var-202105-1431
Vulnerability from variot
The 802.11 standard that underpins Wi-Fi Protected Access (WPA, WPA2, and WPA3) and Wired Equivalent Privacy (WEP) doesn't require that the A-MSDU flag in the plaintext QoS header field is authenticated. Against devices that support receiving non-SSP A-MSDU frames (which is mandatory as part of 802.11n), an adversary can abuse this to inject arbitrary network packets. IEEE 802.11 The standard has vulnerabilities related to lack of certification for critical functions.Information may be tampered with. A flaw was found in the Linux kernels implementation of wifi fragmentation handling. An attacker with the ability to transmit within the wireless transmission range of an access point can abuse a flaw where previous contents of wifi fragments can be unintentionally transmitted to another device. (CVE-2020-24586) A flaw was found in the Linux kernel's WiFi implementation. An attacker within the wireless range can abuse a logic flaw in the WiFi implementation by reassembling packets from multiple fragments under different keys, treating them as valid. This flaw allows an malicious user to send a fragment under an incorrect key, treating them as a valid fragment under the new key. The highest threat from this vulnerability is to confidentiality. (CVE-2020-24587) A flaw was found in the Linux kernels wifi implementation. An attacker within wireless broadcast range can inject custom data into the wireless communication circumventing checks on the data. This can cause the frame to pass checks and be considered a valid frame of a different type. (CVE-2020-24588) Frames used for authentication and key management between the AP and connected clients. Some clients may take these redirected frames masquerading as control mechanisms from the AP. (CVE-2020-26139) A vulnerability was found in Linux kernel's WiFi implementation. An attacker within wireless range can inject a control packet fragment where the kernel does not verify the Message Integrity Check (authenticity) of fragmented TKIP frames. (CVE-2020-26141) A flaw was found in ath10k_htt_rx_proc_rx_frag_ind_hl in drivers/net/wireless/ath/ath10k/htt_rx.c in the Linux kernel WiFi implementations, where it accepts a second (or subsequent) broadcast fragments even when sent in plaintext and then process them as full unfragmented frames. The highest threat from this vulnerability is to integrity. (CVE-2020-26145) A flaw was found in ieee80211_rx_h_defragment in net/mac80211/rx.c in the Linux Kernel's WiFi implementation. This vulnerability can be abused to inject packets or exfiltrate selected fragments when another device sends fragmented frames, and the WEP, CCMP, or GCMP data-confidentiality protocol is used. The highest threat from this vulnerability is to integrity. (CVE-2020-26147) A flaw was found in the Linux kernel in certs/blacklist.c, When signature entries for EFI_CERT_X509_GUID are contained in the Secure Boot Forbidden Signature Database, the entries are skipped. This can cause a security threat and breach system integrity, confidentiality and even lead to a denial of service problem. (CVE-2020-26541) A vulnerability was found in the bluez, where Passkey Entry protocol used in Secure Simple Pairing (SSP), Secure Connections (SC) and LE Secure Connections (LESC) of the Bluetooth Core Specification is vulnerable to an impersonation attack where an active attacker can impersonate the initiating device without any previous knowledge. (CVE-2020-26558) A flaw was found in the Linux kernel. Improper access control in BlueZ may allow an authenticated user to potentially enable information disclosure via adjacent access. The highest threat from this vulnerability is to data confidentiality and integrity. (CVE-2021-0129) A flaw was found in the Linux kernel's KVM implementation, where improper handing of the VM_IO|VM_PFNMAP VMAs in KVM bypasses RO checks and leads to pages being freed while still accessible by the VMM and guest. This flaw allows users who can start and control a VM to read/write random pages of memory, resulting in local privilege escalation. The highest threat from this vulnerability is to confidentiality, integrity, and system availability. (CVE-2021-22543) A flaw was found in the Linux kernel's handling of the removal of Bluetooth HCI controllers. This flaw allows an attacker with a local account to exploit a race condition, leading to corrupted memory and possible privilege escalation. The highest threat from this vulnerability is to confidentiality, integrity, as well as system availability. (CVE-2021-32399) A use-after-free flaw was found in hci_send_acl in the bluetooth host controller interface (HCI) in Linux kernel, where a local attacker with an access rights could cause a denial of service problem on the system The issue results from the object hchan, freed in hci_disconn_loglink_complete_evt, yet still used in other places. The highest threat from this vulnerability is to data integrity, confidentiality and system availability. (CVE-2021-33034) The canbus filesystem in the Linux kernel contains an information leak of kernel memory to devices on the CAN bus network link layer. An attacker with the ability to dump messages on the CAN bus is able to learn of uninitialized stack values by dumbing messages on the can bus. (CVE-2021-34693) An out-of-bounds (OOB) memory access flaw was found in fs/f2fs/node.c in the f2fs module in the Linux kernel. A bounds check failure allows a local malicious user to gain access to out-of-bounds memory leading to a system crash or a leak of internal kernel information. The highest threat from this vulnerability is to system availability. (CVE-2021-3506) A flaw double-free memory corruption in the Linux kernel HCI device initialization subsystem was found in the way user attach malicious HCI TTY Bluetooth device. A local user could use this flaw to crash the system. (CVE-2021-3564) A flaw use-after-free in function hci_sock_bound_ioctl() of the Linux kernel HCI subsystem was found in the way user calls ioct HCIUNBLOCKADDR or other way triggers race condition of the call hci_unregister_dev() together with one of the calls hci_sock_blacklist_add(), hci_sock_blacklist_del(), hci_get_conn_info(), hci_get_auth_info(). A privileged local user could use this flaw to crash the system or escalate their privileges on the system. (CVE-2021-3573) A flaw was found in the Linux kernels NFC implementation, A NULL pointer dereference and BUG leading to a denial of service can be triggered by a local unprivileged user causing a kernel panic. (CVE-2021-38208). ========================================================================== Ubuntu Security Notice USN-4997-2 June 25, 2021
linux-kvm vulnerabilities
A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 21.04
Summary:
Several security issues were fixed in the Linux kernel. This update provides the corresponding updates for the Linux KVM kernel for Ubuntu 21.04.
