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169 vulnerabilities by motorola
CVE-2026-5804 (GCVE-0-2026-5804)
Vulnerability from nvd – Published: 2026-05-19 14:42 – Updated: 2026-05-19 16:39- CWE‑306: Missing Authentication for Critical Function
- CWE‑285: Improper Authorization
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CVE-2025-2818 (GCVE-0-2025-2818)
Vulnerability from nvd – Published: 2025-07-17 19:17 – Updated: 2025-07-17 20:11- CWE-319 - Cleartext Transmission of Sensitive Information
| Vendor | Product | Version | |
|---|---|---|---|
| Motorola | Smart Connect Android Application |
Affected:
0 , < 08.0.1.011.0
(custom)
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CVE-2025-1700 (GCVE-0-2025-1700)
Vulnerability from nvd – Published: 2025-07-17 19:16 – Updated: 2025-07-21 20:23- CWE-427 - Uncontrolled Search Path Element
| Vendor | Product | Version | |
|---|---|---|---|
| Motorola | Software Fix |
Affected:
0 , < 7.3.4.13
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CVE-2025-1699 (GCVE-0-2025-1699)
Vulnerability from nvd – Published: 2025-06-11 16:14 – Updated: 2025-06-11 17:32- CWE-276 - Incorrect Default Permissions
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CVE-2025-1698 (GCVE-0-2025-1698)
Vulnerability from nvd – Published: 2025-06-11 16:14 – Updated: 2025-06-11 17:50- CWE-476 - NULL Pointer Dereference
| Vendor | Product | Version | |
|---|---|---|---|
| Motorola | Razr 40 Ultra |
Affected:
0 , < 2025-06-01
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|
|
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Affected:
0 , < 2025-06-01
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|
|
| Motorola | Razr 2023 |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Edge 40 Pro |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Edge+ 2023 |
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0 , < 2025-06-01
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CVE-2026-5804 (GCVE-0-2026-5804)
Vulnerability from cvelistv5 – Published: 2026-05-19 14:42 – Updated: 2026-05-19 16:39- CWE‑306: Missing Authentication for Critical Function
- CWE‑285: Improper Authorization
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CVE-2025-2818 (GCVE-0-2025-2818)
Vulnerability from cvelistv5 – Published: 2025-07-17 19:17 – Updated: 2025-07-17 20:11- CWE-319 - Cleartext Transmission of Sensitive Information
| Vendor | Product | Version | |
|---|---|---|---|
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Affected:
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CVE-2025-1700 (GCVE-0-2025-1700)
Vulnerability from cvelistv5 – Published: 2025-07-17 19:16 – Updated: 2025-07-21 20:23- CWE-427 - Uncontrolled Search Path Element
| Vendor | Product | Version | |
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| Motorola | Software Fix |
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CVE-2025-1699 (GCVE-0-2025-1699)
Vulnerability from cvelistv5 – Published: 2025-06-11 16:14 – Updated: 2025-06-11 17:32- CWE-276 - Incorrect Default Permissions
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CVE-2025-1698 (GCVE-0-2025-1698)
Vulnerability from cvelistv5 – Published: 2025-06-11 16:14 – Updated: 2025-06-11 17:50- CWE-476 - NULL Pointer Dereference
| Vendor | Product | Version | |
|---|---|---|---|
| Motorola | Razr 40 Ultra |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Razr 40 |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Razr 2023 |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Edge 40 Pro |
Affected:
0 , < 2025-06-01
(SPL)
|
|
| Motorola | Edge+ 2023 |
Affected:
0 , < 2025-06-01
(SPL)
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VAR-201304-0124
Vulnerability from variot - Updated: 2025-11-18 11:57Integer overflow in the fb_mmap function in drivers/video/fbmem.c in the Linux kernel before 3.8.9, as used in a certain Motorola build of Android 4.1.2 and other products, allows local users to create a read-write memory mapping for the entirety of kernel memory, and consequently gain privileges, via crafted /dev/graphics/fb0 mmap2 system calls, as demonstrated by the Motochopper pwn program. The Motorola Razr HD, Razr M and Atrix HD devices are devices that use the Qualcomm MSM8960 chip. Motorola Razr HD, Razr M and Atrix HD devices using Qualcomm's MSM8960 chip have security vulnerabilities under the Android 4.1.2 platform. Allows an attacker to connect to USB debugging mode, use the Android Debug Bridge (adb) to create a USB link, upload and execute the Motochopper pwn program to gain root access. Multiple Motorola devices for Android are prone to a local privilege-escalation vulnerability. Local attackers can exploit this issue to gain root privileges, which may aid in further attacks. (CVE-2013-2596)
arch/x86/kernel/cpu/perf_event_intel.c in the Linux kernel before 3.8.9, when the Performance Events Subsystem is enabled, specifies an incorrect bitmask, which allows local users to cause a denial of service (general protection fault and system crash) by attempting to set a reserved bit. (CVE-2013-1798)
Use-after-free vulnerability in arch/x86/kvm/x86.c in the Linux kernel through 3.8.4 allows guest OS users to cause a denial of service (host OS memory corruption) or possibly have unspecified other impact via a crafted application that triggers use of a guest physical address (GPA) in (1) movable or (2) removable memory during an MSR_KVM_SYSTEM_TIME kvm_set_msr_common operation. (CVE-2013-2141)
Heap-based buffer overflow in the tg3_read_vpd function in drivers/net/ethernet/broadcom/tg3.c in the Linux kernel before 3.8.6 allows physically proximate attackers to cause a denial of service (system crash) or possibly execute arbitrary code via crafted firmware that specifies a long string in the Vital Product Data (VPD) data structure. (CVE-2013-1929)
The main function in tools/hv/hv_kvp_daemon.c in hypervkvpd, as distributed in the Linux kernel before 3.8-rc1, allows local users to cause a denial of service (daemon exit) via a crafted application that sends a Netlink message. NOTE: this vulnerability exists because of an incorrect fix for CVE-2012-2669. (CVE-2013-1848)
The flush_signal_handlers function in kernel/signal.c in the Linux kernel before 3.8.4 preserves the value of the sa_restorer field across an exec operation, which makes it easier for local users to bypass the ASLR protection mechanism via a crafted application containing a sigaction system call. (CVE-2013-0914)
Heap-based buffer overflow in the wdm_in_callback function in drivers/usb/class/cdc-wdm.c in the Linux kernel before 3.8.4 allows physically proximate attackers to cause a denial of service (system crash) or possibly execute arbitrary code via a crafted cdc-wdm USB device. (CVE-2013-2548)
The translate_desc function in drivers/vhost/vhost.c in the Linux kernel before 3.7 does not properly handle cross-region descriptors, which allows guest OS users to obtain host OS privileges by leveraging KVM guest OS privileges. (CVE-2013-0228)
Memory leak in drivers/net/xen-netback/netback.c in the Xen netback functionality in the Linux kernel before 3.7.8 allows guest OS users to cause a denial of service (memory consumption) by triggering certain error conditions. (CVE-2013-0217)
The Xen netback functionality in the Linux kernel before 3.7.8 allows guest OS users to cause a denial of service (loop) by triggering ring pointer corruption. (CVE-2012-6547)
The updated packages provides a solution for these security issues. The verification of md5 checksums and GPG signatures is performed automatically for you. You can obtain the GPG public key of the Mandriva Security Team by executing:
gpg --recv-keys --keyserver pgp.mit.edu 0x22458A98
You can view other update advisories for Mandriva Linux at:
http://www.mandriva.com/en/support/security/advisories/
If you want to report vulnerabilities, please contact
security_(at)_mandriva.com
Type Bits/KeyID Date User ID pub 1024D/22458A98 2000-07-10 Mandriva Security Team -----BEGIN PGP SIGNATURE----- Version: GnuPG v1.4.12 (GNU/Linux)
iD8DBQFRyE83mqjQ0CJFipgRAgpsAKDCNZxW0lBVmcEPovg8gYgjVzLm4wCgpzoW s4hnEgkN4Re4xoskJoTdPM0= =gyQf -----END PGP SIGNATURE-----
. 6.2) - x86_64
-
The ETHTOOL_DELAY variable has been added, which makes sure the ethtool utility waits for some time before it tries to apply the options settings, thus fixing the bug. (BZ#1138299)
-
During the memory allocation for a new socket to communicate to the server, the rpciod daemon released a clean page which needed to be committed. However, the commit was queueing indefinitely as the commit could only be provided with a socket connection. As a consequence, a deadlock occurred in rpciod. This update sets the PF_FSTRANS flag on the work queue task prior to the socket allocation, and adds the nfs_release_page check for the flag when deciding whether to make a commit call, thus fixing this bug.
