
477         keys = self.get_private_key(address, password)
478         secret = keys[0]
479         ec = regenerate_key(secret)
480         decrypted = ec.decrypt_message(message)
481         return decrypted[0]
482
483
484
485     def is_found(self):
486         return self.history.values() != [[]] * len(self.history) 
487
488
489     def add_contact(self, address, label=None):
490         self.addressbook.append(address)
491         self.storage.put('contacts', self.addressbook, True)
492         if label:  
493             self.set_label(address, label)
494
495
496     def delete_contact(self, addr):
497         if addr in self.addressbook:
498             self.addressbook.remove(addr)
499             self.storage.put('addressbook', self.addressbook, True)
500
501
502     def fill_addressbook(self):
503         for tx_hash, tx in self.transactions.items():
504             is_relevant, is_send, _, _ = self.get_tx_value(tx)
505             if is_send:
506                 for addr, v in tx.outputs:
507                     if not self.is_mine(addr) and addr not in self.addressbook:
508                         self.addressbook.append(addr)
509         # redo labels
510         # self.update_tx_labels()
511
512     def get_num_tx(self, address):
513         n = 0 
514         for tx in self.transactions.values():
515             if address in map(lambda x:x[0], tx.outputs): n += 1
516         return n
517
518
519     def get_address_flags(self, addr):
520         flags = "C" if self.is_change(addr) else "I" if addr in self.imported_keys.keys() else "-" 
521         flags += "F" if addr in self.frozen_addresses else "-"
522         return flags
523         
524
525     def get_tx_value(self, tx, account=None):
526         domain = self.get_account_addresses(account)
527         return tx.get_value(domain, self.prevout_values)
528
529     
530     def update_tx_outputs(self, tx_hash):
531         tx = self.transactions.get(tx_hash)
532
533         for i, (addr, value) in enumerate(tx.outputs):
534             key = tx_hash+ ':%d'%i
535             self.prevout_values[key] = value
536
537         for item in tx.inputs:
538             if self.is_mine(item.get('address')):
539                 key = item['prevout_hash'] + ':%d'%item['prevout_n']
540                 self.spent_outputs.append(key)
541
542
543     def get_addr_balance(self, address):
544         #assert self.is_mine(address)
545         h = self.history.get(address,[])
546         if h == ['*']: return 0,0
547         c = u = 0
548         received_coins = []   # list of coins received at address
549
550         for tx_hash, tx_height in h:
551             tx = self.transactions.get(tx_hash)
552             if not tx: continue
553
554             for i, (addr, value) in enumerate(tx.outputs):
555                 if addr == address:
556                     key = tx_hash + ':%d'%i
557                     received_coins.append(key)
558
559         for tx_hash, tx_height in h:
560             tx = self.transactions.get(tx_hash)
561             if not tx: continue
562             v = 0
563
564             for item in tx.inputs:
565                 addr = item.get('address')
566                 if addr == address:
567                     key = item['prevout_hash']  + ':%d'%item['prevout_n']
568                     value = self.prevout_values.get( key )
569                     if key in received_coins: 
570                         v -= value
571
572             for i, (addr, value) in enumerate(tx.outputs):
573                 key = tx_hash + ':%d'%i
574                 if addr == address:
575                     v += value
576
577             if tx_height:
578                 c += v
579             else:
580                 u += v
581         return c, u
582
583
584     def get_account_name(self, k):
585         return self.labels.get(k, self.accounts[k].get_name(k))
586
587
588     def get_account_names(self):
589         account_names = {}
590         for k in self.accounts.keys():
591             account_names[k] = self.get_account_name(k)
592         return account_names
593
594
595     def get_account_addresses(self, a, include_change=True):
596         if a is None:
597             o = self.addresses(True)
598         elif a in self.accounts:
599             ac = self.accounts[a]
600             o = ac.get_addresses(0)
601             if include_change: o += ac.get_addresses(1)
602         return o
603
604
605     def get_account_balance(self, account):
606         return self.get_balance(self.get_account_addresses(account))
607
608     def get_frozen_balance(self):
609         return self.get_balance(self.frozen_addresses)
610         
611     def get_balance(self, domain=None):
612         if domain is None: domain = self.addresses(True)
613         cc = uu = 0
614         for addr in domain:
615             c, u = self.get_addr_balance(addr)
616             cc += c
617             uu += u
618         return cc, uu
619
620
621     def get_unspent_coins(self, domain=None):
622         coins = []
623         if domain is None: domain = self.addresses(True)
624         for addr in domain:
625             h = self.history.get(addr, [])
626             if h == ['*']: continue
627             for tx_hash, tx_height in h:
628                 tx = self.transactions.get(tx_hash)
629                 if tx is None: raise Exception("Wallet not synchronized")
630                 is_coinbase = tx.inputs[0].get('prevout_hash') == '0'*64
631                 for o in tx.d.get('outputs'):
632                     output = o.copy()
633                     if output.get('address') != addr: continue
634                     key = tx_hash + ":%d" % output.get('prevout_n')
635                     if key in self.spent_outputs: continue
636                     output['prevout_hash'] = tx_hash
637                     output['height'] = tx_height
638                     output['coinbase'] = is_coinbase
639                     coins.append((tx_height, output))
640
641         # sort by age
642         if coins:
643             coins = sorted(coins)
644             if coins[-1][0] != 0:
645                 while coins[0][0] == 0: 
646                     coins = coins[1:] + [ coins[0] ]
647         return [x[1] for x in coins]
648
649
650     def choose_tx_inputs( self, amount, fixed_fee, num_outputs, domain = None ):
651         """ todo: minimize tx size """
652         total = 0
653         fee = self.fee if fixed_fee is None else fixed_fee
654         if domain is None:
655             domain = self.addresses(True)
656
657         for i in self.frozen_addresses:
658             if i in domain: domain.remove(i)
659
660         coins = self.get_unspent_coins(domain)
661         inputs = []
662
663         for item in coins:
664             if item.get('coinbase') and item.get('height') + COINBASE_MATURITY > self.network.get_local_height():
665                 continue
666             addr = item.get('address')
667             v = item.get('value')
