451 lines
14 KiB
Python
451 lines
14 KiB
Python
# Copyright 2014-2015 Canonical Limited.
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#
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# This file is part of charm-helpers.
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#
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# charm-helpers is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Lesser General Public License version 3 as
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# published by the Free Software Foundation.
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#
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# charm-helpers 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 Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public License
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# along with charm-helpers. If not, see <http://www.gnu.org/licenses/>.
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"""Tools for working with the host system"""
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# Copyright 2012 Canonical Ltd.
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#
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# Authors:
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# Nick Moffitt <nick.moffitt@canonical.com>
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# Matthew Wedgwood <matthew.wedgwood@canonical.com>
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import os
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import re
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import pwd
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import grp
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import random
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import string
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import subprocess
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import hashlib
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from contextlib import contextmanager
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from collections import OrderedDict
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import six
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from .hookenv import log
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from .fstab import Fstab
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def service_start(service_name):
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"""Start a system service"""
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return service('start', service_name)
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def service_stop(service_name):
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"""Stop a system service"""
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return service('stop', service_name)
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def service_restart(service_name):
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"""Restart a system service"""
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return service('restart', service_name)
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def service_reload(service_name, restart_on_failure=False):
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"""Reload a system service, optionally falling back to restart if
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reload fails"""
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service_result = service('reload', service_name)
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if not service_result and restart_on_failure:
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service_result = service('restart', service_name)
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return service_result
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def service(action, service_name):
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"""Control a system service"""
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cmd = ['service', service_name, action]
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return subprocess.call(cmd) == 0
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def service_running(service):
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"""Determine whether a system service is running"""
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try:
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output = subprocess.check_output(
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['service', service, 'status'],
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stderr=subprocess.STDOUT).decode('UTF-8')
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except subprocess.CalledProcessError:
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return False
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else:
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if ("start/running" in output or "is running" in output):
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return True
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else:
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return False
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def service_available(service_name):
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"""Determine whether a system service is available"""
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try:
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subprocess.check_output(
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['service', service_name, 'status'],
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stderr=subprocess.STDOUT).decode('UTF-8')
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except subprocess.CalledProcessError as e:
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return 'unrecognized service' not in e.output
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else:
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return True
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def adduser(username, password=None, shell='/bin/bash', system_user=False):
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"""Add a user to the system"""
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try:
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user_info = pwd.getpwnam(username)
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log('user {0} already exists!'.format(username))
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except KeyError:
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log('creating user {0}'.format(username))
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cmd = ['useradd']
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if system_user or password is None:
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cmd.append('--system')
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else:
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cmd.extend([
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'--create-home',
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'--shell', shell,
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'--password', password,
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])
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cmd.append(username)
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subprocess.check_call(cmd)
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user_info = pwd.getpwnam(username)
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return user_info
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def add_group(group_name, system_group=False):
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"""Add a group to the system"""
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try:
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group_info = grp.getgrnam(group_name)
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log('group {0} already exists!'.format(group_name))
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except KeyError:
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log('creating group {0}'.format(group_name))
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cmd = ['addgroup']
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if system_group:
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cmd.append('--system')
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else:
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cmd.extend([
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'--group',
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])
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cmd.append(group_name)
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subprocess.check_call(cmd)
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group_info = grp.getgrnam(group_name)
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return group_info
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def add_user_to_group(username, group):
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"""Add a user to a group"""
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cmd = [
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'gpasswd', '-a',
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username,
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group
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]
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log("Adding user {} to group {}".format(username, group))
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subprocess.check_call(cmd)
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def rsync(from_path, to_path, flags='-r', options=None):
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"""Replicate the contents of a path"""
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options = options or ['--delete', '--executability']
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cmd = ['/usr/bin/rsync', flags]
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cmd.extend(options)
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cmd.append(from_path)
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cmd.append(to_path)
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log(" ".join(cmd))
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return subprocess.check_output(cmd).decode('UTF-8').strip()
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def symlink(source, destination):
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"""Create a symbolic link"""
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log("Symlinking {} as {}".format(source, destination))
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cmd = [
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'ln',
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'-sf',
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source,
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destination,
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]
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subprocess.check_call(cmd)
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def mkdir(path, owner='root', group='root', perms=0o555, force=False):
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"""Create a directory"""
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log("Making dir {} {}:{} {:o}".format(path, owner, group,
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perms))
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uid = pwd.getpwnam(owner).pw_uid
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gid = grp.getgrnam(group).gr_gid
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realpath = os.path.abspath(path)
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path_exists = os.path.exists(realpath)
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if path_exists and force:
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if not os.path.isdir(realpath):
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log("Removing non-directory file {} prior to mkdir()".format(path))
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os.unlink(realpath)
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os.makedirs(realpath, perms)
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elif not path_exists:
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os.makedirs(realpath, perms)
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os.chown(realpath, uid, gid)
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os.chmod(realpath, perms)
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def write_file(path, content, owner='root', group='root', perms=0o444):
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"""Create or overwrite a file with the contents of a byte string."""
