448 lines
16 KiB
Python
Executable file
448 lines
16 KiB
Python
Executable file
#!/usr/bin/env python
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#
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# mmgen = Multi-Mode GENerator, command-line Bitcoin cold storage solution
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# Copyright (C)2013-2017 Philemon <mmgen-py@yandex.com>
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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"""
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test/tooltest.py: Tests for the 'mmgen-tool' utility
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"""
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import sys,os,subprocess
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pn = os.path.dirname(sys.argv[0])
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os.chdir(os.path.join(pn,os.pardir))
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sys.path.__setitem__(0,os.path.abspath(os.curdir))
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# Import this _after_ local path's been added to sys.path
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from mmgen.common import *
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from collections import OrderedDict
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cmd_data = OrderedDict([
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('util', {
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'desc': 'base conversion, hashing and file utilities',
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'cmd_data': OrderedDict([
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('Strtob58', ()),
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('B58tostr', ('Strtob58','io')),
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('Hextob58', ()),
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('B58tohex', ('Hextob58','io')),
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('B58randenc', ()),
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('Hextob32', ()),
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('B32tohex', ('Hextob32','io')),
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('Randhex', ()),
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('Id6', ()),
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('Id8', ()),
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('Str2id6', ()),
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('Hash160', ()),
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('Hash256', ()),
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('Hexreverse', ()),
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('Hexlify', ()),
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('Hexdump', ()),
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('Unhexdump', ('Hexdump','io')),
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('Rand2file', ()),
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])
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}
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),
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('bitcoin', {
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'desc': 'Bitcoin address/key commands',
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'cmd_data': OrderedDict([
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('Randwif', ()),
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('Randpair', ()), # create 3 pairs: uncomp,comp,segwit
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('Wif2addr', ('Randpair','o3')),
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('Wif2hex', ('Randpair','o3')),
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('Privhex2pubhex', ('Wif2hex','o3')),
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('Pubhex2addr', ('Privhex2pubhex','o3')),
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('Pubhex2redeem_script', ('Privhex2pubhex','o3')),
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('Wif2redeem_script', ('Randpair','o3')),
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('Wif2segwit_pair', ('Randpair','o2')),
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('Privhex2addr', ('Wif2hex','o3')), # compare with output of Randpair
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('Hex2wif', ('Wif2hex','io2')),
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('Addr2hexaddr', ('Randpair','o2')),
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('Hexaddr2addr', ('Addr2hexaddr','io2')),
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('Pipetest', ('Randpair','o3')),
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])
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}
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),
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('mnemonic', {
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'desc': 'mnemonic commands',
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'cmd_data': OrderedDict([
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('Hex2mn', ()),
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('Mn2hex', ('Hex2mn','io3')),
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('Mn_rand128', ()),
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('Mn_rand192', ()),
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('Mn_rand256', ()),
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('Mn_stats', ()),
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('Mn_printlist', ()),
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])
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}
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),
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('rpc', {
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'desc': 'Bitcoind RPC commands',
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'cmd_data': OrderedDict([
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# ('keyaddrfile_chksum', ()), # interactive
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('Addrfile_chksum', ()),
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('Getbalance', ()),
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('Listaddresses', ()),
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('Twview', ()),
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('Txview', ()),
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])
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}
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),
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])
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cfg = {
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'name': 'the tool utility',
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'enc_passwd': 'Ten Satoshis',
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'tmpdir': 'test/tmp10',
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'tmpdir_num': 10,
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'refdir': 'test/ref',
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'txfile': 'FFB367[1.234]{}.rawtx',
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'addrfile': '98831F3A[1,31-33,500-501,1010-1011]{}.addrs',
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'addrfile_chk': ('6FEF 6FB9 7B13 5D91','3C2C 8558 BB54 079E'),
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}
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opts_data = lambda: {
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'desc': "Test suite for the 'mmgen-tool' utility",
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'usage':'[options] [command]',
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'options': """
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-h, --help Print this help message
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--, --longhelp Print help message for long options (common options)
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-l, --list-cmds List and describe the tests and commands in this test suite
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-L, --list-names List the names of all tested 'mmgen-tool' commands
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-s, --system Test scripts and modules installed on system rather than
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those in the repo root
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-v, --verbose Produce more verbose output
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""",
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'notes': """
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If no command is given, the whole suite of tests is run.