668             total += v
669             inputs.append(item)
670             fee = self.estimated_fee(inputs, num_outputs) if fixed_fee is None else fixed_fee
671             if total >= amount + fee: break
672         else:
673             inputs = []
674
675         return inputs, total, fee
676
677
678     def set_fee(self, fee):
679         if self.fee != fee:
680             self.fee = fee
681             self.storage.put('fee_per_kb', self.fee, True)
682         
683     def estimated_fee(self, inputs, num_outputs):
684         estimated_size =  len(inputs) * 180 + num_outputs * 34    # this assumes non-compressed keys
685         fee = self.fee * int(math.ceil(estimated_size/1000.))
686         return fee
687
688
689     def add_tx_change( self, inputs, outputs, amount, fee, total, change_addr=None):
690         "add change to a transaction"
691         change_amount = total - ( amount + fee )
692         if change_amount > DUST_THRESHOLD:
693             if not change_addr:
694
695                 # send change to one of the accounts involved in the tx
696                 address = inputs[0].get('address')
697                 account, _ = self.get_address_index(address)
698
699                 if not self.use_change or account == IMPORTED_ACCOUNT:
700                     change_addr = inputs[-1]['address']
701                 else:
702                     change_addr = self.accounts[account].get_addresses(1)[-self.gap_limit_for_change]
703
704             # Insert the change output at a random position in the outputs
705             posn = random.randint(0, len(outputs))
706             outputs[posn:posn] = [( change_addr,  change_amount)]
707         return outputs
708
709
710     def get_history(self, address):
711         with self.lock:
712             return self.history.get(address)
713
714
715     def get_status(self, h):
716         if not h: return None
717         if h == ['*']: return '*'
718         status = ''
719         for tx_hash, height in h:
720             status += tx_hash + ':%d:' % height
721         return hashlib.sha256( status ).digest().encode('hex')
722
723
724     def receive_tx_callback(self, tx_hash, tx, tx_height):
725
726         with self.transaction_lock:
727             self.add_extra_addresses(tx)
728             if not self.check_new_tx(tx_hash, tx):
729                 # may happen due to pruning
730                 print_error("received transaction that is no longer referenced in history", tx_hash)
731                 return
732             self.transactions[tx_hash] = tx
733             self.network.pending_transactions_for_notifications.append(tx)
734             self.save_transactions()
735             if self.verifier and tx_height>0: 
736                 self.verifier.add(tx_hash, tx_height)
737             self.update_tx_outputs(tx_hash)
738
739
740     def save_transactions(self):
741         tx = {}
742         for k,v in self.transactions.items():
743             tx[k] = str(v)
744         self.storage.put('transactions', tx, True)
745
746     def receive_history_callback(self, addr, hist):
747
748         if not self.check_new_history(addr, hist):
749             raise Exception("error: received history for %s is not consistent with known transactions"%addr)
750             
751         with self.lock:
752             self.history[addr] = hist
753             self.storage.put('addr_history', self.history, True)
754
755         if hist != ['*']:
756             for tx_hash, tx_height in hist:
757                 if tx_height>0:
758                     # add it in case it was previously unconfirmed
759                     if self.verifier: self.verifier.add(tx_hash, tx_height)
760
761
762     def get_tx_history(self, account=None):
763         if not self.verifier:
764             return []
765
766         with self.transaction_lock:
767             history = self.transactions.items()
768             history.sort(key = lambda x: self.verifier.get_txpos(x[0]))
769             result = []
770     
771             balance = 0
772             for tx_hash, tx in history:
773                 is_relevant, is_mine, v, fee = self.get_tx_value(tx, account)
774                 if v is not None: balance += v
775
776             c, u = self.get_account_balance(account)
777
778             if balance != c+u:
779                 result.append( ('', 1000, 0, c+u-balance, None, c+u-balance, None ) )
780
781             balance = c + u - balance
782             for tx_hash, tx in history:
783                 is_relevant, is_mine, value, fee = self.get_tx_value(tx, account)
784                 if not is_relevant:
785                     continue
786                 if value is not None:
787                     balance += value
788
789                 conf, timestamp = self.verifier.get_confirmations(tx_hash) if self.verifier else (None, None)
790                 result.append( (tx_hash, conf, is_mine, value, fee, balance, timestamp) )
791
792         return result
793
794
795     def get_label(self, tx_hash):
796         label = self.labels.get(tx_hash)
797         is_default = (label == '') or (label is None)
798         if is_default: label = self.get_default_label(tx_hash)
799         return label, is_default
800
801
802     def get_default_label(self, tx_hash):
803         tx = self.transactions.get(tx_hash)
804         default_label = ''
805         if tx:
806             is_relevant, is_mine, _, _ = self.get_tx_value(tx)
807             if is_mine:
808                 for o in tx.outputs:
809                     o_addr, _ = o
810                     if not self.is_mine(o_addr):
811                         try:
812                             default_label = self.labels[o_addr]
813                         except KeyError:
814                             default_label = '>' + o_addr
815                         break
816                 else:
817                     default_label = '(internal)'
818             else:
819                 for o in tx.outputs:
820                     o_addr, _ = o
821                     if self.is_mine(o_addr) and not self.is_change(o_addr):
822                         break
823                 else:
824                     for o in tx.outputs:
825                         o_addr, _ = o
826                         if self.is_mine(o_addr):
827                             break
828                     else:
829                         o_addr = None
830
831                 if o_addr:
832                     dest_label = self.labels.get(o_addr)
833                     try:
834                         default_label = self.labels[o_addr]
835                     except KeyError:
836                         default_label = '<' + o_addr
837
838         return default_label
839
840
841     def make_unsigned_transaction(self, outputs, fee=None, change_addr=None, domain=None ):
842         for address, x in outputs:
843             assert is_valid(address), "Address " + address + " is invalid!"