Norbert Slusarek discovered a race condition in the CAN BCM networking protocol of the Linux kernel leading to multiple use-after-free vulnerabilities. A local attacker could use this issue to execute arbitrary code. (CVE-2021-3609)
Piotr Krysiuk discovered that the eBPF implementation in the Linux kernel did not properly enforce limits for pointer operations. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2021-33200)
Mathy Vanhoef discovered that the Linux kernel’s WiFi implementation did not properly clear received fragments from memory in some situations. A physically proximate attacker could possibly use this issue to inject packets or expose sensitive information. A physically proximate attacker could possibly use this issue to decrypt fragments. (CVE-2020-24587)
Mathy Vanhoef discovered that the Linux kernel’s WiFi implementation incorrectly handled certain malformed frames. If a user were tricked into connecting to a malicious server, a physically proximate attacker could use this issue to inject packets. (CVE-2020-24588)
Mathy Vanhoef discovered that the Linux kernel’s WiFi implementation incorrectly handled EAPOL frames from unauthenticated senders. A physically proximate attacker could inject malicious packets to cause a denial of service (system crash). (CVE-2020-26139)
Mathy Vanhoef discovered that the Linux kernel’s WiFi implementation did not properly verify certain fragmented frames. A physically proximate attacker could possibly use this issue to inject or decrypt packets. A physically proximate attacker could use this issue to inject packets. (CVE-2020-26145)
Mathy Vanhoef discovered that the Linux kernel’s WiFi implementation could reassemble mixed encrypted and plaintext fragments. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2021-23133)
Or Cohen and Nadav Markus discovered a use-after-free vulnerability in the nfc implementation in the Linux kernel. (CVE-2021-23134)
Manfred Paul discovered that the extended Berkeley Packet Filter (eBPF) implementation in the Linux kernel contained an out-of-bounds vulnerability. A local attacker could use this issue to execute arbitrary code. (CVE-2021-31440)
Piotr Krysiuk discovered that the eBPF implementation in the Linux kernel did not properly prevent speculative loads in certain situations. A local attacker could use this to expose sensitive information (kernel memory). An attacker could use this issue to possibly execute arbitrary code. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2021-3506)
Mathias Krause discovered that a null pointer dereference existed in the Nitro Enclaves kernel driver of the Linux kernel. (CVE-2021-3543)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 21.04: linux-image-5.11.0-1009-kvm 5.11.0-1009.9 linux-image-kvm 5.11.0.1009.9
After a standard system update you need to reboot your computer to make all the necessary changes.
ATTENTION: Due to an unavoidable ABI change the kernel updates have been given a new version number, which requires you to recompile and reinstall all third party kernel modules you might have installed. Unless you manually uninstalled the standard kernel metapackages (e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual, linux-powerpc), a standard system upgrade will automatically perform this as well.