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"""
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}
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sys.argv = [sys.argv[0]] + ['--skip-cfg-file'] + sys.argv[1:]
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cmd_args = opts.init(opts_data,add_opts=['exact_output','profile'])
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spawn_cmd = ['python',os.path.join(os.curdir,'mmgen-tool') if not opt.system else 'mmgen-tool']
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add_spawn_args = ' '.join(['{} {}'.format(
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'--'+k.replace('_','-'),
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getattr(opt,k) if getattr(opt,k) != True else ''
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) for k in ('testnet','rpc_host','regtest') if getattr(opt,k)]).split()
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add_spawn_args += [ '--data-dir', cfg['tmpdir']] # ignore ~/.mmgen
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if opt.system: sys.path.pop(0)
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if opt.list_cmds:
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fs = ' {:<{w}} - {}'
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Msg('Available commands:')
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w = max([len(i) for i in cmd_data])
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for cmd in cmd_data:
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Msg(fs.format(cmd,cmd_data[cmd]['desc'],w=w))
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Msg('\nAvailable utilities:')
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Msg(fs.format('clean','Clean the tmp directory',w=w))
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sys.exit(0)
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if opt.list_names:
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acc = []
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for v in cmd_data.values():
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acc += v['cmd_data'].keys()
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tc = sorted(c.lower() for c in acc)
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msg('{}\n{}'.format(green('Tested commands:'),'\n'.join(tc)))
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import mmgen.tool
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tested_in_tool = ('Encrypt','Decrypt','Find_incog_data','Keyaddrfile_chksum','Passwdfile_chksum')
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ignore = ('Help','Usage')
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uc = sorted(c.lower() for c in set(mmgen.tool.cmd_data.keys()) - set(acc) - set(ignore) - set(tested_in_tool))
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msg('\n{}\n{}'.format(yellow('Untested commands:'),'\n'.join(uc)))
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die()
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import binascii
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from mmgen.test import *
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from mmgen.tx import is_wif,is_coin_addr
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msg_w = 35
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def test_msg(m):
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m2 = 'Testing {}'.format(m)
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msg_r(green(m2+'\n') if opt.verbose else '{:{w}}'.format(m2,w=msg_w+8))
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class MMGenToolTestSuite(object):
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def __init__(self):
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pass
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def gen_deps_for_cmd(self,cmd,cdata):
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fns = []
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if cdata:
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name,code = cdata
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io,count = (code[:-1],int(code[-1])) if code[-1] in '0123456789' else (code,1)
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for c in range(count):
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fns += ['%s%s%s' % (
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name,
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('',c+1)[count > 1],
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('.out','.in')[ch=='i']
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) for ch in io]
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return fns
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def get_num_exts_for_cmd(self,cmd,dpy): # dpy required here
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num = str(tool_cfgs['tmpdir_num'])
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# return only first file - a hack
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exts = gen_deps_for_cmd(dpy)
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return num,exts
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def do_cmds(self,cmd_group):
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cdata = cmd_data[cmd_group]['cmd_data']
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for cmd in cdata: self.do_cmd(cmd,cdata[cmd])
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def do_cmd(self,cmd,cdata):
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fns = self.gen_deps_for_cmd(cmd,cdata)
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file_list = [os.path.join(cfg['tmpdir'],fn) for fn in fns]
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self.__class__.__dict__[cmd](*([self,cmd] + file_list))
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def run_cmd(self,name,tool_args,kwargs='',extra_msg='',silent=False,strip=True):
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sys_cmd = (
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spawn_cmd +
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add_spawn_args +
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['-r0','-d',cfg['tmpdir'],name.lower()] +
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tool_args +
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kwargs.split()