844         amount = sum( map(lambda x:x[1], outputs) )
845         inputs, total, fee = self.choose_tx_inputs( amount, fee, len(outputs), domain )
846         if not inputs:
847             raise ValueError("Not enough funds")
848         for txin in inputs:
849             self.add_input_info(txin)
850         outputs = self.add_tx_change(inputs, outputs, amount, fee, total, change_addr)
851         return Transaction.from_io(inputs, outputs)
852
853
854     def mktx(self, outputs, password, fee=None, change_addr=None, domain= None ):
855         tx = self.make_unsigned_transaction(outputs, fee, change_addr, domain)
856         keypairs = {}
857         self.add_keypairs_from_wallet(tx, keypairs, password)
858         if keypairs:
859             self.sign_transaction(tx, keypairs, password)
860         return tx
861
862
863     def add_input_info(self, txin):
864         address = txin['address']
865         account_id, sequence = self.get_address_index(address)
866         account = self.accounts[account_id]
867         txin['KeyID'] = account.get_keyID(sequence)
868         redeemScript = account.redeem_script(sequence)
869         if redeemScript: 
870             txin['redeemScript'] = redeemScript
871         else:
872             txin['redeemPubkey'] = account.get_pubkey(*sequence)
873
874
875     def sign_transaction(self, tx, keypairs, password):
876         tx.sign(keypairs)
877         run_hook('sign_transaction', tx, password)
878
879
880     def sendtx(self, tx):
881         # synchronous
882         h = self.send_tx(tx)
883         self.tx_event.wait()
884         return self.receive_tx(h, tx)
885
886     def send_tx(self, tx):
887         # asynchronous
888         self.tx_event.clear()
889         self.network.send([('blockchain.transaction.broadcast', [str(tx)])], self.on_broadcast)
890         return tx.hash()
891
892     def on_broadcast(self, i, r):
893         self.tx_result = r.get('result')
894         self.tx_event.set()
895
896     def receive_tx(self, tx_hash, tx):
897         out = self.tx_result 
898         if out != tx_hash:
899             return False, "error: " + out
900         run_hook('receive_tx', tx, self)
901         return True, out
902
903
904     def update_password(self, old_password, new_password):
905         if new_password == '': 
906             new_password = None
907
908         if self.has_seed():
909             decoded = self.get_seed(old_password)
910             self.seed = pw_encode( decoded, new_password)
911             self.storage.put('seed', self.seed, True)
912
913         imported_account = self.accounts.get(IMPORTED_ACCOUNT)
914         if imported_account: 
915             imported_account.update_password(old_password, new_password)
916             self.save_accounts()
917
918         for k, v in self.master_private_keys.items():
919             b = pw_decode(v, old_password)
920             c = pw_encode(b, new_password)
921             self.master_private_keys[k] = c
922         self.storage.put('master_private_keys', self.master_private_keys, True)
923
924         self.use_encryption = (new_password != None)
925         self.storage.put('use_encryption', self.use_encryption,True)
926
927
928     def freeze(self,addr):
929         if self.is_mine(addr) and addr not in self.frozen_addresses:
930             self.frozen_addresses.append(addr)
931             self.storage.put('frozen_addresses', self.frozen_addresses, True)
932             return True
933         else:
934             return False
935
936
937     def unfreeze(self,addr):
938         if self.is_mine(addr) and addr in self.frozen_addresses:
939             self.frozen_addresses.remove(addr)
940             self.storage.put('frozen_addresses', self.frozen_addresses, True)
941             return True
942         else:
943             return False
944
945
946     def set_verifier(self, verifier):
947         self.verifier = verifier
948
949         # review transactions that are in the history
950         for addr, hist in self.history.items():
951             if hist == ['*']: continue
952             for tx_hash, tx_height in hist:
953                 if tx_height>0:
954                     # add it in case it was previously unconfirmed
955                     self.verifier.add(tx_hash, tx_height)
956
957         # if we are on a pruning server, remove unverified transactions
958         vr = self.verifier.transactions.keys() + self.verifier.verified_tx.keys()
959         for tx_hash in self.transactions.keys():
960             if tx_hash not in vr:
961                 self.transactions.pop(tx_hash)
962
963
964     def check_new_history(self, addr, hist):
965         
966         # check that all tx in hist are relevant
967         if hist != ['*']:
968             for tx_hash, height in hist:
969                 tx = self.transactions.get(tx_hash)
970                 if not tx: continue
971                 if not tx.has_address(addr):
972                     return False
973
974         # check that we are not "orphaning" a transaction
975         old_hist = self.history.get(addr,[])
976         if old_hist == ['*']: return True
977
978         for tx_hash, height in old_hist:
979             if tx_hash in map(lambda x:x[0], hist): continue
980             found = False
981             for _addr, _hist in self.history.items():
982                 if _addr == addr: continue
983                 if _hist == ['*']: continue
984                 _tx_hist = map(lambda x:x[0], _hist)
985                 if tx_hash in _tx_hist:
986                     found = True
987                     break
988
989             if not found:
990                 tx = self.transactions.get(tx_hash)
991                 # tx might not be there
992                 if not tx: continue
993                 
994                 # already verified?