-
It was found that the Linux kernel's Infiniband subsystem did not properly sanitize input parameters while registering memory regions from user space via the (u)verbs API. (CVE-2013-2596, Important)
-
It was found that the Linux kernel's KVM implementation did not ensure that the host CR4 control register value remained unchanged across VM entries on the same virtual CPU. (CVE-2014-3690, Moderate)
-
It was found that the parse_rock_ridge_inode_internal() function of the Linux kernel's ISOFS implementation did not correctly check relocated directories when processing Rock Ridge child link (CL) tags. (CVE-2014-5471, CVE-2014-5472, Low)
-
A stack-based buffer overflow flaw was found in the TechnoTrend/Hauppauge DEC USB device driver.
This update also fixes the following bugs:
-
Previously, a NULL pointer check that is needed to prevent an oops in the nfs_async_inode_return_delegation() function was removed. As a consequence, a NFS4 client could terminate unexpectedly. The missing NULL pointer check has been added back, and NFS4 client no longer crashes in this situation. (BZ#1187638)
-
Due to unbalanced multicast join and leave processing, the attempt to leave a multicast group that had not previously completed a join became unresponsive. This update resolves multiple locking issues in the IPoIB multicast code that allowed multicast groups to be left before the joining was entirely completed. Now, multicast join and leave failures or lockups no longer occur in the described situation. (BZ#1187663)
-
A failure to leave a multicast group which had previously been joined prevented the attempt to unregister from the "sa" service. Multiple locking issues in the IPoIB multicast join and leave processing have been fixed so that leaving a group that has completed its join process is successful. As a result, attempts to unregister from the "sa" service no longer lock up due to leaked resources. (BZ#1187665)
-
Due to a regression, when large reads which partially extended beyond the end of the underlying device were done, the raw driver returned the EIO error code instead of returning a short read covering the valid part of the device. The underlying source code has been patched, and the raw driver now returns a short read for the remainder of the device.
For details on how to apply this update, refer to:
https://access.redhat.com/articles/11258
- Bugs fixed (https://bugzilla.redhat.com/):
1034490 - CVE-2013-2596 kernel: integer overflow in fb_mmap 1134099 - CVE-2014-5471 CVE-2014-5472 kernel: isofs: unbound recursion when processing relocated directories 1153322 - CVE-2014-3690 kernel: kvm: vmx: invalid host cr4 handling across vm entries 1164266 - CVE-2014-8884 kernel: usb: buffer overflow in ttusb-dec 1181166 - CVE-2014-8159 kernel: infiniband: uverbs: unprotected physical memory access 1196581 - CVE-2015-1421 kernel: net: slab corruption from use after free on INIT collisions
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA1
===================================================================== Red Hat Security Advisory
Synopsis: Important: kernel security, bug fix, and enhancement update Advisory ID: RHSA-2014:1392-01 Product: Red Hat Enterprise Linux Advisory URL: https://rhn.redhat.com/errata/RHSA-2014-1392.html Issue date: 2014-10-14 CVE Names: CVE-2013-2596 CVE-2013-4483 CVE-2014-0181 CVE-2014-3122 CVE-2014-3601 CVE-2014-4608 CVE-2014-4653 CVE-2014-4654 CVE-2014-4655 CVE-2014-5045 CVE-2014-5077 =====================================================================
- Summary:
Updated kernel packages that fix multiple security issues, address several hundred bugs, and add numerous enhancements are now available as part of the ongoing support and maintenance of Red Hat Enterprise Linux version 6. This is the sixth regular update.
Red Hat Product Security has rated this update as having Important 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 Desktop (v. 6) - i386, noarch, x86_64 Red Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64 Red Hat Enterprise Linux HPC Node (v. 6) - noarch, x86_64 Red Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64 Red Hat Enterprise Linux Server (v. 6) - i386, noarch, ppc64, s390x, x86_64 Red Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64 Red Hat Enterprise Linux Workstation (v. 6) - i386, noarch, x86_64 Red Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64
- Description:
The kernel packages contain the Linux kernel, the core of any Linux operating system.
-
A NULL pointer dereference flaw was found in the way the Linux kernel's Stream Control Transmission Protocol (SCTP) implementation handled simultaneous connections between the same hosts. A remote attacker could use this flaw to crash the system. A local user able to access a frame buffer device file (/dev/fb*) could possibly use this flaw to escalate their privileges on the system. (CVE-2013-2596, Important)
-
A flaw was found in the way the ipc_rcu_putref() function in the Linux kernel's IPC implementation handled reference counter decrementing. A local, unprivileged user could use this flaw to trigger an Out of Memory (OOM) condition and, potentially, crash the system. (CVE-2013-4483, Moderate)
-
It was found that the permission checks performed by the Linux kernel when a netlink message was received were not sufficient. A local, unprivileged user could potentially bypass these restrictions by passing a netlink socket as stdout or stderr to a more privileged process and altering the output of this process. (CVE-2014-0181, Moderate)
-
It was found that the try_to_unmap_cluster() function in the Linux kernel's Memory Managment subsystem did not properly handle page locking in certain cases, which could potentially trigger the BUG_ON() macro in the mlock_vma_page() function. A local, unprivileged user could use this flaw to crash the system. (CVE-2014-3122, Moderate)
-
A flaw was found in the way the Linux kernel's kvm_iommu_map_pages() function handled IOMMU mapping failures. A privileged user in a guest with an assigned host device could use this flaw to crash the host. (CVE-2014-3601, Moderate)
-
Multiple use-after-free flaws were found in the way the Linux kernel's Advanced Linux Sound Architecture (ALSA) implementation handled user controls. A local, privileged user could use either of these flaws to crash the system. (CVE-2014-4653, CVE-2014-4654, CVE-2014-4655, Moderate)
-
A flaw was found in the way the Linux kernel's VFS subsystem handled reference counting when performing unmount operations on symbolic links. A local, unprivileged user could use this flaw to exhaust all available memory on the system or, potentially, trigger a use-after-free error, resulting in a system crash or privilege escalation. (CVE-2014-5045, Moderate)
-
An integer overflow flaw was found in the way the lzo1x_decompress_safe() function of the Linux kernel's LZO implementation processed Literal Runs. A local attacker could, in extremely rare cases, use this flaw to crash the system or, potentially, escalate their privileges on the system. (CVE-2014-4608, Low)
Red Hat would like to thank Vladimir Davydov of Parallels for reporting CVE-2013-4483, Jack Morgenstein of Mellanox for reporting CVE-2014-3601, Vasily Averin of Parallels for reporting CVE-2014-5045, and Don A. Bailey from Lab Mouse Security for reporting CVE-2014-4608. The security impact of the CVE-2014-3601 issue was discovered by Michael Tsirkin of Red Hat.
This update also fixes several hundred bugs and adds numerous enhancements. Refer to the Red Hat Enterprise Linux 6.6 Release Notes for information on the most significant of these changes, and the Technical Notes for further information, both linked to in the References.
All Red Hat Enterprise Linux 6 users are advised to install these updated packages, which correct these issues, and fix the bugs and add the enhancements noted in the Red Hat Enterprise Linux 6.6 Release Notes and Technical Notes. The system must be rebooted for this update to take effect.
- Solution:
Before applying this update, make sure all previously released errata relevant to your system have been applied.
This update is available via the Red Hat Network. Details on how to use the Red Hat Network to apply this update are available at https://access.redhat.com/articles/11258
To install kernel packages manually, use "rpm -ivh [package]". Do not use "rpm -Uvh" as that will remove the running kernel binaries from your system. You may use "rpm -e" to remove old kernels after determining that the new kernel functions properly on your system.
