cleanup wallet classes
This commit is contained in:
parent
17216da392
commit
56e8ad3397
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@ -1186,9 +1186,6 @@ class ElectrumWindow(QMainWindow):
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l.addTopLevelItem(account_item)
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account_item.setExpanded(self.accounts_expanded.get(k, True))
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account_item.setData(0, 32, k)
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if not self.wallet.is_seeded(k):
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icon = QIcon(":icons/key.png")
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account_item.setIcon(0, icon)
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else:
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account_item = None
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681
lib/wallet.py
681
lib/wallet.py
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@ -243,6 +243,9 @@ class Abstract_Wallet:
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def get_action(self):
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pass
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def load_accounts(self):
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pass
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def can_create_accounts(self):
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return False
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@ -287,109 +290,6 @@ class Abstract_Wallet:
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self.storage.put('imported_keys', self.imported_keys, True)
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def add_seed(self, seed, password):
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if self.seed:
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raise Exception("a seed exists")
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self.seed_version, self.seed = self.prepare_seed(seed)
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if password:
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self.seed = pw_encode( self.seed, password)
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self.use_encryption = True
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else:
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self.use_encryption = False
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self.storage.put('seed', self.seed, True)
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self.storage.put('seed_version', self.seed_version, True)
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self.storage.put('use_encryption', self.use_encryption,True)
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self.create_master_keys(password)
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def create_watching_only_wallet(self, xpub):
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self.storage.put('seed_version', self.seed_version, True)
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self.add_master_public_key("m/", xpub)
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account = BIP32_Account({'xpub':xpub})
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self.add_account("m/", account)
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def create_accounts(self, password):
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seed = pw_decode(self.seed, password)
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self.create_account('Main account', password)
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def add_master_public_key(self, name, mpk):
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self.master_public_keys[name] = mpk
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self.storage.put('master_public_keys', self.master_public_keys, True)
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def add_master_private_key(self, name, xpriv, password):
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self.master_private_keys[name] = pw_encode(xpriv, password)
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self.storage.put('master_private_keys', self.master_private_keys, True)
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def add_master_keys(self, root, account_id, password):
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x = self.master_private_keys.get(root)
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if x:
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master_xpriv = pw_decode(x, password )
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xpriv, xpub = bip32_private_derivation(master_xpriv, root, account_id)
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self.add_master_public_key(account_id, xpub)
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self.add_master_private_key(account_id, xpriv, password)
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else:
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master_xpub = self.master_public_keys[root]
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xpub = bip32_public_derivation(master_xpub, root, account_id)
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self.add_master_public_key(account_id, xpub)
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return xpub
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def create_master_keys(self, password):
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xpriv, xpub = bip32_root(self.get_seed(password))
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self.add_master_public_key("m/", xpub)
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self.add_master_private_key("m/", xpriv, password)
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def find_root_by_master_key(self, xpub):
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for key, xpub2 in self.master_public_keys.items():
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if key == "m/":continue
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if xpub == xpub2:
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return key
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def is_watching_only(self):
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return (self.seed == '') and (self.master_private_keys == {})
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def num_accounts(self):
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keys = self.accounts.keys()
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i = 0
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while True:
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account_id = self.account_id(i)
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if account_id not in keys: break
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i += 1
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return i
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def next_account_address(self, password):
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i = self.num_accounts()
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account_id = self.account_id(i)
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addr = self.next_addresses.get(account_id)
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if not addr:
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account = self.make_account(account_id, password)
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addr = account.first_address()
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self.next_addresses[account_id] = addr
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self.storage.put('next_addresses', self.next_addresses)
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return account_id, addr
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def account_id(self, i):
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return "m/%d'"%i
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def make_account(self, account_id, password):
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"""Creates and saves the master keys, but does not save the account"""
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xpub = self.add_master_keys("m/", account_id, password)
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account = BIP32_Account({'xpub':xpub})
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return account
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def set_label(self, name, text = None):
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changed = False
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@ -410,68 +310,6 @@ class Abstract_Wallet:
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return changed
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def create_account(self, name, password):
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i = self.num_accounts()
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account_id = self.account_id(i)
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account = self.make_account(account_id, password)