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)
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if extra_msg: extra_msg = '({})'.format(extra_msg)
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full_name = ' '.join([name.lower()]+kwargs.split()+extra_msg.split())
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if not silent:
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if opt.verbose:
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sys.stderr.write(green('Testing {}\nExecuting '.format(full_name)))
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sys.stderr.write(cyan(' '.join(sys_cmd)+'\n'))
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else:
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msg_r('Testing {:{w}}'.format(full_name+':',w=msg_w))
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p = subprocess.Popen(sys_cmd,stdout=subprocess.PIPE,stderr=subprocess.PIPE)
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a,b = p.communicate()
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retcode = p.wait()
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if retcode != 0:
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msg('%s\n%s\n%s'%(red('FAILED'),yellow('Command stderr output:'),b))
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die(1,red('Called process returned with an error (retcode %s)' % retcode))
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return (a,a.rstrip())[bool(strip)]
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def run_cmd_chk(self,name,f1,f2,kwargs='',extra_msg='',strip_hex=False):
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idata = read_from_file(f1).rstrip()
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odata = read_from_file(f2).rstrip()
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ret = self.run_cmd(name,[odata],kwargs=kwargs,extra_msg=extra_msg)
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vmsg('In: ' + repr(odata))
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vmsg('Out: ' + repr(ret))
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def cmp_equal(a,b):
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return (a.lstrip('0') == b.lstrip('0')) if strip_hex else (a == b)
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if cmp_equal(ret,idata): ok()
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else:
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die(3,red(
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"Error: values don't match:\nIn: %s\nOut: %s" % (repr(idata),repr(ret))))
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return ret
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def run_cmd_nochk(self,name,f1,kwargs=''):
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odata = read_from_file(f1).rstrip()
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ret = self.run_cmd(name,[odata],kwargs=kwargs)
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vmsg('In: ' + repr(odata))
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vmsg('Out: ' + repr(ret))
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return ret
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def run_cmd_out(self,name,carg=None,Return=False,kwargs='',fn_idx='',extra_msg='',literal=False,chkdata='',hush=False):
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if carg: write_to_tmpfile(cfg,'%s%s.in' % (name,fn_idx),carg+'\n')
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ret = self.run_cmd(name,([],[carg])[bool(carg)],kwargs=kwargs,extra_msg=extra_msg)
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if carg: vmsg('In: ' + repr(carg))
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vmsg('Out: ' + (repr(ret),ret.decode('utf8'))[literal])
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if ret or ret == '':
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write_to_tmpfile(cfg,'%s%s.out' % (name,fn_idx),ret+'\n')
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if chkdata:
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cmp_or_die(ret,chkdata)
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return
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if Return: return ret
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else:
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if not hush: ok()
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else:
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die(3,red("Error for command '%s'" % name))
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def run_cmd_randinput(self,name,strip=True):
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s = os.urandom(128)
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fn = name+'.in'
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write_to_tmpfile(cfg,fn,s,binary=True)
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ret = self.run_cmd(name,[get_tmpfile_fn(cfg,fn)],strip=strip)
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fn = name+'.out'
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write_to_tmpfile(cfg,fn,ret+'\n')
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ok()
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vmsg('Returned: %s' % ret)
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# Util
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def Strtob58(self,name): self.run_cmd_out(name,getrandstr(16))
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def B58tostr(self,name,f1,f2): self.run_cmd_chk(name,f1,f2)
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def Hextob58(self,name): self.run_cmd_out(name,getrandhex(32))
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def B58tohex(self,name,f1,f2): self.run_cmd_chk(name,f1,f2,strip_hex=True)
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def B58randenc(self,name):
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ret = self.run_cmd_out(name,Return=True)
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ok_or_die(ret,is_b58_str,'base 58 string')
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def Hextob32(self,name): self.run_cmd_out(name,getrandhex(24))
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def B32tohex(self,name,f1,f2): self.run_cmd_chk(name,f1,f2,strip_hex=True)
