var-201510-0705
Vulnerability from variot
ntp_crypto.c in ntpd in NTP 4.x before 4.2.8p1, when Autokey Authentication is enabled, allows remote attackers to obtain sensitive information from process memory or cause a denial of service (daemon crash) via a packet containing an extension field with an invalid value for the length of its value field. The NTP Project ntpd version 4.2.7 and pervious versions contain several vulnerabilities. ntp-keygen prior to version 4.2.7p230 also uses a non-cryptographic random number generator when generating symmetric keys. These vulnerabilities may affect ntpd acting as a server or client. ( Daemon crash ) There is a possibility of being put into a state. NTP is prone to an information-disclosure vulnerability. Attackers can exploit this issue to obtain sensitive information that may lead to further attacks. -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Moderate: ntp security, bug fix, and enhancement update Advisory ID: RHSA-2015:2231-04 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2015-2231.html Issue date: 2015-11-19 CVE Names: CVE-2014-9297 CVE-2014-9298 CVE-2014-9750 CVE-2014-9751 CVE-2015-1798 CVE-2015-1799 CVE-2015-3405 =====================================================================
- Summary:
Updated ntp packages that fix multiple security issues, several bugs, and add various enhancements are now available for Red Hat Enterprise Linux 7.
Red Hat Product Security has rated this update as having Moderate security impact. Common Vulnerability Scoring System (CVSS) base scores, which give detailed severity ratings, are available for each vulnerability from the CVE links in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux Client (v. 7) - x86_64 Red Hat Enterprise Linux Client Optional (v. 7) - noarch, x86_64 Red Hat Enterprise Linux ComputeNode (v. 7) - x86_64 Red Hat Enterprise Linux ComputeNode Optional (v. 7) - noarch, x86_64 Red Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 7) - aarch64, noarch, ppc64, ppc64le, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 7) - x86_64 Red Hat Enterprise Linux Workstation Optional (v. 7) - noarch, x86_64
- Description:
The Network Time Protocol (NTP) is used to synchronize a computer's time with another referenced time source. These packages include the ntpd service which continuously adjusts system time and utilities used to query and configure the ntpd service.
It was found that because NTP's access control was based on a source IP address, an attacker could bypass source IP restrictions and send malicious control and configuration packets by spoofing ::1 addresses. (CVE-2014-9298, CVE-2014-9751)
A denial of service flaw was found in the way NTP hosts that were peering with each other authenticated themselves before updating their internal state variables. An attacker could send packets to one peer host, which could cascade to other peers, and stop the synchronization process among the reached peers. (CVE-2015-1799)
A flaw was found in the way the ntp-keygen utility generated MD5 symmetric keys on big-endian systems. An attacker could possibly use this flaw to guess generated MD5 keys, which could then be used to spoof an NTP client or server. (CVE-2015-3405)
A stack-based buffer overflow was found in the way the NTP autokey protocol was implemented. (CVE-2014-9297, CVE-2014-9750)
It was found that ntpd did not check whether a Message Authentication Code (MAC) was present in a received packet when ntpd was configured to use symmetric cryptographic keys. A man-in-the-middle attacker could use this flaw to send crafted packets that would be accepted by a client or a peer without the attacker knowing the symmetric key. (CVE-2015-1798)
The CVE-2015-1798 and CVE-2015-1799 issues were discovered by Miroslav Lichvár of Red Hat.
Bug fixes:
-
The ntpd service truncated symmetric keys specified in the key file to 20 bytes. As a consequence, it was impossible to configure NTP authentication to work with peers that use longer keys. With this update, the maximum key length has been changed to 32 bytes. (BZ#1191111)
-
The ntpd service could previously join multicast groups only when starting, which caused problems if ntpd was started during system boot before network was configured. With this update, ntpd attempts to join multicast groups every time network configuration is changed. (BZ#1207014)
-
Previously, the ntp-keygen utility used the exponent of 3 when generating RSA keys. Consequently, generating RSA keys failed when FIPS mode was enabled. With this update, ntp-keygen has been modified to use the exponent of 65537, and generating keys in FIPS mode now works as expected. (BZ#1191116)
-
The ntpd service dropped incoming NTP packets if their source port was lower than 123 (the NTP port). With this update, ntpd no longer checks the source port number, and clients behind NAT are now able to correctly synchronize with the server. (BZ#1171640)
Enhancements:
-
This update adds support for configurable Differentiated Services Code Points (DSCP) in NTP packets, simplifying configuration in large networks where different NTP implementations or versions are using different DSCP values. (BZ#1202828)
-
This update adds the ability to configure separate clock stepping thresholds for each direction (backward and forward). Use the "stepback" and "stepfwd" options to configure each threshold. (BZ#1193154)