References: https://ubuntu.com/security/notices/USN-4997-2 https://ubuntu.com/security/notices/USN-4997-1 CVE-2020-24586, CVE-2020-24587, CVE-2020-24588, CVE-2020-26139, CVE-2020-26141, CVE-2020-26145, CVE-2020-26147, CVE-2021-23133, CVE-2021-23134, CVE-2021-31440, CVE-2021-31829, CVE-2021-32399, CVE-2021-33034, CVE-2021-33200, CVE-2021-3506, CVE-2021-3543, CVE-2021-3609
Package Information: https://launchpad.net/ubuntu/+source/linux-kvm/5.11.0-1009.9
. Bugs fixed (https://bugzilla.redhat.com/):
2030932 - CVE-2021-44228 log4j-core: Remote code execution in Log4j 2.x when logs contain an attacker-controlled string value
- -----BEGIN PGP SIGNED MESSAGE----- Hash: SHA256
====================================================================
Red Hat Security Advisory
Synopsis: Moderate: kernel security, bug fix, and enhancement update Advisory ID: RHSA-2021:4356-01 Product: Red Hat Enterprise Linux Advisory URL: https://access.redhat.com/errata/RHSA-2021:4356 Issue date: 2021-11-09 CVE Names: CVE-2020-0427 CVE-2020-24502 CVE-2020-24503 CVE-2020-24504 CVE-2020-24586 CVE-2020-24587 CVE-2020-24588 CVE-2020-26139 CVE-2020-26140 CVE-2020-26141 CVE-2020-26143 CVE-2020-26144 CVE-2020-26145 CVE-2020-26146 CVE-2020-26147 CVE-2020-27777 CVE-2020-29368 CVE-2020-29660 CVE-2020-36158 CVE-2020-36386 CVE-2021-0129 CVE-2021-3348 CVE-2021-3489 CVE-2021-3564 CVE-2021-3573 CVE-2021-3600 CVE-2021-3635 CVE-2021-3659 CVE-2021-3679 CVE-2021-3732 CVE-2021-20194 CVE-2021-20239 CVE-2021-23133 CVE-2021-28950 CVE-2021-28971 CVE-2021-29155 CVE-2021-29646 CVE-2021-29650 CVE-2021-31440 CVE-2021-31829 CVE-2021-31916 CVE-2021-33200 ==================================================================== 1.
Red Hat Product Security has rated this update as having a security impact of Moderate. A Common Vulnerability Scoring System (CVSS) base score, which gives a detailed severity rating, is available for each vulnerability from the CVE link(s) in the References section.
- Relevant releases/architectures:
Red Hat Enterprise Linux BaseOS (v. 8) - aarch64, noarch, ppc64le, s390x, x86_64 Red Hat Enterprise Linux CRB (v. 8) - aarch64, ppc64le, x86_64
Security Fix(es): * kernel: out-of-bounds reads in pinctrl subsystem (CVE-2020-0427) * kernel: Improper input validation in some Intel(R) Ethernet E810 Adapter drivers (CVE-2020-24502) * kernel: Insufficient access control in some Intel(R) Ethernet E810 Adapter drivers (CVE-2020-24503) * kernel: Uncontrolled resource consumption in some Intel(R) Ethernet E810 Adapter drivers (CVE-2020-24504) * kernel: Fragmentation cache not cleared on reconnection (CVE-2020-24586) * kernel: Reassembling fragments encrypted under different keys (CVE-2020-24587) * kernel: wifi frame payload being parsed incorrectly as an L2 frame (CVE-2020-24588) * kernel: Forwarding EAPOL from unauthenticated wifi client (CVE-2020-26139) * kernel: accepting plaintext data frames in protected networks (CVE-2020-26140) * kernel: not verifying TKIP MIC of fragmented frames (CVE-2020-26141) * kernel: accepting fragmented plaintext frames in protected networks (CVE-2020-26143) * kernel: accepting unencrypted A-MSDU frames that start with RFC1042 header (CVE-2020-26144) * kernel: accepting plaintext broadcast fragments as full frames (CVE-2020-26145) * kernel: powerpc: RTAS calls can be used to compromise kernel integrity (CVE-2020-27777) * kernel: locking inconsistency in tty_io.c and tty_jobctrl.c can lead to a read-after-free (CVE-2020-29660) * kernel: buffer overflow in mwifiex_cmd_802_11_ad_hoc_start function via a long SSID value (CVE-2020-36158) * kernel: slab out-of-bounds read in hci_extended_inquiry_result_evt() (CVE-2020-36386) * kernel: Improper access control in BlueZ may allow information disclosure vulnerability. (CVE-2021-0129) * kernel: Use-after-free in ndb_queue_rq() in drivers/block/nbd.c (CVE-2021-3348) * kernel: Linux kernel eBPF RINGBUF map oversized allocation (CVE-2021-3489) * kernel: double free in bluetooth subsystem when the HCI device initialization fails (CVE-2021-3564) * kernel: use-after-free in function hci_sock_bound_ioctl() (CVE-2021-3573) * kernel: eBPF 32-bit source register truncation on div/mod (CVE-2021-3600) * kernel: DoS in rb_per_cpu_empty() (CVE-2021-3679) * kernel: Mounting overlayfs inside an unprivileged user namespace can reveal files (CVE-2021-3732) * kernel: heap overflow in __cgroup_bpf_run_filter_getsockopt() (CVE-2021-20194) * kernel: Race condition in sctp_destroy_sock list_del (CVE-2021-23133) * kernel: fuse: stall on CPU can occur because a retry loop continually finds the same bad inode (CVE-2021-28950) * kernel: System crash in intel_pmu_drain_pebs_nhm in arch/x86/events/intel/ds.c (CVE-2021-28971) * kernel: protection