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self.add_account(account_id, account)
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if name:
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self.set_label(account_id, name)
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# add address of the next account
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_, _ = self.next_account_address(password)
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def add_account(self, account_id, account):
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self.accounts[account_id] = account
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if account_id in self.pending_accounts:
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self.pending_accounts.pop(account_id)
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self.storage.put('pending_accounts', self.pending_accounts)
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self.save_accounts()
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def save_accounts(self):
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d = {}
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for k, v in self.accounts.items():
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d[k] = v.dump()
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self.storage.put('accounts', d, True)
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def load_accounts(self):
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d = self.storage.get('accounts', {})
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self.accounts = {}
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for k, v in d.items():
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if k == 0:
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v['mpk'] = self.storage.get('master_public_key')
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self.accounts[k] = OldAccount(v)
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elif v.get('xpub3'):
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self.accounts[k] = BIP32_Account_2of3(v)
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elif v.get('xpub2'):
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self.accounts[k] = BIP32_Account_2of2(v)
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elif v.get('xpub'):
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self.accounts[k] = BIP32_Account(v)
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else:
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raise
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self.pending_accounts = self.storage.get('pending_accounts',{})
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def delete_pending_account(self, k):
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self.pending_accounts.pop(k)
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self.storage.put('pending_accounts', self.pending_accounts)
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def account_is_pending(self, k):
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return k in self.pending_accounts
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def create_pending_account(self, name, password):
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account_id, addr = self.next_account_address(password)
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self.set_label(account_id, name)
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self.pending_accounts[account_id] = addr
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self.storage.put('pending_accounts', self.pending_accounts)
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def get_pending_accounts(self):
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return self.pending_accounts.items()
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def addresses(self, include_change = True, _next=True):
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@ -497,23 +335,6 @@ class Abstract_Wallet:
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if s is None: return False
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return s[0] == 1
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def get_master_public_key(self):
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return self.master_public_keys["m/"]
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def get_master_public_keys(self):
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out = {}
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for k, account in self.accounts.items():
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name = self.get_account_name(k)
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mpk_text = '\n\n'.join( account.get_master_pubkeys() )
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out[name] = mpk_text
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return out
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def get_master_private_key(self, account, password):
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k = self.master_private_keys.get(account)
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if not k: return
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xpriv = pw_decode( k, password)
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return xpriv
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def get_address_index(self, address):
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if address in self.imported_keys.keys():
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@ -541,50 +362,6 @@ class Abstract_Wallet:
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return a.get_pubkeys( sequence )
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def get_roots(self, account):
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roots = []
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for a in account.split('&'):
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s = a.strip()
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m = re.match("m/(\d+')", s)
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roots.append( m.group(1) )
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return roots
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def is_seeded(self, account):
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return True
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for root in self.get_roots(account):
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if root not in self.master_private_keys.keys():
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return False
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return True
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def rebase_sequence(self, account, sequence):
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# account has one or more xpub
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# sequence is a sequence of public derivations
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c, i = sequence
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dd = []
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for a in account.split('&'):
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s = a.strip()
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m = re.match("m/(\d+)'", s)
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root = "m/"
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num = int(m.group(1))
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dd.append( (root, [num,c,i] ) )
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return dd
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def get_seed(self, password):
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s = pw_decode(self.seed, password)
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seed = mnemonic_to_seed(s,'').encode('hex')
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return seed
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def get_mnemonic(self, password):
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return pw_decode(self.seed, password)
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def get_private_key(self, address, password):
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if self.is_watching_only():
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@ -721,115 +498,6 @@ class Abstract_Wallet:
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return decrypted[0]
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def change_gap_limit(self, value):
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if value >= self.gap_limit:
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self.gap_limit = value
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self.storage.put('gap_limit', self.gap_limit, True)
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#self.interface.poke('synchronizer')
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return True
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elif value >= self.min_acceptable_gap():
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for key, account in self.accounts.items():