-
Support for nanosecond resolution has been added to the Structural Health Monitoring (SHM) reference clock. Prior to this update, when a Precision Time Protocol (PTP) hardware clock was used as a time source to synchronize the system clock, the accuracy of the synchronization was limited due to the microsecond resolution of the SHM protocol. The nanosecond extension in the SHM protocol now allows sub-microsecond synchronization of the system clock. (BZ#1117702)
All ntp users are advised to upgrade to these updated packages, which contain backported patches to correct these issues and add these enhancements.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1117702 - SHM refclock doesn't support nanosecond resolution 1122012 - SHM refclock allows only two units with owner-only access 1171640 - NTP drops requests when sourceport is below 123 1180721 - ntp: mreadvar command crash in ntpq 1184572 - CVE-2014-9298 CVE-2014-9751 ntp: drop packets with source address ::1 1184573 - CVE-2014-9297 CVE-2014-9750 ntp: vallen in extension fields are not validated 1191108 - ntpd should warn when monitoring facility can't be disabled due to restrict configuration 1191122 - ntpd -x steps clock on leap second 1193154 - permit differential fwd/back threshold for step vs. slew [PATCH] 1199430 - CVE-2015-1798 ntp: ntpd accepts unauthenticated packets with symmetric key crypto 1199435 - CVE-2015-1799 ntp: authentication doesn't protect symmetric associations against DoS attacks 1210324 - CVE-2015-3405 ntp: ntp-keygen may generate non-random symmetric keys on big-endian systems
- Package List:
Red Hat Enterprise Linux Client (v. 7):
Source: ntp-4.2.6p5-22.el7.src.rpm
x86_64: ntp-4.2.6p5-22.el7.x86_64.rpm ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm ntpdate-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux Client Optional (v. 7):
noarch: ntp-doc-4.2.6p5-22.el7.noarch.rpm ntp-perl-4.2.6p5-22.el7.noarch.rpm
x86_64: ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm sntp-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode (v. 7):
Source: ntp-4.2.6p5-22.el7.src.rpm
x86_64: ntp-4.2.6p5-22.el7.x86_64.rpm ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm ntpdate-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux ComputeNode Optional (v. 7):
noarch: ntp-doc-4.2.6p5-22.el7.noarch.rpm ntp-perl-4.2.6p5-22.el7.noarch.rpm
x86_64: ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm sntp-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux Server (v. 7):
Source: ntp-4.2.6p5-22.el7.src.rpm
aarch64: ntp-4.2.6p5-22.el7.aarch64.rpm ntp-debuginfo-4.2.6p5-22.el7.aarch64.rpm ntpdate-4.2.6p5-22.el7.aarch64.rpm
ppc64: ntp-4.2.6p5-22.el7.ppc64.rpm ntp-debuginfo-4.2.6p5-22.el7.ppc64.rpm ntpdate-4.2.6p5-22.el7.ppc64.rpm
ppc64le: ntp-4.2.6p5-22.el7.ppc64le.rpm ntp-debuginfo-4.2.6p5-22.el7.ppc64le.rpm ntpdate-4.2.6p5-22.el7.ppc64le.rpm
s390x: ntp-4.2.6p5-22.el7.s390x.rpm ntp-debuginfo-4.2.6p5-22.el7.s390x.rpm ntpdate-4.2.6p5-22.el7.s390x.rpm
x86_64: ntp-4.2.6p5-22.el7.x86_64.rpm ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm ntpdate-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 7):
aarch64: ntp-debuginfo-4.2.6p5-22.el7.aarch64.rpm sntp-4.2.6p5-22.el7.aarch64.rpm
noarch: ntp-doc-4.2.6p5-22.el7.noarch.rpm ntp-perl-4.2.6p5-22.el7.noarch.rpm
ppc64: ntp-debuginfo-4.2.6p5-22.el7.ppc64.rpm sntp-4.2.6p5-22.el7.ppc64.rpm
ppc64le: ntp-debuginfo-4.2.6p5-22.el7.ppc64le.rpm sntp-4.2.6p5-22.el7.ppc64le.rpm
s390x: ntp-debuginfo-4.2.6p5-22.el7.s390x.rpm sntp-4.2.6p5-22.el7.s390x.rpm
x86_64: ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm sntp-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 7):
Source: ntp-4.2.6p5-22.el7.src.rpm
x86_64: ntp-4.2.6p5-22.el7.x86_64.rpm ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm ntpdate-4.2.6p5-22.el7.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 7):
noarch: ntp-doc-4.2.6p5-22.el7.noarch.rpm ntp-perl-4.2.6p5-22.el7.noarch.rpm
x86_64: ntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm sntp-4.2.6p5-22.el7.x86_64.rpm
These packages are GPG signed by Red Hat for security. Our key and details on how to verify the signature are available from https://access.redhat.com/security/team/key/
- References:
https://access.redhat.com/security/cve/CVE-2014-9297 https://access.redhat.com/security/cve/CVE-2014-9298 https://access.redhat.com/security/cve/CVE-2014-9750 https://access.redhat.com/security/cve/CVE-2014-9751 https://access.redhat.com/security/cve/CVE-2015-1798 https://access.redhat.com/security/cve/CVE-2015-1799 https://access.redhat.com/security/cve/CVE-2015-3405 https://access.redhat.com/security/updates/classification/#moderate
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2015 Red Hat, Inc. -----BEGIN PGP SIGNATURE----- Version: GnuPG v1
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://www.redhat.com/mailman/listinfo/rhsa-announce. An attacker could use a specially crafted package to cause ntpd to crash if:
- ntpd enabled remote configuration
- The attacker had the knowledge of the configuration password
- The attacker had access to a computer entrusted to perform remote configuration
Note that remote configuration is disabled by default in NTP.