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log("Writing file {} {}:{} {:o}".format(path, owner, group, perms))
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uid = pwd.getpwnam(owner).pw_uid
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gid = grp.getgrnam(group).gr_gid
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with open(path, 'wb') as target:
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os.fchown(target.fileno(), uid, gid)
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os.fchmod(target.fileno(), perms)
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target.write(content)
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def fstab_remove(mp):
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"""Remove the given mountpoint entry from /etc/fstab
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"""
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return Fstab.remove_by_mountpoint(mp)
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def fstab_add(dev, mp, fs, options=None):
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"""Adds the given device entry to the /etc/fstab file
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"""
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return Fstab.add(dev, mp, fs, options=options)
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def mount(device, mountpoint, options=None, persist=False, filesystem="ext3"):
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"""Mount a filesystem at a particular mountpoint"""
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cmd_args = ['mount']
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if options is not None:
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cmd_args.extend(['-o', options])
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cmd_args.extend([device, mountpoint])
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try:
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subprocess.check_output(cmd_args)
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except subprocess.CalledProcessError as e:
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log('Error mounting {} at {}\n{}'.format(device, mountpoint, e.output))
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return False
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if persist:
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return fstab_add(device, mountpoint, filesystem, options=options)
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return True
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def umount(mountpoint, persist=False):
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"""Unmount a filesystem"""
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cmd_args = ['umount', mountpoint]
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try:
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subprocess.check_output(cmd_args)
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except subprocess.CalledProcessError as e:
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log('Error unmounting {}\n{}'.format(mountpoint, e.output))
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return False
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if persist:
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return fstab_remove(mountpoint)
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return True
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def mounts():
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"""Get a list of all mounted volumes as [[mountpoint,device],[...]]"""
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with open('/proc/mounts') as f:
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# [['/mount/point','/dev/path'],[...]]
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system_mounts = [m[1::-1] for m in [l.strip().split()
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for l in f.readlines()]]
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return system_mounts
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def file_hash(path, hash_type='md5'):
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"""
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Generate a hash checksum of the contents of 'path' or None if not found.
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:param str hash_type: Any hash alrgorithm supported by :mod:`hashlib`,
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such as md5, sha1, sha256, sha512, etc.
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"""
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if os.path.exists(path):
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h = getattr(hashlib, hash_type)()
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with open(path, 'rb') as source:
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h.update(source.read())
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return h.hexdigest()
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else:
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return None
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def check_hash(path, checksum, hash_type='md5'):
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"""
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Validate a file using a cryptographic checksum.
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:param str checksum: Value of the checksum used to validate the file.
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:param str hash_type: Hash algorithm used to generate `checksum`.
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Can be any hash alrgorithm supported by :mod:`hashlib`,
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such as md5, sha1, sha256, sha512, etc.
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:raises ChecksumError: If the file fails the checksum
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"""
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actual_checksum = file_hash(path, hash_type)
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if checksum != actual_checksum:
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raise ChecksumError("'%s' != '%s'" % (checksum, actual_checksum))
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class ChecksumError(ValueError):
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pass
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def restart_on_change(restart_map, stopstart=False):
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"""Restart services based on configuration files changing
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This function is used a decorator, for example::
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@restart_on_change({
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'/etc/ceph/ceph.conf': [ 'cinder-api', 'cinder-volume' ]
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})
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def ceph_client_changed():
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pass # your code here
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In this example, the cinder-api and cinder-volume services
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would be restarted if /etc/ceph/ceph.conf is changed by the
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ceph_client_changed function.
