fix: offline signing
[electrum-nvc.git] / lib / transaction.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
20 # Note: The deserialization code originally comes from ABE.
21
22
23 from bitcoin import *
24 from util import print_error
25 import time
26 import struct
27
28 #
29 # Workalike python implementation of Bitcoin's CDataStream class.
30 #
31 import struct
32 import StringIO
33 import mmap
34
35 class SerializationError(Exception):
36     """ Thrown when there's a problem deserializing or serializing """
37
38 class BCDataStream(object):
39     def __init__(self):
40         self.input = None
41         self.read_cursor = 0
42
43     def clear(self):
44         self.input = None
45         self.read_cursor = 0
46
47     def write(self, bytes):  # Initialize with string of bytes
48         if self.input is None:
49             self.input = bytes
50         else:
51             self.input += bytes
52
53     def map_file(self, file, start):  # Initialize with bytes from file
54         self.input = mmap.mmap(file.fileno(), 0, access=mmap.ACCESS_READ)
55         self.read_cursor = start
56
57     def seek_file(self, position):
58         self.read_cursor = position
59         
60     def close_file(self):
61         self.input.close()
62
63     def read_string(self):
64         # Strings are encoded depending on length:
65         # 0 to 252 :  1-byte-length followed by bytes (if any)
66         # 253 to 65,535 : byte'253' 2-byte-length followed by bytes
67         # 65,536 to 4,294,967,295 : byte '254' 4-byte-length followed by bytes
68         # ... and the Bitcoin client is coded to understand:
69         # greater than 4,294,967,295 : byte '255' 8-byte-length followed by bytes of string
70         # ... but I don't think it actually handles any strings that big.
71         if self.input is None:
72             raise SerializationError("call write(bytes) before trying to deserialize")
73
74         try:
75             length = self.read_compact_size()
76         except IndexError:
77             raise SerializationError("attempt to read past end of buffer")
78
79         return self.read_bytes(length)
80
81     def write_string(self, string):
82         # Length-encoded as with read-string
83         self.write_compact_size(len(string))
84         self.write(string)
85
86     def read_bytes(self, length):
87         try:
88             result = self.input[self.read_cursor:self.read_cursor+length]
89             self.read_cursor += length
90             return result
91         except IndexError:
92             raise SerializationError("attempt to read past end of buffer")
93
94         return ''
95
96     def read_boolean(self): return self.read_bytes(1)[0] != chr(0)
97     def read_int16(self): return self._read_num('<h')
98     def read_uint16(self): return self._read_num('<H')
99     def read_int32(self): return self._read_num('<i')
100     def read_uint32(self): return self._read_num('<I')
101     def read_int64(self): return self._read_num('<q')
102     def read_uint64(self): return self._read_num('<Q')
103
104     def write_boolean(self, val): return self.write(chr(1) if val else chr(0))
105     def write_int16(self, val): return self._write_num('<h', val)
106     def write_uint16(self, val): return self._write_num('<H', val)
107     def write_int32(self, val): return self._write_num('<i', val)
108     def write_uint32(self, val): return self._write_num('<I', val)
109     def write_int64(self, val): return self._write_num('<q', val)
110     def write_uint64(self, val): return self._write_num('<Q', val)
111
112     def read_compact_size(self):
113         size = ord(self.input[self.read_cursor])
114         self.read_cursor += 1
115         if size == 253:
116             size = self._read_num('<H')
117         elif size == 254:
118             size = self._read_num('<I')
119         elif size == 255:
120             size = self._read_num('<Q')
121         return size
122
123     def write_compact_size(self, size):
124         if size < 0:
125             raise SerializationError("attempt to write size < 0")
126         elif size < 253:
127             self.write(chr(size))
128         elif size < 2**16:
129             self.write('\xfd')
130             self._write_num('<H', size)
131         elif size < 2**32:
132             self.write('\xfe')
133             self._write_num('<I', size)
134         elif size < 2**64:
135             self.write('\xff')
136             self._write_num('<Q', size)
137
138     def _read_num(self, format):
139         (i,) = struct.unpack_from(format, self.input, self.read_cursor)
140         self.read_cursor += struct.calcsize(format)
141         return i
142
143     def _write_num(self, format, num):
144         s = struct.pack(format, num)
145         self.write(s)
146
147 #
148 # enum-like type
149 # From the Python Cookbook, downloaded from http://code.activestate.com/recipes/67107/
150 #
151 import types, string, exceptions
152
153 class EnumException(exceptions.Exception):
154     pass
155
156 class Enumeration:
157     def __init__(self, name, enumList):
158         self.__doc__ = name
159         lookup = { }
160         reverseLookup = { }
161         i = 0
162         uniqueNames = [ ]
163         uniqueValues = [ ]
164         for x in enumList:
165             if type(x) == types.TupleType:
166                 x, i = x
167             if type(x) != types.StringType:
168                 raise EnumException, "enum name is not a string: " + x
169             if type(i) != types.IntType:
170                 raise EnumException, "enum value is not an integer: " + i
171             if x in uniqueNames:
172                 raise EnumException, "enum name is not unique: " + x
173             if i in uniqueValues:
174                 raise EnumException, "enum value is not unique for " + x
175             uniqueNames.append(x)
176             uniqueValues.append(i)
177             lookup[x] = i
178             reverseLookup[i] = x
179             i = i + 1
180         self.lookup = lookup
181         self.reverseLookup = reverseLookup
182     def __getattr__(self, attr):
183         if not self.lookup.has_key(attr):
184             raise AttributeError
185         return self.lookup[attr]
186     def whatis(self, value):
187         return self.reverseLookup[value]
188
189
190 # This function comes from bitcointools, bct-LICENSE.txt.