CVE-2015-5194
It was found that ntpd could crash due to an uninitialized
variable when processing malformed logconfig configuration
commands.
CVE-2015-5195
It was found that ntpd exits with a segmentation fault when a
statistics type that was not enabled during compilation (e.g.
timingstats) is referenced by the statistics or filegen
configuration command
CVE-2015-5219
It was discovered that sntp program would hang in an infinite loop
when a crafted NTP packet was received, related to the conversion
of the precision value in the packet to double.
CVE-2015-5300
It was found that ntpd did not correctly implement the -g option:
Normally, ntpd exits with a message to the system log if the offset
exceeds the panic threshold, which is 1000 s by default. This
option allows the time to be set to any value without restriction;
however, this can happen only once. If the threshold is exceeded
after that, ntpd will exit with a message to the system log. This
option can be used with the -q and -x options.
ntpd could actually step the clock multiple times by more than the
panic threshold if its clock discipline doesn't have enough time to
reach the sync state and stay there for at least one update. If a
man-in-the-middle attacker can control the NTP traffic since ntpd
was started (or maybe up to 15-30 minutes after that), they can
prevent the client from reaching the sync state and force it to step
its clock by any amount any number of times, which can be used by
attackers to expire certificates, etc.
This is contrary to what the documentation says. Normally, the
assumption is that an MITM attacker can step the clock more than the
panic threshold only once when ntpd starts and to make a larger
adjustment the attacker has to divide it into multiple smaller
steps, each taking 15 minutes, which is slow.
CVE-2015-7691, CVE-2015-7692, CVE-2015-7702
It was found that the fix for CVE-2014-9750 was incomplete: three
issues were found in the value length checks in ntp_crypto.c, where
a packet with particular autokey operations that contained malicious
data was not always being completely validated. Receipt of these
packets can cause ntpd to crash.
CVE-2015-7701
A memory leak flaw was found in ntpd's CRYPTO_ASSOC.
CVE-2015-7703
Miroslav Lichvar of Red Hat found that the :config command can be
used to set the pidfile and driftfile paths without any
restrictions. A remote attacker could use this flaw to overwrite a
file on the file system with a file containing the pid of the ntpd
process (immediately) or the current estimated drift of the system
clock (in hourly intervals). For example:
ntpq -c ':config pidfile /tmp/ntp.pid'
ntpq -c ':config driftfile /tmp/ntp.drift'
In Debian ntpd is configured to drop root privileges, which limits
the impact of this issue.
CVE-2015-7704
If ntpd as an NTP client receives a Kiss-of-Death (KoD) packet
from the server to reduce its polling rate, it doesn't check if the
originate timestamp in the reply matches the transmit timestamp from
its request. An off-path attacker can send a crafted KoD packet to
the client, which will increase the client's polling interval to a
large value and effectively disable synchronization with the server.
CVE-2015-7850
An exploitable denial of service vulnerability exists in the remote
configuration functionality of the Network Time Protocol. A
specially crafted configuration file could cause an endless loop
resulting in a denial of service. An attacker could provide a the
malicious configuration file to trigger this vulnerability.
CVE-2015-7852
A potential off by one vulnerability exists in the cookedprint
functionality of ntpq. A specially crafted buffer could cause a
buffer overflow potentially resulting in null byte being written out
of bounds.
CVE-2015-7855
It was found that NTP's decodenetnum() would abort with an assertion
failure when processing a mode 6 or mode 7 packet containing an
unusually long data value where a network address was expected. This
could allow an authenticated attacker to crash ntpd.
CVE-2015-7871
An error handling logic error exists within ntpd that manifests due
to improper error condition handling associated with certain
crypto-NAK packets. An unauthenticated, off-path attacker can force
ntpd processes on targeted servers to peer with time sources of the
attacker's choosing by transmitting symmetric active crypto-NAK
packets to ntpd. This attack bypasses the authentication typically
required to establish a peer association and allows an attacker to
make arbitrary changes to system time.
For the oldstable distribution (wheezy), these problems have been fixed in version 1:4.2.6.p5+dfsg-2+deb7u6.
For the stable distribution (jessie), these problems have been fixed in version 1:4.2.6.p5+dfsg-7+deb8u1.
For the testing distribution (stretch), these problems have been fixed in version 1:4.2.8p4+dfsg-3.
For the unstable distribution (sid), these problems have been fixed in version 1:4.2.8p4+dfsg-3.
We recommend that you upgrade your ntp packages.
Here are the details from the Slackware 14.1 ChangeLog: +--------------------------+ patches/packages/ntp-4.2.8p4-i486-1_slack14.1.txz: Upgraded. In addition to bug fixes and enhancements, this release fixes several low and medium severity vulnerabilities. For more information, see: http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-9750 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-5196 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7691 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7692 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7701 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7702 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7704 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7705 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7848 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7849 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7850 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7851 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7852 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7853 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7854 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7855 http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7871 ( Security fix ) +--------------------------+
Where to find the new packages: +-----------------------------+
Thanks to the friendly folks at the OSU Open Source Lab (http://osuosl.org) for donating FTP and rsync hosting to the Slackware project! :-)
Also see the "Get Slack" section on http://slackware.com for additional mirror sites near you.
