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check_apt_updates
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check_apt_updates
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#!/usr/bin/python
#nice apt-get -s -o Debug::NoLocking=true upgrade | grep ^Inst
import apt_pkg
import os
import sys
from optparse import OptionParser
import gettext
import subprocess
SYNAPTIC_PINFILE = "/var/lib/synaptic/preferences"
DISTRO = subprocess.Popen(["lsb_release","-c","-s"],
stdout=subprocess.PIPE).communicate()[0].strip()
class OpNullProgress(object):
def update(self, percent=None):
pass
def done(self):
pass
def _(msg):
return gettext.dgettext("update-notifier", msg)
def _handleException(type, value, tb):
sys.stderr.write("E: "+ _("Unknown Error: '%s' (%s)") % (type,value))
sys.exit(-1)
def clean(cache,depcache):
" unmark (clean) all changes from the given depcache "
# mvo: looping is too inefficient with the new auto-mark code
#for pkg in cache.Packages:
# depcache.MarkKeep(pkg)
depcache.init()
def saveDistUpgrade(cache,depcache):
""" this functions mimics a upgrade but will never remove anything """
depcache.upgrade(True)
if depcache.del_count > 0:
clean(cache,depcache)
depcache.upgrade()
def isSecurityUpgrade(ver):
" check if the given version is a security update (or masks one) "
security_pockets = [("Ubuntu", "%s-security" % DISTRO),
("gNewSense", "%s-security" % DISTRO),
("Debian", "%s-updates" % DISTRO)]
for (file, index) in ver.file_list:
for origin, archive in security_pockets:
if (file.archive == archive and file.origin == origin):
return True
return False
def write_package_names(outstream, cache, depcache):
" write out package names that change to outstream "
pkgs = filter(lambda pkg:
depcache.marked_install(pkg) or depcache.marked_upgrade(pkg),
cache.packages)
outstream.write("\n".join(map(lambda p: p.name, pkgs)))
def write_human_readable_summary(outstream, upgrades, security_updates):
" write out human summary summary to outstream "
outstream.write(gettext.dngettext("update-notifier",
"%i package can be updated.",
"%i packages can be updated.",
upgrades) % upgrades)
outstream.write("\n")
outstream.write(gettext.dngettext("update-notifier",
"%i update is a security update.",
"%i updates are security updates.",
security_updates) % security_updates)
outstream.write("\n")
def write_nagios_output(total_updates,crit_updates,crit_updates_list,soft_updates,soft_updates_list,critonly):
" write out nagios formatted output to outstream "
if crit_updates > 0:
nagios_status = "CRITICAL"
nagios_exitcode = 2
elif total_updates > 0 and not critonly:
nagios_status = "WARNING"
nagios_exitcode = 1
else:
nagios_status = "OK"
nagios_exitcode = 0
if crit_updates_list.endswith(", "): crit_updates_list = crit_updates_list[:-2]
if soft_updates_list.endswith(", "): soft_updates_list = soft_updates_list[:-2]
sys.stdout.write("%s: %s Total upgradable pagckages" % (nagios_status,total_updates))
if total_updates > 0:
sys.stdout.write(" || %s critical" % (crit_updates))
if crit_updates > 0 and options and not options.hide_package_names:
sys.stdout.write(" (%s)" % (crit_updates_list))
if not critonly:
sys.stdout.write(" || %s non-critical" % (soft_updates))
if soft_updates > 0 and options and not options.hide_package_names:
sys.stdout.write(" (%s)" % (soft_updates_list))
sys.stdout.write("\n")
sys.exit(nagios_exitcode)
def init():
" init the system, be nice "
# FIXME: do a ionice here too?
os.nice(19)
apt_pkg.init()
# force apt to build its caches in memory for now to make sure
# that there is no race when the pkgcache file gets re-generated
apt_pkg.config.set("Dir::Cache::pkgcache","")
def run(options=None):