- Bugs fixed (https://bugzilla.redhat.com/):
739866 - checkpolicy cannot parse /selinux/policy on ppc64 and s390x 786463 - nfs mount hangs when kerberos ticket expires 889471 - [Btrfs] BUG: unable to handle kernel NULL pointer dereference at (null) btrfs_get_sb should return error when open_ctree failed 915862 - The sync mount option does not work for NFSv4 mounts in RHEL6 997651 - possible recursive locking detected 998024 - nfsd sometimes grants delegations too soon following conflicting open requests 1010882 - kvm: backport "Improve create VCPU parameter" 1024854 - CVE-2013-4483 kernel: ipc: ipc_rcu_putref refcount races 1027480 - alb_send_learning_packets using an obsolete EtherType 1030411 - resizing thin-snapshot with external origin should return zeros behind origin's end 1031488 - Restore the mask bit correctly in eoi_ioapic_irq() 1034490 - CVE-2013-2596 kernel: integer overflow in fb_mmap 1036972 - use after free in new nfsd DRC code 1044438 - cifs: Unable to append to an existing file in cache=none mode. 1059496 - KVM: x86 emulator: Implement jmp far opcode ff/5 1063836 - kvm: 23090: cpu0 unhandled wrmsr 0x391 data 2000000f 1065304 - kernel/sched: incorrect setup of sched_group->cpu_power for NUMA systems 1069028 - ixgbevf prematurely strips VLAN tags 1072373 - Along with the increase of vCPUs in guest, and guest OS will spend more time to boot up in specified machine. 1077463 - gfs2: quotas not refreshed in gfs2_adjust_quota 1090423 - Data integrity issue on rebuilding RAID 6 with 100MB resync speed 1093076 - CVE-2014-3122 Kernel: mm: try_to_unmap_cluster() should lock_page() before mlocking 1094265 - CVE-2014-0181 kernel: net: insufficient permision checks of netlink messages 1095627 - missing vhost schedule causing thread starvation 1100523 - ext4 filesystem option 'max_batch_time' actually displays 'min_batch_time' in /proc/mounts 1113409 - CVE-2014-4653 Kernel: ALSA: control: do not access controls outside of protected regions 1113445 - CVE-2014-4654 CVE-2014-4655 Kernel: ALSA: control: use-after-free in replacing user controls 1113899 - CVE-2014-4608 kernel: lzo1x_decompress_safe() integer overflow 1118123 - [Hyper-V][REHL 6.6] fcopy large file from host to guest failed 1122472 - CVE-2014-5045 kernel: vfs: refcount issues during unmount on symlink 1122982 - CVE-2014-5077 Kernel: net: SCTP: fix a NULL pointer dereference during INIT collisions 1124351 - raid1 Data corruption after recovery with bitmap 1127231 - dmeventd hanging while handling lost leg in RAID1 LV 1131951 - CVE-2014-3601 kernel: kvm: invalid parameter passing in kvm_iommu_map_pages()
- Package List:
Red Hat Enterprise Linux Desktop (v. 6):
Source: kernel-2.6.32-504.el6.src.rpm
i386: kernel-2.6.32-504.el6.i686.rpm kernel-debug-2.6.32-504.el6.i686.rpm kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debug-devel-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm kernel-devel-2.6.32-504.el6.i686.rpm kernel-headers-2.6.32-504.el6.i686.rpm perf-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-504.el6.noarch.rpm kernel-doc-2.6.32-504.el6.noarch.rpm kernel-firmware-2.6.32-504.el6.noarch.rpm
x86_64: kernel-2.6.32-504.el6.x86_64.rpm kernel-debug-2.6.32-504.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm kernel-devel-2.6.32-504.el6.x86_64.rpm kernel-headers-2.6.32-504.el6.x86_64.rpm perf-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux Desktop Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
x86_64: kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node (v. 6):
Source: kernel-2.6.32-504.el6.src.rpm
noarch: kernel-abi-whitelists-2.6.32-504.el6.noarch.rpm kernel-doc-2.6.32-504.el6.noarch.rpm kernel-firmware-2.6.32-504.el6.noarch.rpm
x86_64: kernel-2.6.32-504.el6.x86_64.rpm kernel-debug-2.6.32-504.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm kernel-devel-2.6.32-504.el6.x86_64.rpm kernel-headers-2.6.32-504.el6.x86_64.rpm perf-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux HPC Node Optional (v. 6):
x86_64: kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux Server (v. 6):
Source: kernel-2.6.32-504.el6.src.rpm
i386: kernel-2.6.32-504.el6.i686.rpm kernel-debug-2.6.32-504.el6.i686.rpm kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debug-devel-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm kernel-devel-2.6.32-504.el6.i686.rpm kernel-headers-2.6.32-504.el6.i686.rpm perf-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-504.el6.noarch.rpm kernel-doc-2.6.32-504.el6.noarch.rpm kernel-firmware-2.6.32-504.el6.noarch.rpm
ppc64: kernel-2.6.32-504.el6.ppc64.rpm kernel-bootwrapper-2.6.32-504.el6.ppc64.rpm kernel-debug-2.6.32-504.el6.ppc64.rpm kernel-debug-debuginfo-2.6.32-504.el6.ppc64.rpm kernel-debug-devel-2.6.32-504.el6.ppc64.rpm kernel-debuginfo-2.6.32-504.el6.ppc64.rpm kernel-debuginfo-common-ppc64-2.6.32-504.el6.ppc64.rpm kernel-devel-2.6.32-504.el6.ppc64.rpm kernel-headers-2.6.32-504.el6.ppc64.rpm perf-2.6.32-504.el6.ppc64.rpm perf-debuginfo-2.6.32-504.el6.ppc64.rpm python-perf-debuginfo-2.6.32-504.el6.ppc64.rpm
s390x: kernel-2.6.32-504.el6.s390x.rpm kernel-debug-2.6.32-504.el6.s390x.rpm kernel-debug-debuginfo-2.6.32-504.el6.s390x.rpm kernel-debug-devel-2.6.32-504.el6.s390x.rpm kernel-debuginfo-2.6.32-504.el6.s390x.rpm kernel-debuginfo-common-s390x-2.6.32-504.el6.s390x.rpm kernel-devel-2.6.32-504.el6.s390x.rpm kernel-headers-2.6.32-504.el6.s390x.rpm kernel-kdump-2.6.32-504.el6.s390x.rpm kernel-kdump-debuginfo-2.6.32-504.el6.s390x.rpm kernel-kdump-devel-2.6.32-504.el6.s390x.rpm perf-2.6.32-504.el6.s390x.rpm perf-debuginfo-2.6.32-504.el6.s390x.rpm python-perf-debuginfo-2.6.32-504.el6.s390x.rpm
x86_64: kernel-2.6.32-504.el6.x86_64.rpm kernel-debug-2.6.32-504.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm kernel-devel-2.6.32-504.el6.x86_64.rpm kernel-headers-2.6.32-504.el6.x86_64.rpm perf-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux Server Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
ppc64: kernel-debug-debuginfo-2.6.32-504.el6.ppc64.rpm kernel-debuginfo-2.6.32-504.el6.ppc64.rpm kernel-debuginfo-common-ppc64-2.6.32-504.el6.ppc64.rpm perf-debuginfo-2.6.32-504.el6.ppc64.rpm python-perf-2.6.32-504.el6.ppc64.rpm python-perf-debuginfo-2.6.32-504.el6.ppc64.rpm
s390x: kernel-debug-debuginfo-2.6.32-504.el6.s390x.rpm kernel-debuginfo-2.6.32-504.el6.s390x.rpm kernel-debuginfo-common-s390x-2.6.32-504.el6.s390x.rpm kernel-kdump-debuginfo-2.6.32-504.el6.s390x.rpm perf-debuginfo-2.6.32-504.el6.s390x.rpm python-perf-2.6.32-504.el6.s390x.rpm python-perf-debuginfo-2.6.32-504.el6.s390x.rpm
x86_64: kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux Workstation (v. 6):
Source: kernel-2.6.32-504.el6.src.rpm
i386: kernel-2.6.32-504.el6.i686.rpm kernel-debug-2.6.32-504.el6.i686.rpm kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debug-devel-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm kernel-devel-2.6.32-504.el6.i686.rpm kernel-headers-2.6.32-504.el6.i686.rpm perf-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
noarch: kernel-abi-whitelists-2.6.32-504.el6.noarch.rpm kernel-doc-2.6.32-504.el6.noarch.rpm kernel-firmware-2.6.32-504.el6.noarch.rpm
x86_64: kernel-2.6.32-504.el6.x86_64.rpm kernel-debug-2.6.32-504.el6.x86_64.rpm kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debug-devel-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm kernel-devel-2.6.32-504.el6.x86_64.rpm kernel-headers-2.6.32-504.el6.x86_64.rpm perf-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.x86_64.rpm
Red Hat Enterprise Linux Workstation Optional (v. 6):
i386: kernel-debug-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-2.6.32-504.el6.i686.rpm kernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm perf-debuginfo-2.6.32-504.el6.i686.rpm python-perf-2.6.32-504.el6.i686.rpm python-perf-debuginfo-2.6.32-504.el6.i686.rpm
x86_64: kernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-2.6.32-504.el6.x86_64.rpm kernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm perf-debuginfo-2.6.32-504.el6.x86_64.rpm python-perf-2.6.32-504.el6.x86_64.rpm python-perf-debuginfo-2.6.32-504.el6.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/#package
- References:
https://www.redhat.com/security/data/cve/CVE-2013-2596.html https://www.redhat.com/security/data/cve/CVE-2013-4483.html https://www.redhat.com/security/data/cve/CVE-2014-0181.html https://www.redhat.com/security/data/cve/CVE-2014-3122.html https://www.redhat.com/security/data/cve/CVE-2014-3601.html https://www.redhat.com/security/data/cve/CVE-2014-4608.html https://www.redhat.com/security/data/cve/CVE-2014-4653.html https://www.redhat.com/security/data/cve/CVE-2014-4654.html https://www.redhat.com/security/data/cve/CVE-2014-4655.html https://www.redhat.com/security/data/cve/CVE-2014-5045.html https://www.redhat.com/security/data/cve/CVE-2014-5077.html https://access.redhat.com/security/updates/classification/#important https://access.redhat.com/documentation/en-US/Red_Hat_Enterprise_Linux/6/html/6.6_Technical_Notes/kernel.html#RHSA-2014-1392 https://access.redhat.com/documentation/en-US/Red_Hat_Enterprise_Linux/6/html-single/6.6_Release_Notes/index.html
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