Updated package for Slackware 13.0: ftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/ntp-4.2.8p4-i486-1_slack13.0.txz
Updated package for Slackware x86_64 13.0: ftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.0.txz
Updated package for Slackware 13.1: ftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/ntp-4.2.8p4-i486-1_slack13.1.txz
Updated package for Slackware x86_64 13.1: ftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.1.txz
Updated package for Slackware 13.37: ftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/ntp-4.2.8p4-i486-1_slack13.37.txz
Updated package for Slackware x86_64 13.37: ftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.37.txz
Updated package for Slackware 14.0: ftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/ntp-4.2.8p4-i486-1_slack14.0.txz
Updated package for Slackware x86_64 14.0: ftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/ntp-4.2.8p4-x86_64-1_slack14.0.txz
Updated package for Slackware 14.1: ftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/ntp-4.2.8p4-i486-1_slack14.1.txz
Updated package for Slackware x86_64 14.1: ftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/ntp-4.2.8p4-x86_64-1_slack14.1.txz
Updated package for Slackware -current: ftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/ntp-4.2.8p4-i586-1.txz
Updated package for Slackware x86_64 -current: ftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/ntp-4.2.8p4-x86_64-1.txz
MD5 signatures: +-------------+
Slackware 13.0 package: 21dd14178fea17a88c9326c8672ecefd ntp-4.2.8p4-i486-1_slack13.0.txz
Slackware x86_64 13.0 package: 8647479b2007b92ff8598184f2275263 ntp-4.2.8p4-x86_64-1_slack13.0.txz
Slackware 13.1 package: e0f122e8e271dc84db06202c03cc0288 ntp-4.2.8p4-i486-1_slack13.1.txz
Slackware x86_64 13.1 package: db0aff04b72b3d8c96ca8c8e1ed36c05 ntp-4.2.8p4-x86_64-1_slack13.1.txz
Slackware 13.37 package: 5914e43e886e5ff88fefd30083493e30 ntp-4.2.8p4-i486-1_slack13.37.txz
Slackware x86_64 13.37 package: 4335c3bf2ae24afc5ad734e8d80b3e94 ntp-4.2.8p4-x86_64-1_slack13.37.txz
Slackware 14.0 package: 39b05698797b638b67130e0b170e0a4b ntp-4.2.8p4-i486-1_slack14.0.txz
Slackware x86_64 14.0 package: dcf4a56ba1d013ee1c9d0e624e158709 ntp-4.2.8p4-x86_64-1_slack14.0.txz
Slackware 14.1 package: 1fd3a7beaf23303e2c211af377662614 ntp-4.2.8p4-i486-1_slack14.1.txz
Slackware x86_64 14.1 package: 438c3185aa8ec20d1c2b5e51786e4d41 ntp-4.2.8p4-x86_64-1_slack14.1.txz
Slackware -current package: 81bfb2fed450cb26a51b5e1cee0d33ed n/ntp-4.2.8p4-i586-1.txz
Slackware x86_64 -current package: 8bae4ad633af40d4d54b7686e4b225f9 n/ntp-4.2.8p4-x86_64-1.txz
Installation instructions: +------------------------+
Upgrade the package as root:
upgradepkg ntp-4.2.8p4-i486-1_slack14.1.txz
Then, restart the NTP daemon:
sh /etc/rc.d/rc.ntpd restart
+-----+
Slackware Linux Security Team http://slackware.com/gpg-key security@slackware.com
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The NTP Project ntpd version 4.2.7 and pervious versions contain several vulnerabilities. ntp-keygen prior to version 4.2.7p230 also uses a non-cryptographic random number generator when generating symmetric keys. These vulnerabilities may affect ntpd acting as a server or client. ( Daemon crash ) There is a possibility of being put into a state. NTP is prone to an information-disclosure vulnerability. \nAttackers can exploit this issue to obtain sensitive information that may lead to further attacks. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Moderate: ntp security, bug fix, and enhancement update\nAdvisory ID: RHSA-2015:2231-04\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2015-2231.html\nIssue date: 2015-11-19\nCVE Names: CVE-2014-9297 CVE-2014-9298 CVE-2014-9750 \n CVE-2014-9751 CVE-2015-1798 CVE-2015-1799 \n CVE-2015-3405 \n=====================================================================\n\n1. Summary:\n\nUpdated ntp packages that fix multiple security issues, several bugs, and\nadd various enhancements are now available for Red Hat Enterprise Linux 7. \n\nRed Hat Product Security has rated this update as having Moderate security\nimpact. Common Vulnerability Scoring System (CVSS) base scores, which give\ndetailed severity ratings, are available for each vulnerability from the\nCVE links in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux Client (v. 7) - x86_64\nRed Hat Enterprise Linux Client Optional (v. 7) - noarch, x86_64\nRed Hat Enterprise Linux ComputeNode (v. 7) - x86_64\nRed Hat Enterprise Linux ComputeNode Optional (v. 7) - noarch, x86_64\nRed Hat Enterprise Linux Server (v. 7) - aarch64, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 7) - aarch64, noarch, ppc64, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 7) - x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 7) - noarch, x86_64\n\n3. Description:\n\nThe Network Time Protocol (NTP) is used to synchronize a computer\u0027s time\nwith another referenced time source. These packages include the ntpd\nservice which continuously adjusts system time and utilities used to