mmgen-wallet/test/test.py

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#!/usr/bin/env python3
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#
# mmgen = Multi-Mode GENerator, command-line Bitcoin cold storage solution
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# Copyright (C)2013-2023 The MMGen Project <mmgen@tuta.io>
#
# This program is free software: you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation, either version 3 of the License, or
# (at your option) any later version.
#
# This program is distributed in the hope that it will be useful,
# but WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
# GNU General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with this program. If not, see <http://www.gnu.org/licenses/>.
"""
test/test.py: Test suite for the MMGen wallet system
"""
def check_segwit_opts():
for k,m in (('segwit','S'),('segwit_random','S'),('bech32','B')):
if getattr(cfg,k) and m not in proto.mmtypes:
die(1,f'--{k.replace("_","-")} option incompatible with {proto.cls_name}')
def create_shm_dir(data_dir,trash_dir):
# Laggy flash media can cause pexpect to fail, so create a temporary directory
# under '/dev/shm' and put datadir and tmpdirs here.
import shutil
from subprocess import run
if gc.platform == 'win':
for tdir in (data_dir,trash_dir):
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try: os.listdir(tdir)
except: pass
else:
try: shutil.rmtree(tdir)
except: # we couldn't remove data dir - perhaps regtest daemon is running
try:
run(['python3',os.path.join('cmds','mmgen-regtest'),'stop'],check=True)
except:
die(4,f'Unable to remove {tdir!r}!')
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else:
time.sleep(2)
shutil.rmtree(tdir)
os.mkdir(tdir,0o755)
shm_dir = 'test'
else:
tdir,pfx = '/dev/shm','mmgen-test-'
try:
run(f'rm -rf {tdir}/{pfx}*',shell=True,check=True)
except Exception as e:
die(2,f'Unable to delete directory tree {tdir}/{pfx}* ({e.args[0]})')
try:
import tempfile
shm_dir = str(tempfile.mkdtemp('',pfx,tdir))
except Exception as e:
die(2,f'Unable to create temporary directory in {tdir} ({e.args[0]})')
dest = os.path.join(shm_dir,os.path.basename(trash_dir))
os.mkdir(dest,0o755)
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run(f'rm -rf {trash_dir}',shell=True,check=True)
os.symlink(dest,trash_dir)
dest = os.path.join(shm_dir,os.path.basename(data_dir))
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shutil.move(data_dir,dest) # data_dir was created by Config()
os.symlink(dest,data_dir)
return shm_dir
import sys,os,time
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from include.tests_header import repo_root
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from test.overlay import get_overlay_tree_dir,overlay_setup
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overlay_tree_dir = get_overlay_tree_dir(repo_root)
sys.path.insert(0,overlay_tree_dir)
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if sys.argv[-1] == 'clean':
from shutil import rmtree
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rmtree(overlay_tree_dir,ignore_errors=True)
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else:
# overlay must be set up before importing mmgen mods!
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overlay_setup(repo_root)
from mmgen.common import *
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from mmgen.devinit import init_dev
init_dev()
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try:
os.unlink(os.path.join(repo_root,'test.py.err'))
except:
pass
os.environ['MMGEN_QUIET'] = '0' # for this script and spawned scripts
opts_data = {
'sets': [
('list_current_cmd_groups',True,'list_cmd_groups',True),
('demo',True,'exact_output',True),
('demo',True,'buf_keypress',True),
('demo',True,'pexpect_spawn',True),
],
'text': {
'desc': 'Test suite for the MMGen suite',
'usage':'[options] [command [..command]] | [command_group[.command_subgroup][:command]]',
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'options': """
-h, --help Print this help message
--, --longhelp Print help message for long options (common options)
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-a, --no-altcoin Skip altcoin tests (WIP)
-A, --no-daemon-autostart Don't start and stop daemons automatically
-B, --bech32 Generate and use Bech32 addresses
-b, --buf-keypress Use buffered keypresses as with real human input
(often required on slow systems, or under emulation)
-c, --print-cmdline Print the command line of each spawned command
-C, --coverage Produce code coverage info using trace module
-x, --debug-pexpect Produce debugging output for pexpect calls
--, --demo Add extra delay after each send to make input visible.
Implies --exact-output --pexpect-spawn --buf-keypress
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-d, --deps-only Run a command or command subgroups dependencies without
running the command or command group itself.
-D, --no-daemon-stop Don't stop auto-started daemons after running tests
-E, --direct-exec Bypass pexpect and execute a command directly (for
debugging only)
-e, --exact-output Show the exact output of the MMGen script(s) being run
-G, --exclude-groups=G Exclude the specified command groups (comma-separated)
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-l, --list-cmds List the test scripts available commands
-L, --list-cmd-groups List the test scripts command groups and subgroups
-g, --list-current-cmd-groups List command groups for current configuration
-n, --names Display command names instead of descriptions
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-N, --no-timings Suppress display of timing information
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-o, --log Log commands to file {lf!r}
-O, --pexpect-spawn Use pexpect.spawn instead of popen_spawn (much slower,
kut does real terminal emulation)
-p, --pause Pause between tests, resuming on keypress
-P, --profile Record the execution time of each script
-q, --quiet Produce minimal output. Suppress dependency info
-r, --resume=c Resume at command 'c' after interrupted run
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-R, --resume-after=c Same, but resume at command following 'c'
-t, --step After resuming, execute one command and stop
-s, --system Test scripts and modules installed on system rather
than those in the repo root
-S, --skip-deps Skip dependency checking for command
-u, --usr-random Get random data interactively from user
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-T, --pexpect-timeout=T Set the timeout for pexpect
-v, --verbose Produce more verbose output
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-W, --no-dw-delete Don't remove default wallet from data dir after dw tests
are done
-X, --exit-after=C Exit after command 'C'
-y, --segwit Generate and use Segwit addresses
-Y, --segwit-random Generate and use a random mix of Segwit and Legacy addrs
""",
'notes': """
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If no command is given, the whole test suite is run for the currently
specified coin (default BTC).
