447 lines
13 KiB
Python
Executable file
447 lines
13 KiB
Python
Executable file
#!/usr/bin/env python3
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#
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# mmgen = Multi-Mode GENerator, command-line Bitcoin cold storage solution
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# Copyright (C)2013-2020 The MMGen Project <mmgen@tuta.io>
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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/gentest.py: Cryptocoin key/address generation tests for the MMGen suite
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"""
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import sys,os
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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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os.environ['MMGEN_TEST_SUITE'] = '1'
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# Import these _after_ local path's been added to sys.path
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from mmgen.common import *
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rounds = 100
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opts_data = {
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'text': {
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'desc': 'Test key/address generation of the MMGen suite in various ways',
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'usage':'[options] [spec] [rounds | dump file]',
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'options': """
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-h, --help Print this help message
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-a, --all Test all coins supported by specified external tool
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-k, --use-internal-keccak-module Force use of the internal keccak module
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--, --longhelp Print help message for long options (common options)
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-q, --quiet Produce quieter output
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-t, --type=t Specify address type (e.g. 'compressed','segwit','zcash_z','bech32')
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-v, --verbose Produce more verbose output
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""",
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'notes': """
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TEST TYPES:
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A/B: {prog} A:B [rounds] (compare key generators A and B)
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Speed: {prog} A [rounds] (test speed of key generator A)
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Compare: {prog} A <dump file> (compare generator A to wallet dump)
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where A and B are one of:
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'1' - native Python ECDSA library (slow), or
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'2' - bitcoincore.org's libsecp256k1 library (default);
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or:
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B is name of an external tool (see below) or 'ext'.
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If B is 'ext', the external tool will be chosen automatically.
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EXAMPLES:
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Compare addresses generated by native Python ECDSA library and libsecp256k1,
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100 rounds:
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$ {prog} 1:2 100
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Compare mmgen-secp256k1 Segwit address generation to pycoin library for all
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supported coins, 100 rounds:
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$ {prog} --all --type=segwit 2:pycoin 100
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Compare mmgen-secp256k1 address generation to keyconv tool for all
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supported coins, 100 rounds:
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$ {prog} --all --type=compressed 2:keyconv 100
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Compare mmgen-secp256k1 XMR address generation to configured external tool,
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10 rounds:
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$ {prog} --coin=xmr 2:ext 10
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Test speed of mmgen-secp256k1 address generation, 10,000 rounds:
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$ {prog} 2 10000
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Compare mmgen-secp256k1-generated bech32 addrs to coin daemon wallet dump:
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$ {prog} --type=bech32 2 bech32wallet.dump
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Supported external tools:
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+ ethkey (for ETH,ETC)
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https://github.com/openethereum/openethereum
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(build with 'cargo build -p ethkey-cli --release')
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+ zcash-mini (for Zcash Z-addresses)
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https://github.com/FiloSottile/zcash-mini
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+ moneropy (for Monero addresses)
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https://github.com/bigreddmachine/MoneroPy
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+ pycoin (for supported coins)
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https://github.com/richardkiss/pycoin
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+ keyconv (for supported coins)
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https://github.com/exploitagency/vanitygen-plus
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('keyconv' does not generate Segwit addresses)
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"""
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},
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'code': {
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'notes': lambda s: s.format(
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prog='test/gentest.py',
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pnm=g.proj_name,
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snum=rounds )
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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','use_old_ed25519'])
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if not 1 <= len(cmd_args) <= 2:
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opts.usage()
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from mmgen.protocol import init_proto_from_opts
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proto = init_proto_from_opts()
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from subprocess import run,PIPE,DEVNULL
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def get_cmd_output(cmd,input=None):
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return run(cmd,input=input,stdout=PIPE,stderr=DEVNULL).stdout.decode().splitlines()
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from collections import namedtuple
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gtr = namedtuple('gen_tool_result',['wif','addr','vk'])
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class GenTool(object):