995                 if self.verifier.get_height(tx_hash):
996                     continue
997                 # unconfirmed tx
998                 print_error("new history is orphaning transaction:", tx_hash)
999                 # check that all outputs are not mine, request histories
1000                 ext_requests = []
1001                 for _addr, _v in tx.outputs:
1002                     # assert not self.is_mine(_addr)
1003                     ext_requests.append( ('blockchain.address.get_history', [_addr]) )
1004
1005                 ext_h = self.network.synchronous_get(ext_requests)
1006                 print_error("sync:", ext_requests, ext_h)
1007                 height = None
1008                 for h in ext_h:
1009                     if h == ['*']: continue
1010                     for item in h:
1011                         if item.get('tx_hash') == tx_hash:
1012                             height = item.get('height')
1013                 if height:
1014                     print_error("found height for", tx_hash, height)
1015                     self.verifier.add(tx_hash, height)
1016                 else:
1017                     print_error("removing orphaned tx from history", tx_hash)
1018                     self.transactions.pop(tx_hash)
1019
1020         return True
1021
1022
1023     def check_new_tx(self, tx_hash, tx):
1024         # 1 check that tx is referenced in addr_history. 
1025         addresses = []
1026         for addr, hist in self.history.items():
1027             if hist == ['*']:continue
1028             for txh, height in hist:
1029                 if txh == tx_hash: 
1030                     addresses.append(addr)
1031
1032         if not addresses:
1033             return False
1034
1035         # 2 check that referencing addresses are in the tx
1036         for addr in addresses:
1037             if not tx.has_address(addr):
1038                 return False
1039
1040         return True
1041
1042
1043     def start_threads(self, network):
1044         from verifier import TxVerifier
1045         self.network = network
1046         if self.network is not None:
1047             self.verifier = TxVerifier(self.network, self.storage)
1048             self.verifier.start()
1049             self.set_verifier(self.verifier)
1050             self.synchronizer = WalletSynchronizer(self, network)
1051             self.synchronizer.start()
1052         else:
1053             self.verifier = None
1054             self.synchronizer =None
1055
1056     def stop_threads(self):
1057         if self.network:
1058             self.verifier.stop()
1059             self.synchronizer.stop()
1060
1061     def restore(self, cb):
1062         pass
1063
1064     def get_accounts(self):
1065         return self.accounts
1066
1067     def save_accounts(self):
1068         d = {}
1069         for k, v in self.accounts.items():
1070             d[k] = v.dump()
1071         self.storage.put('accounts', d, True)
1072
1073     
1074
1075 class Imported_Wallet(Abstract_Wallet):
1076
1077     def __init__(self, storage):
1078         Abstract_Wallet.__init__(self, storage)
1079         a = self.accounts.get(IMPORTED_ACCOUNT)
1080         if not a:
1081             self.accounts[IMPORTED_ACCOUNT] = ImportedAccount({'imported':{}})
1082
1083
1084     def is_watching_only(self):
1085         acc = self.accounts[IMPORTED_ACCOUNT]
1086         n = acc.keypairs.values()
1087         return n == [(None, None)] * len(n)
1088
1089     def has_seed(self):
1090         return False
1091
1092     def is_deterministic(self):
1093         return False
1094
1095     def check_password(self, password):
1096         self.accounts[IMPORTED_ACCOUNT].get_private_key((0,0), self, password)
1097
1098
1099
1100 class Deterministic_Wallet(Abstract_Wallet):
1101
1102     def __init__(self, storage):
1103         Abstract_Wallet.__init__(self, storage)
1104
1105     def has_seed(self):
1106         return self.seed != ''
1107
1108     def is_deterministic(self):
1109         return True
1110
1111     def is_watching_only(self):
1112         return not self.has_seed()
1113
1114     def add_seed(self, seed, password):
1115         if self.seed: 
1116             raise Exception("a seed exists")
1117         
1118         self.seed_version, self.seed = self.prepare_seed(seed)
1119         if password: 
1120             self.seed = pw_encode( self.seed, password)
1121             self.use_encryption = True
1122         else:
1123             self.use_encryption = False
1124
1125         self.storage.put('seed', self.seed, True)
1126         self.storage.put('seed_version', self.seed_version, True)
1127         self.storage.put('use_encryption', self.use_encryption,True)
1128         self.create_master_keys(password)
1129
1130     def get_seed(self, password):
1131         return pw_decode(self.seed, password)
1132
1133     def get_mnemonic(self, password):
1134         return self.get_seed(password)
1135         