Copyright 2014 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 . (CVE-2013-2596, Important)
-
It was found that the Xen hypervisor x86 CPU emulator implementation did not correctly handle certain instructions with segment overrides, potentially resulting in a memory corruption. The provided patch ensures that the division is only performed if the CPU power is not zero, and the aforementioned panic no longer occurs. (BZ#1209728)
-
Prior to this update, a bug occurred when performing an online resize of an ext4 file system which had been previously converted from ext3. The provided patch fixes online resizing for such file systems by limiting the blockgroup search loop for non-extent files, and the mentioned kernel crash no longer occurs. This bug has been fixed by defining a new div64_ul() division function and correcting the affected calculation in the proc_sched_show_task() function. (BZ#1199898)
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When repeating a Coordinated Universal Time (UTC) value during a leap second (when the UTC time should be 23:59:60), the International Atomic Time (TAI) timescale previously stopped as the kernel NTP code incremented the TAI offset one second too late. A patch has been provided, which fixes the bug by incrementing the offset during the leap second itself. Now, the correct TAI is set during the leap second
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"data": "Integer overflow in the fb_mmap function in drivers/video/fbmem.c in the Linux kernel before 3.8.9, as used in a certain Motorola build of Android 4.1.2 and other products, allows local users to create a read-write memory mapping for the entirety of kernel memory, and consequently gain privileges, via crafted /dev/graphics/fb0 mmap2 system calls, as demonstrated by the Motochopper pwn program. The Motorola Razr HD, Razr M and Atrix HD devices are devices that use the Qualcomm MSM8960 chip. Motorola Razr HD, Razr M and Atrix HD devices using Qualcomm\u0027s MSM8960 chip have security vulnerabilities under the Android 4.1.2 platform. Allows an attacker to connect to USB debugging mode, use the Android Debug Bridge (adb) to create a USB link, upload and execute the Motochopper pwn program to gain root access. Multiple Motorola devices for Android are prone to a local privilege-escalation vulnerability. \nLocal attackers can exploit this issue to gain root privileges, which may aid in further attacks. (CVE-2013-2596)\n \n arch/x86/kernel/cpu/perf_event_intel.c in the Linux kernel before\n 3.8.9, when the Performance Events Subsystem is enabled, specifies\n an incorrect bitmask, which allows local users to cause a denial of\n service (general protection fault and system crash) by attempting to\n set a reserved bit. (CVE-2013-1798)\n \n Use-after-free vulnerability in arch/x86/kvm/x86.c in the Linux kernel\n through 3.8.4 allows guest OS users to cause a denial of service (host\n OS memory corruption) or possibly have unspecified other impact via a\n crafted application that triggers use of a guest physical address (GPA)\n in (1) movable or (2) removable memory during an MSR_KVM_SYSTEM_TIME\n kvm_set_msr_common operation. (CVE-2013-2141)\n \n Heap-based buffer overflow in the tg3_read_vpd function in\n drivers/net/ethernet/broadcom/tg3.c in the Linux kernel before 3.8.6\n allows physically proximate attackers to cause a denial of service\n (system crash) or possibly execute arbitrary code via crafted firmware\n that specifies a long string in the Vital Product Data (VPD) data\n structure. (CVE-2013-1929)\n \n The main function in tools/hv/hv_kvp_daemon.c in hypervkvpd, as\n distributed in the Linux kernel before 3.8-rc1, allows local users\n to cause a denial of service (daemon exit) via a crafted application\n that sends a Netlink message. NOTE: this vulnerability exists because\n of an incorrect fix for CVE-2012-2669. (CVE-2013-1848)\n \n The flush_signal_handlers function in kernel/signal.c in the Linux\n kernel before 3.8.4 preserves the value of the sa_restorer field across\n an exec operation, which makes it easier for local users to bypass\n the ASLR protection mechanism via a crafted application containing\n a sigaction system call. (CVE-2013-0914)\n \n Heap-based buffer overflow in the wdm_in_callback function in\n drivers/usb/class/cdc-wdm.c in the Linux kernel before 3.8.4 allows\n physically proximate attackers to cause a denial of service (system\n crash) or possibly execute arbitrary code via a crafted cdc-wdm USB\n device. (CVE-2013-2548)\n \n The translate_desc function in drivers/vhost/vhost.c in the Linux\n kernel before 3.7 does not properly handle cross-region descriptors,\n which allows guest OS users to obtain host OS privileges by leveraging\n KVM guest OS privileges. (CVE-2013-0228)\n \n Memory leak in drivers/net/xen-netback/netback.c in the Xen netback\n functionality in the Linux kernel before 3.7.8 allows guest OS users to\n cause a denial of service (memory consumption) by triggering certain\n error conditions. (CVE-2013-0217)\n \n The Xen netback functionality in the Linux kernel before 3.7.8 allows\n guest OS users to cause a denial of service (loop) by triggering ring\n pointer corruption. (CVE-2012-6547)\n \n The updated packages provides a solution for these security issues. The verification\n of md5 checksums and GPG signatures is performed automatically for you. You can obtain the\n GPG public key of the Mandriva Security Team by executing:\n\n gpg --recv-keys --keyserver pgp.mit.edu 0x22458A98\n\n You can view other update advisories for Mandriva Linux at:\n\n http://www.mandriva.com/en/support/security/advisories/\n\n If you want to report vulnerabilities, please contact\n\n security_(at)_mandriva.com\n _______________________________________________________________________\n\n Type Bits/KeyID Date User ID\n pub 1024D/22458A98 2000-07-10 Mandriva Security Team\n \u003csecurity*mandriva.com\u003e\n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1.4.12 (GNU/Linux)\n\niD8DBQFRyE83mqjQ0CJFipgRAgpsAKDCNZxW0lBVmcEPovg8gYgjVzLm4wCgpzoW\ns4hnEgkN4Re4xoskJoTdPM0=\n=gyQf\n-----END PGP SIGNATURE-----\n\n\n. 6.2) - x86_64\n\n3. The ETHTOOL_DELAY variable has been added, which makes sure\nthe ethtool utility waits for some time before it tries to apply the\noptions settings, thus fixing the bug. (BZ#1138299)\n\n* During the memory allocation for a new socket to communicate to the\nserver, the rpciod daemon released a clean page which needed to be\ncommitted. However, the commit was queueing indefinitely as the commit\ncould only be provided with a socket connection. As a consequence, a\ndeadlock occurred in rpciod. This update sets the PF_FSTRANS flag on the\nwork queue task prior to the socket allocation, and adds the\nnfs_release_page check for the flag when deciding whether to make a commit\ncall, thus fixing this bug. \n\n* It was found that the Linux kernel\u0027s Infiniband subsystem did not\nproperly sanitize input parameters while registering memory regions from\nuser space via the (u)verbs API. (CVE-2013-2596, Important)\n\n* It was found that the Linux kernel\u0027s KVM implementation did not ensure\nthat the host CR4 control register value remained unchanged across VM\nentries on the same virtual CPU. (CVE-2014-3690, Moderate)\n\n* It was found that the parse_rock_ridge_inode_internal() function of the\nLinux kernel\u0027s ISOFS implementation did not correctly check relocated\ndirectories when processing Rock Ridge child link (CL) tags. (CVE-2014-5471, CVE-2014-5472, Low)\n\n* A stack-based buffer overflow flaw was found in the TechnoTrend/Hauppauge\nDEC USB device driver. \n\nThis update also fixes the following bugs:\n\n* Previously, a NULL pointer check that is needed to prevent an oops in the\nnfs_async_inode_return_delegation() function was removed. As a consequence,\na NFS4 client could terminate unexpectedly. The missing NULL pointer check\nhas been added back, and NFS4 client no longer crashes in this situation. \n(BZ#1187638)\n\n* Due to unbalanced multicast join and leave processing, the attempt to\nleave a multicast group that had not previously completed a join became\nunresponsive. This update resolves multiple locking issues in the IPoIB\nmulticast code that allowed multicast groups to be left before the joining\nwas entirely completed. Now, multicast join and leave failures or lockups\nno longer occur in the described situation. (BZ#1187663)\n\n* A failure to leave a multicast group which had previously been joined\nprevented the attempt to unregister from the \"sa\" service. Multiple locking\nissues in the IPoIB multicast join and leave processing have been fixed so\nthat leaving a group that has completed its join process is successful. \nAs a result, attempts to unregister from the \"sa\" service no longer lock up\ndue to leaked resources. (BZ#1187665)\n\n* Due to a regression, when large reads which partially extended beyond the\nend of the underlying device were done, the raw driver returned the EIO\nerror code instead of returning a short read covering the valid part of the\ndevice. The underlying source code has been patched, and the raw driver now\nreturns a short read for the remainder of the device. \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\n1034490 - CVE-2013-2596 kernel: integer overflow in fb_mmap\n1134099 - CVE-2014-5471 CVE-2014-5472 kernel: isofs: unbound recursion when processing relocated directories\n1153322 - CVE-2014-3690 kernel: kvm: vmx: invalid host cr4 handling across vm entries\n1164266 - CVE-2014-8884 kernel: usb: buffer overflow in ttusb-dec\n1181166 - CVE-2014-8159 kernel: infiniband: uverbs: unprotected physical memory access\n1196581 - CVE-2015-1421 kernel: net: slab corruption from use after free on INIT collisions\n\n6. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA1\n\n=====================================================================\n Red Hat Security Advisory\n\nSynopsis: Important: kernel security, bug fix, and enhancement update\nAdvisory ID: RHSA-2014:1392-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://rhn.redhat.com/errata/RHSA-2014-1392.html\nIssue date: 2014-10-14\nCVE Names: CVE-2013-2596 CVE-2013-4483 CVE-2014-0181 \n CVE-2014-3122 CVE-2014-3601 CVE-2014-4608 \n CVE-2014-4653 CVE-2014-4654 CVE-2014-4655 \n CVE-2014-5045 CVE-2014-5077 \n=====================================================================\n\n1. Summary:\n\nUpdated kernel packages that fix multiple security issues, address several\nhundred bugs, and add numerous enhancements are now available as part of\nthe ongoing support and maintenance of Red Hat Enterprise Linux version 6. \nThis is the sixth regular update. \n\nRed Hat Product Security has rated this update as having Important 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 Desktop (v. 6) - i386, noarch, x86_64\nRed Hat Enterprise Linux Desktop Optional (v. 6) - i386, x86_64\nRed Hat Enterprise Linux HPC Node (v. 6) - noarch, x86_64\nRed Hat Enterprise Linux HPC Node Optional (v. 6) - x86_64\nRed Hat Enterprise Linux Server (v. 6) - i386, noarch, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Server Optional (v. 6) - i386, ppc64, s390x, x86_64\nRed Hat Enterprise Linux Workstation (v. 6) - i386, noarch, x86_64\nRed Hat Enterprise Linux Workstation Optional (v. 6) - i386, x86_64\n\n3. Description:\n\nThe kernel packages contain the Linux kernel, the core of any Linux\noperating system. \n\n* A NULL pointer dereference flaw was found in the way the Linux kernel\u0027s\nStream Control Transmission Protocol (SCTP) implementation handled\nsimultaneous connections between the same hosts. A remote attacker could\nuse this flaw to crash the system. A local user able to access a frame buffer device file\n(/dev/fb*) could possibly use this flaw to escalate their privileges on the\nsystem. (CVE-2013-2596, Important)\n\n* A flaw was found in the way the ipc_rcu_putref() function in the Linux\nkernel\u0027s IPC implementation handled reference counter decrementing. \nA local, unprivileged user could use this flaw to trigger an Out of Memory\n(OOM) condition and, potentially, crash the system. (CVE-2013-4483,\nModerate)\n\n* It was found that the permission checks performed by the Linux kernel\nwhen a netlink message was received were not sufficient. A local,\nunprivileged user could potentially bypass these restrictions by passing a\nnetlink socket as stdout or stderr to a more privileged process and\naltering the output of this process. (CVE-2014-0181, Moderate)\n\n* It was found that the try_to_unmap_cluster() function in the Linux\nkernel\u0027s Memory Managment subsystem did not properly handle page locking in\ncertain cases, which could potentially trigger the BUG_ON() macro in the\nmlock_vma_page() function. A local, unprivileged user could use this flaw\nto crash the system. (CVE-2014-3122, Moderate)\n\n* A flaw was found in the way the Linux kernel\u0027s kvm_iommu_map_pages()\nfunction handled IOMMU mapping failures. A privileged user in a guest with\nan assigned host device could use this flaw to crash the host. \n(CVE-2014-3601, Moderate)\n\n* Multiple use-after-free flaws were found in the way the Linux kernel\u0027s\nAdvanced Linux Sound Architecture (ALSA) implementation handled user\ncontrols. A local, privileged user could use either of these flaws to crash\nthe system. (CVE-2014-4653, CVE-2014-4654, CVE-2014-4655, Moderate)\n\n* A flaw was found in the way the Linux kernel\u0027s VFS subsystem handled\nreference counting when performing unmount operations on symbolic links. \nA local, unprivileged user could use this flaw to exhaust all available\nmemory on the system or, potentially, trigger a use-after-free error,\nresulting in a system crash or privilege escalation. (CVE-2014-5045,\nModerate)\n\n* An integer overflow flaw was found in the way the lzo1x_decompress_safe()\nfunction of the Linux kernel\u0027s LZO implementation processed Literal Runs. \nA local attacker could, in extremely rare cases, use this flaw to crash the\nsystem or, potentially, escalate their privileges on the system. \n(CVE-2014-4608, Low)\n\nRed Hat would like to thank Vladimir Davydov of Parallels for reporting\nCVE-2013-4483, Jack Morgenstein of Mellanox for reporting CVE-2014-3601,\nVasily Averin of Parallels for reporting CVE-2014-5045, and Don A. \nBailey from Lab Mouse Security for reporting CVE-2014-4608. The security\nimpact of the CVE-2014-3601 issue was discovered by Michael Tsirkin of\nRed Hat. \n\nThis update also fixes several hundred bugs and adds numerous enhancements. \nRefer to the Red Hat Enterprise Linux 6.6 Release Notes for information on\nthe most significant of these changes, and the Technical Notes for further\ninformation, both linked to in the References. \n\nAll Red Hat Enterprise Linux 6 users are advised to install these updated\npackages, which correct these issues, and fix the bugs and add the\nenhancements noted in the Red Hat Enterprise Linux 6.6 Release Notes and\nTechnical Notes. The system must be rebooted for this update to\ntake effect. \n\n4. Solution:\n\nBefore applying this update, make sure all previously released errata\nrelevant to your system have been applied. \n\nThis update is available via the Red Hat Network. Details on how to use the\nRed Hat Network to apply this update are available at\nhttps://access.redhat.com/articles/11258\n\nTo install kernel packages manually, use \"rpm -ivh [package]\". Do not use\n\"rpm -Uvh\" as that will remove the running kernel binaries from your\nsystem. You may use \"rpm -e\" to remove old kernels after determining that\nthe new kernel functions properly on your system. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n739866 - checkpolicy cannot parse /selinux/policy on ppc64 and s390x\n786463 - nfs mount hangs when kerberos ticket expires\n889471 - [Btrfs] BUG: unable to handle kernel NULL pointer dereference at (null) btrfs_get_sb should return error when open_ctree failed\n915862 - The sync mount option does not work for NFSv4 mounts in RHEL6\n997651 - possible recursive locking detected\n998024 - nfsd sometimes grants delegations too soon following conflicting open requests\n1010882 - kvm: backport \"Improve create VCPU parameter\"\n1024854 - CVE-2013-4483 kernel: ipc: ipc_rcu_putref refcount races\n1027480 - alb_send_learning_packets using an obsolete EtherType\n1030411 - resizing thin-snapshot with external origin should return zeros behind origin\u0027s end\n1031488 - Restore the mask bit correctly in eoi_ioapic_irq()\n1034490 - CVE-2013-2596 kernel: integer overflow in fb_mmap\n1036972 - use after free in new nfsd DRC code\n1044438 - cifs: Unable to append to an existing file in cache=none mode. \n1059496 - KVM: x86 emulator: Implement jmp far opcode ff/5\n1063836 - kvm: 23090: cpu0 unhandled wrmsr 0x391 data 2000000f\n1065304 - kernel/sched: incorrect setup of sched_group-\u003ecpu_power for NUMA systems\n1069028 - ixgbevf prematurely strips VLAN tags\n1072373 - Along with the increase of vCPUs in guest, and guest OS will spend more time to boot up in specified machine. \n1077463 - gfs2: quotas not refreshed in gfs2_adjust_quota\n1090423 - Data integrity issue on rebuilding RAID 6 with 100MB resync speed\n1093076 - CVE-2014-3122 Kernel: mm: try_to_unmap_cluster() should lock_page() before mlocking\n1094265 - CVE-2014-0181 kernel: net: insufficient permision checks of netlink messages\n1095627 - missing vhost schedule causing thread starvation\n1100523 - ext4 filesystem option \u0027max_batch_time\u0027 actually displays \u0027min_batch_time\u0027 in /proc/mounts\n1113409 - CVE-2014-4653 Kernel: ALSA: control: do not access controls outside of protected regions\n1113445 - CVE-2014-4654 CVE-2014-4655 Kernel: ALSA: control: use-after-free in replacing user controls\n1113899 - CVE-2014-4608 kernel: lzo1x_decompress_safe() integer overflow\n1118123 - [Hyper-V][REHL 6.6] fcopy large file from host to guest failed\n1122472 - CVE-2014-5045 kernel: vfs: refcount issues during unmount on symlink\n1122982 - CVE-2014-5077 Kernel: net: SCTP: fix a NULL pointer dereference during INIT collisions\n1124351 - raid1 Data corruption after recovery with bitmap\n1127231 - dmeventd hanging while handling lost leg in RAID1 LV\n1131951 - CVE-2014-3601 kernel: kvm: invalid parameter passing in kvm_iommu_map_pages()\n\n6. Package List:\n\nRed Hat Enterprise Linux Desktop (v. 6):\n\nSource:\nkernel-2.6.32-504.el6.src.rpm\n\ni386:\nkernel-2.6.32-504.el6.i686.rpm\nkernel-debug-2.6.32-504.