query\nand configure the ntpd service. \n\nIt was found that because NTP\u0027s access control was based on a source IP\naddress, an attacker could bypass source IP restrictions and send\nmalicious control and configuration packets by spoofing ::1 addresses. \n(CVE-2014-9298, CVE-2014-9751)\n\nA denial of service flaw was found in the way NTP hosts that were peering\nwith each other authenticated themselves before updating their internal\nstate variables. An attacker could send packets to one peer host, which\ncould cascade to other peers, and stop the synchronization process among\nthe reached peers. (CVE-2015-1799)\n\nA flaw was found in the way the ntp-keygen utility generated MD5 symmetric\nkeys on big-endian systems. An attacker could possibly use this flaw to\nguess generated MD5 keys, which could then be used to spoof an NTP client\nor server. (CVE-2015-3405)\n\nA stack-based buffer overflow was found in the way the NTP autokey protocol\nwas implemented. (CVE-2014-9297, CVE-2014-9750)\n\nIt was found that ntpd did not check whether a Message Authentication Code\n(MAC) was present in a received packet when ntpd was configured to use\nsymmetric cryptographic keys. A man-in-the-middle attacker could use this\nflaw to send crafted packets that would be accepted by a client or a peer\nwithout the attacker knowing the symmetric key. (CVE-2015-1798)\n\nThe CVE-2015-1798 and CVE-2015-1799 issues were discovered by Miroslav\nLichv\u00e1r of Red Hat. \n\nBug fixes:\n\n* The ntpd service truncated symmetric keys specified in the key file to 20\nbytes. As a consequence, it was impossible to configure NTP authentication\nto work with peers that use longer keys. With this update, the maximum key\nlength has been changed to 32 bytes. (BZ#1191111)\n\n* The ntpd service could previously join multicast groups only when\nstarting, which caused problems if ntpd was started during system boot\nbefore network was configured. With this update, ntpd attempts to join\nmulticast groups every time network configuration is changed. (BZ#1207014)\n\n* Previously, the ntp-keygen utility used the exponent of 3 when generating\nRSA keys. Consequently, generating RSA keys failed when FIPS mode was\nenabled. With this update, ntp-keygen has been modified to use the exponent\nof 65537, and generating keys in FIPS mode now works as expected. \n(BZ#1191116)\n\n* The ntpd service dropped incoming NTP packets if their source port was\nlower than 123 (the NTP port). With this update, ntpd no longer checks the\nsource port number, and clients behind NAT are now able to correctly\nsynchronize with the server. (BZ#1171640)\n\nEnhancements:\n\n* This update adds support for configurable Differentiated Services Code\nPoints (DSCP) in NTP packets, simplifying configuration in large networks\nwhere different NTP implementations or versions are using different DSCP\nvalues. (BZ#1202828)\n\n* This update adds the ability to configure separate clock stepping\nthresholds for each direction (backward and forward). Use the \"stepback\"\nand \"stepfwd\" options to configure each threshold. (BZ#1193154)\n\n* Support for nanosecond resolution has been added to the Structural\nHealth Monitoring (SHM) reference clock. Prior to this update, when a\nPrecision Time Protocol (PTP) hardware clock was used as a time source to\nsynchronize the system clock, the accuracy of the synchronization was\nlimited due to the microsecond resolution of the SHM protocol. The\nnanosecond extension in the SHM protocol now allows sub-microsecond\nsynchronization of the system clock. (BZ#1117702)\n\nAll ntp users are advised to upgrade to these updated packages, which\ncontain backported patches to correct these issues and add these\nenhancements. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nFor details on how to apply this update, refer to:\n\nhttps://access.redhat.com/articles/11258\n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1117702 - SHM refclock doesn\u0027t support nanosecond resolution\n1122012 - SHM refclock allows only two units with owner-only access\n1171640 - NTP drops requests when sourceport is below 123\n1180721 - ntp: mreadvar command crash in ntpq\n1184572 - CVE-2014-9298 CVE-2014-9751 ntp: drop packets with source address ::1\n1184573 - CVE-2014-9297 CVE-2014-9750 ntp: vallen in extension fields are not validated\n1191108 - ntpd should warn when monitoring facility can\u0027t be disabled due to restrict configuration\n1191122 - ntpd -x steps clock on leap second\n1193154 - permit differential fwd/back threshold for step vs. slew [PATCH]\n1199430 - CVE-2015-1798 ntp: ntpd accepts unauthenticated packets with symmetric key crypto\n1199435 - CVE-2015-1799 ntp: authentication doesn\u0027t protect symmetric associations against DoS attacks\n1210324 - CVE-2015-3405 ntp: ntp-keygen may generate non-random symmetric keys on big-endian systems\n\n6. Package List:\n\nRed Hat Enterprise Linux Client (v. 7):\n\nSource:\nntp-4.2.6p5-22.el7.src.rpm\n\nx86_64:\nntp-4.2.6p5-22.el7.x86_64.rpm\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nntpdate-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Client