1136     def change_gap_limit(self, value):
1137         if value >= self.gap_limit:
1138             self.gap_limit = value
1139             self.storage.put('gap_limit', self.gap_limit, True)
1140             #self.interface.poke('synchronizer')
1141             return True
1142
1143         elif value >= self.min_acceptable_gap():
1144             for key, account in self.accounts.items():
1145                 addresses = account[0]
1146                 k = self.num_unused_trailing_addresses(addresses)
1147                 n = len(addresses) - k + value
1148                 addresses = addresses[0:n]
1149                 self.accounts[key][0] = addresses
1150
1151             self.gap_limit = value
1152             self.storage.put('gap_limit', self.gap_limit, True)
1153             self.save_accounts()
1154             return True
1155         else:
1156             return False
1157
1158     def num_unused_trailing_addresses(self, addresses):
1159         k = 0
1160         for a in addresses[::-1]:
1161             if self.history.get(a):break
1162             k = k + 1
1163         return k
1164
1165     def min_acceptable_gap(self):
1166         # fixme: this assumes wallet is synchronized
1167         n = 0
1168         nmax = 0
1169
1170         for account in self.accounts.values():
1171             addresses = account.get_addresses(0)
1172             k = self.num_unused_trailing_addresses(addresses)
1173             for a in addresses[0:-k]:
1174                 if self.history.get(a):
1175                     n = 0
1176                 else:
1177                     n += 1
1178                     if n > nmax: nmax = n
1179         return nmax + 1
1180
1181
1182     def address_is_old(self, address):
1183         age = -1
1184         h = self.history.get(address, [])
1185         if h == ['*']:
1186             return True
1187         for tx_hash, tx_height in h:
1188             if tx_height == 0:
1189                 tx_age = 0
1190             else:
1191                 tx_age = self.network.get_local_height() - tx_height + 1
1192             if tx_age > age:
1193                 age = tx_age
1194         return age > 2
1195
1196
1197     def synchronize_sequence(self, account, for_change):
1198         limit = self.gap_limit_for_change if for_change else self.gap_limit
1199         new_addresses = []
1200         while True:
1201             addresses = account.get_addresses(for_change)
1202             if len(addresses) < limit:
1203                 address = account.create_new_address(for_change)
1204                 self.history[address] = []
1205                 new_addresses.append( address )
1206                 continue
1207
1208             if map( lambda a: self.address_is_old(a), addresses[-limit:] ) == limit*[False]:
1209                 break
1210             else:
1211                 address = account.create_new_address(for_change)
1212                 self.history[address] = []
1213                 new_addresses.append( address )
1214
1215         return new_addresses
1216         
1217
1218     def check_pending_accounts(self):
1219         for account_id, addr in self.next_addresses.items():
1220             if self.address_is_old(addr):
1221                 print_error( "creating account", account_id )
1222                 xpub = self.master_public_keys[account_id]
1223                 account = BIP32_Account({'xpub':xpub})
1224                 self.add_account(account_id, account)
1225                 self.next_addresses.pop(account_id)
1226
1227
1228     def synchronize_account(self, account):
1229         new = []
1230         new += self.synchronize_sequence(account, 0)
1231         new += self.synchronize_sequence(account, 1)
1232         return new
1233
1234
1235     def synchronize(self):
1236         self.check_pending_accounts()
1237         new = []
1238         for account in self.accounts.values():
1239             if type(account) in [ImportedAccount, PendingAccount]:
1240                 continue
1241             new += self.synchronize_account(account)
1242         if new:
1243             self.save_accounts()
1244             self.storage.put('addr_history', self.history, True)
1245         return new
1246
1247
1248     def restore(self, callback):
1249         from i18n import _
1250         def wait_for_wallet():
1251             self.set_up_to_date(False)
1252             while not self.is_up_to_date():
1253                 msg = "%s\n%s %d\n%s %.1f"%(
1254                     _("Please wait..."),
1255                     _("Addresses generated:"),
1256                     len(self.addresses(True)), 
1257                     _("Kilobytes received:"), 
1258                     self.network.interface.bytes_received/1024.)
1259
1260                 apply(callback, (msg,))
1261                 time.sleep(0.1)
1262
1263         def wait_for_network():
1264             while not self.network.is_connected():
1265                 msg = "%s \n" % (_("Connecting..."))