can be bypassed to leak content of kernel memory (CVE-2021-29155) * kernel: improper input validation in tipc_nl_retrieve_key function in net/tipc/node.c (CVE-2021-29646) * kernel: lack a full memory barrier may lead to DoS (CVE-2021-29650) * kernel: local escalation of privileges in handling of eBPF programs (CVE-2021-31440) * kernel: protection of stack pointer against speculative pointer arithmetic can be bypassed to leak content of kernel memory (CVE-2021-31829) * kernel: out-of-bounds reads and writes due to enforcing incorrect limits for pointer arithmetic operations by BPF verifier (CVE-2021-33200) * kernel: reassembling encrypted fragments with non-consecutive packet numbers (CVE-2020-26146) * kernel: reassembling mixed encrypted/plaintext fragments (CVE-2020-26147) * kernel: the copy-on-write implementation can grant unintended write access because of a race condition in a THP mapcount check (CVE-2020-29368) * kernel: flowtable list del corruption with kernel BUG at lib/list_debug.c:50 (CVE-2021-3635) * kernel: NULL pointer dereference in llsec_key_alloc() in net/mac802154/llsec.c (CVE-2021-3659) * kernel: setsockopt System Call Untrusted Pointer Dereference Information Disclosure (CVE-2021-20239) * kernel: out of bounds array access in drivers/md/dm-ioctl.c (CVE-2021-31916)
- Solution:
For more details about the security issue(s), including the impact, a CVSS score, acknowledgments, and other related information, refer to the CVE page(s) listed in the References section.
Additional Changes:
For detailed information on changes in this release, see the Red Hat Enterprise Linux 8.5 Release Notes linked from the References section.
For details on how to apply this update, which includes the changes described in this advisory, refer to:
https://access.redhat.com/articles/11258
The system must be rebooted for this update to take effect.
- Bugs fixed (https://bugzilla.redhat.com/):
1509204 - dlm: Add ability to set SO_MARK on DLM sockets
1793880 - Unreliable RTC synchronization (11-minute mode)
1816493 - [RHEL 8.3] Discard request from mkfs.xfs takes too much time on raid10
1900844 - CVE-2020-27777 kernel: powerpc: RTAS calls can be used to compromise kernel integrity
1903244 - CVE-2020-29368 kernel: the copy-on-write implementation can grant unintended write access because of a race condition in a THP mapcount check
1906522 - CVE-2020-29660 kernel: locking inconsistency in drivers/tty/tty_io.c and drivers/tty/tty_jobctrl.c can lead to a read-after-free
1912683 - CVE-2021-20194 kernel: heap overflow in __cgroup_bpf_run_filter_getsockopt()
1913348 - CVE-2020-36158 kernel: buffer overflow in mwifiex_cmd_802_11_ad_hoc_start function in drivers/net/wireless/marvell/mwifiex/join.c via a long SSID value
1915825 - Allow falling back to genfscon labeling when the FS doesn't support xattrs and there is a fs_use_xattr rule for it
1919893 - CVE-2020-0427 kernel: out-of-bounds reads in pinctrl subsystem.
1921958 - CVE-2021-3348 kernel: Use-after-free in ndb_queue_rq() in drivers/block/nbd.c
1923636 - CVE-2021-20239 kernel: setsockopt System Call Untrusted Pointer Dereference Information Disclosure
1930376 - CVE-2020-24504 kernel: Uncontrolled resource consumption in some Intel(R) Ethernet E810 Adapter drivers
1930379 - CVE-2020-24502 kernel: Improper input validation in some Intel(R) Ethernet E810 Adapter drivers
1930381 - CVE-2020-24503 kernel: Insufficient access control in some Intel(R) Ethernet E810 Adapter drivers
1933527 - Files on cifs mount can get mixed contents when underlying file is removed but inode number is reused, when mounted with 'serverino' and 'cache=strict '
1939341 - CNB: net: add inline function skb_csum_is_sctp
1941762 - CVE-2021-28950 kernel: fuse: stall on CPU can occur because a retry loop continually finds the same bad inode
1941784 - CVE-2021-28971 kernel: System crash in intel_pmu_drain_pebs_nhm in arch/x86/events/intel/ds.c
1945345 - CVE-2021-29646 kernel: improper input validation in tipc_nl_retrieve_key function in net/tipc/node.c
1945388 - CVE-2021-29650 kernel: lack a full memory barrier upon the assignment of a new table value in net/netfilter/x_tables.c and include/linux/netfilter/x_tables.h may lead to DoS
1946965 - CVE-2021-31916 kernel: out of bounds array access in drivers/md/dm-ioctl.c
1948772 - CVE-2021-23133 kernel: Race condition in sctp_destroy_sock list_del
1951595 - CVE-2021-29155 kernel: protection for sequences of pointer arithmetic operations against speculatively out-of-bounds loads can be bypassed to leak content of kernel memory
1953847 - [ethtool] The NLM_F_MULTI
should be used for NLM_F_DUMP
1954588 - RHEL kernel 8.2 and higher are affected by data corruption bug in raid1 arrays using bitmaps.