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addresses = account[0]
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k = self.num_unused_trailing_addresses(addresses)
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n = len(addresses) - k + value
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addresses = addresses[0:n]
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self.accounts[key][0] = addresses
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self.gap_limit = value
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self.storage.put('gap_limit', self.gap_limit, True)
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self.save_accounts()
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return True
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else:
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return False
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def num_unused_trailing_addresses(self, addresses):
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k = 0
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for a in addresses[::-1]:
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if self.history.get(a):break
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k = k + 1
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return k
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def min_acceptable_gap(self):
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# fixme: this assumes wallet is synchronized
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n = 0
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nmax = 0
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for account in self.accounts.values():
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addresses = account.get_addresses(0)
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k = self.num_unused_trailing_addresses(addresses)
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for a in addresses[0:-k]:
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if self.history.get(a):
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n = 0
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else:
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n += 1
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if n > nmax: nmax = n
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return nmax + 1
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def address_is_old(self, address):
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age = -1
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h = self.history.get(address, [])
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if h == ['*']:
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return True
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for tx_hash, tx_height in h:
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if tx_height == 0:
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tx_age = 0
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else:
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tx_age = self.network.get_local_height() - tx_height + 1
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if tx_age > age:
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age = tx_age
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return age > 2
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def synchronize_sequence(self, account, for_change):
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limit = self.gap_limit_for_change if for_change else self.gap_limit
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new_addresses = []
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while True:
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addresses = account.get_addresses(for_change)
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if len(addresses) < limit:
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address = account.create_new_address(for_change)
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self.history[address] = []
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new_addresses.append( address )
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continue
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if map( lambda a: self.address_is_old(a), addresses[-limit:] ) == limit*[False]:
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break
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else:
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address = account.create_new_address(for_change)
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self.history[address] = []
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new_addresses.append( address )
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return new_addresses
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def check_pending_accounts(self):
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for account_id, addr in self.next_addresses.items():
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if self.address_is_old(addr):
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print_error( "creating account", account_id )
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xpub = self.master_public_keys[account_id]
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account = BIP32_Account({'xpub':xpub})
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self.add_account(account_id, account)
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self.next_addresses.pop(account_id)
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def synchronize_account(self, account):
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new = []
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new += self.synchronize_sequence(account, 0)
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new += self.synchronize_sequence(account, 1)
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return new
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def synchronize(self):
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self.check_pending_accounts()
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new = []
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for account in self.accounts.values():
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new += self.synchronize_account(account)
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if new:
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self.save_accounts()
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self.storage.put('addr_history', self.history, True)
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return new
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def is_found(self):
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return self.history.values() != [[]] * len(self.history)
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@ -1272,7 +940,6 @@ class Abstract_Wallet:
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return True, out
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def update_password(self, old_password, new_password):
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if new_password == '': new_password = None
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decoded = self.get_seed(old_password)
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@ -1302,6 +969,7 @@ class Abstract_Wallet:
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else:
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return False
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def unfreeze(self,addr):
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if self.is_mine(addr) and addr in self.frozen_addresses:
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self.frozen_addresses.remove(addr)
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@ -1322,7 +990,6 @@ class Abstract_Wallet:
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# add it in case it was previously unconfirmed
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self.verifier.add(tx_hash, tx_height)
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# if we are on a pruning server, remove unverified transactions
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vr = self.verifier.transactions.keys() + self.verifier.verified_tx.keys()
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for tx_hash in self.transactions.keys():
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@ -1330,7 +997,6 @@ class Abstract_Wallet:
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self.transactions.pop(tx_hash)
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def check_new_history(self, addr, hist):
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# check that all tx in hist are relevant
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@ -1390,7 +1056,6 @@ class Abstract_Wallet:
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return True
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def check_new_tx(self, tx_hash, tx):
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# 1 check that tx is referenced in addr_history.