# we are run in "are security updates installed automatically?"
# question mode
# if options.security_updates_unattended:
# res = apt_pkg.config.find_i("APT::Periodic::Unattended-Upgrade", 0)
# #print res
# sys.exit(res)
# get caches
try:
cache = apt_pkg.Cache(OpNullProgress())
except SystemError, e:
sys.stderr.write("E: "+ _("Error: Opening the cache (%s)") % e)
sys.exit(-1)
depcache = apt_pkg.DepCache(cache)
# read the pin files
depcache.read_pinfile()
# read the synaptic pins too
if os.path.exists(SYNAPTIC_PINFILE):
depcache.read_pinfile(SYNAPTIC_PINFILE)
# init the depcache
depcache.init()
if depcache.broken_count > 0:
sys.stderr.write("E: "+ _("Error: BrokenCount > 0"))
sys.exit(-1)
# do the upgrade (not dist-upgrade!)
try:
saveDistUpgrade(cache,depcache)
except SystemError, e:
sys.stderr.write("E: "+ _("Error: Marking the upgrade (%s)") % e)
sys.exit(-1)
# analyze the ugprade
updates = 0
security_updates = 0
non_security_updates = 0
updates_list = ""
security_updates_list = ""
non_security_updates_list = ""
for pkg in cache.packages:
# skip packages that are not marked upgraded/installed
if not (depcache.marked_install(pkg) or depcache.marked_upgrade(pkg)):
continue
# check if this is really a upgrade or a false positive
# (workaround for ubuntu #7907)
inst_ver = pkg.current_ver
cand_ver = depcache.get_candidate_ver(pkg)
if cand_ver == inst_ver:
continue
# ignore packages not previously installed (these are dependencies, not upgrades, and would otherwise raise false criticals at new packages)
if inst_ver is None:
continue
# check for security updates
updates = updates + 1
updates_list += ("%s; " % pkg.name)
if not isSecurityUpgrade(cand_ver):
non_security_updates_list += ("%s, " % pkg.name)
non_security_updates += 1
else:
security_updates_list += ("%s, " % pkg.name)
security_updates += 1
continue
# now check for security updates that are masked by a
# canidate version from another repo (-proposed or -updates)
for ver in pkg.version_list:
if (inst_ver and apt_pkg.version_compare(ver.ver_str, inst_ver.ver_str) <= 0):
#print "skipping '%s' " % ver.VerStr
continue
if isSecurityUpgrade(ver):
security_updates_list += ("%s; " % pkg.name)
security_updates += 1
break
if options and options.nagios_mode:
write_nagios_output(updates,security_updates,security_updates_list,non_security_updates,non_security_updates_list,options.critical_only)
# nagios_mode will always do sys.exit so it will never pass this point
# print the number of updates
if options and options.show_package_names:
write_package_names(sys.stderr, cache, depcache)
elif options and options.readable_output:
write_human_readable_summary(sys.stdout, updates, security_updates)
else:
# print the number of regular updates and the number of
# security updates
sys.stderr.write("%s;%s" % (updates,security_updates))
# return the number of updates (if its used as a module)
return(updates,security_updates)
if __name__ == "__main__":
# setup a exception handler to make sure that uncaught stuff goes
# to the notifier
sys.excepthook = _handleException
# gettext
APP="update-notifier"
DIR="/usr/share/locale"
gettext.bindtextdomain(APP, DIR)
gettext.textdomain(APP)
# check arguments
parser = OptionParser()
# parser.add_option("-p",
# "--package-names",
# action="store_true",
# dest="show_package_names",
# help=_("Show the packages that are going to be installed/upgraded"))
# parser.add_option("",
# "--human-readable",
# action="store_true",
# dest="readable_output",
# help=_("Show human readable output on stdout"))
# parser.add_option("",
# "--security-updates-unattended",
# action="store_true",
# help=_("Return the time in days when security updates "
# "are installed unattended (0 means disabled)"))
parser.add_option("-c","--crit-only",
action="store_true",
dest="critical_only",
help=_("Warn only about critical updates"))
parser.add_option("-q",
"--quiet",
action="store_true",
dest="hide_package_names",
help=_("Quiet output: hide the names of packages that are pending upgrades"))
(options, args) = parser.parse_args()
options.nagios_mode = "forcing nagios mode is fun"
# run it
init()
run(options)