Optional (v. 7):\n\nnoarch:\nntp-doc-4.2.6p5-22.el7.noarch.rpm\nntp-perl-4.2.6p5-22.el7.noarch.rpm\n\nx86_64:\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nsntp-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode (v. 7):\n\nSource:\nntp-4.2.6p5-22.el7.src.rpm\n\nx86_64:\nntp-4.2.6p5-22.el7.x86_64.rpm\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nntpdate-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux ComputeNode Optional (v. 7):\n\nnoarch:\nntp-doc-4.2.6p5-22.el7.noarch.rpm\nntp-perl-4.2.6p5-22.el7.noarch.rpm\n\nx86_64:\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nsntp-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 7):\n\nSource:\nntp-4.2.6p5-22.el7.src.rpm\n\naarch64:\nntp-4.2.6p5-22.el7.aarch64.rpm\nntp-debuginfo-4.2.6p5-22.el7.aarch64.rpm\nntpdate-4.2.6p5-22.el7.aarch64.rpm\n\nppc64:\nntp-4.2.6p5-22.el7.ppc64.rpm\nntp-debuginfo-4.2.6p5-22.el7.ppc64.rpm\nntpdate-4.2.6p5-22.el7.ppc64.rpm\n\nppc64le:\nntp-4.2.6p5-22.el7.ppc64le.rpm\nntp-debuginfo-4.2.6p5-22.el7.ppc64le.rpm\nntpdate-4.2.6p5-22.el7.ppc64le.rpm\n\ns390x:\nntp-4.2.6p5-22.el7.s390x.rpm\nntp-debuginfo-4.2.6p5-22.el7.s390x.rpm\nntpdate-4.2.6p5-22.el7.s390x.rpm\n\nx86_64:\nntp-4.2.6p5-22.el7.x86_64.rpm\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nntpdate-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 7):\n\naarch64:\nntp-debuginfo-4.2.6p5-22.el7.aarch64.rpm\nsntp-4.2.6p5-22.el7.aarch64.rpm\n\nnoarch:\nntp-doc-4.2.6p5-22.el7.noarch.rpm\nntp-perl-4.2.6p5-22.el7.noarch.rpm\n\nppc64:\nntp-debuginfo-4.2.6p5-22.el7.ppc64.rpm\nsntp-4.2.6p5-22.el7.ppc64.rpm\n\nppc64le:\nntp-debuginfo-4.2.6p5-22.el7.ppc64le.rpm\nsntp-4.2.6p5-22.el7.ppc64le.rpm\n\ns390x:\nntp-debuginfo-4.2.6p5-22.el7.s390x.rpm\nsntp-4.2.6p5-22.el7.s390x.rpm\n\nx86_64:\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nsntp-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 7):\n\nSource:\nntp-4.2.6p5-22.el7.src.rpm\n\nx86_64:\nntp-4.2.6p5-22.el7.x86_64.rpm\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nntpdate-4.2.6p5-22.el7.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 7):\n\nnoarch:\nntp-doc-4.2.6p5-22.el7.noarch.rpm\nntp-perl-4.2.6p5-22.el7.noarch.rpm\n\nx86_64:\nntp-debuginfo-4.2.6p5-22.el7.x86_64.rpm\nsntp-4.2.6p5-22.el7.x86_64.rpm\n\nThese packages are GPG signed by Red Hat for security. Our key and\ndetails on how to verify the signature are available from\nhttps://access.redhat.com/security/team/key/\n\n7. References:\n\nhttps://access.redhat.com/security/cve/CVE-2014-9297\nhttps://access.redhat.com/security/cve/CVE-2014-9298\nhttps://access.redhat.com/security/cve/CVE-2014-9750\nhttps://access.redhat.com/security/cve/CVE-2014-9751\nhttps://access.redhat.com/security/cve/CVE-2015-1798\nhttps://access.redhat.com/security/cve/CVE-2015-1799\nhttps://access.redhat.com/security/cve/CVE-2015-3405\nhttps://access.redhat.com/security/updates/classification/#moderate\n\n8. Contact:\n\nThe Red Hat security contact is \u003csecalert@redhat.com\u003e. More contact\ndetails at https://access.redhat.com/security/team/contact/\n\nCopyright 2015 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD4DBQFWTkFJXlSAg2UNWIIRAphzAKCRHDVdHI5OvJ8glkXYLBwyQgeyvwCYmTV3\n1hLTu5I/PUzWOnD8rRIlZQ==\n=sWdG\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce. An attacker could use a specially crafted\n package to cause ntpd to crash if:\n\n * ntpd enabled remote configuration\n * The attacker had the knowledge of the configuration password\n * The attacker had access to a computer entrusted to perform remote\n configuration\n\n Note that remote configuration is disabled by default in NTP. \n\nCVE-2015-5194\n\n It was found that ntpd could crash due to an uninitialized\n variable when processing malformed logconfig configuration\n commands. \n\nCVE-2015-5195\n\n It was found that ntpd exits with a segmentation fault when a\n statistics type that was not enabled during compilation (e.g. \n timingstats) is referenced by the statistics or filegen\n configuration command\n\nCVE-2015-5219\n\n It was discovered that sntp program would hang in an infinite loop\n when a crafted NTP packet was received, related to the conversion\n of the precision value in the packet to double. \n\nCVE-2015-5300\n\n It was found that ntpd did not correctly implement the -g option:\n\n Normally, ntpd exits with a message to the system log if the offset\n exceeds the panic threshold, which is 1000 s by default. This\n option allows the time to be set to any value without restriction;\n however, this can happen only once. If the threshold is exceeded\n after that, ntpd will exit with a message to the system log. This\n option can be used with the -q and -x options. \n\n ntpd could actually step the clock multiple times by more than the\n panic threshold if its clock discipline doesn\u0027t have enough time to\n reach the sync state and stay there for at least one update. If a\n man-in-the-middle attacker can control the NTP traffic since