191 def long_hex(bytes):
192     return bytes.encode('hex_codec')
193
194 # This function comes from bitcointools, bct-LICENSE.txt.
195 def short_hex(bytes):
196     t = bytes.encode('hex_codec')
197     if len(t) < 11:
198         return t
199     return t[0:4]+"..."+t[-4:]
200
201
202
203
204 def parse_redeemScript(bytes):
205     dec = [ x for x in script_GetOp(bytes.decode('hex')) ]
206
207     # 2 of 2
208     match = [ opcodes.OP_2, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_2, opcodes.OP_CHECKMULTISIG ]
209     if match_decoded(dec, match):
210         pubkeys = [ dec[1][1].encode('hex'), dec[2][1].encode('hex') ]
211         return 2, pubkeys
212
213     # 2 of 3
214     match = [ opcodes.OP_2, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_3, opcodes.OP_CHECKMULTISIG ]
215     if match_decoded(dec, match):
216         pubkeys = [ dec[1][1].encode('hex'), dec[2][1].encode('hex'), dec[3][1].encode('hex') ]
217         return 2, pubkeys
218
219
220
221 opcodes = Enumeration("Opcodes", [
222     ("OP_0", 0), ("OP_PUSHDATA1",76), "OP_PUSHDATA2", "OP_PUSHDATA4", "OP_1NEGATE", "OP_RESERVED",
223     "OP_1", "OP_2", "OP_3", "OP_4", "OP_5", "OP_6", "OP_7",
224     "OP_8", "OP_9", "OP_10", "OP_11", "OP_12", "OP_13", "OP_14", "OP_15", "OP_16",
225     "OP_NOP", "OP_VER", "OP_IF", "OP_NOTIF", "OP_VERIF", "OP_VERNOTIF", "OP_ELSE", "OP_ENDIF", "OP_VERIFY",
226     "OP_RETURN", "OP_TOALTSTACK", "OP_FROMALTSTACK", "OP_2DROP", "OP_2DUP", "OP_3DUP", "OP_2OVER", "OP_2ROT", "OP_2SWAP",
227     "OP_IFDUP", "OP_DEPTH", "OP_DROP", "OP_DUP", "OP_NIP", "OP_OVER", "OP_PICK", "OP_ROLL", "OP_ROT",
228     "OP_SWAP", "OP_TUCK", "OP_CAT", "OP_SUBSTR", "OP_LEFT", "OP_RIGHT", "OP_SIZE", "OP_INVERT", "OP_AND",
229     "OP_OR", "OP_XOR", "OP_EQUAL", "OP_EQUALVERIFY", "OP_RESERVED1", "OP_RESERVED2", "OP_1ADD", "OP_1SUB", "OP_2MUL",
230     "OP_2DIV", "OP_NEGATE", "OP_ABS", "OP_NOT", "OP_0NOTEQUAL", "OP_ADD", "OP_SUB", "OP_MUL", "OP_DIV",
231     "OP_MOD", "OP_LSHIFT", "OP_RSHIFT", "OP_BOOLAND", "OP_BOOLOR",
232     "OP_NUMEQUAL", "OP_NUMEQUALVERIFY", "OP_NUMNOTEQUAL", "OP_LESSTHAN",
233     "OP_GREATERTHAN", "OP_LESSTHANOREQUAL", "OP_GREATERTHANOREQUAL", "OP_MIN", "OP_MAX",
234     "OP_WITHIN", "OP_RIPEMD160", "OP_SHA1", "OP_SHA256", "OP_HASH160",
235     "OP_HASH256", "OP_CODESEPARATOR", "OP_CHECKSIG", "OP_CHECKSIGVERIFY", "OP_CHECKMULTISIG",
236     "OP_CHECKMULTISIGVERIFY",
237     ("OP_SINGLEBYTE_END", 0xF0),
238     ("OP_DOUBLEBYTE_BEGIN", 0xF000),
239     "OP_PUBKEY", "OP_PUBKEYHASH",
240     ("OP_INVALIDOPCODE", 0xFFFF),
241 ])
242
243
244 def script_GetOp(bytes):
245     i = 0
246     while i < len(bytes):
247         vch = None
248         opcode = ord(bytes[i])
249         i += 1
250         if opcode >= opcodes.OP_SINGLEBYTE_END:
251             opcode <<= 8
252             opcode |= ord(bytes[i])
253             i += 1
254
255         if opcode <= opcodes.OP_PUSHDATA4:
256             nSize = opcode
257             if opcode == opcodes.OP_PUSHDATA1:
258                 nSize = ord(bytes[i])
259                 i += 1
260             elif opcode == opcodes.OP_PUSHDATA2:
261                 (nSize,) = struct.unpack_from('<H', bytes, i)
262                 i += 2
263             elif opcode == opcodes.OP_PUSHDATA4:
264                 (nSize,) = struct.unpack_from('<I', bytes, i)
265                 i += 4
266             vch = bytes[i:i+nSize]
267             i += nSize
268
269         yield (opcode, vch, i)
270
271
272 def script_GetOpName(opcode):
273     return (opcodes.whatis(opcode)).replace("OP_", "")
274
275
276 def decode_script(bytes):
277     result = ''
278     for (opcode, vch, i) in script_GetOp(bytes):
279         if len(result) > 0: result += " "
280         if opcode <= opcodes.OP_PUSHDATA4:
281             result += "%d:"%(opcode,)
282             result += short_hex(vch)
283         else:
284             result += script_GetOpName(opcode)
285     return result
286
287
288 def match_decoded(decoded, to_match):
289     if len(decoded) != len(to_match):
290         return False;
291     for i in range(len(decoded)):
292         if to_match[i] == opcodes.OP_PUSHDATA4 and decoded[i][0] <= opcodes.OP_PUSHDATA4 and decoded[i][0]>0:
293             continue  # Opcodes below OP_PUSHDATA4 all just push data onto stack, and are equivalent.