1957788 - CVE-2021-31829 kernel: protection of stack pointer against speculative pointer arithmetic can be bypassed to leak content of kernel memory
1959559 - CVE-2021-3489 kernel: Linux kernel eBPF RINGBUF map oversized allocation
1959642 - CVE-2020-24586 kernel: Fragmentation cache not cleared on reconnection
1959654 - CVE-2020-24587 kernel: Reassembling fragments encrypted under different keys
1959657 - CVE-2020-24588 kernel: wifi frame payload being parsed incorrectly as an L2 frame
1959663 - CVE-2020-26139 kernel: Forwarding EAPOL from unauthenticated wifi client
1960490 - CVE-2020-26140 kernel: accepting plaintext data frames in protected networks
1960492 - CVE-2020-26141 kernel: not verifying TKIP MIC of fragmented frames
1960496 - CVE-2020-26143 kernel: accepting fragmented plaintext frames in protected networks
1960498 - CVE-2020-26144 kernel: accepting unencrypted A-MSDU frames that start with RFC1042 header
1960500 - CVE-2020-26145 kernel: accepting plaintext broadcast fragments as full frames
1960502 - CVE-2020-26146 kernel: reassembling encrypted fragments with non-consecutive packet numbers
1960504 - CVE-2020-26147 kernel: reassembling mixed encrypted/plaintext fragments
1960708 - please add CAP_CHECKPOINT_RESTORE to capability.h
1964028 - CVE-2021-31440 kernel: local escalation of privileges in handling of eBPF programs
1964139 - CVE-2021-3564 kernel: double free in bluetooth subsystem when the HCI device initialization fails
1965038 - CVE-2021-0129 kernel: Improper access control in BlueZ may allow information disclosure vulnerability.
1965360 - kernel: get_timespec64 does not ignore padding in compat syscalls
1965458 - CVE-2021-33200 kernel: out-of-bounds reads and writes due to enforcing incorrect limits for pointer arithmetic operations by BPF verifier
1966578 - CVE-2021-3573 kernel: use-after-free in function hci_sock_bound_ioctl()
1969489 - CVE-2020-36386 kernel: slab out-of-bounds read in hci_extended_inquiry_result_evt() in net/bluetooth/hci_event.c
1971101 - ceph: potential data corruption in cephfs write_begin codepath
1972278 - libceph: allow addrvecs with a single NONE/blank address
1974627 - [TIPC] kernel BUG at lib/list_debug.c:31!
1975182 - CVE-2021-33909 kernel: size_t-to-int conversion vulnerability in the filesystem layer [rhel-8.5.0]
1975949 - CVE-2021-3659 kernel: NULL pointer dereference in llsec_key_alloc() in net/mac802154/llsec.c
1976679 - blk-mq: fix/improve io scheduler batching dispatch
1976699 - [SCTP]WARNING: CPU: 29 PID: 3165 at mm/page_alloc.c:4579 __alloc_pages_slowpath+0xb74/0xd00
1976946 - CVE-2021-3635 kernel: flowtable list del corruption with kernel BUG at lib/list_debug.c:50
1976969 - XFS: followup to XFS sync to upstream v5.10 (re BZ1937116)
1977162 - [XDP] test program warning: libbpf: elf: skipping unrecognized data section(16) .eh_frame
1977422 - Missing backport of IMA boot aggregate calculation in rhel 8.4 kernel
1977537 - RHEL8.5: Update the kernel workqueue code to v5.12 level
1977850 - geneve virtual devices lack the NETIF_F_FRAGLIST feature
1978369 - dm writecache: sync with upstream 5.14
1979070 - Inaccessible NFS server overloads clients (native_queued_spin_lock_slowpath connotation?)