1266                 apply(callback, (msg,))
1267                 time.sleep(0.1)
1268
1269         # wait until we are connected, because the user might have selected another server
1270         if self.network:
1271             wait_for_network()
1272             wait_for_wallet()
1273         else:
1274             self.synchronize()
1275             
1276         self.fill_addressbook()
1277
1278
1279     def create_account(self, name, password):
1280         i = self.num_accounts()
1281         account_id = self.account_id(i)
1282         account = self.make_account(account_id, password)
1283         self.add_account(account_id, account)
1284         if name:
1285             self.set_label(account_id, name)
1286
1287         # add address of the next account
1288         _, _ = self.next_account_address(password)
1289
1290
1291     def add_account(self, account_id, account):
1292         self.accounts[account_id] = account
1293         self.save_accounts()
1294
1295
1296
1297     def account_is_pending(self, k):
1298         return type(self.accounts.get(k)) == PendingAccount
1299
1300     def delete_pending_account(self, k):
1301         assert self.account_is_pending(k)
1302         self.accounts.pop(k)
1303         self.save_accounts()
1304
1305     def create_pending_account(self, name, password):
1306         account_id, addr = self.next_account_address(password)
1307         self.set_label(account_id, name)
1308         self.accounts[account_id] = PendingAccount({'pending':addr})
1309         self.save_accounts()
1310
1311
1312
1313
1314 class NewWallet(Deterministic_Wallet):
1315
1316     def __init__(self, storage):
1317         Deterministic_Wallet.__init__(self, storage)
1318
1319     def can_create_accounts(self):
1320         return not self.is_watching_only()
1321
1322     def get_master_public_key(self):
1323         return self.master_public_keys["m/"]
1324
1325     def get_master_public_keys(self):
1326         out = {}
1327         for k, account in self.accounts.items():
1328             name = self.get_account_name(k)
1329             mpk_text = '\n\n'.join( account.get_master_pubkeys() )
1330             out[name] = mpk_text
1331         return out
1332
1333     def get_master_private_key(self, account, password):
1334         k = self.master_private_keys.get(account)
1335         if not k: return
1336         xpriv = pw_decode( k, password)
1337         return xpriv
1338
1339     def check_password(self, password):
1340         xpriv = self.get_master_private_key( "m/", password )
1341         xpub = self.master_public_keys["m/"]
1342         assert deserialize_xkey(xpriv)[3] == deserialize_xkey(xpub)[3]
1343
1344     def create_watching_only_wallet(self, xpub):
1345         self.storage.put('seed_version', self.seed_version, True)
1346         self.add_master_public_key("m/", xpub)
1347         account = BIP32_Account({'xpub':xpub})
1348         self.add_account("m/", account)
1349
1350
1351     def create_accounts(self, password):
1352         seed = pw_decode(self.seed, password)
1353         self.create_account('Main account', password)
1354
1355
1356     def add_master_public_key(self, name, mpk):
1357         self.master_public_keys[name] = mpk
1358         self.storage.put('master_public_keys', self.master_public_keys, True)
1359
1360
1361     def add_master_private_key(self, name, xpriv, password):
1362         self.master_private_keys[name] = pw_encode(xpriv, password)
1363         self.storage.put('master_private_keys', self.master_private_keys, True)
1364
1365
1366     def add_master_keys(self, root, account_id, password):
1367         x = self.master_private_keys.get(root)
1368         if x: 
1369             master_xpriv = pw_decode(x, password )
1370             xpriv, xpub = bip32_private_derivation(master_xpriv, root, account_id)
1371             self.add_master_public_key(account_id, xpub)
1372             self.add_master_private_key(account_id, xpriv, password)
1373         else:
1374             master_xpub = self.master_public_keys[root]
1375             xpub = bip32_public_derivation(master_xpub, root, account_id)
1376             self.add_master_public_key(account_id, xpub)
1377         return xpub
1378
1379
1380     def create_master_keys(self, password):
1381         xpriv, xpub = bip32_root(mnemonic_to_seed(self.get_seed(password),'').encode('hex'))
1382         self.add_master_public_key("m/", xpub)
1383         self.add_master_private_key("m/", xpriv, password)
1384
1385
1386     def find_root_by_master_key(self, xpub):
1387         for key, xpub2 in self.master_public_keys.items():
1388             if key == "m/":continue
1389             if xpub == xpub2:
1390                 return key
1391
1392
1393     def num_accounts(self):
1394         keys = []
1395         for k, v in self.accounts.items():
1396             if type(v) != BIP32_Account:
1397                 continue
1398             keys.append(k)
1399
1400         i = 0
1401         while True:
1402             account_id = self.account_id(i)
1403             if account_id not in keys: break
1404             i += 1
1405         return i
1406
1407
1408     def next_account_address(self, password):
1409         i = self.num_accounts()
1410         account_id = self.account_id(i)
1411
1412         addr = self.next_addresses.get(account_id)
1413         if not addr: 
1414             account = self.make_account(account_id, password)
1415             addr = account.first_address()
1416             self.next_addresses[account_id] = addr