For traceback output and error file support, set the EXEC_WRAPPER_TRACEBACK
environment var
"""
},
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'code': {
'options': lambda proto,help_notes,s: s.format(
lf = help_notes('test_py_log_file')
)
}
}
# we need some opt values before running opts.init, so parse without initializing:
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po = Config(opts_data=opts_data,parse_only=True)._parsed_opts
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from test.include.common import set_globals,get_test_data_dir
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data_dir = get_test_data_dir() # include/common.py
# step 1: delete data_dir symlink in ./test;
if not po.user_opts.get('skipping_deps'):
try: os.unlink(data_dir)
except: pass
# step 2: opts.init will create new data_dir in ./test (if not cfg.skipping_deps)
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cfg = Config(opts_data=opts_data)
set_globals(cfg)
from test.test_py_d.common import * # this must be loaded after set_globals()
type(cfg)._reset_ok += (
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'no_daemon_autostart',
'names',
'no_timings',
'exit_after',
'resuming',
'skipping_deps' )
cfg.resuming = any(k in po.user_opts for k in ('resume','resume_after'))
cfg.skipping_deps = cfg.resuming or 'skip_deps' in po.user_opts
cmd_args = cfg._args
if cfg.pexpect_spawn and gc.platform == 'win':
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die(1,'--pexpect-spawn option not supported on Windows platform, exiting')
if cfg.daemon_id and cfg.daemon_id in cfg.blacklisted_daemons.split():
die(1,f'test.py: daemon {cfg.daemon_id!r} blacklisted, exiting')
network_id = cfg.coin.lower() + ('_tn' if cfg.testnet else '')
proto = cfg._proto
# step 3: move data_dir to /dev/shm and symlink it back to ./test:
trash_dir = os.path.join('test','trash')
if not cfg.skipping_deps:
shm_dir = create_shm_dir(data_dir,trash_dir)
check_segwit_opts()
testing_segwit = cfg.segwit or cfg.segwit_random or cfg.bech32
if cfg.test_suite_deterministic:
cfg.no_timings = True
init_color(num_colors=0)
os.environ['MMGEN_DISABLE_COLOR'] = '1'
if cfg.profile:
cfg.names = True
if cfg.exact_output:
def noop(s):
pass
qmsg = qmsg_r = msg = noop
else:
qmsg = cfg._util.qmsg
qmsg_r = cfg._util.qmsg_r
if cfg.skipping_deps:
cfg.no_daemon_autostart = True
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from test.test_py_d.cfg import cfgs,fixup_cfgs
for k in cfgs:
cfgs[k]['tmpdir'] = os.path.join('test','tmp',str(k))
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fixup_cfgs()
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utils = {
# 'check_deps': 'check dependencies for specified command (WIP)', # TODO
'clean': 'clean specified tmp dir(s) (specify by integer, no arg = all dirs)',
}
def list_cmds():
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def gen_output():
gm = CmdGroupMgr()
cw,d = 0,[]
yield green('AVAILABLE COMMANDS:')
for gname in gm.cmd_groups:
ts = gm.gm_init_group(None,gname,None,None)
desc = ts.__doc__.strip() if ts.__doc__ else type(ts).__name__
d.append( (gname,desc,gm.cmd_list,gm.dpy_data) )
cw = max(max(len(k) for k in gm.dpy_data),cw)
for gname,gdesc,clist,dpdata in d:
yield '\n'+green(f'{gname!r} - {gdesc}:')
for cmd in clist:
data = dpdata[cmd]
yield ' {:{w}} - {}'.format(
cmd,
(data if type(data) == str else data[1]),
w = cw )
w = max(map(len,utils))
yield '\n'+green('AVAILABLE UTILITIES:')
for cmd in sorted(utils):
yield ' {:{w}} - {}'.format( cmd, utils[cmd], w=w )
from mmgen.ui import do_pager
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do_pager('\n'.join(gen_output()))
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
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sys.exit(0)
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
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def do_between():
if cfg.pause:
confirm_continue()
elif (cfg.verbose or cfg.exact_output) and not cfg.skipping_deps:
sys.stderr.write('\n')
def list_tmpdirs():
return {k:cfgs[k]['tmpdir'] for k in cfgs}
def clean(usr_dirs=None,clean_overlay=True):
if cfg.skipping_deps:
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return
all_dirs = list_tmpdirs()