1979680 - Backport openvswitch tracepoints
1981954 - CVE-2021-3600 kernel: eBPF 32-bit source register truncation on div/mod
1986138 - Lockd invalid cast to nlm_lockowner
1989165 - CVE-2021-3679 kernel: DoS in rb_per_cpu_empty()
1989999 - ceph omnibus backport for RHEL-8.5.0
1991976 - block: fix New warning in nvme_setup_discard
1992700 - blk-mq: fix kernel panic when iterating over flush request
1995249 - CVE-2021-3732 kernel: overlayfs: Mounting overlayfs inside an unprivileged user namespace can reveal files
1996854 - dm crypt: Avoid percpu_counter spinlock contention in crypt_page_alloc()
- Package List:
Red Hat Enterprise Linux BaseOS (v. 8):
Source: kernel-4.18.0-348.el8.src.rpm
aarch64: bpftool-4.18.0-348.el8.aarch64.rpm bpftool-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-4.18.0-348.el8.aarch64.rpm kernel-core-4.18.0-348.el8.aarch64.rpm kernel-cross-headers-4.18.0-348.el8.aarch64.rpm kernel-debug-4.18.0-348.el8.aarch64.rpm kernel-debug-core-4.18.0-348.el8.aarch64.rpm kernel-debug-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-debug-devel-4.18.0-348.el8.aarch64.rpm kernel-debug-modules-4.18.0-348.el8.aarch64.rpm kernel-debug-modules-extra-4.18.0-348.el8.aarch64.rpm kernel-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-debuginfo-common-aarch64-4.18.0-348.el8.aarch64.rpm kernel-devel-4.18.0-348.el8.aarch64.rpm kernel-headers-4.18.0-348.el8.aarch64.rpm kernel-modules-4.18.0-348.el8.aarch64.rpm kernel-modules-extra-4.18.0-348.el8.aarch64.rpm kernel-tools-4.18.0-348.el8.aarch64.rpm kernel-tools-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-tools-libs-4.18.0-348.el8.aarch64.rpm perf-4.18.0-348.el8.aarch64.rpm perf-debuginfo-4.18.0-348.el8.aarch64.rpm python3-perf-4.18.0-348.el8.aarch64.rpm python3-perf-debuginfo-4.18.0-348.el8.aarch64.rpm
noarch: kernel-abi-stablelists-4.18.0-348.el8.noarch.rpm kernel-doc-4.18.0-348.el8.noarch.rpm
ppc64le: bpftool-4.18.0-348.el8.ppc64le.rpm bpftool-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-4.18.0-348.el8.ppc64le.rpm kernel-core-4.18.0-348.el8.ppc64le.rpm kernel-cross-headers-4.18.0-348.el8.ppc64le.rpm kernel-debug-4.18.0-348.el8.ppc64le.rpm kernel-debug-core-4.18.0-348.el8.ppc64le.rpm kernel-debug-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-debug-devel-4.18.0-348.el8.ppc64le.rpm kernel-debug-modules-4.18.0-348.el8.ppc64le.rpm kernel-debug-modules-extra-4.18.0-348.el8.ppc64le.rpm kernel-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-debuginfo-common-ppc64le-4.18.0-348.el8.ppc64le.rpm kernel-devel-4.18.0-348.el8.ppc64le.rpm kernel-headers-4.18.0-348.el8.ppc64le.rpm kernel-modules-4.18.0-348.el8.ppc64le.rpm kernel-modules-extra-4.18.0-348.el8.ppc64le.rpm kernel-tools-4.18.0-348.el8.ppc64le.rpm kernel-tools-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-tools-libs-4.18.0-348.el8.ppc64le.rpm perf-4.18.0-348.el8.ppc64le.rpm perf-debuginfo-4.18.0-348.el8.ppc64le.rpm python3-perf-4.18.0-348.el8.ppc64le.rpm python3-perf-debuginfo-4.18.0-348.el8.ppc64le.rpm
s390x: bpftool-4.18.0-348.el8.s390x.rpm bpftool-debuginfo-4.18.0-348.el8.s390x.rpm kernel-4.18.0-348.el8.s390x.rpm kernel-core-4.18.0-348.el8.s390x.rpm kernel-cross-headers-4.18.0-348.el8.s390x.rpm kernel-debug-4.18.0-348.el8.s390x.rpm kernel-debug-core-4.18.0-348.el8.s390x.rpm kernel-debug-debuginfo-4.18.0-348.el8.s390x.rpm kernel-debug-devel-4.18.0-348.el8.s390x.rpm kernel-debug-modules-4.18.0-348.el8.s390x.rpm kernel-debug-modules-extra-4.18.0-348.el8.s390x.rpm kernel-debuginfo-4.18.0-348.el8.s390x.rpm kernel-debuginfo-common-s390x-4.18.0-348.el8.s390x.rpm kernel-devel-4.18.0-348.el8.s390x.rpm kernel-headers-4.18.0-348.el8.s390x.rpm kernel-modules-4.18.0-348.el8.s390x.rpm kernel-modules-extra-4.18.0-348.el8.s390x.rpm kernel-tools-4.18.0-348.el8.s390x.rpm kernel-tools-debuginfo-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-core-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-debuginfo-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-devel-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-modules-4.18.0-348.el8.s390x.rpm kernel-zfcpdump-modules-extra-4.18.0-348.el8.s390x.rpm perf-4.18.0-348.el8.s390x.rpm perf-debuginfo-4.18.0-348.el8.s390x.rpm python3-perf-4.18.0-348.el8.s390x.rpm python3-perf-debuginfo-4.18.0-348.el8.s390x.rpm