294         if to_match[i] != decoded[i][0]:
295             return False
296     return True
297
298 def get_address_from_input_script(bytes):
299     try:
300         decoded = [ x for x in script_GetOp(bytes) ]
301     except:
302         # coinbase transactions raise an exception
303         print_error("cannot find address in input script", bytes.encode('hex'))
304         return [], [], "(None)"
305
306     # payto_pubkey
307     match = [ opcodes.OP_PUSHDATA4 ]
308     if match_decoded(decoded, match):
309         return None, None, "(pubkey)"
310
311     # non-generated TxIn transactions push a signature
312     # (seventy-something bytes) and then their public key
313     # (65 bytes) onto the stack:
314     match = [ opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4 ]
315     if match_decoded(decoded, match):
316         return None, None, public_key_to_bc_address(decoded[1][1])
317
318     # p2sh transaction, 2 of n
319     match = [ opcodes.OP_0 ]
320     while len(match) < len(decoded):
321         match.append(opcodes.OP_PUSHDATA4)
322
323     if match_decoded(decoded, match):
324
325         redeemScript = decoded[-1][1]
326         num = len(match) - 2
327         signatures = map(lambda x:x[1][:-1].encode('hex'), decoded[1:-1])
328
329         dec2 = [ x for x in script_GetOp(redeemScript) ]
330
331         # 2 of 2
332         match2 = [ opcodes.OP_2, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_2, opcodes.OP_CHECKMULTISIG ]
333         if match_decoded(dec2, match2):
334             pubkeys = [ dec2[1][1].encode('hex'), dec2[2][1].encode('hex') ]
335             return pubkeys, signatures, hash_160_to_bc_address(hash_160(redeemScript), 5)
336  
337         # 2 of 3
338         match2 = [ opcodes.OP_2, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_PUSHDATA4, opcodes.OP_3, opcodes.OP_CHECKMULTISIG ]
339         if match_decoded(dec2, match2):
340             pubkeys = [ dec2[1][1].encode('hex'), dec2[2][1].encode('hex'), dec2[3][1].encode('hex') ]
341             return pubkeys, signatures, hash_160_to_bc_address(hash_160(redeemScript), 5)
342
343     print_error("cannot find address in input script", bytes.encode('hex'))
344     return [], [], "(None)"
345
346
347
348 def get_address_from_output_script(bytes):
349     decoded = [ x for x in script_GetOp(bytes) ]
350
351     # The Genesis Block, self-payments, and pay-by-IP-address payments look like:
352     # 65 BYTES:... CHECKSIG
353     match = [ opcodes.OP_PUSHDATA4, opcodes.OP_CHECKSIG ]
354     if match_decoded(decoded, match):
355         return True, public_key_to_bc_address(decoded[0][1])
356
357     # Pay-by-Bitcoin-address TxOuts look like:
358     # DUP HASH160 20 BYTES:... EQUALVERIFY CHECKSIG
359     match = [ opcodes.OP_DUP, opcodes.OP_HASH160, opcodes.OP_PUSHDATA4, opcodes.OP_EQUALVERIFY, opcodes.OP_CHECKSIG ]
360     if match_decoded(decoded, match):
361         return False, hash_160_to_bc_address(decoded[2][1])
362
363     # p2sh
364     match = [ opcodes.OP_HASH160, opcodes.OP_PUSHDATA4, opcodes.OP_EQUAL ]
365     if match_decoded(decoded, match):
366         return False, hash_160_to_bc_address(decoded[1][1],5)
367
368     return False, "(None)"
369
370
371 class Transaction:
372     
373     def __init__(self, raw, is_complete = True):
374         self.raw = raw
375         self.deserialize()
376         self.inputs = self.d['inputs']
377         self.outputs = self.d['outputs']
378         self.outputs = map(lambda x: (x['address'],x['value']), self.outputs)
379         self.is_complete = is_complete
380         
381     def __str__(self):
382         return self.raw
383
384     @classmethod
385     def from_io(klass, inputs, outputs):
386         raw = klass.serialize(inputs, outputs, for_sig = -1) # for_sig=-1 means do not sign
387         self = klass(raw)
388         self.is_complete = False
389         self.inputs = inputs
390         self.outputs = outputs
391         return self
392
393     @classmethod
394     def multisig_script(klass, public_keys, num=None):
395         n = len(public_keys)
396         if num is None: num = n
397         # supports only "2 of 2", and "2 of 3" transactions
398         assert num <= n and n in [2,3]
399     
400         if num==2:
401             s = '52'
402         elif num == 3:
403             s = '53'
404         else:
405             raise
406     
407         for k in public_keys:
408             s += var_int(len(k)/2)
409             s += k
410         if n==2:
411             s += '52'
412         elif n==3:
413             s += '53'
414         else:
415             raise
416         s += 'ae'
417
418         return s
419
420     @classmethod
421     def serialize( klass, inputs, outputs, for_sig = None ):
422
423         s  = int_to_hex(1,4)                                         # version
424         s += var_int( len(inputs) )                                  # number of inputs
425         for i in range(len(inputs)):
426             txin = inputs[i]
427             s += txin['prevout_hash'].decode('hex')[::-1].encode('hex')   # prev hash
428             s += int_to_hex(txin['prevout_n'],4)                          # prev index
429
430             if for_sig is None:
431                 signatures = txin['signatures']
432                 pubkeys = txin['pubkeys']
433                 if not txin.get('redeemScript'):
434                     pubkey = pubkeys[0]
435                     script = ''
436                     if signatures:
437                         sig = signatures[0]
438                         sig = sig + '01'                                 # hashtype
439                         script += op_push(len(sig)/2)
440                         script += sig
441                     script += op_push(len(pubkey)/2)
442                     script += pubkey
443                 else:
444                     script = '00'                                    # op_0
445                     for sig in signatures:
446                         sig = sig + '01'
447                         script += op_push(len(sig)/2)
448                         script += sig
449
450                     redeem_script = klass.multisig_script(pubkeys,2)
451                     script += op_push(len(redeem_script)/2)
452                     script += redeem_script
453
454             elif for_sig==i:
455                 if txin.get('redeemScript'):
456                     script = txin['redeemScript']                    # p2sh uses the inner script
457                 else:
458                     script = txin['scriptPubKey']                    # scriptsig
459             else:
460                 script=''
461             s += var_int( len(script)/2 )                            # script length
462             s += script
463             s += "ffffffff"                                          # sequence
464
465         s += var_int( len(outputs) )                                 # number of outputs
466         for output in outputs:
467             addr, amount = output
468             s += int_to_hex( amount, 8)                              # amount
469             addrtype, hash_160 = bc_address_to_hash_160(addr)
470             if addrtype == 0:
471                 script = '76a9'                                      # op_dup, op_hash_160
472                 script += '14'                                       # push 0x14 bytes
473                 script += hash_160.encode('hex')
474                 script += '88ac'                                     # op_equalverify, op_checksig
475             elif addrtype == 5:
476                 script = 'a9'                                        # op_hash_160
477                 script += '14'                                       # push 0x14 bytes
478                 script += hash_160.encode('hex')
479                 script += '87'                                       # op_equal
480             else:
481                 raise
482             
483             s += var_int( len(script)/2 )                           #  script length
484             s += script                                             #  script
485         s += int_to_hex(0,4)                                        #  lock time
486         if for_sig is not None and for_sig != -1:
487             s += int_to_hex(1, 4)                                   #  hash type
488         return s
489
490
491     def for_sig(self,i):
492         return self.serialize(self.inputs, self.outputs, for_sig = i)
493
494
495     def hash(self):