1417             self.storage.put('next_addresses', self.next_addresses)
1418
1419         return account_id, addr
1420
1421     def account_id(self, i):
1422         return "m/%d'"%i
1423
1424     def make_account(self, account_id, password):
1425         """Creates and saves the master keys, but does not save the account"""
1426         xpub = self.add_master_keys("m/", account_id, password)
1427         account = BIP32_Account({'xpub':xpub})
1428         return account
1429
1430
1431     def make_seed(self):
1432         import mnemonic, ecdsa
1433         entropy = ecdsa.util.randrange( pow(2,160) )
1434         nonce = 0
1435         while True:
1436             ss = "%040x"%(entropy+nonce)
1437             s = hashlib.sha256(ss.decode('hex')).digest().encode('hex')
1438             # we keep only 13 words, that's approximately 139 bits of entropy
1439             words = mnemonic.mn_encode(s)[0:13] 
1440             seed = ' '.join(words)
1441             if is_new_seed(seed):
1442                 break  # this will remove 8 bits of entropy
1443             nonce += 1
1444         return seed
1445
1446     def prepare_seed(self, seed):
1447         import unicodedata
1448         return NEW_SEED_VERSION, unicodedata.normalize('NFC', unicode(seed.strip()))
1449
1450
1451
1452 class Wallet_2of2(NewWallet):
1453
1454     def __init__(self, storage):
1455         NewWallet.__init__(self, storage)
1456         self.storage.put('wallet_type', '2of2', True)
1457
1458     def can_create_accounts(self):
1459         return False
1460
1461     def create_account(self):
1462         xpub1 = self.master_public_keys.get("m/")
1463         xpub2 = self.master_public_keys.get("cold/")
1464         account = BIP32_Account_2of2({'xpub':xpub1, 'xpub2':xpub2})
1465         self.add_account('m/', account)
1466
1467     def get_master_public_keys(self):
1468         xpub1 = self.master_public_keys.get("m/")
1469         xpub2 = self.master_public_keys.get("cold/")
1470         return {'hot':xpub1, 'cold':xpub2}
1471
1472     def get_action(self):
1473         xpub1 = self.master_public_keys.get("m/")
1474         xpub2 = self.master_public_keys.get("cold/")
1475         if xpub1 is None:
1476             return 'create_2of2_1'
1477         if xpub2 is None:
1478             return 'create_2of2_2'
1479
1480
1481
1482 class Wallet_2of3(Wallet_2of2):
1483
1484     def __init__(self, storage):
1485         Wallet_2of2.__init__(self, storage)
1486         self.storage.put('wallet_type', '2of3', True)
1487
1488     def create_account(self):
1489         xpub1 = self.master_public_keys.get("m/")
1490         xpub2 = self.master_public_keys.get("cold/")
1491         xpub3 = self.master_public_keys.get("remote/")
1492         account = BIP32_Account_2of3({'xpub':xpub1, 'xpub2':xpub2, 'xpub3':xpub3})
1493         self.add_account('m/', account)
1494
1495     def get_master_public_keys(self):
1496         xpub1 = self.master_public_keys.get("m/")
1497         xpub2 = self.master_public_keys.get("cold/")
1498         xpub3 = self.master_public_keys.get("remote/")
1499         return {'hot':xpub1, 'cold':xpub2, 'remote':xpub3}
1500
1501     def get_action(self):
1502         xpub1 = self.master_public_keys.get("m/")
1503         xpub2 = self.master_public_keys.get("cold/")
1504         xpub3 = self.master_public_keys.get("remote/")
1505         if xpub2 is None:
1506             return 'create_2of3_1'
1507         if xpub1 is None:
1508             return 'create_2of3_2'
1509         if xpub3 is None:
1510             return 'create_2of3_3'
1511
1512
1513
1514
1515
1516 class OldWallet(Deterministic_Wallet):
1517
1518     def make_seed(self):
1519         import mnemonic
1520         seed = random_seed(128)
1521         return ' '.join(mnemonic.mn_encode(seed))
1522
1523     def prepare_seed(self, seed):
1524         import mnemonic
1525         # see if seed was entered as hex
1526         seed = seed.strip()
1527         try:
1528             assert seed
1529             seed.decode('hex')
1530             return OLD_SEED_VERSION, str(seed)
1531         except Exception:
1532             pass
1533
1534         words = seed.split()
1535         seed = mnemonic.mn_decode(words)
1536         if not seed:
1537             raise Exception("Invalid seed")
1538             
1539         return OLD_SEED_VERSION, seed
1540
1541
1542     def create_master_keys(self, password):
1543         seed = pw_decode(self.seed, password)
1544         mpk = OldAccount.mpk_from_seed(seed)
1545         self.storage.put('master_public_key', mpk, True)
1546
1547     def get_master_public_key(self):
1548         return self.storage.get("master_public_key")
1549
1550     def get_master_public_keys(self):
1551         return {'Main Account':self.get_master_public_key()}
1552
1553     def create_accounts(self, password):
1554         mpk = self.storage.get("master_public_key")
1555         self.create_account(mpk)
1556
1557     def create_account(self, mpk):
1558         self.accounts[0] = OldAccount({'mpk':mpk, 0:[], 1:[]})
1559         self.save_accounts()
1560
1561     def create_watching_only_wallet(self, mpk):
1562         self.seed_version = OLD_SEED_VERSION
1563         self.storage.put('seed_version', self.seed_version, True)
1564         self.storage.put('master_public_key', mpk, True)
1565         self.create_account(mpk)
1566
1567     def get_seed(self, password):
1568         seed = pw_decode(self.seed, password).encode('utf8')