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debug-devel-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nkernel-devel-2.6.32-504.el6.i686.rpm\nkernel-headers-2.6.32-504.el6.i686.rpm\nperf-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.el6.noarch.rpm\nkernel-doc-2.6.32-504.el6.noarch.rpm\nkernel-firmware-2.6.32-504.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-504.el6.x86_64.rpm\nkernel-debug-2.6.32-504.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nkernel-devel-2.6.32-504.el6.x86_64.rpm\nkernel-headers-2.6.32-504.el6.x86_64.rpm\nperf-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Desktop Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node (v. 6):\n\nSource:\nkernel-2.6.32-504.el6.src.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.el6.noarch.rpm\nkernel-doc-2.6.32-504.el6.noarch.rpm\nkernel-firmware-2.6.32-504.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-504.el6.x86_64.rpm\nkernel-debug-2.6.32-504.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nkernel-devel-2.6.32-504.el6.x86_64.rpm\nkernel-headers-2.6.32-504.el6.x86_64.rpm\nperf-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux HPC Node Optional (v. 6):\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server (v. 6):\n\nSource:\nkernel-2.6.32-504.el6.src.rpm\n\ni386:\nkernel-2.6.32-504.el6.i686.rpm\nkernel-debug-2.6.32-504.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debug-devel-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nkernel-devel-2.6.32-504.el6.i686.rpm\nkernel-headers-2.6.32-504.el6.i686.rpm\nperf-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.el6.noarch.rpm\nkernel-doc-2.6.32-504.el6.noarch.rpm\nkernel-firmware-2.6.32-504.el6.noarch.rpm\n\nppc64:\nkernel-2.6.32-504.el6.ppc64.rpm\nkernel-bootwrapper-2.6.32-504.el6.ppc64.rpm\nkernel-debug-2.6.32-504.el6.ppc64.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.ppc64.rpm\nkernel-debug-devel-2.6.32-504.el6.ppc64.rpm\nkernel-debuginfo-2.6.32-504.el6.ppc64.rpm\nkernel-debuginfo-common-ppc64-2.6.32-504.el6.ppc64.rpm\nkernel-devel-2.6.32-504.el6.ppc64.rpm\nkernel-headers-2.6.32-504.el6.ppc64.rpm\nperf-2.6.32-504.el6.ppc64.rpm\nperf-debuginfo-2.6.32-504.el6.ppc64.rpm\npython-perf-debuginfo-2.6.32-504.el6.ppc64.rpm\n\ns390x:\nkernel-2.6.32-504.el6.s390x.rpm\nkernel-debug-2.6.32-504.el6.s390x.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.s390x.rpm\nkernel-debug-devel-2.6.32-504.el6.s390x.rpm\nkernel-debuginfo-2.6.32-504.el6.s390x.rpm\nkernel-debuginfo-common-s390x-2.6.32-504.el6.s390x.rpm\nkernel-devel-2.6.32-504.el6.s390x.rpm\nkernel-headers-2.6.32-504.el6.s390x.rpm\nkernel-kdump-2.6.32-504.el6.s390x.rpm\nkernel-kdump-debuginfo-2.6.32-504.el6.s390x.rpm\nkernel-kdump-devel-2.6.32-504.el6.s390x.rpm\nperf-2.6.32-504.el6.s390x.rpm\nperf-debuginfo-2.6.32-504.el6.s390x.rpm\npython-perf-debuginfo-2.6.32-504.el6.s390x.rpm\n\nx86_64:\nkernel-2.6.32-504.el6.x86_64.rpm\nkernel-debug-2.6.32-504.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nkernel-devel-2.6.32-504.el6.x86_64.rpm\nkernel-headers-2.6.32-504.el6.x86_64.rpm\nperf-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Server Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nppc64:\nkernel-debug-debuginfo-2.6.32-504.el6.ppc64.rpm\nkernel-debuginfo-2.6.32-504.el6.ppc64.rpm\nkernel-debuginfo-common-ppc64-2.6.32-504.el6.ppc64.rpm\nperf-debuginfo-2.6.32-504.el6.ppc64.rpm\npython-perf-2.6.32-504.el6.ppc64.rpm\npython-perf-debuginfo-2.6.32-504.el6.ppc64.rpm\n\ns390x:\nkernel-debug-debuginfo-2.6.32-504.el6.s390x.rpm\nkernel-debuginfo-2.6.32-504.el6.s390x.rpm\nkernel-debuginfo-common-s390x-2.6.32-504.el6.s390x.rpm\nkernel-kdump-debuginfo-2.6.32-504.el6.s390x.rpm\nperf-debuginfo-2.6.32-504.el6.s390x.rpm\npython-perf-2.6.32-504.el6.s390x.rpm\npython-perf-debuginfo-2.6.32-504.el6.s390x.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation (v. 6):\n\nSource:\nkernel-2.6.32-504.el6.src.rpm\n\ni386:\nkernel-2.6.32-504.el6.i686.rpm\nkernel-debug-2.6.32-504.el6.i686.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debug-devel-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nkernel-devel-2.6.32-504.el6.i686.rpm\nkernel-headers-2.6.32-504.el6.i686.rpm\nperf-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nnoarch:\nkernel-abi-whitelists-2.6.32-504.el6.noarch.rpm\nkernel-doc-2.6.32-504.el6.noarch.rpm\nkernel-firmware-2.6.32-504.el6.noarch.rpm\n\nx86_64:\nkernel-2.6.32-504.el6.x86_64.rpm\nkernel-debug-2.6.32-504.el6.x86_64.rpm\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debug-devel-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nkernel-devel-2.6.32-504.el6.x86_64.rpm\nkernel-headers-2.6.32-504.el6.x86_64.rpm\nperf-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.x86_64.rpm\n\nRed Hat Enterprise Linux Workstation Optional (v. 6):\n\ni386:\nkernel-debug-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-2.6.32-504.el6.i686.rpm\nkernel-debuginfo-common-i686-2.6.32-504.el6.i686.rpm\nperf-debuginfo-2.6.32-504.el6.i686.rpm\npython-perf-2.6.32-504.el6.i686.rpm\npython-perf-debuginfo-2.6.32-504.el6.i686.rpm\n\nx86_64:\nkernel-debug-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-2.6.32-504.el6.x86_64.rpm\nkernel-debuginfo-common-x86_64-2.6.32-504.el6.x86_64.rpm\nperf-debuginfo-2.6.32-504.el6.x86_64.rpm\npython-perf-2.6.32-504.el6.x86_64.rpm\npython-perf-debuginfo-2.6.32-504.el6.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/#package\n\n7. References:\n\nhttps://www.redhat.com/security/data/cve/CVE-2013-2596.html\nhttps://www.redhat.com/security/data/cve/CVE-2013-4483.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-0181.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-3122.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-3601.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-4608.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-4653.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-4654.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-4655.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-5045.html\nhttps://www.redhat.com/security/data/cve/CVE-2014-5077.html\nhttps://access.redhat.com/security/updates/classification/#important\nhttps://access.redhat.com/documentation/en-US/Red_Hat_Enterprise_Linux/6/html/6.6_Technical_Notes/kernel.html#RHSA-2014-1392\nhttps://access.redhat.com/documentation/en-US/Red_Hat_Enterprise_Linux/6/html-single/6.6_Release_Notes/index.html\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 2014 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n\niD8DBQFUPKxFXlSAg2UNWIIRAkwDAJ9mvXUXLdfD/FRwrdkPl2+B610zpACdHa+q\nm8JupSzJWBzh/fi0DUX0uyI=\n=D7cp\n-----END PGP SIGNATURE-----\n\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://www.redhat.com/mailman/listinfo/rhsa-announce\n. (CVE-2013-2596, Important)\n\n* It was found that the Xen hypervisor x86 CPU emulator implementation did\nnot correctly handle certain instructions with segment overrides,\npotentially resulting in a memory corruption. \nThe provided patch ensures that the division is only performed if the CPU\npower is not zero, and the aforementioned panic no longer occurs. \n(BZ#1209728)\n\n* Prior to this update, a bug occurred when performing an online resize of\nan ext4 file system which had been previously converted from ext3. The provided patch fixes online resizing\nfor such file systems by limiting the blockgroup search loop for non-extent\nfiles, and the mentioned kernel crash no longer occurs. This bug has been fixed by defining a new div64_ul()\ndivision function and correcting the affected calculation in the\nproc_sched_show_task() function. (BZ#1199898)\n\n* When repeating a Coordinated Universal Time (UTC) value during a leap\nsecond (when the UTC time should be 23:59:60), the International Atomic\nTime (TAI) timescale previously stopped as the kernel NTP code incremented\nthe TAI offset one second too late. A patch has been provided, which fixes\nthe bug by incrementing the offset during the leap second itself. Now, the\ncorrect TAI is set during the leap second",
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VAR-201707-1019
Vulnerability from variot - Updated: 2025-04-20 23:37The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) devices allows remote attackers to conduct successful forced-pairing attacks (between an RF4CE remote and a set-top box) by repeatedly transmitting the same pairing code. Motorola MX011ANM Contains an access control vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. MotorolaMX011ANM is a network set-top box device from Motorola, USA. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM using the firmware version MX011AN_2.9p6s1_PROD_sey. A remote attacker can exploit this vulnerability to commit a mandatory pairing attack by repeatedly submitting the same pairing code
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VAR-201707-1024