496         return Hash(self.raw.decode('hex') )[::-1].encode('hex')
497
498
499
500     def sign(self, keypairs):
501         is_complete = True
502         print_error("tx.sign(), keypairs:", keypairs)
503
504         for i, txin in enumerate(self.inputs):
505
506             # if the input is multisig, parse redeem script
507             redeem_script = txin.get('redeemScript')
508             num, redeem_pubkeys = parse_redeemScript(redeem_script) if redeem_script else (1, [txin.get('redeemPubkey')])
509
510             # add pubkeys
511             txin["pubkeys"] = redeem_pubkeys
512             # get list of already existing signatures
513             signatures = txin.get("signatures",[])
514             # continue if this txin is complete
515             if len(signatures) == num:
516                 continue
517
518             tx_for_sig = self.serialize( self.inputs, self.outputs, for_sig = i )
519             for pubkey in redeem_pubkeys:
520                 # check if we have the corresponding private key
521                 if pubkey in keypairs.keys():
522                     # add signature
523                     sec = keypairs[pubkey]
524                     compressed = is_compressed(sec)
525                     pkey = regenerate_key(sec)
526                     secexp = pkey.secret
527                     private_key = ecdsa.SigningKey.from_secret_exponent( secexp, curve = SECP256k1 )
528                     public_key = private_key.get_verifying_key()
529                     sig = private_key.sign_digest_deterministic( Hash( tx_for_sig.decode('hex') ), hashfunc=hashlib.sha256, sigencode = ecdsa.util.sigencode_der )
530                     assert public_key.verify_digest( sig, Hash( tx_for_sig.decode('hex') ), sigdecode = ecdsa.util.sigdecode_der)
531                     signatures.append( sig.encode('hex') )
532                     print_error("adding signature for", pubkey)
533             
534             txin["signatures"] = signatures
535             is_complete = is_complete and len(signatures) == num
536
537         self.is_complete = is_complete
538         self.raw = self.serialize( self.inputs, self.outputs )
539
540
541     def deserialize(self):
542         vds = BCDataStream()
543         vds.write(self.raw.decode('hex'))
544         d = {}
545         start = vds.read_cursor
546         d['version'] = vds.read_int32()
547         n_vin = vds.read_compact_size()
548         d['inputs'] = []
549         for i in xrange(n_vin):
550             d['inputs'].append(self.parse_input(vds))
551         n_vout = vds.read_compact_size()
552         d['outputs'] = []
553         for i in xrange(n_vout):
554             d['outputs'].append(self.parse_output(vds, i))
555         d['lockTime'] = vds.read_uint32()
556         self.d = d
557         return self.d
558     
559
560     def parse_input(self, vds):
561         d = {}
562         d['prevout_hash'] = hash_encode(vds.read_bytes(32))
563         d['prevout_n'] = vds.read_uint32()
564         scriptSig = vds.read_bytes(vds.read_compact_size())
565         d['sequence'] = vds.read_uint32()
566
567         if scriptSig:
568             pubkeys, signatures, address = get_address_from_input_script(scriptSig)
569         else:
570             pubkeys = []
571             signatures = []
572             address = None
573
574         d['address'] = address
575         d['signatures'] = signatures
576         return d
577
578
579     def parse_output(self, vds, i):
580         d = {}
581         d['value'] = vds.read_int64()
582         scriptPubKey = vds.read_bytes(vds.read_compact_size())
583         is_pubkey, address = get_address_from_output_script(scriptPubKey)
584         d['is_pubkey'] = is_pubkey
585         d['address'] = address
586         d['scriptPubKey'] = scriptPubKey.encode('hex')
587         d['prevout_n'] = i
588         return d
589
590
591     def add_extra_addresses(self, txlist):
592         for i in self.inputs:
593             if i.get("address") == "(pubkey)":
594                 prev_tx = txlist.get(i.get('prevout_hash'))
595                 if prev_tx:
596                     address, value = prev_tx.outputs[i.get('prevout_n')]
597                     print_error("found pay-to-pubkey address:", address)
598                     i["address"] = address