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addresses = []
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@ -1430,6 +1095,144 @@ class Abstract_Wallet:
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self.synchronizer.stop()
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class Imported_Wallet(Abstract_Wallet):
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def __init__(self, storage):
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Abstract_Wallet.__init__(self, storage)
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def is_watching_only(self):
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n = self.imported_keys.values()
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return n == [''] * len(n)
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class Deterministic_Wallet(Abstract_Wallet):
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def __init__(self, storage):
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Abstract_Wallet.__init__(self, storage)
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def is_watching_only(self):
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return (self.seed == '') and (self.master_private_keys == {})
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def get_seed(self, password):
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s = pw_decode(self.seed, password)
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seed = mnemonic_to_seed(s,'').encode('hex')
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return seed
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def get_mnemonic(self, password):
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return pw_decode(self.seed, password)
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def change_gap_limit(self, value):
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if value >= self.gap_limit:
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self.gap_limit = value
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self.storage.put('gap_limit', self.gap_limit, True)
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#self.interface.poke('synchronizer')
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return True
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elif value >= self.min_acceptable_gap():
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for key, account in self.accounts.items():
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addresses = account[0]
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k = self.num_unused_trailing_addresses(addresses)
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n = len(addresses) - k + value
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addresses = addresses[0:n]
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self.accounts[key][0] = addresses
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self.gap_limit = value
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self.storage.put('gap_limit', self.gap_limit, True)
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self.save_accounts()
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return True
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else:
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return False
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def num_unused_trailing_addresses(self, addresses):
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k = 0
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for a in addresses[::-1]:
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if self.history.get(a):break
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k = k + 1
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return k
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def min_acceptable_gap(self):
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# fixme: this assumes wallet is synchronized
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n = 0
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nmax = 0
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for account in self.accounts.values():
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addresses = account.get_addresses(0)
|
||||
k = self.num_unused_trailing_addresses(addresses)
|
||||
for a in addresses[0:-k]:
|
||||
if self.history.get(a):
|
||||
n = 0
|
||||
else:
|
||||
n += 1
|
||||
if n > nmax: nmax = n
|
||||
return nmax + 1
|
||||
|
||||
|
||||
def address_is_old(self, address):
|
||||
age = -1
|
||||
h = self.history.get(address, [])
|
||||
if h == ['*']:
|
||||
return True
|
||||
for tx_hash, tx_height in h:
|
||||