dirnums = map(int,(usr_dirs if usr_dirs is not None else all_dirs))
dirlist = list(map(str,sorted(dirnums)))
for d in dirlist:
if d in all_dirs:
cleandir(all_dirs[d])
else:
die(1,f'{d}: invalid directory number')
if dirlist:
iqmsg(green('Cleaned tmp director{} {}'.format(
suf(dirlist,'ies'),
' '.join(dirlist))
))
cleandir(data_dir)
cleandir(trash_dir)
iqmsg(green(f'Cleaned directories {data_dir!r} {trash_dir!r}'))
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
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if clean_overlay:
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cleandir(overlay_tree_dir)
iqmsg(green(f'Cleaned directory {os.path.relpath(overlay_tree_dir)!r}'))
def create_tmp_dirs(shm_dir):
if gc.platform == 'win':
for cfg in sorted(cfgs):
mk_tmpdir(cfgs[cfg]['tmpdir'])
else:
os.makedirs( 'test/tmp', mode=0o755, exist_ok=True )
for cfg in sorted(cfgs):
src = os.path.join(shm_dir,cfgs[cfg]['tmpdir'].split('/')[-1])
mk_tmpdir(src)
try:
os.unlink(cfgs[cfg]['tmpdir'])
except OSError as e:
if e.errno != 2:
raise
finally:
os.symlink(src,cfgs[cfg]['tmpdir'])
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
2018-07-25 12:57:04 +00:00
def set_environ_for_spawned_scripts():
from mmgen.term import get_terminal_size
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os.environ['MMGEN_COLUMNS'] = str(get_terminal_size().width)
if os.getenv('MMGEN_DEBUG_ALL'):
for name in cfg._env_opts:
if name[:11] == 'MMGEN_DEBUG':
os.environ[name] = '1'
if not cfg.system:
os.environ['PYTHONPATH'] = repo_root
os.environ['MMGEN_NO_LICENSE'] = '1'
os.environ['MMGEN_BOGUS_SEND'] = '1'
os.environ['MMGEN_TEST_SUITE_PEXPECT'] = '1'
def set_restore_term_at_exit():
import termios,atexit
fd = sys.stdin.fileno()
old = termios.tcgetattr(fd)
def at_exit():
termios.tcsetattr(fd, termios.TCSADRAIN, old)
atexit.register(at_exit)
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
2018-07-25 12:57:04 +00:00
class CmdGroupMgr(object):
from test.test_py_d.cfg import cmd_groups_dfl,cmd_groups_extra
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
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cmd_groups = cmd_groups_dfl.copy()
cmd_groups.update(cmd_groups_extra)
@staticmethod
def create_cmd_group(cls,sg_name=None):
cmd_group_in = dict(cls.cmd_group_in)
if sg_name and 'subgroup.' + sg_name not in cmd_group_in:
die(1,f'{sg_name!r}: no such subgroup in test group {cls.__name__}')
def add_entries(key,add_deps=True,added_subgroups=[]):
if add_deps:
for dep in cmd_group_in['subgroup.'+key]:
for e in add_entries(dep):
yield e
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assert isinstance(cls.cmd_subgroups[key][0],str), f'header for subgroup {key!r} missing!'
if not key in added_subgroups:
for e in cls.cmd_subgroups[key][1:]:
yield e
added_subgroups.append(key)
def gen():
for name,data in cls.cmd_group_in:
if name.startswith('subgroup.'):
from mmgen.util2 import removeprefix
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sg_key = removeprefix(name,'subgroup.')
# sg_key = name.removeprefix('subgroup.') # Python 3.9
if sg_name in (None,sg_key):
for e in add_entries(
sg_key,
add_deps = sg_name and not cfg.skipping_deps,
added_subgroups = [sg_name] if cfg.deps_only else [] ):
yield e
if cfg.deps_only and sg_key == sg_name:
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return
elif not cfg.skipping_deps:
yield (name,data)
return tuple(gen())
def load_mod(self,gname,modname=None):
clsname,kwargs = self.cmd_groups[gname]
if modname == None and 'modname' in kwargs:
modname = kwargs['modname']
import importlib
modpath = f'test.test_py_d.ts_{modname or gname}'
return getattr(importlib.import_module(modpath),clsname)
def create_group(self,gname,sg_name,full_data=False,modname=None,is3seed=False,add_dpy=False):
"""
Initializes the list 'cmd_list' and dict 'dpy_data' from module's cmd_group data.
Alternatively, if called with 'add_dpy=True', updates 'dpy_data' from module data
without touching 'cmd_list'
"""
cls = self.load_mod(gname,modname)
cdata = []
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def get_shared_deps(cmdname,tmpdir_idx):
"""
shared_deps are "implied" dependencies for all cmds in cmd_group that don't appear in
the cmd_group data or cmds' argument lists. Supported only for 3seed tests at present.