ntpd\n was started (or maybe up to 15-30 minutes after that), they can\n prevent the client from reaching the sync state and force it to step\n its clock by any amount any number of times, which can be used by\n attackers to expire certificates, etc. \n\n This is contrary to what the documentation says. Normally, the\n assumption is that an MITM attacker can step the clock more than the\n panic threshold only once when ntpd starts and to make a larger\n adjustment the attacker has to divide it into multiple smaller\n steps, each taking 15 minutes, which is slow. \n\nCVE-2015-7691, CVE-2015-7692, CVE-2015-7702\n\n It was found that the fix for CVE-2014-9750 was incomplete: three\n issues were found in the value length checks in ntp_crypto.c, where\n a packet with particular autokey operations that contained malicious\n data was not always being completely validated. Receipt of these\n packets can cause ntpd to crash. \n\nCVE-2015-7701\n\n A memory leak flaw was found in ntpd\u0027s CRYPTO_ASSOC. \n\nCVE-2015-7703\n\n Miroslav Lichvar of Red Hat found that the :config command can be\n used to set the pidfile and driftfile paths without any\n restrictions. A remote attacker could use this flaw to overwrite a\n file on the file system with a file containing the pid of the ntpd\n process (immediately) or the current estimated drift of the system\n clock (in hourly intervals). For example:\n\n ntpq -c \u0027:config pidfile /tmp/ntp.pid\u0027\n ntpq -c \u0027:config driftfile /tmp/ntp.drift\u0027\n\n In Debian ntpd is configured to drop root privileges, which limits\n the impact of this issue. \n\nCVE-2015-7704\n\n If ntpd as an NTP client receives a Kiss-of-Death (KoD) packet\n from the server to reduce its polling rate, it doesn\u0027t check if the\n originate timestamp in the reply matches the transmit timestamp from\n its request. An off-path attacker can send a crafted KoD packet to\n the client, which will increase the client\u0027s polling interval to a\n large value and effectively disable synchronization with the server. \n\nCVE-2015-7850\n\n An exploitable denial of service vulnerability exists in the remote\n configuration functionality of the Network Time Protocol. A\n specially crafted configuration file could cause an endless loop\n resulting in a denial of service. An attacker could provide a the\n malicious configuration file to trigger this vulnerability. \n\nCVE-2015-7852\n\n A potential off by one vulnerability exists in the cookedprint\n functionality of ntpq. A specially crafted buffer could cause a\n buffer overflow potentially resulting in null byte being written out\n of bounds. \n\nCVE-2015-7855\n\n It was found that NTP\u0027s decodenetnum() would abort with an assertion\n failure when processing a mode 6 or mode 7 packet containing an\n unusually long data value where a network address was expected. This\n could allow an authenticated attacker to crash ntpd. \n\nCVE-2015-7871\n\n An error handling logic error exists within ntpd that manifests due\n to improper error condition handling associated with certain\n crypto-NAK packets. An unauthenticated, off-path attacker can force\n ntpd processes on targeted servers to peer with time sources of the\n attacker\u0027s choosing by transmitting symmetric active crypto-NAK\n packets to ntpd. This attack bypasses the authentication typically\n required to establish a peer association and allows an attacker to\n make arbitrary changes to system time. \n\nFor the oldstable distribution (wheezy), these problems have been fixed\nin version 1:4.2.6.p5+dfsg-2+deb7u6. \n\nFor the stable distribution (jessie), these problems have been fixed in\nversion 1:4.2.6.p5+dfsg-7+deb8u1. \n\nFor the testing distribution (stretch), these problems have been fixed\nin version 1:4.2.8p4+dfsg-3. \n\nFor the unstable distribution (sid), these problems have been fixed in\nversion 1:4.2.8p4+dfsg-3. \n\nWe recommend that you upgrade your ntp packages. \n\n\nHere are the details from the Slackware 14.1 ChangeLog:\n+--------------------------+\npatches/packages/ntp-4.2.8p4-i486-1_slack14.1.txz: Upgraded. \n In addition to bug fixes and enhancements, this release fixes\n several low and medium severity vulnerabilities. \n For more information, see:\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2014-9750\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-5196\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7691\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7692\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7701\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7702\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7704\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7705\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7848\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7849\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7850\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7851\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7852\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7853\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7854\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7855\n http://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2015-7871\n (* Security fix *)\n+--------------------------+\n\n\nWhere to find the new packages:\n+-----------------------------+\n\nThanks to the friendly folks at the OSU Open Source Lab\n(http://osuosl.org) for donating FTP and rsync hosting\nto the Slackware project! :-)\n\nAlso see the \"Get Slack\" section on http://slackware.com for\nadditional mirror sites near you. \n\nUpdated package for Slackware 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware-13.0/patches/packages/ntp-4.2.8p4-i486-1_slack13.0.txz\n\nUpdated package for Slackware x86_64 13.