if tx_height == 0:
|
||||
tx_age = 0
|
||||
else:
|
||||
tx_age = self.network.get_local_height() - tx_height + 1
|
||||
if tx_age > age:
|
||||
age = tx_age
|
||||
return age > 2
|
||||
|
||||
|
||||
def synchronize_sequence(self, account, for_change):
|
||||
limit = self.gap_limit_for_change if for_change else self.gap_limit
|
||||
new_addresses = []
|
||||
while True:
|
||||
addresses = account.get_addresses(for_change)
|
||||
if len(addresses) < limit:
|
||||
address = account.create_new_address(for_change)
|
||||
self.history[address] = []
|
||||
new_addresses.append( address )
|
||||
continue
|
||||
|
||||
if map( lambda a: self.address_is_old(a), addresses[-limit:] ) == limit*[False]:
|
||||
break
|
||||
else:
|
||||
address = account.create_new_address(for_change)
|
||||
self.history[address] = []
|
||||
new_addresses.append( address )
|
||||
|
||||
return new_addresses
|
||||
|
||||
|
||||
def check_pending_accounts(self):
|
||||
for account_id, addr in self.next_addresses.items():
|
||||
if self.address_is_old(addr):
|
||||
print_error( "creating account", account_id )
|
||||
xpub = self.master_public_keys[account_id]
|
||||
account = BIP32_Account({'xpub':xpub})
|
||||
self.add_account(account_id, account)
|
||||
self.next_addresses.pop(account_id)
|
||||
|
||||
|
||||
def synchronize_account(self, account):
|
||||
new = []
|
||||
new += self.synchronize_sequence(account, 0)
|
||||
new += self.synchronize_sequence(account, 1)
|
||||
return new
|
||||
|
||||
|
||||
def synchronize(self):
|
||||
self.check_pending_accounts()
|
||||
new = []
|
||||
for account in self.accounts.values():
|
||||
new += self.synchronize_account(account)
|
||||
if new:
|
||||
self.save_accounts()
|
||||
self.storage.put('addr_history', self.history, True)
|
||||
return new
|
||||
|
||||
|
||||
def restore(self, callback):
|
||||
from i18n import _
|
||||
def wait_for_wallet():
|
||||
|
@ -1461,27 +1264,195 @@ class Abstract_Wallet:
|
|||
self.fill_addressbook()
|
||||
|
||||
|
||||
def create_account(self, name, password):
|
||||
i = self.num_accounts()
|
||||
account_id = self.account_id(i)
|
||||
account = self.make_account(account_id, password)
|
||||
self.add_account(account_id, account)
|
||||
if name:
|
||||
self.set_label(account_id, name)
|
||||
|
||||
class Imported_Wallet(Abstract_Wallet):
|
||||
# add address of the next account
|
||||
_, _ = self.next_account_address(password)
|
||||
|
||||
|
||||
def add_account(self, account_id, account):
|
||||
self.accounts[account_id] = account
|
||||
if account_id in self.pending_accounts:
|
||||
self.pending_accounts.pop(account_id)
|
||||
self.storage.put('pending_accounts', self.pending_accounts)
|
||||
self.save_accounts()
|
||||
|
||||
|
||||
def save_accounts(self):
|
||||
d = {}
|
||||
for k, v in self.accounts.items():
|
||||
d[k] = v.dump()
|
||||
self.storage.put('accounts', d, True)
|
||||
|
||||
|
||||
|
||||
def load_accounts(self):
|
||||
d = self.storage.get('accounts', {})
|
||||
self.accounts = {}
|
||||
for k, v in d.items():
|
||||
if k == 0:
|
||||
v['mpk'] = self.storage.get('master_public_key')
|
||||
self.accounts[k] = OldAccount(v)
|
||||
elif v.get('xpub3'):
|
||||
self.accounts[k] = BIP32_Account_2of3(v)
|
||||
elif v.get('xpub2'):
|
||||
self.accounts[k] = BIP32_Account_2of2(v)
|
||||
elif v.get('xpub'):
|
||||
self.accounts[k] = BIP32_Account(v)
|
||||
else:
|
||||
raise
|
||||
|
||||
self.pending_accounts = self.storage.get('pending_accounts',{})
|
||||
|
||||
|
||||
def delete_pending_account(self, k):
|
||||
self.pending_accounts.pop(k)
|
||||
self.storage.put('pending_accounts', self.pending_accounts)
|
||||
|
||||
def account_is_pending(self, k):
|
||||
return k in self.pending_accounts
|
||||
|
||||
def create_pending_account(self, name, password):
|
||||
account_id, addr = self.next_account_address(password)
|
||||
self.set_label(account_id, name)
|
||||
self.pending_accounts[account_id] = addr
|
||||
self.storage.put('pending_accounts', self.pending_accounts)
|
||||
|
||||
def get_pending_accounts(self):
|
||||
return self.pending_accounts.items()
|
||||
|
||||
|
||||
|
||||
class NewWallet(Deterministic_Wallet):
|
||||
|
||||
def __init__(self, storage):
|
||||
Abstract_Wallet.__init__(self, storage)
|
||||
|
||||
def is_watching_only(self):
|
||||
n = self.imported_keys.values()
|
||||
return n == [''] * len(n)
|
||||
|
||||
|
||||
|
||||
class NewWallet(Abstract_Wallet):
|
||||
"""class for BIP32 wallet"""
|
||||
|
||||
def __init__(self, storage):
|
||||
Abstract_Wallet.__init__(self, storage)
|
||||
Deterministic_Wallet.__init__(self, storage)
|
||||
|
||||
def can_create_accounts(self):
|
||||