x86_64: bpftool-4.18.0-348.el8.x86_64.rpm bpftool-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-4.18.0-348.el8.x86_64.rpm kernel-core-4.18.0-348.el8.x86_64.rpm kernel-cross-headers-4.18.0-348.el8.x86_64.rpm kernel-debug-4.18.0-348.el8.x86_64.rpm kernel-debug-core-4.18.0-348.el8.x86_64.rpm kernel-debug-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-debug-devel-4.18.0-348.el8.x86_64.rpm kernel-debug-modules-4.18.0-348.el8.x86_64.rpm kernel-debug-modules-extra-4.18.0-348.el8.x86_64.rpm kernel-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-debuginfo-common-x86_64-4.18.0-348.el8.x86_64.rpm kernel-devel-4.18.0-348.el8.x86_64.rpm kernel-headers-4.18.0-348.el8.x86_64.rpm kernel-modules-4.18.0-348.el8.x86_64.rpm kernel-modules-extra-4.18.0-348.el8.x86_64.rpm kernel-tools-4.18.0-348.el8.x86_64.rpm kernel-tools-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-tools-libs-4.18.0-348.el8.x86_64.rpm perf-4.18.0-348.el8.x86_64.rpm perf-debuginfo-4.18.0-348.el8.x86_64.rpm python3-perf-4.18.0-348.el8.x86_64.rpm python3-perf-debuginfo-4.18.0-348.el8.x86_64.rpm
Red Hat Enterprise Linux CRB (v. 8):
aarch64: bpftool-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-debug-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-debuginfo-common-aarch64-4.18.0-348.el8.aarch64.rpm kernel-tools-debuginfo-4.18.0-348.el8.aarch64.rpm kernel-tools-libs-devel-4.18.0-348.el8.aarch64.rpm perf-debuginfo-4.18.0-348.el8.aarch64.rpm python3-perf-debuginfo-4.18.0-348.el8.aarch64.rpm
ppc64le: bpftool-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-debug-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-debuginfo-common-ppc64le-4.18.0-348.el8.ppc64le.rpm kernel-tools-debuginfo-4.18.0-348.el8.ppc64le.rpm kernel-tools-libs-devel-4.18.0-348.el8.ppc64le.rpm perf-debuginfo-4.18.0-348.el8.ppc64le.rpm python3-perf-debuginfo-4.18.0-348.el8.ppc64le.rpm
x86_64: bpftool-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-debug-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-debuginfo-common-x86_64-4.18.0-348.el8.x86_64.rpm kernel-tools-debuginfo-4.18.0-348.el8.x86_64.rpm kernel-tools-libs-devel-4.18.0-348.el8.x86_64.rpm perf-debuginfo-4.18.0-348.el8.x86_64.rpm python3-perf-debuginfo-4.18.0-348.el8.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/
- Contact:
The Red Hat security contact is secalert@redhat.com. More contact details at https://access.redhat.com/security/team/contact/
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-- RHSA-announce mailing list RHSA-announce@redhat.com https://listman.redhat.com/mailman/listinfo/rhsa-announce . Solution:
For OpenShift Container Platform 4.9 see the following documentation, which will be updated shortly for this release, for important instructions on how to upgrade your cluster and fully apply this errata update:
https://docs.openshift.com/container-platform/4.9/release_notes/ocp-4-9-release-notes.html
For Red Hat OpenShift Logging 5.3, see the following instructions to apply this update:
https://docs.openshift.com/container-platform/4.7/logging/cluster-logging-upgrading.html
- Bugs fixed (https://bugzilla.redhat.com/):
1963232 - CVE-2021-33194 golang: x/net/html: infinite loop in ParseFragment
- JIRA issues fixed (https://issues.jboss.org/):
LOG-1168 - Disable hostname verification in syslog TLS settings
LOG-1235 - Using HTTPS without a secret does not translate into the correct 'scheme' value in Fluentd
LOG-1375 - ssl_ca_cert should be optional
LOG-1378 - CLO should support sasl_plaintext(Password over http)
LOG-1392 - In fluentd config, flush_interval can't be set with flush_mode=immediate
LOG-1494 - Syslog output is serializing json incorrectly
LOG-1555 - Fluentd logs emit transaction failed: error_class=NoMethodError while forwarding to external syslog server
LOG-1575 - Rejected by Elasticsearch and unexpected json-parsing
LOG-1735 - Regression introducing flush_at_shutdown
LOG-1774 - The collector logs should be excluded in fluent.conf
LOG-1776 - fluentd total_limit_size sets value beyond available space
LOG-1822 - OpenShift Alerting Rules Style-Guide Compliance
LOG-1859 - CLO Should not error and exit early on missing ca-bundle when cluster wide proxy is not enabled
LOG-1862 - Unsupported kafka parameters when enabled Kafka SASL
LOG-1903 - Fix the Display of ClusterLogging type in OLM
LOG-1911 - CLF API changes to Opt-in to multiline error detection
LOG-1918 - Alert FluentdNodeDown
always firing
LOG-1939 - Opt-in multiline detection breaks cloudwatch forwarding
6