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def run_tool(self,sec):
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vcoin = 'BTC' if proto.coin == 'BCH' else proto.coin
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return self.run(sec,vcoin)
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class GenToolEthkey(GenTool):
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desc = 'ethkey'
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def __init__(self):
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proto = init_proto('eth')
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global addr_type
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addr_type = MMGenAddrType(proto,'E')
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def run(self,sec,vcoin):
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o = get_cmd_output(['ethkey','info',sec])
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return gtr(o[0].split()[1],o[-1].split()[1],None)
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class GenToolKeyconv(GenTool):
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desc = 'keyconv'
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def run(self,sec,vcoin):
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o = get_cmd_output(['keyconv','-C',vcoin,sec.wif])
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return gtr(o[1].split()[1],o[0].split()[1],None)
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class GenToolZcash_mini(GenTool):
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desc = 'zcash-mini'
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def __init__(self):
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proto = init_proto('zec')
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global addr_type
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addr_type = MMGenAddrType(proto,'Z')
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def run(self,sec,vcoin):
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o = get_cmd_output(['zcash-mini','-key','-simple'],input=(sec.wif+'\n').encode())
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return gtr(o[1],o[0],o[-1])
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class GenToolPycoin(GenTool):
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"""
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pycoin/networks/all.py pycoin/networks/legacy_networks.py
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"""
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desc = 'pycoin'
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def __init__(self):
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m = "Unable to import pycoin.networks.registry. Is pycoin installed on your system?"
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try:
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from pycoin.networks.registry import network_for_netcode
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except:
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raise ImportError(m)
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self.nfnc = network_for_netcode
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def run(self,sec,vcoin):
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if proto.testnet:
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vcoin = ci.external_tests['testnet']['pycoin'][vcoin]
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network = self.nfnc(vcoin)
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key = network.keys.private(secret_exponent=int(sec,16),is_compressed=addr_type.name != 'legacy')
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if key is None:
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die(1,"can't parse {}".format(sec))
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if addr_type.name in ('segwit','bech32'):
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hash160_c = key.hash160(is_compressed=True)
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if addr_type.name == 'segwit':
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p2sh_script = network.contract.for_p2pkh_wit(hash160_c)
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addr = network.address.for_p2s(p2sh_script)
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else:
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addr = network.address.for_p2pkh_wit(hash160_c)
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else:
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addr = key.address()
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return gtr(key.wif(),addr,None)
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class GenToolMoneropy(GenTool):
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desc = 'moneropy'
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def __init__(self):
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m = "Unable to import moneropy. Is moneropy installed on your system?"
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try:
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import moneropy.account
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except:
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raise ImportError(m)
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self.mpa = moneropy.account
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proto = init_proto('xmr')
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global addr_type
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addr_type = MMGenAddrType(proto,'M')
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def run(self,sec,vcoin):
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sk_t,vk_t,addr_t = self.mpa.account_from_spend_key(sec) # VERY slow!
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return gtr(sk_t,addr_t,vk_t)
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def get_tool(arg):
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if arg not in ext_progs + ['ext']:
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die(1,'{!r}: unsupported tool for network {}'.format(arg,proto.network))
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if opt.all:
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if arg == 'ext':
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die(1,"'--all' must be combined with a specific external testing tool")
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return arg
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else:
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tool = ci.get_test_support(
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proto.coin,
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addr_type.name,
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proto.network,
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verbose = not opt.quiet,
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tool = arg if arg in ext_progs else None )
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if not tool:
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sys.exit(2)
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if arg in ext_progs and arg != tool:
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sys.exit(3)
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return tool
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def test_equal(desc,a_val,b_val,in_bytes,sec,wif,a_desc,b_desc):
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if a_val != b_val:
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fs = """
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{i:{w}}: {}
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{s:{w}}: {}
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{W:{w}}: {}