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"""
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def wrap(f):
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def wrapped_f(*args, **kwargs):
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checksums = {}
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for path in restart_map:
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checksums[path] = file_hash(path)
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f(*args, **kwargs)
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restarts = []
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for path in restart_map:
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if checksums[path] != file_hash(path):
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restarts += restart_map[path]
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services_list = list(OrderedDict.fromkeys(restarts))
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if not stopstart:
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for service_name in services_list:
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service('restart', service_name)
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else:
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for action in ['stop', 'start']:
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for service_name in services_list:
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service(action, service_name)
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return wrapped_f
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return wrap
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def lsb_release():
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"""Return /etc/lsb-release in a dict"""
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d = {}
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with open('/etc/lsb-release', 'r') as lsb:
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for l in lsb:
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k, v = l.split('=')
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d[k.strip()] = v.strip()
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return d
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def pwgen(length=None):
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"""Generate a random pasword."""
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if length is None:
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# A random length is ok to use a weak PRNG
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length = random.choice(range(35, 45))
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alphanumeric_chars = [
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l for l in (string.ascii_letters + string.digits)
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if l not in 'l0QD1vAEIOUaeiou']
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# Use a crypto-friendly PRNG (e.g. /dev/urandom) for making the
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# actual password
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random_generator = random.SystemRandom()
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random_chars = [
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random_generator.choice(alphanumeric_chars) for _ in range(length)]
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return(''.join(random_chars))
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def list_nics(nic_type):
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'''Return a list of nics of given type(s)'''
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if isinstance(nic_type, six.string_types):
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int_types = [nic_type]
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else:
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int_types = nic_type
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interfaces = []
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for int_type in int_types:
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cmd = ['ip', 'addr', 'show', 'label', int_type + '*']
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ip_output = subprocess.check_output(cmd).decode('UTF-8').split('\n')
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ip_output = (line for line in ip_output if line)
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for line in ip_output:
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if line.split()[1].startswith(int_type):
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matched = re.search('.*: (' + int_type + r'[0-9]+\.[0-9]+)@.*', line)
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if matched:
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interface = matched.groups()[0]
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else:
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interface = line.split()[1].replace(":", "")
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interfaces.append(interface)
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return interfaces
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def set_nic_mtu(nic, mtu):
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'''Set MTU on a network interface'''
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cmd = ['ip', 'link', 'set', nic, 'mtu', mtu]
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subprocess.check_call(cmd)
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def get_nic_mtu(nic):
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cmd = ['ip', 'addr', 'show', nic]
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ip_output = subprocess.check_output(cmd).decode('UTF-8').split('\n')
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mtu = ""
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for line in ip_output:
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words = line.split()
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if 'mtu' in words:
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mtu = words[words.index("mtu") + 1]
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return mtu
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def get_nic_hwaddr(nic):
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cmd = ['ip', '-o', '-0', 'addr', 'show', nic]
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ip_output = subprocess.check_output(cmd).decode('UTF-8')
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hwaddr = ""
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words = ip_output.split()
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if 'link/ether' in words:
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hwaddr = words[words.index('link/ether') + 1]
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return hwaddr
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def cmp_pkgrevno(package, revno, pkgcache=None):
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'''Compare supplied revno with the revno of the installed package
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* 1 => Installed revno is greater than supplied arg
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* 0 => Installed revno is the same as supplied arg
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* -1 => Installed revno is less than supplied arg
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This function imports apt_cache function from charmhelpers.fetch if
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the pkgcache argument is None. Be sure to add charmhelpers.fetch if
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you call this function, or pass an apt_pkg.Cache() instance.
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'''
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import apt_pkg
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if not pkgcache:
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from charmhelpers.fetch import apt_cache
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pkgcache = apt_cache()
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pkg = pkgcache[package]
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return apt_pkg.version_compare(pkg.current_ver.ver_str, revno)
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@contextmanager
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def chdir(d):
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cur = os.getcwd()
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try:
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yield os.chdir(d)
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finally:
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os.chdir(cur)
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def chownr(path, owner, group, follow_links=True):
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uid = pwd.getpwnam(owner).pw_uid
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gid = grp.getgrnam(group).gr_gid
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if follow_links:
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chown = os.chown
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else:
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chown = os.lchown
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for root, dirs, files in os.walk(path):
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for name in dirs + files:
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full = os.path.join(root, name)
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broken_symlink = os.path.lexists(full) and not os.path.exists(full)
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if not broken_symlink:
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chown(full, uid, gid)
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def lchownr(path, owner, group):
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chownr(path, owner, group, follow_links=False)
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