Vulnerability from variot - Updated: 2025-04-20 23:30The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) and Xfinity XR11-20 Voice Remote devices allows local users to upload arbitrary firmware images to an XR11 by leveraging root access. In other words, there is no protection mechanism involving digital signatures for the firmware. Motorola MX011ANM and Xfinity XR11-20 Voice Remote Devices have vulnerabilities related to authorization, permissions, and access control.Information may be tampered with. MotorolaMX011ANM is a network set-top box device from Motorola, USA. The XfinityXR11-20VoiceRemote is a voice remote control device. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM and XfinityXR11-20VoiceRemote devices using MX011AN_2.9p6s1_PROD_sey firmware, which is due to a lack of protection for the program
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VAR-201707-1023
Vulnerability from variot - Updated: 2025-04-20 23:29The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) devices allows physically proximate attackers to execute arbitrary commands as root by pulling up the diagnostics menu on the set-top box, and then posting to a Web Inspector route. Motorola MX011ANM Contains an input validation vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. MotorolaMX011ANM is a network set-top box device from Motorola, USA. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM using the firmware version MX011AN_2.9p6s1_PROD_sey. An attacker with a physical location nearby can exploit the vulnerability to execute arbitrary code with root privileges
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Vulnerability from variot - Updated: 2025-04-20 23:27WiFiMonitor in Android 4.4.4 as used in the Nexus 5 and 4, Android 4.2.2 as used in the LG D806, Android 4.2.2 as used in the Samsung SM-T310, Android 4.1.2 as used in the Motorola RAZR HD, and potentially other unspecified Android releases before 5.0.1 and 5.0.2 does not properly handle exceptions, which allows remote attackers to cause a denial of service (reboot) via a crafted 802.11 probe response frame. Used on multiple devices Android Contains a data processing vulnerability.Service operation interruption (DoS) There is a possibility of being put into a state. Wi-Fi Direct can support a pair of connected devices, enabling simultaneous connection of multiple devices, and the Wi-Fi Direct standard will support all Wi-Fi devices. Multiple Android Devices have a denial of service vulnerability that allows an attacker to initiate a denial of service attack. Successfully exploiting this issue will allow attackers to cause denial-of-service conditions
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VAR-201707-1022
Vulnerability from variot - Updated: 2025-04-20 23:24The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) devices allows physically proximate attackers to access an SNMP server by connecting a cable to the Ethernet port, and then establishing communication with the device's link-local IPv6 address. Motorola MX011ANM Contains an access control vulnerability.Information is obtained, information is altered, and service operation is disrupted (DoS) There is a possibility of being put into a state. MotorolaMX011ANM is a network set-top box device from Motorola, USA. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM using the firmware version MX011AN_2.9p6s1_PROD_sey. An attacker with a physical location is available to access the SNMP server
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VAR-201707-1021
Vulnerability from variot - Updated: 2025-04-20 23:22The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) devices allows physically proximate attackers to read arbitrary files by pressing "EXIT, Down, Down, 2" on an RF4CE remote to reach the diagnostic display, and then launching a Remote Web Inspector script. Motorola MX011ANM Contains an information disclosure vulnerability.Information may be obtained. MotorolaMX011ANM is a network set-top box device from Motorola, USA. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM using the firmware version MX011AN_2.9p6s1_PROD_sey. An attacker with a physical location nearby can exploit the vulnerability to read arbitrary files
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VAR-201707-1020
Vulnerability from variot - Updated: 2025-04-20 23:16The Comcast firmware on Motorola MX011ANM (firmware version MX011AN_2.9p6s1_PROD_sey) devices allows remote attackers to enable a Remote Web Inspector that is accessible from the public Internet. Motorola MX011ANM Contains vulnerabilities related to authorization, permissions, and access control.Information may be tampered with. MotorolaMX011ANM is a network set-top box device from Motorola, USA. Comcast is a firmware developed by Comcast, Inc., which runs on devices such as gateways and modems. A security vulnerability exists in the Comcast firmware in the MotorolaMX011ANM using the firmware version MX011AN_2.9p6s1_PROD_sey. A remote attacker could exploit this vulnerability to open the RemoteWebInspector
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VAR-201512-0027
Vulnerability from variot - Updated: 2025-04-13 22:04Motorola Solutions MOSCAD IP Gateway allows remote attackers to read arbitrary files via unspecified vectors. An attacker can exploit these vulnerabilities to obtain potentially sensitive information, execute arbitrary script code in the context of the web server process and to perform unauthorized actions in the context of a logged-in user of the affected application. This may aid in other attacks
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VAR-201512-0028
Vulnerability from variot - Updated: 2025-04-13 21:04Cross-site request forgery (CSRF) vulnerability in Motorola Solutions MOSCAD IP Gateway allows remote attackers to hijack the authentication of administrators for requests that modify a password. Motorola Solutions MOSCAD SCADA IP Gateway is a set of Web-based management system-based SCADA systems from Motorola Solutions. An attacker can exploit these vulnerabilities to obtain potentially sensitive information, execute arbitrary script code in the context of the web server process and to perform unauthorized actions in the context of a logged-in user of the affected application. This may aid in other attacks. A remote attacker can exploit this vulnerability to change the password
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VAR-201406-0395
Vulnerability from variot - Updated: 2025-04-12 23:13Multiple cross-site request forgery (CSRF) vulnerabilities in goform/RgDdns in ARRIS (formerly Motorola) SBG901 SURFboard Wireless Cable Modem allow remote attackers to hijack the authentication of administrators for requests that (1) change the dns service via the DdnsService parameter, (2) change the username via the DdnsUserName parameter, (3) change the password via the DdnsPassword parameter, or (4) change the host name via the DdnsHostName parameter. The Motorola SBG901 modem is a router device. The Motorola SBG901 modem has a cross-site request forgery vulnerability that allows remote attackers to build malicious URIs, entice users to resolve, and perform malicious operations in the target user context. An attacker can exploit this issue to perform certain unauthorized actions. This may lead to further attacks
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VAR-201006-0378
Vulnerability from variot - Updated: 2025-04-11 23:19Multiple directory traversal vulnerabilities in the web server for Motorola SURFBoard cable modem SBV6120E running firmware SBV6X2X-1.0.0.5-SCM-02-SHPC allow remote attackers to read arbitrary files via (1) "//" (multiple leading slash), (2) ../ (dot dot) sequences, and encoded dot dot sequences in a URL request. Motorola SBV6120E SURFboard Digital Voice Modem is a data audio modem. Motorola SBV6120E SURFboard Digital Voice Modem incorrectly filters user-submitted URI requests, and remote attackers can exploit the vulnerability to view system file content with WEB permissions. Exploiting this issue can allow an attacker to obtain sensitive information that may aid in further attacks. ----------------------------------------------------------------------
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TITLE: Motorola SURFBoard SBV6120E Directory Traversal Vulnerability
SECUNIA ADVISORY ID: SA40054
VERIFY ADVISORY: Secunia.com http://secunia.com/advisories/40054/ Customer Area (Credentials Required) https://ca.secunia.com/?page=viewadvisory&vuln_id=40054
RELEASE DATE: 2010-06-09
DISCUSS ADVISORY: http://secunia.com/advisories/40054/#comments
AVAILABLE ON SITE AND IN CUSTOMER AREA: * Last Update * Popularity * Comments * Criticality Level * Impact * Where * Solution Status * Operating System / Software * CVE Reference(s)
http://secunia.com/advisories/40054/
ONLY AVAILABLE IN CUSTOMER AREA: * Authentication Level * Report Reliability * Secunia PoC * Secunia Analysis * Systems Affected * Approve Distribution * Remediation Status * Secunia CVSS Score * CVSS
https://ca.secunia.com/?page=viewadvisory&vuln_id=40054
ONLY AVAILABLE WITH SECUNIA CSI AND SECUNIA PSI: * AUTOMATED SCANNING
http://secunia.com/vulnerability_scanning/personal/ http://secunia.com/vulnerability_scanning/corporate/wsus_sccm_3rd_third_party_patching/
DESCRIPTION: A vulnerability has been reported in Motorola SURFBoard SBV6120E, which can be exploited by malicious people to disclose potentially sensitive information.