"""
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if not hasattr(cls,'shared_deps'):
return []
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return [k for k,v in cfgs[str(tmpdir_idx)]['dep_generators'].items()
if k in cls.shared_deps and v != cmdname]
if not hasattr(cls,'cmd_group'):
cls.cmd_group = self.create_cmd_group(cls,sg_name)
for a,b in cls.cmd_group:
if is3seed:
for n,(i,j) in enumerate(zip(cls.tmpdir_nums,(128,192,256))):
k = f'{a}_{n+1}'
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if hasattr(cls,'skip_cmds') and k in cls.skip_cmds:
continue
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sdeps = get_shared_deps(k,i)
if type(b) == str:
cdata.append( (k, (i,f'{b} ({j}-bit)',[[[]+sdeps,i]])) )
else:
cdata.append( (k, (i,f'{b[1]} ({j}-bit)',[[b[0]+sdeps,i]])) )
else:
cdata.append( (a, b if full_data else (cls.tmpdir_nums[0],b,[[[],cls.tmpdir_nums[0]]])) )
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
2018-07-25 12:57:04 +00:00
if add_dpy:
self.dpy_data.update(dict(cdata))
else:
self.cmd_list = tuple(e[0] for e in cdata)
self.dpy_data = dict(cdata)
return cls
def gm_init_group(self,trunner,gname,sg_name,spawn_prog):
kwargs = self.cmd_groups[gname][1]
cls = self.create_group(gname,sg_name,**kwargs)
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cls.group_name = gname
return cls(trunner,cfgs,spawn_prog)
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def get_cls_by_gname(self,gname):
return self.load_mod( gname, self.cmd_groups[gname][1].get('modname') )
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def list_cmd_groups(self):
ginfo = []
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for gname in self.cmd_groups:
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ginfo.append(( gname, self.get_cls_by_gname(gname) ))
if cfg.list_current_cmd_groups:
exclude = (cfg.exclude_groups or '').split(',')
ginfo = [g for g in ginfo
if network_id in g[1].networks
and not g[0] in exclude
and g[0] in tuple(self.cmd_groups_dfl) + tuple(cmd_args) ]
desc = 'CONFIGURED'
else:
desc = 'AVAILABLE'
def gen_output():
yield green(f'{desc} COMMAND GROUPS AND SUBGROUPS:')
yield ''
for name,cls in ginfo:
yield ' {} - {}'.format(
yellow(name.ljust(13)),
(cls.__doc__.strip() if cls.__doc__ else cls.__name__) )
if hasattr(cls,'cmd_subgroups'):
subgroups = {k:v for k,v in cls.cmd_subgroups.items() if not k.startswith('_')}
max_w = max(len(k) for k in subgroups)
for k,v in subgroups.items():
yield ' + {} · {}'.format( cyan(k.ljust(max_w+1)), v[0] )
from mmgen.ui import do_pager
do_pager('\n'.join(gen_output()))
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Msg( '\n' + ' '.join(e[0] for e in ginfo) )
sys.exit(0)
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def find_cmd_in_groups(self,cmd,group=None):
"""
Search for a test command in specified group or all configured command groups
and return it as a string. Loads modules but alters no global variables.
"""
if group:
if not group in [e[0] for e in self.cmd_groups]:
die(1,f'{group!r}: unrecognized group')
groups = [self.cmd_groups[group]]
else:
groups = self.cmd_groups
for gname in groups:
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cls = self.get_cls_by_gname(gname)
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if not hasattr(cls,'cmd_group'):
cls.cmd_group = self.create_cmd_group(cls)
if cmd in cls.cmd_group: # first search the class
return gname
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if cmd in dir(cls(None,None,None)): # then a throwaway instance
return gname # cmd might exist in more than one group - we'll go with the first
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return None
class TestSuiteRunner(object):
'test suite runner'
def __del__(self):
if cfg.log:
self.log_fd.close()
def __init__(self,data_dir,trash_dir):
self.data_dir = data_dir
self.trash_dir = trash_dir
self.cmd_total = 0
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self.rebuild_list = {}
self.gm = CmdGroupMgr()
self.repo_root = repo_root
self.skipped_warnings = []
self.resume_cmd = None
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self.deps_only = None
if cfg.log:
self.log_fd = open(log_file,'a')
self.log_fd.write(f'\nLog started: {make_timestr()} UTC\n')
omsg(f'INFO → Logging to file {log_file!r}')
else:
self.log_fd = None