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{a:{w}}: {}
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{b:{w}}: {}
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"""
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die(3,
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red('\nERROR: {} do not match!').format(desc)
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+ fs.format(
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in_bytes.hex(), sec, wif, a_val, b_val,
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i='input', s='sec key', W='WIF key', a=a_desc, b=b_desc,
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w=max(len(e) for e in (a_desc,b_desc)) + 1
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).rstrip())
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def gentool_test(kg_a,kg_b,ag,rounds):
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m = "Comparing address generators '{A}' and '{B}' for {N} {c} ({n}), addrtype {a!r}"
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e = ci.get_entry(proto.coin,proto.network)
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qmsg(green(m.format(
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A = kg_a.desc,
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B = kg_b.desc,
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N = proto.network,
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c = proto.coin,
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n = e.name if e else '---',
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a = addr_type.name )))
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global last_t
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last_t = time.time()
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def do_compare_test(n,trounds,in_bytes):
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global last_t
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if opt.verbose or time.time() - last_t >= 0.1:
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qmsg_r('\rRound {}/{} '.format(i+1,trounds))
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last_t = time.time()
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sec = PrivKey(proto,in_bytes,compressed=addr_type.compressed,pubkey_type=addr_type.pubkey_type)
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a_ph = kg_a.to_pubhex(sec)
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a_addr = ag.to_addr(a_ph)
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a_vk = None
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tinfo = (in_bytes,sec,sec.wif,kg_a.desc,kg_b.desc)
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if isinstance(kg_b,GenTool):
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b = kg_b.run_tool(sec)
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test_equal('WIF keys',sec.wif,b.wif,*tinfo)
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test_equal('addresses',a_addr,b.addr,*tinfo)
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if b.vk:
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a_vk = ag.to_viewkey(a_ph)
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test_equal('view keys',a_vk,b.vk,*tinfo)
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else:
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b_addr = ag.to_addr(kg_b.to_pubhex(sec))
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test_equal('addresses',a_addr,b_addr,*tinfo)
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vmsg(fs.format(b=in_bytes.hex(),k=sec.wif,v=a_vk,a=a_addr))
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qmsg_r('\rRound {}/{} '.format(n+1,trounds))
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fs = ( '\ninput: {b}\n%-9s {k}\naddr: {a}\n',
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'\ninput: {b}\n%-9s {k}\nviewkey: {v}\naddr: {a}\n')[
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'viewkey' in addr_type.extra_attrs] % (addr_type.wif_label + ':')
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# test some important private key edge cases:
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edgecase_sks = (
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bytes([0x00]*31 + [0x01]), # min
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bytes([0xff]*32), # max
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bytes([0x0f] + [0xff]*31), # same key as above for zcash-z
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bytes([0x00]*31 + [0xff]), # monero will reduce
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bytes([0xff]*31 + [0x0f]), # monero will not reduce
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)
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qmsg(purple('edge cases:'))
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for i,in_bytes in enumerate(edgecase_sks):
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do_compare_test(i,len(edgecase_sks),in_bytes)
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qmsg(green('\rOK ' if opt.verbose else 'OK'))
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qmsg(purple('random input:'))
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for i in range(rounds):
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do_compare_test(i,rounds,os.urandom(32))
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qmsg(green('\rOK ' if opt.verbose else 'OK'))
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def speed_test(kg,ag,rounds):
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m = "Testing speed of address generator '{}' for coin {}"
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qmsg(green(m.format(kg.desc,proto.coin)))
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from struct import pack,unpack
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seed = os.urandom(28)
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qmsg('Incrementing key with each round')
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qmsg('Starting key: {}'.format((seed + pack('I',0)).hex()))
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import time
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start = last_t = time.time()
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for i in range(rounds):
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if time.time() - last_t >= 0.1:
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qmsg_r('\rRound {}/{} '.format(i+1,rounds))
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last_t = time.time()
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sec = PrivKey(proto,seed+pack('I',i),compressed=addr_type.compressed,pubkey_type=addr_type.pubkey_type)
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addr = ag.to_addr(kg.to_pubhex(sec))
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vmsg('\nkey: {}\naddr: {}\n'.format(sec.wif,addr))
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qmsg_r('\rRound {}/{} '.format(i+1,rounds))
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qmsg('\n{} addresses generated in {:.2f} seconds'.format(rounds,time.time()-start))
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def dump_test(kg,ag,fh):
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dump = [[*(e.split()[0] for e in line.split('addr='))] for line in fh.readlines() if 'addr=' in line]
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if not dump:
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die(1,'File {!r} appears not to be a wallet dump'.format(fh.name))
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m = 'Comparing output of address generator {!r} against wallet dump {!r}'
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qmsg(green(m.format(kg.desc,fh.name)))