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def Randhex(self,name):
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ret = self.run_cmd_out(name,Return=True)
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ok_or_die(ret,binascii.unhexlify,'hex string')
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def Id6(self,name): self.run_cmd_randinput(name)
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def Id8(self,name): self.run_cmd_randinput(name)
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def Str2id6(self,name):
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s = getrandstr(120,no_space=True)
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s2 = ' %s %s %s %s %s ' % (s[:3],s[3:9],s[9:29],s[29:50],s[50:120])
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ret1 = self.run_cmd(name,[s],extra_msg='unspaced input'); ok()
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ret2 = self.run_cmd(name,[s2],extra_msg='spaced input')
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cmp_or_die(ret1,ret2)
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vmsg('Returned: %s' % ret1)
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def Hash160(self,name): self.run_cmd_out(name,getrandhex(16))
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def Hash256(self,name): self.run_cmd_out(name,getrandstr(16))
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def Hexreverse(self,name): self.run_cmd_out(name,getrandhex(24))
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def Hexlify(self,name): self.run_cmd_out(name,getrandstr(24))
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def Hexdump(self,name): self.run_cmd_randinput(name,strip=False)
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def Unhexdump(self,name,fn1,fn2):
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ret = self.run_cmd(name,[fn2],strip=False)
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orig = read_from_file(fn1,binary=True)
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cmp_or_die(orig,ret)
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def Rand2file(self,name):
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of = name + '.out'
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dlen = 1024
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self.run_cmd(name,[of,str(1024),'threads=4','silent=1'],strip=False)
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d = read_from_tmpfile(cfg,of,binary=True)
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cmp_or_die(dlen,len(d))
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# Bitcoin
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def Randwif(self,name):
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for n,k in enumerate(['','compressed=1']):
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ret = self.run_cmd_out(name,kwargs=k,Return=True,fn_idx=n+1)
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ok_or_die(ret,is_wif,'WIF key')
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def Randpair(self,name):
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for n,k in enumerate(['','compressed=1','segwit=1 compressed=1']):
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wif,addr = self.run_cmd_out(name,kwargs=k,Return=True,fn_idx=n+1).split()
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ok_or_die(wif,is_wif,'WIF key',skip_ok=True)
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ok_or_die(addr,is_coin_addr,'Bitcoin address')
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def Wif2addr(self,name,f1,f2,f3):
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for n,f,k,m in ((1,f1,'',''),(2,f2,'','compressed'),(3,f3,'segwit=1','compressed')):
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wif = read_from_file(f).split()[0]
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self.run_cmd_out(name,wif,kwargs=k,fn_idx=n,extra_msg=m)
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def Wif2hex(self,name,f1,f2,f3):
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for n,f,m in ((1,f1,''),(2,f2,'compressed'),(3,f3,'compressed for segwit')):
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wif = read_from_file(f).split()[0]
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self.run_cmd_out(name,wif,fn_idx=n,extra_msg=m)
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def Privhex2addr(self,name,f1,f2,f3):
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keys = [read_from_file(f).rstrip() for f in (f1,f2,f3)]
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for n,k in enumerate(('','compressed=1','compressed=1 segwit=1')):
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ret = self.run_cmd(name,[keys[n]],kwargs=k).rstrip()
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iaddr = read_from_tmpfile(cfg,'Randpair{}.out'.format(n+1)).split()[-1]
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cmp_or_die(iaddr,ret)
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def Hex2wif(self,name,f1,f2,f3,f4):
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for n,fi,fo,k in ((1,f1,f2,''),(2,f3,f4,'compressed=1')):
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ret = self.run_cmd_chk(name,fi,fo,kwargs=k)
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def Addr2hexaddr(self,name,f1,f2):
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for n,f,m in ((1,f1,''),(2,f2,'from compressed')):
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addr = read_from_file(f).split()[-1]
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self.run_cmd_out(name,addr,fn_idx=n,extra_msg=m)
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def Hexaddr2addr(self,name,f1,f2,f3,f4):
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for n,fi,fo,m in ((1,f1,f2,''),(2,f3,f4,'from compressed')):
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self.run_cmd_chk(name,fi,fo,extra_msg=m)
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def Privhex2pubhex(self,name,f1,f2,f3): # from Hex2wif
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addr = read_from_file(f3).strip()
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self.run_cmd_out(name,addr,kwargs='compressed=1',fn_idx=3) # what about uncompressed?