ERC20 token support (create/deploy, TX create/sign/send) This feature is EXPERIMENTAL. Until v0.9.9 is released, mainnet use is strictly at your own risk! To test on dev chain, run 'test/test.py -e ethdev' To test on Kovan, add '--testnet=1' option to all commands below Transaction example: Generate some ETH addresses with your default wallet: $ mmgen-addrgen --coin=eth 1-5 Create an EOS token tracking wallet and import the addresses into it: $ mmgen-addrimport --coin=eth --token=86fa049857e0209aa7d9e616f7eb3b3b78ecfdb0 ABCDABCD-ETH[1-5].addrs Send 10+ EOS from an exchange or another wallet to address ABCDABCD:E:1 Create a TX sending 10 EOS to address aabbccdd..., with change to ABCDABCD:E:2: $ mmgen-txcreate --coin=eth --token=eos aabbccddaabbccddaabbccddaabbccddaabbccdd,10 ABCDABCD:E:2 On your offline machine, sign the TX: $ mmgen-txsign --coin=eth --token=eos ABC123-EOS[10,50000].rawtx On your online machine, send the TX: $ mmgen-txsend --coin=eth --token=eos ABC123-EOS[10,50000].sigtx View your EOS tracking wallet: $ mmgen-tool --coin=eth --token=eos twview Token creation/deployment example: Install the Solidity compiler ('solc') on your system. Create a token 'MFT' with default parameters, owned by ddeeff... (ABCDABCD:E:1): $ scripts/create-token.py --symbol=MFT --name='My First Token' ddeeffddeeffddeeffddeeffddeeffddeeffddee Deploy the token on the ETH blockchain: $ mmgen-txdo --coin=eth --tx-gas=200000 --contract-data=SafeMath.bin $ mmgen-txdo --coin=eth --tx-gas=250000 --contract-data=Owned.bin $ mmgen-txdo --coin=eth --tx-gas=1100000 --contract-data=Token.bin ... Token address: abcd1234abcd1234abcd1234abcd1234abcd1234 Create an MFT token tracking wallet and import your ETH addresses into it: $ mmgen-addrimport --coin=eth --token=abcd1234abcd1234abcd1234abcd1234abcd1234 ABCDABCD-ETH[1-5].addrs View your MFT tracking wallet: $ mmgen-tool --coin=eth --token=mft twview
2018-07-25 12:57:04 +00:00
if cfg.coverage:
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coverdir,accfile = init_coverage()
omsg(f'INFO → Writing coverage files to {coverdir!r}')
self.pre_args = ['python3','-m','trace','--count','--coverdir='+coverdir,'--file='+accfile]
else:
self.pre_args = ['python3'] if gc.platform == 'win' else []
if cfg.pexpect_spawn:
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omsg(f'INFO → Using pexpect.spawn() for real terminal emulation')
def spawn_wrapper(self,cmd,
args = [],
extra_desc = '',
no_output = False,
msg_only = False,
no_msg = False,
cmd_dir = 'cmds',
no_exec_wrapper = False,
timeout = None,
pexpect_spawn = None ):
desc = self.ts.test_name if cfg.names else self.gm.dpy_data[self.ts.test_name][1]
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if extra_desc:
desc += ' ' + extra_desc
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cmd_path = (
cmd if cfg.system # cfg.system is broken for main test group with overlay tree
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else os.path.relpath(os.path.join(repo_root,cmd_dir,cmd)) )
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args = (
self.pre_args +
([] if no_exec_wrapper else ['scripts/exec_wrapper.py']) +
[cmd_path] +
self.passthru_opts +
self.ts.extra_spawn_args +
args )
qargs = ['{q}{}{q}'.format( a, q = "'" if ' ' in a else '' ) for a in args]
cmd_disp = ' '.join(qargs).replace('\\','/') # for mingw
if cfg.log:
self.log_fd.write('[{}][{}:{}] {}\n'.format(
proto.coin.lower(),
self.ts.group_name,
self.ts.test_name,
cmd_disp))
for i in args: # die only after writing log entry
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if not isinstance(i,str):
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die(2,'Error: missing input files in cmd line?:\nName: {}\nCmdline: {!r}'.format(
self.ts.test_name,
args ))
if not no_msg:
t_pfx = '' if cfg.no_timings else f'[{time.time() - self.start_time:08.2f}] '
if cfg.verbose or cfg.print_cmdline or cfg.exact_output:
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omsg(green(f'{t_pfx}Testing: {desc}'))
if not msg_only:
clr1,clr2 = (nocolor,nocolor) if cfg.print_cmdline else (green,cyan)
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omsg(
clr1('Executing: ') +
clr2(repr(cmd_disp) if gc.platform == 'win' else cmd_disp)
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)
else:
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omsg_r('{a}Testing {b}: '.format(
a = t_pfx,
b = desc )
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if msg_only:
return
# NB: the `pexpect_spawn` arg enables hold_protect and send_delay while the corresponding cmdline
# option does not. For performance reasons, this is the desired behavior. For full emulation of
# the user experience with hold protect enabled, specify --buf-keypress or --demo.
send_delay = 0.4 if pexpect_spawn is True or cfg.buf_keypress else None
pexpect_spawn = pexpect_spawn if pexpect_spawn is not None else bool(cfg.pexpect_spawn)
os.environ['MMGEN_HOLD_PROTECT_DISABLE'] = '' if send_delay else '1'
os.environ['MMGEN_TEST_SUITE_POPEN_SPAWN'] = '' if pexpect_spawn else '1'
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os.environ['MMGEN_FORCE_COLOR'] = '1' if self.ts.color else ''
env = { 'EXEC_WRAPPER_SPAWN':'1' }
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env.update(os.environ)
if 'exec_wrapper_init' in globals():
# test.py itself is running under exec_wrapper, so disable traceback file writing for spawned script
env.update({ 'EXEC_WRAPPER_TRACEBACK':'' }) # Python 3.9: OR the dicts
from test.include.pexpect import MMGenPexpect
return MMGenPexpect(
args = args,
no_output = no_output,
env = env,
pexpect_spawn = pexpect_spawn,
timeout = timeout,
send_delay = send_delay )
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def end_msg(self):
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t = int(time.time() - self.start_time)
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sys.stderr.write(green(
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f'{self.cmd_total} test{suf(self.cmd_total)} performed' +
('\n' if cfg.no_timings else f'. Elapsed time: {t//60:02d}:{t%60:02d}\n')
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))
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def init_group(self,gname,sg_name=None,cmd=None,quiet=False,do_clean=True):
ts_cls = CmdGroupMgr().load_mod(gname)
for k in ('segwit','segwit_random','bech32'):
if getattr(cfg,k):
segwit_opt = k
break
else:
segwit_opt = None
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def gen_msg():
yield ('{g}:{c}' if cmd else 'test group {g!r}').format(g=gname,c=cmd)
if len(ts_cls.networks) != 1:
yield f' for {proto.coin} {proto.network}'
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if segwit_opt:
yield ' (--{})'.format( segwit_opt.replace('_','-') )
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m = ''.join(gen_msg())
if segwit_opt and not ts_cls.segwit_opts_ok:
iqmsg('INFO → skipping ' + m)
return False
# 'networks = ()' means all networks allowed
nws = [(e.split('_')[0],'testnet') if '_' in e else (e,'mainnet') for e in ts_cls.networks]
if nws:
coin = proto.coin.lower()
nw = ('mainnet','testnet')[proto.testnet]
for a,b in nws:
if a == coin and b == nw:
break
else:
iqmsg('INFO → skipping ' + m)
return False
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if do_clean:
clean(ts_cls.tmpdir_nums,clean_overlay=False)
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if not quiet:
bmsg('Executing ' + m)
if (not self.daemon_started) and self.gm.get_cls_by_gname(gname).need_daemon:
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start_test_daemons(network_id,remove_datadir=True)
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self.daemon_started = True
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os.environ['MMGEN_BOGUS_UNSPENT_DATA'] = '' # zero this here, so test groups don't have to
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self.ts = self.gm.gm_init_group(self,gname,sg_name,self.spawn_wrapper)
self.ts_clsname = type(self.ts).__name__
# pass through opts from cmdline (po.user_opts)
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self.passthru_opts = ['--{}{}'.format(
k.replace('_','-'),
'' if cfg._uopts[k] is True else '=' + cfg._uopts[k]
) for k in cfg._uopts if k in self.ts.base_passthru_opts + self.ts.passthru_opts]
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if cfg.resuming:
rc = cfg.resume or cfg.resume_after
offset = 1 if cfg.resume_after else 0
self.resume_cmd = self.gm.cmd_list[self.gm.cmd_list.index(rc)+offset]
omsg(f'INFO → Resuming at command {self.resume_cmd!r}')
if cfg.step:
cfg.exit_after = self.resume_cmd
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if cfg.exit_after and cfg.exit_after not in self.gm.cmd_list:
die(1,f'{cfg.exit_after!r}: command not recognized')
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return True
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def run_tests(self,cmd_args):
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self.start_time = time.time()
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self.daemon_started = False
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gname_save = None
if cmd_args:
for arg in cmd_args:
if arg in self.gm.cmd_groups:
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if not self.init_group(arg):
continue
for cmd in self.gm.cmd_list:
self.check_needs_rerun(cmd,build=True)
do_between()
else:
def parse_arg(arg):
if '.' in arg:
a,b = arg.split('.')
return [a] + b.split(':') if ':' in b else [a,b,None]
elif ':' in arg:
a,b = arg.split(':')
return [a,None,b]
else:
return [self.gm.find_cmd_in_groups(arg),None,arg]
gname,sg_name,cmdname = parse_arg(arg)
if gname:
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same_grp = gname == gname_save # same group as previous cmd: don't clean, suppress blue msg
if not self.init_group(gname,sg_name,cmdname,quiet=same_grp,do_clean=not same_grp):
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continue
if cmdname:
if cfg.deps_only:
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self.deps_only = cmdname
try:
self.check_needs_rerun(cmdname,build=True)
except Exception as e: # allow calling of functions not in cmd_group
if isinstance(e,KeyError) and e.args[0] == cmdname:
ret = getattr(self.ts,cmdname)()
if type(ret).__name__ == 'coroutine':
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async_run(ret)
else:
raise
do_between()
else:
for cmd in self.gm.cmd_list:
self.check_needs_rerun(cmd,build=True)
do_between()
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gname_save = gname
else:
die(1,f'{arg!r}: command not recognized')
else:
if cfg.exclude_groups:
exclude = cfg.exclude_groups.split(',')
for e in exclude:
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if e not in self.gm.cmd_groups_dfl:
die(1,f'{e!r}: group not recognized')
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for gname in self.gm.cmd_groups_dfl:
if cfg.exclude_groups and gname in exclude:
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continue
if not self.init_group(gname):
continue
for cmd in self.gm.cmd_list:
self.check_needs_rerun(cmd,build=True)
do_between()
self.end_msg()
def check_needs_rerun(self,cmd,
build = False,
root = True,
force_delete = False,
dpy = False ):
self.ts.test_name = cmd
if self.ts_clsname == 'TestSuiteMain' and testing_segwit and cmd not in self.ts.segwit_do:
return False
rerun = root # force_delete is not passed to recursive call
fns = []
if force_delete or not root:
# does cmd produce a needed dependency(ies)?
ret = self.get_num_exts_for_cmd(cmd,dpy)
if ret:
for ext in ret[1]:
fn = get_file_with_ext(cfgs[ret[0]]['tmpdir'],ext,delete=build)
if fn:
if force_delete: os.unlink(fn)
else: fns.append(fn)
else: rerun = True
fdeps = self.generate_file_deps(cmd)
cdeps = self.generate_cmd_deps(fdeps)
for fn in fns:
my_age = os.stat(fn).st_mtime
for num,ext in fdeps:
f = get_file_with_ext(cfgs[num]['tmpdir'],ext,delete=build)
if f and os.stat(f).st_mtime > my_age:
rerun = True
for cdep in cdeps:
if self.check_needs_rerun(cdep,build=build,root=False,dpy=cmd):
rerun = True
if build:
if rerun:
for fn in fns:
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if not root:
os.unlink(fn)
if not (dpy and cfg.skipping_deps):
self.run_test(cmd)
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if not root:
do_between()
else:
# If prog produces multiple files:
if cmd not in self.rebuild_list or rerun == True:
self.rebuild_list[cmd] = (rerun,fns[0] if fns else '') # FIX
return rerun
def run_test(self,cmd):
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if self.deps_only and cmd == self.deps_only:
sys.exit(0)
d = [(str(num),ext) for exts,num in self.gm.dpy_data[cmd][2] for ext in exts]
# delete files depended on by this cmd
arg_list = [get_file_with_ext(cfgs[num]['tmpdir'],ext) for num,ext in d]
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# remove shared_deps from arg list
if hasattr(self.ts,'shared_deps'):
arg_list = arg_list[:-len(self.ts.shared_deps)]
if self.resume_cmd:
if cmd != self.resume_cmd:
return
bmsg(f'Resuming at {self.resume_cmd!r}')
self.resume_cmd = None
cfg.skipping_deps = False
cfg.resuming = False
if cfg.profile:
start = time.time()
self.ts.test_name = cmd # NB: Do not remove, this needs to be set twice
cdata = self.gm.dpy_data[cmd]
# self.ts.test_dpydata = cdata
self.ts.tmpdir_num = cdata[0]
# self.ts.cfg = cfgs[str(cdata[0])] # will remove this eventually
test_cfg = cfgs[str(cdata[0])]
for k in ( 'seed_len', 'seed_id',
'wpasswd', 'kapasswd',
'segwit', 'hash_preset',
'bw_filename', 'bw_params', 'ref_bw_seed_id',
'addr_idx_list', 'pass_idx_list' ):
if k in test_cfg:
setattr(self.ts,k,test_cfg[k])
asyncio/aiohttp support Asynchronous HTTP significantly speeds up operations involving multiple JSON-RPC calls to the server, such as tracking wallet views for wallets with a large number of outputs. This patch adds base-level asyncio infrastructure plus aiohttp support to all applicable MMGen commands. The aiohttp package is not currently supported by MSYS2, so Windows users will have to choose one of the other backends ('curl' is the default). Tested on: Linux, Armbian, Windows; Python 3.6, 3.7, 3.8 New user features: - configurable RPC backends via the 'rpc_backend' option. Supported options are 'aiohttp' (Linux-only), 'httplib', 'requests' and 'curl' - configurable RPC queue size via the 'aiohttp_rpc_queue_len' option The patch also includes a rewrite/redesign of large parts of the MMGen code base, most importantly: - rpc.py - full rewrite of RPC library, new RPCBackends class - main_addrimport.py - full rewrite - main_autosign.py - LED code now handled by new LEDControl class - eth/tw.py, eth/tx.py - reworked logic for resolving token symbols and addresses - eth/tx.py - separate classes for signed and unsigned transactions Testing: # Set a backend (choose one): $ export MMGEN_RPC_BACKEND='aiohttp' # Linux-only $ export MMGEN_RPC_BACKEND='curl' # Windows $ export MMGEN_RPC_BACKEND='httplib' # compare performance with 'aiohttp' # Bitcoin: $ test/unit_tests.py rpc btc $ test/test.py main regtest autosign # Ethereum: $ test/unit_tests.py rpc eth $ test/tooltest2.py --coin=eth --testnet=1 txview $ test/test.py --coin=eth ethdev # Monero wallet: $ test/unit_tests.py rpc xmr_wallet $ test/test-release.sh -F xmr
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ret = getattr(self.ts,cmd)(*arg_list) # run the test
if type(ret).__name__ == 'coroutine':
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ret = async_run(ret)
asyncio/aiohttp support Asynchronous HTTP significantly speeds up operations involving multiple JSON-RPC calls to the server, such as tracking wallet views for wallets with a large number of outputs. This patch adds base-level asyncio infrastructure plus aiohttp support to all applicable MMGen commands. The aiohttp package is not currently supported by MSYS2, so Windows users will have to choose one of the other backends ('curl' is the default). Tested on: Linux, Armbian, Windows; Python 3.6, 3.7, 3.8 New user features: - configurable RPC backends via the 'rpc_backend' option. Supported options are 'aiohttp' (Linux-only), 'httplib', 'requests' and 'curl' - configurable RPC queue size via the 'aiohttp_rpc_queue_len' option The patch also includes a rewrite/redesign of large parts of the MMGen code base, most importantly: - rpc.py - full rewrite of RPC library, new RPCBackends class - main_addrimport.py - full rewrite - main_autosign.py - LED code now handled by new LEDControl class - eth/tw.py, eth/tx.py - reworked logic for resolving token symbols and addresses - eth/tx.py - separate classes for signed and unsigned transactions Testing: # Set a backend (choose one): $ export MMGEN_RPC_BACKEND='aiohttp' # Linux-only $ export MMGEN_RPC_BACKEND='curl' # Windows $ export MMGEN_RPC_BACKEND='httplib' # compare performance with 'aiohttp' # Bitcoin: $ test/unit_tests.py rpc btc $ test/test.py main regtest autosign # Ethereum: $ test/unit_tests.py rpc eth $ test/tooltest2.py --coin=eth --testnet=1 txview $ test/test.py --coin=eth ethdev # Monero wallet: $ test/unit_tests.py rpc xmr_wallet $ test/test-release.sh -F xmr