599
600
601     def has_address(self, addr):
602         found = False
603         for txin in self.inputs:
604             if addr == txin.get('address'): 
605                 found = True
606                 break
607         for txout in self.outputs:
608             if addr == txout[0]:
609                 found = True
610                 break
611         return found
612
613
614     def get_value(self, addresses, prevout_values):
615         # return the balance for that tx
616         is_relevant = False
617         is_send = False
618         is_pruned = False
619         is_partial = False
620         v_in = v_out = v_out_mine = 0
621
622         for item in self.inputs:
623             addr = item.get('address')
624             if addr in addresses:
625                 is_send = True
626                 is_relevant = True
627                 key = item['prevout_hash']  + ':%d'%item['prevout_n']
628                 value = prevout_values.get( key )
629                 if value is None:
630                     is_pruned = True
631                 else:
632                     v_in += value
633             else:
634                 is_partial = True
635
636         if not is_send: is_partial = False
637                     
638         for item in self.outputs:
639             addr, value = item
640             v_out += value
641             if addr in addresses:
642                 v_out_mine += value
643                 is_relevant = True
644
645         if is_pruned:
646             # some inputs are mine:
647             fee = None
648             if is_send:
649                 v = v_out_mine - v_out
650             else:
651                 # no input is mine
652                 v = v_out_mine
653
654         else:
655             v = v_out_mine - v_in
656
657             if is_partial:
658                 # some inputs are mine, but not all
659                 fee = None
660                 is_send = v < 0
661             else:
662                 # all inputs are mine
663                 fee = v_out - v_in
664
665         return is_relevant, is_send, v, fee
666
667
668     def get_input_info(self):
669         info = []
670         for i in self.inputs:
671             item = { 
672                 'prevout_hash':i['prevout_hash'], 
673                 'prevout_n':i['prevout_n'],
674                 'address':i['address'],
675                 'KeyID':i.get('KeyID'),
676                 'scriptPubKey':i.get('scriptPubKey'),
677                 'redeemScript':i.get('redeemScript'),
678                 'redeemPubkey':i.get('redeemPubkey'),
679                 'pubkeys':i.get('pubkeys'),
680                 'signatures':i.get('signatures'),
681                 }
682             info.append(item)
683         return info
684
685
686     def as_dict(self):
687         import json
688         out = {
689             "hex":self.raw,
690             "complete":self.is_complete
691             }
692
693         if not self.is_complete:
694             input_info = self.get_input_info()
695             out['input_info'] = json.dumps(input_info).replace(' ','')
696
697         return out
698
699
700     def requires_fee(self, verifier):
701         # see https://en.bitcoin.it/wiki/Transaction_fees
702         threshold = 57600000
703         size = len(self.raw)/2
704         if size >= 10000: 
705             return True
706
707         for o in self.outputs:
708             value = o[1]
709             if value < 1000000:
710                 return True
711         sum = 0
712         for i in self.inputs:
713             age = verifier.get_confirmations(i["prevout_hash"])[0]
714             sum += i["value"] * age
715         priority = sum / size
716         print_error(priority, threshold)
717         return priority < threshold 
718
719
720
721     def add_input_info(self, input_info):
722         for i, txin in enumerate(self.inputs):
723             item = input_info[i]
724             txin['address'] = item['address']
725             txin['signatures'] = item['signatures']
726             txin['scriptPubKey'] = item['scriptPubKey']
727             txin['redeemScript'] = item.get('redeemScript')
728             txin['redeemPubkey'] = item.get('redeemPubkey')
729             txin['KeyID'] = item.get('KeyID')