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def Pubhex2redeem_script(self,name,f1,f2,f3): # from above
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addr = read_from_file(f3).strip()
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self.run_cmd_out(name,addr,fn_idx=3)
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rs = read_from_tmpfile(cfg,name+'3.out').strip()
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self.run_cmd_out('pubhex2addr',rs,kwargs='p2sh=1',fn_idx=3,hush=True)
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addr1 = read_from_tmpfile(cfg,'pubhex2addr3.out').strip()
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addr2 = read_from_tmpfile(cfg,'Randpair3.out').split()[1]
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cmp_or_die(addr1,addr2)
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def Wif2redeem_script(self,name,f1,f2,f3): # compare output with above
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wif = read_from_file(f3).split()[0]
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ret1 = self.run_cmd_out(name,wif,fn_idx=3,Return=True)
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ret2 = read_from_tmpfile(cfg,'Pubhex2redeem_script3.out').strip()
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cmp_or_die(ret1,ret2)
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def Wif2segwit_pair(self,name,f1,f2): # does its own checking, so just run
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wif = read_from_file(f2).split()[0]
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self.run_cmd_out(name,wif,fn_idx=2)
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def Pubhex2addr(self,name,f1,f2,f3):
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addr = read_from_file(f3).strip()
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self.run_cmd_out(name,addr,fn_idx=3)
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def Pipetest(self,name,f1,f2,f3):
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test_msg('command piping')
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wif = read_from_file(f3).split()[0]
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cmd = '{tc} {sa} wif2hex {wif} | {tc} privhex2pubhex - compressed=1 | {tc} pubhex2redeem_script - | {tc} {sa} pubhex2addr - p2sh=1'.format(wif=wif,sa=' '.join(add_spawn_args),tc=' '.join(spawn_cmd))
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p = subprocess.Popen(cmd,stdout=subprocess.PIPE,stderr=subprocess.PIPE,shell=True)
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res = p.stdout.read().strip()
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addr = read_from_tmpfile(cfg,'Wif2addr3.out').strip()
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cmp_or_die(res,addr)
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# Mnemonic
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def Hex2mn(self,name):
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for n,size,m in ((1,16,'128-bit'),(2,24,'192-bit'),(3,32,'256-bit')):
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hexnum = getrandhex(size)
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self.run_cmd_out(name,hexnum,fn_idx=n,extra_msg=m)
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def Mn2hex(self,name,f1,f2,f3,f4,f5,f6):
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for f_i,f_o,m in ((f1,f2,'128-bit'),(f3,f4,'192-bit'),(f5,f6,'256-bit')):
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self.run_cmd_chk(name,f_i,f_o,extra_msg=m)
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def Mn_rand128(self,name): self.run_cmd_out(name)
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def Mn_rand192(self,name): self.run_cmd_out(name)
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def Mn_rand256(self,name): self.run_cmd_out(name)
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def Mn_stats(self,name): self.run_cmd_out(name)
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def Mn_printlist(self,name):
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self.run_cmd(name,[])
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ok()
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# RPC
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def Addrfile_chksum(self,name):
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fn = os.path.join(cfg['refdir'],cfg['addrfile'].format(('','.testnet')[g.testnet]))
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self.run_cmd_out(name,fn,literal=True,chkdata=cfg['addrfile_chk'][g.testnet])
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def Getbalance(self,name):
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self.run_cmd_out(name,literal=True)
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def Listaddresses(self,name):
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self.run_cmd_out(name,literal=True)
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def Twview(self,name):
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self.run_cmd_out(name,literal=True)
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def Txview(self,name):
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fn = os.path.join(cfg['refdir'],cfg['txfile'].format(('','.testnet')[g.testnet]))
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self.run_cmd_out(name,fn,literal=True)
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# main()
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import time
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start_time = int(time.time())
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ts = MMGenToolTestSuite()
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mk_tmpdir(cfg['tmpdir'])
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if cmd_args:
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if len(cmd_args) != 1:
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die(1,'Only one command may be specified')
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cmd = cmd_args[0]
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if cmd in cmd_data:
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msg('Running tests for %s:' % cmd_data[cmd]['desc'])
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ts.do_cmds(cmd)
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elif cmd == 'clean':
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cleandir(cfg['tmpdir'])
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sys.exit(0)
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else:
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die(1,"'%s': unrecognized command" % cmd)
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else:
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cleandir(cfg['tmpdir'])
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for cmd in cmd_data:
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msg('Running tests for %s:' % cmd_data[cmd]['desc'])
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ts.do_cmds(cmd)
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if cmd is not cmd_data.keys()[-1]: msg('')
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t = int(time.time()) - start_time
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msg(green(
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'All requested tests finished OK, elapsed time: %02i:%02i' % (t/60,t%60)))
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