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self.process_retval(cmd,ret)
if cfg.profile:
omsg('\r\033[50C{:.4f}'.format( time.time() - start ))
if cmd == cfg.exit_after:
sys.exit(0)
def warn_skipped(self):
if self.skipped_warnings:
print(yellow('The following tests were skipped and may require attention:'))
r = '-' * 72 + '\n'
print(r+('\n'+r).join(self.skipped_warnings))
def process_retval(self,cmd,ret):
if type(ret).__name__ == 'MMGenPexpect':
ret.ok()
self.cmd_total += 1
elif ret == 'ok':
ok()
self.cmd_total += 1
elif ret == 'error':
die(2,red(f'\nTest {self.ts.test_name!r} failed'))
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elif ret in ('skip','silent'):
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if ret == 'silent':
self.cmd_total += 1
elif type(ret) == tuple and ret[0] == 'skip_warn':
self.skipped_warnings.append(
'Test {!r} was skipped:\n {}'.format(cmd,'\n '.join(ret[1].split('\n'))))
else:
die(2,f'{cmd!r} returned {ret}')
def check_deps(self,cmds): # TODO: broken
if len(cmds) != 1:
die(1,f'Usage: {gc.prog_name} check_deps <command>')
cmd = cmds[0]
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if cmd not in self.gm.cmd_list:
die(1,f'{cmd!r}: unrecognized command')
if not cfg.quiet:
omsg(f'Checking dependencies for {cmd!r}')
self.check_needs_rerun(self.ts,cmd,build=False)
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w = max(map(len,self.rebuild_list)) + 1
for cmd in self.rebuild_list:
c = self.rebuild_list[cmd]
m = 'Rebuild' if (c[0] and c[1]) else 'Build' if c[0] else 'OK'
omsg('cmd {:<{w}} {}'.format( cmd+':', m, w=w ))
def generate_file_deps(self,cmd):
return [(str(n),e) for exts,n in self.gm.dpy_data[cmd][2] for e in exts]
def generate_cmd_deps(self,fdeps):
return [cfgs[str(n)]['dep_generators'][ext] for n,ext in fdeps]
def get_num_exts_for_cmd(self,cmd,dpy=False): # dpy ignored here
try:
num = str(self.gm.dpy_data[cmd][0])
except KeyError:
qmsg_r(f'Missing dependency {cmd!r}')
gname = self.gm.find_cmd_in_groups(cmd)
if gname:
kwargs = self.gm.cmd_groups[gname][1]
kwargs.update({'add_dpy':True})
self.gm.create_group(gname,None,**kwargs)
num = str(self.gm.dpy_data[cmd][0])
qmsg(f' found in group {gname!r}')
else:
qmsg(' not found in any command group!')
raise
dgl = cfgs[num]['dep_generators']
if cmd in dgl.values():
exts = [k for k in dgl if dgl[k] == cmd]
return (num,exts)
else:
return None
# main()
if not cfg.skipping_deps: # do this before list cmds exit, so we stay in sync with shm_dir
create_tmp_dirs(shm_dir)
if cfg.list_cmd_groups:
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CmdGroupMgr().list_cmd_groups()
elif cfg.list_cmds:
list_cmds()
elif cmd_args and cmd_args[0] in utils:
globals()[cmd_args[0]](*cmd_args[1:])
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sys.exit(0)
if cfg.pause:
set_restore_term_at_exit()
set_environ_for_spawned_scripts()
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from mmgen.exception import TestSuiteException,TestSuiteFatalException
try:
tr = TestSuiteRunner(data_dir,trash_dir)
tr.run_tests(cmd_args)
tr.warn_skipped()
if tr.daemon_started:
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stop_test_daemons(network_id)
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except KeyboardInterrupt:
if tr.daemon_started:
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stop_test_daemons(network_id)
tr.warn_skipped()
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die(1,'\ntest.py exiting at user request')
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except TestSuiteException as e:
die(2,e.args[0])
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except TestSuiteFatalException as e:
die(4,e.args[0])
except Exception:
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if 'exec_wrapper_init' in globals(): # test.py itself is running under exec_wrapper
import traceback
print(''.join(traceback.format_exception(*sys.exc_info())))
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msg(blue('Test script exited with error'))
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else:
msg(blue('Spawned script exited with error'))
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raise
except:
raise