return not self.is_watching_only()
|
||||
|
||||
def get_master_public_key(self):
|
||||
return self.master_public_keys["m/"]
|
||||
|
||||
def get_master_public_keys(self):
|
||||
out = {}
|
||||
for k, account in self.accounts.items():
|
||||
name = self.get_account_name(k)
|
||||
mpk_text = '\n\n'.join( account.get_master_pubkeys() )
|
||||
out[name] = mpk_text
|
||||
return out
|
||||
|
||||
def get_master_private_key(self, account, password):
|
||||
k = self.master_private_keys.get(account)
|
||||
if not k: return
|
||||
xpriv = pw_decode( k, password)
|
||||
return xpriv
|
||||
|
||||
def add_seed(self, seed, password):
|
||||
if self.seed:
|
||||
raise Exception("a seed exists")
|
||||
|
||||
self.seed_version, self.seed = self.prepare_seed(seed)
|
||||
if password:
|
||||
self.seed = pw_encode( self.seed, password)
|
||||
self.use_encryption = True
|
||||
else:
|
||||
self.use_encryption = False
|
||||
|
||||
self.storage.put('seed', self.seed, True)
|
||||
self.storage.put('seed_version', self.seed_version, True)
|
||||
self.storage.put('use_encryption', self.use_encryption,True)
|
||||
self.create_master_keys(password)
|
||||
|
||||
|
||||
def create_watching_only_wallet(self, xpub):
|
||||
self.storage.put('seed_version', self.seed_version, True)
|
||||
self.add_master_public_key("m/", xpub)
|
||||
account = BIP32_Account({'xpub':xpub})
|
||||
self.add_account("m/", account)
|
||||
|
||||
|
||||
def create_accounts(self, password):
|
||||
seed = pw_decode(self.seed, password)
|
||||
self.create_account('Main account', password)
|
||||
|
||||
|
||||
def add_master_public_key(self, name, mpk):
|
||||
self.master_public_keys[name] = mpk
|
||||
self.storage.put('master_public_keys', self.master_public_keys, True)
|
||||
|
||||
|
||||
def add_master_private_key(self, name, xpriv, password):
|
||||
self.master_private_keys[name] = pw_encode(xpriv, password)
|
||||
self.storage.put('master_private_keys', self.master_private_keys, True)
|
||||
|
||||
|
||||
def add_master_keys(self, root, account_id, password):
|
||||
x = self.master_private_keys.get(root)
|
||||
if x:
|
||||
master_xpriv = pw_decode(x, password )
|
||||
xpriv, xpub = bip32_private_derivation(master_xpriv, root, account_id)
|
||||
self.add_master_public_key(account_id, xpub)
|
||||
self.add_master_private_key(account_id, xpriv, password)
|
||||
else:
|
||||
master_xpub = self.master_public_keys[root]
|
||||
xpub = bip32_public_derivation(master_xpub, root, account_id)
|
||||
self.add_master_public_key(account_id, xpub)
|
||||
return xpub
|
||||
|
||||
|
||||
def create_master_keys(self, password):
|
||||
xpriv, xpub = bip32_root(self.get_seed(password))
|
||||
self.add_master_public_key("m/", xpub)
|
||||
self.add_master_private_key("m/", xpriv, password)
|
||||
|
||||
|
||||
def find_root_by_master_key(self, xpub):
|
||||
for key, xpub2 in self.master_public_keys.items():
|
||||
if key == "m/":continue
|
||||
if xpub == xpub2:
|
||||
return key
|
||||
|
||||
|
||||
def num_accounts(self):
|
||||
keys = self.accounts.keys()
|
||||
i = 0
|
||||
while True:
|
||||
account_id = self.account_id(i)
|
||||
if account_id not in keys: break
|
||||
i += 1
|
||||
return i
|
||||
|
||||
|
||||
def next_account_address(self, password):
|
||||
i = self.num_accounts()
|
||||
account_id = self.account_id(i)
|
||||
|
||||
addr = self.next_addresses.get(account_id)
|
||||
if not addr:
|
||||
account = self.make_account(account_id, password)
|
||||
addr = account.first_address()
|
||||
self.next_addresses[account_id] = addr
|
||||
self.storage.put('next_addresses', self.next_addresses)
|
||||
|
||||
return account_id, addr
|
||||
|
||||
def account_id(self, i):
|
||||
return "m/%d'"%i
|
||||
|
||||
def make_account(self, account_id, password):
|
||||
"""Creates and saves the master keys, but does not save the account"""
|
||||
xpub = self.add_master_keys("m/", account_id, password)
|
||||
account = BIP32_Account({'xpub':xpub})
|
||||
return account
|
||||
|
||||
|
||||
def make_seed(self):
|
||||
import mnemonic, ecdsa
|
||||
entropy = ecdsa.util.randrange( pow(2,160) )
|
||||
|
@ -1564,7 +1535,7 @@ class Wallet_2of3(Wallet_2of2):
|
|||
|
||||
|
||||
|
||||
class OldWallet(Abstract_Wallet):
|
||||
class OldWallet(Deterministic_Wallet):
|
||||
|
||||
def make_seed(self):
|
||||
import mnemonic
|
||||
|
@ -1650,8 +1621,6 @@ class OldWallet(Abstract_Wallet):
|
|||
assert k == 0
|
||||
return 'Main account'
|
||||
|
||||
def is_seeded(self, account):
|
||||
return self.seed is not None
|
||||
|
||||
def get_private_key(self, address, password):
|
||||
if self.is_watching_only():
|
||||
|
|
Loading…
Reference in New Issue