1569         return seed
1570
1571     def check_password(self, password):
1572         seed = pw_decode(self.seed, password)
1573         self.accounts[0].check_seed(seed)
1574
1575     def get_mnemonic(self, password):
1576         import mnemonic
1577         s = self.get_seed(password)
1578         return ' '.join(mnemonic.mn_encode(s))
1579
1580
1581     def add_keypairs_from_KeyID(self, tx, keypairs, password):
1582         # first check the provided password
1583         seed = self.get_seed(password)
1584         for txin in tx.inputs:
1585             keyid = txin.get('KeyID')
1586             if keyid:
1587                 m = re.match("old\(([0-9a-f]+),(\d+),(\d+)", keyid)
1588                 if not m: continue
1589                 mpk = m.group(1)
1590                 if mpk != self.storage.get('master_public_key'): continue 
1591                 for_change = int(m.group(2))
1592                 num = int(m.group(3))
1593                 account = self.accounts[0]
1594                 addr = account.get_address(for_change, num)
1595                 txin['address'] = addr # fixme: side effect
1596                 pk = account.get_private_key(seed, (for_change, num))
1597                 pubkey = public_key_from_private_key(pk)
1598                 keypairs[pubkey] = pk
1599
1600
1601
1602     def check_pending_accounts(self):
1603         pass
1604
1605
1606 # former WalletFactory
1607 class Wallet(object):
1608
1609     def __new__(self, storage):
1610         config = storage.config
1611         if config.get('bitkey', False):
1612             # if user requested support for Bitkey device,
1613             # import Bitkey driver
1614             from wallet_bitkey import WalletBitkey
1615             return WalletBitkey(config)
1616
1617         if storage.get('wallet_type') == '2of2':
1618             return Wallet_2of2(storage)
1619
1620         if storage.get('wallet_type') == '2of3':
1621             return Wallet_2of3(storage)
1622
1623         if storage.file_exists and not storage.get('seed'):
1624             # wallet made of imported keys
1625             return Imported_Wallet(storage)
1626
1627
1628         if not storage.file_exists:
1629             seed_version = NEW_SEED_VERSION if config.get('bip32') is True else OLD_SEED_VERSION
1630         else:
1631             seed_version = storage.get('seed_version')
1632             if not seed_version:
1633                 seed_version = OLD_SEED_VERSION if len(storage.get('master_public_key')) == 128 else NEW_SEED_VERSION
1634
1635         if seed_version == OLD_SEED_VERSION:
1636             return OldWallet(storage)
1637         elif seed_version == NEW_SEED_VERSION:
1638             return NewWallet(storage)
1639         else:
1640             msg = "This wallet seed is not supported."
1641             if seed_version in [5]:
1642                 msg += "\nTo open this wallet, try 'git checkout seed_v%d'"%seed_version
1643             print msg
1644             sys.exit(1)
1645
1646
1647
1648     @classmethod
1649     def is_seed(self, seed):
1650         if not seed:
1651             return False
1652         elif is_old_seed(seed):
1653             return True
1654         elif is_new_seed(seed):
1655             return True
1656         else: 
1657             return False
1658
1659     @classmethod
1660     def is_mpk(self, mpk):
1661         try:
1662             int(mpk, 16)
1663             old = True
1664         except:
1665             old = False
1666             
1667         if old:
1668             return len(mpk) == 128
1669         else:
1670             try:
1671                 deserialize_xkey(mpk)
1672                 return True
1673             except:
1674                 return False
1675
1676     @classmethod
1677     def is_address(self, text):
1678         if not text:
1679             return False
1680         for x in text.split():
1681             if not bitcoin.is_address(x):
1682                 return False
1683         return True
1684
1685     @classmethod
1686     def is_private_key(self, text):
1687         if not text:
1688             return False
1689         for x in text.split():
1690             if not bitcoin.is_private_key(x):
1691                 return False
1692         return True
1693
1694     @classmethod
1695     def from_seed(self, seed, storage):
1696         if is_old_seed(seed):
1697             klass = OldWallet
1698         elif is_new_seed(seed):
1699             klass = NewWallet
1700         w = klass(storage)
1701         return w
1702
1703     @classmethod
1704     def from_address(self, text, storage):
1705         w = Imported_Wallet(storage)
1706         for x in text.split():
1707             w.accounts[IMPORTED_ACCOUNT].add(x, None, None, None)
1708         w.save_accounts()
1709         return w
1710
1711     @classmethod
1712     def from_private_key(self, text, storage):
1713         w = Imported_Wallet(storage)
1714         for x in text.split():
1715             w.import_key(x, None)
1716         return w
1717
1718     @classmethod
1719     def from_mpk(self, mpk, storage):
1720
1721         try:
1722             int(mpk, 16)
1723             old = True
1724         except:
1725             old = False
1726
1727         if old:
1728             w = OldWallet(storage)
1729             w.seed = ''
1730             w.create_watching_only_wallet(mpk)
1731         else:
1732             w = NewWallet(storage)
1733             w.create_watching_only_wallet(mpk)
1734
1735         return w