The vulnerability is caused due to an error when handling certain HTTP requests. This can be exploited to e.g.
The vulnerability is reported in firmware version SBV6X2X-1.0.0.5-SCM-02-SHPC. Other versions may also be affected.
SOLUTION: Filter malicious requests using a proxy.
PROVIDED AND/OR DISCOVERED BY: S2 Crew
ORIGINAL ADVISORY: http://www.exploit-db.com/exploits/12865/
OTHER REFERENCES: Further details available in Customer Area: http://secunia.com/products/corporate/EVM/
DEEP LINKS: Further details available in Customer Area: http://secunia.com/products/corporate/EVM/
EXTENDED DESCRIPTION: Further details available in Customer Area: http://secunia.com/products/corporate/EVM/
EXTENDED SOLUTION: Further details available in Customer Area: http://secunia.com/products/corporate/EVM/
EXPLOIT: Further details available in Customer Area: http://secunia.com/products/corporate/EVM/
About: This Advisory was delivered by Secunia as a free service to help private users keeping their systems up to date against the latest vulnerabilities.
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Show details on source website
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VAR-201304-0438
Vulnerability from variot - Updated: 2025-04-11 23:15The TrustZone kernel, when used in conjunction with a certain Motorola build of Android 4.1.2, on Motorola Razr HD, Razr M, and Atrix HD devices with the Qualcomm MSM8960 chipset does not verify the association between a certain physical-address argument and a memory region, which allows local users to unlock the bootloader by using kernel mode to perform crafted 0x9 and 0x2 SMC operations, a different vulnerability than CVE-2013-2596. The Motorola Razr HD, Razr M and Atrix HD devices are devices that use the Qualcomm MSM8960 chip. Motorola Razr HD, Razr M and Atrix HD devices using Qualcomm's MSM8960 chip have security vulnerabilities in the TrustZone kernel when using the Android 4.1.2 platform. Multiple Motorola devices for Android are prone to a local privilege-escalation vulnerability. Local attackers can exploit this issue to gain administrator privileges and perform unauthorized actions
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VAR-201309-0273
Vulnerability from variot - Updated: 2025-04-11 23:04A certain configuration of Android 2.3.7 on the Motorola Defy XT phone for Republic Wireless uses init to create a /dev/socket/init_runit socket that listens for shell commands, which allows local users to gain privileges by interacting with a LocalSocket object. Motorola Defy XT - Republic Wireless is a smart phone customized for the operator Republic Wireless. Android is prone to a local security vulnerability. Google Chrome is a web browser developed by Google (Google). Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance (OHA). A local attacker could exploit this vulnerability to gain privileges by using the LocalSocket object
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VAR-201309-0347
Vulnerability from variot - Updated: 2025-04-11 23:01Stack-based buffer overflow in the sub_E110 function in init in a certain configuration of Android 2.3.7 on the Motorola Defy XT phone for Republic Wireless allows local users to gain privileges or cause a denial of service (memory corruption) by writing a long string to the /dev/socket/init_runit socket that is inconsistent with a certain length value that was previously written to this socket. Motorola Defy XT - Republic Wireless is a smart phone customized for the operator Republic Wireless. Motorola Defy XT - Republic Wireless has a stack-based buffer overflow for the init sub_E110 function in Android 2.3.7. A local attacker can write a long string to the /dev/socket/init_runit socket to trigger the vulnerability. Permissions or a denial of service attack (memory corruption). Android is prone to a denial-of-service vulnerability. Google Chrome is a web browser developed by Google (Google). Android is a Linux-based open source operating system jointly developed by Google and the Open Handheld Alliance (OHA)
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VAR-200412-1004
Vulnerability from variot - Updated: 2025-04-03 22:33Motorola Wireless Router WR850G running firmware 4.03 allows remote attackers to bypass authentication, log on as an administrator, and obtain sensitive information by repeatedly making an HTTP request for ver.asp until an administrator logs on. Motorola WR850G is a wireless router.
The attacker gains access to the WEB interface through periodic access restricted 'ver.asp' scripts, and can obtain the WEB interface user name and password. Using this password, by accessing frame_debug.asp, the WEB SHELL can be obtained and executed on the system. Any command. This issue is caused by a design error and may allow an attacker to ultimately take complete control over the device. Motorola wireless router WR850G running firmware version 4.03 is reportedly affected by this issue. It is possible that other models and firmware versions are affected as well
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VAR-200512-0210
Vulnerability from variot - Updated: 2025-04-03 22:23Motorola SB5100E Cable Modem allows remote attackers to cause a denial of service (device crash) via an IP packet with the same source and destination IPs and ports, and with the SYN flag set (aka LAND). Motorola cable modem is a network device that connects PC, TV, telephone, fax and other devices to the Internet through a coaxial cable.
Motorola cable modems have a denial of service vulnerability when processing TCP Land messages, which may allow an attacker to block communication to any target network service. The device must be physically restarted to resume normal operation. This issue allows attackers to block network traffic to arbitrarily targeted network services
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VAR-199805-0016
Vulnerability from variot - Updated: 2025-04-03 22:19The Motorola CableRouter allows any remote user to connect to and configure the router on port 1024. Motorola Cablerouter is prone to a remote security vulnerability. Attackers can exploit this issue to perform unauthorized actions. This may aid in further attacks. The Motorola CableRouter is vulnerable
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VAR-202206-2145
Vulnerability from variot - Updated: 2025-01-30 20:41The Motorola MOSCAD and ACE line of RTUs through 2022-05-02 omit an authentication requirement. They feature IP Gateway modules which allow for interfacing between Motorola Data Link Communication (MDLC) networks (potentially over a variety of serial, RF and/or Ethernet links) and TCP/IP networks. Communication with RTUs behind the gateway is done by means of the proprietary IPGW protocol (5001/TCP). This protocol does not have any authentication features, allowing any attacker capable of communicating with the port in question to invoke (a subset of) desired functionality. Motorola Solutions, Inc of MOSCAD IP Gateway firmware and ace ip gateway (4600) Firmware has a lack of authentication vulnerability for critical functionality.Information may be tampered with
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