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.0/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.0.txz\n\nUpdated package for Slackware 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware-13.1/patches/packages/ntp-4.2.8p4-i486-1_slack13.1.txz\n\nUpdated package for Slackware x86_64 13.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.1/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.1.txz\n\nUpdated package for Slackware 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware-13.37/patches/packages/ntp-4.2.8p4-i486-1_slack13.37.txz\n\nUpdated package for Slackware x86_64 13.37:\nftp://ftp.slackware.com/pub/slackware/slackware64-13.37/patches/packages/ntp-4.2.8p4-x86_64-1_slack13.37.txz\n\nUpdated package for Slackware 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware-14.0/patches/packages/ntp-4.2.8p4-i486-1_slack14.0.txz\n\nUpdated package for Slackware x86_64 14.0:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.0/patches/packages/ntp-4.2.8p4-x86_64-1_slack14.0.txz\n\nUpdated package for Slackware 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware-14.1/patches/packages/ntp-4.2.8p4-i486-1_slack14.1.txz\n\nUpdated package for Slackware x86_64 14.1:\nftp://ftp.slackware.com/pub/slackware/slackware64-14.1/patches/packages/ntp-4.2.8p4-x86_64-1_slack14.1.txz\n\nUpdated package for Slackware -current:\nftp://ftp.slackware.com/pub/slackware/slackware-current/slackware/n/ntp-4.2.8p4-i586-1.txz\n\nUpdated package for Slackware x86_64 -current:\nftp://ftp.slackware.com/pub/slackware/slackware64-current/slackware64/n/ntp-4.2.8p4-x86_64-1.txz\n\n\nMD5 signatures:\n+-------------+\n\nSlackware 13.0 package:\n21dd14178fea17a88c9326c8672ecefd ntp-4.2.8p4-i486-1_slack13.0.txz\n\nSlackware x86_64 13.0 package:\n8647479b2007b92ff8598184f2275263 ntp-4.2.8p4-x86_64-1_slack13.0.txz\n\nSlackware 13.1 package:\ne0f122e8e271dc84db06202c03cc0288 ntp-4.2.8p4-i486-1_slack13.1.txz\n\nSlackware x86_64 13.1 package:\ndb0aff04b72b3d8c96ca8c8e1ed36c05 ntp-4.2.8p4-x86_64-1_slack13.1.txz\n\nSlackware 13.37 package:\n5914e43e886e5ff88fefd30083493e30 ntp-4.2.8p4-i486-1_slack13.37.txz\n\nSlackware x86_64 13.37 package:\n4335c3bf2ae24afc5ad734e8d80b3e94 ntp-4.2.8p4-x86_64-1_slack13.37.txz\n\nSlackware 14.0 package:\n39b05698797b638b67130e0b170e0a4b ntp-4.2.8p4-i486-1_slack14.0.txz\n\nSlackware x86_64 14.0 package:\ndcf4a56ba1d013ee1c9d0e624e158709 ntp-4.2.8p4-x86_64-1_slack14.0.txz\n\nSlackware 14.1 package:\n1fd3a7beaf23303e2c211af377662614 ntp-4.2.8p4-i486-1_slack14.1.txz\n\nSlackware x86_64 14.1 package:\n438c3185aa8ec20d1c2b5e51786e4d41 ntp-4.2.8p4-x86_64-1_slack14.1.txz\n\nSlackware -current package:\n81bfb2fed450cb26a51b5e1cee0d33ed n/ntp-4.2.8p4-i586-1.txz\n\nSlackware x86_64 -current package:\n8bae4ad633af40d4d54b7686e4b225f9 n/ntp-4.2.8p4-x86_64-1.txz\n\n\nInstallation instructions:\n+------------------------+\n\nUpgrade the package as root:\n# upgradepkg ntp-4.2.8p4-i486-1_slack14.1.txz\n\nThen, restart the NTP daemon:\n\n# sh /etc/rc.d/rc.ntpd restart\n\n\n+-----+\n\nSlackware Linux Security Team\nhttp://slackware.com/gpg-key\nsecurity@slackware.com\n\n+------------------------------------------------------------------------+\n| To leave the slackware-security mailing list: |\n+------------------------------------------------------------------------+\n| Send an email to majordomo@slackware.com with this text in the body of |\n| the email message: |\n| |\n| unsubscribe slackware-security |\n| |\n| You will get a confirmation message back containing instructions to |\n| complete the process. 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Sightings
Author | Source | Type | Date |
---|
Nomenclature
- Seen: The vulnerability was mentioned, discussed, or seen somewhere by the user.
- Confirmed: The vulnerability is confirmed from an analyst perspective.
- Exploited: This vulnerability was exploited and seen by the user reporting the sighting.
- Patched: This vulnerability was successfully patched by the user reporting the sighting.
- Not exploited: This vulnerability was not exploited or seen by the user reporting the sighting.
- Not confirmed: The user expresses doubt about the veracity of the vulnerability.
- Not patched: This vulnerability was not successfully patched by the user reporting the sighting.