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for count,(b_wif,b_addr) in enumerate(dump,1):
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qmsg_r('\rKey {}/{} '.format(count,len(dump)))
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try:
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b_sec = PrivKey(proto,wif=b_wif)
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except:
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die(2,'\nInvalid {} WIF address in dump file: {}'.format(proto.network,b_wif))
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a_addr = ag.to_addr(kg.to_pubhex(b_sec))
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vmsg('\nwif: {}\naddr: {}\n'.format(b_wif,b_addr))
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tinfo = (bytes.fromhex(b_sec),b_sec,b_wif,kg.desc,fh.name)
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test_equal('addresses',a_addr,b_addr,*tinfo)
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qmsg(green(('\n','')[bool(opt.verbose)] + 'OK'))
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def init_tool(tname):
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return globals()['GenTool'+capfirst(tname.replace('-','_'))]()
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def parse_arg1(arg,arg_id):
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m1 = 'First argument must be a numeric generator ID or two colon-separated generator IDs'
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m2 = 'Second part of first argument must be a numeric generator ID or one of {}'
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def check_gen_num(n):
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if not (1 <= int(n) <= len(g.key_generators)):
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die(1,'{}: invalid generator ID'.format(n))
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return int(n)
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if arg_id == 'a':
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if is_int(arg):
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a_num = check_gen_num(arg)
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return (KeyGenerator(proto,addr_type,a_num),a_num)
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else:
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die(1,m1)
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elif arg_id == 'b':
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if is_int(arg):
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return KeyGenerator(proto,addr_type,check_gen_num(arg))
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elif arg in ext_progs + ['ext']:
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return init_tool(get_tool(arg))
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else:
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die(1,m2.format(ext_progs))
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def parse_arg2():
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m = 'Second argument must be dump filename or integer rounds specification'
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if len(cmd_args) == 1:
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return None
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arg = cmd_args[1]
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if is_int(arg) and int(arg) > 0:
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return int(arg)
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try:
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return open(arg)
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except:
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die(1,m)
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# begin execution
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from mmgen.protocol import init_proto
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from mmgen.altcoin import CoinInfo as ci
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from mmgen.obj import MMGenAddrType,PrivKey
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from mmgen.addr import KeyGenerator,AddrGenerator
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addr_type = MMGenAddrType(
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proto = proto,
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id_str = opt.type or proto.dfl_mmtype )
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ext_progs = list(ci.external_tests[proto.network])
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arg1 = cmd_args[0].split(':')
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if len(arg1) == 1:
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a,a_num = parse_arg1(arg1[0],'a')
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b = None
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elif len(arg1) == 2:
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a,a_num = parse_arg1(arg1[0],'a')
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b = parse_arg1(arg1[1],'b')
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else:
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opts.usage()
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if type(a) == type(b):
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die(1,'Address generators are the same!')
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arg2 = parse_arg2()
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if not opt.all:
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ag = AddrGenerator(proto,addr_type)
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if not b and type(arg2) == int:
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speed_test(a,ag,arg2)
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elif not b and hasattr(arg2,'read'):
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dump_test(a,ag,arg2)
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elif a and b and type(arg2) == int:
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if opt.all:
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from mmgen.protocol import CoinProtocol,init_genonly_altcoins
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init_genonly_altcoins(testnet=proto.testnet)
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for coin in ci.external_tests[proto.network][b.desc]:
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if coin.lower() not in CoinProtocol.coins:
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# ymsg('Coin {} not configured'.format(coin))
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continue
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proto = init_proto(coin)
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if addr_type not in proto.mmtypes:
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continue
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# proto has changed, so reinit kg and ag
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a = KeyGenerator(proto,addr_type,a_num)
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ag = AddrGenerator(proto,addr_type)
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b_chk = ci.get_test_support(proto.coin,addr_type.name,proto.network,tool=b.desc,verbose=not opt.quiet)
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if b_chk == b.desc:
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gentool_test(a,b,ag,arg2)
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else:
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gentool_test(a,b,ag,arg2)
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else:
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opts.usage()
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