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"LOW" } ] } ], "sources": [ { "db": "VULMON", "id": "CVE-2020-24588" }, { "db": "JVNDB", "id": "JVNDB-2021-006877" }, { "db": "CNNVD", "id": "CNNVD-202105-633" }, { "db": "NVD", "id": "CVE-2020-24588" } ] }, "description": { "@context": { "@vocab": "https://www.variotdbs.pl/ref/description#", "sources": { "@container": "@list", "@context": { "@vocab": "https://www.variotdbs.pl/ref/sources#" } } }, "data": "The 802.11 standard that underpins Wi-Fi Protected Access (WPA, WPA2, and WPA3) and Wired Equivalent Privacy (WEP) doesn\u0027t require that the A-MSDU flag in the plaintext QoS header field is authenticated. Against devices that support receiving non-SSP A-MSDU frames (which is mandatory as part of 802.11n), an adversary can abuse this to inject arbitrary network packets. IEEE 802.11 The standard has vulnerabilities related to lack of certification for critical functions.Information may be tampered with. A flaw was found in the Linux kernels implementation of wifi fragmentation handling. An attacker with the ability to transmit within the wireless transmission range of an access point can abuse a flaw where previous contents of wifi fragments can be unintentionally transmitted to another device. (CVE-2020-24586)\nA flaw was found in the Linux kernel\u0027s WiFi implementation. An attacker within the wireless range can abuse a logic flaw in the WiFi implementation by reassembling packets from multiple fragments under different keys, treating them as valid. This flaw allows an malicious user to send a fragment under an incorrect key, treating them as a valid fragment under the new key. The highest threat from this vulnerability is to confidentiality. (CVE-2020-24587)\nA flaw was found in the Linux kernels wifi implementation. An attacker within wireless broadcast range can inject custom data into the wireless communication circumventing checks on the data. This can cause the frame to pass checks and be considered a valid frame of a different type. (CVE-2020-24588)\nFrames used for authentication and key management between the AP and connected clients. Some clients may take these redirected frames masquerading as control mechanisms from the AP. (CVE-2020-26139)\nA vulnerability was found in Linux kernel\u0027s WiFi implementation. An attacker within wireless range can inject a control packet fragment where the kernel does not verify the Message Integrity Check (authenticity) of fragmented TKIP frames. (CVE-2020-26141)\nA flaw was found in ath10k_htt_rx_proc_rx_frag_ind_hl in drivers/net/wireless/ath/ath10k/htt_rx.c in the Linux kernel WiFi implementations, where it accepts a second (or subsequent) broadcast fragments even when sent in plaintext and then process them as full unfragmented frames. The highest threat from this vulnerability is to integrity. (CVE-2020-26145)\nA flaw was found in ieee80211_rx_h_defragment in net/mac80211/rx.c in the Linux Kernel\u0027s WiFi implementation. This vulnerability can be abused to inject packets or exfiltrate selected fragments when another device sends fragmented frames, and the WEP, CCMP, or GCMP data-confidentiality protocol is used. The highest threat from this vulnerability is to integrity. (CVE-2020-26147)\nA flaw was found in the Linux kernel in certs/blacklist.c, When signature entries for EFI_CERT_X509_GUID are contained in the Secure Boot Forbidden Signature Database, the entries are skipped. This can cause a security threat and breach system integrity, confidentiality and even lead to a denial of service problem. (CVE-2020-26541)\nA vulnerability was found in the bluez, where Passkey Entry protocol used in Secure Simple Pairing (SSP), Secure Connections (SC) and LE Secure Connections (LESC) of the Bluetooth Core Specification is vulnerable to an impersonation attack where an active attacker can impersonate the initiating device without any previous knowledge. (CVE-2020-26558)\nA flaw was found in the Linux kernel. Improper access control in BlueZ may allow an authenticated user to potentially enable information disclosure via adjacent access. The highest threat from this vulnerability is to data confidentiality and integrity. (CVE-2021-0129)\nA flaw was found in the Linux kernel\u0027s KVM implementation, where improper handing of the VM_IO|VM_PFNMAP VMAs in KVM bypasses RO checks and leads to pages being freed while still accessible by the VMM and guest. This flaw allows users who can start and control a VM to read/write random pages of memory, resulting in local privilege escalation. The highest threat from this vulnerability is to confidentiality, integrity, and system availability. (CVE-2021-22543)\nA flaw was found in the Linux kernel\u0027s handling of the removal of Bluetooth HCI controllers. This flaw allows an attacker with a local account to exploit a race condition, leading to corrupted memory and possible privilege escalation. The highest threat from this vulnerability is to confidentiality, integrity, as well as system availability. (CVE-2021-32399)\nA use-after-free flaw was found in hci_send_acl in the bluetooth host controller interface (HCI) in Linux kernel, where a local attacker with an access rights could cause a denial of service problem on the system The issue results from the object hchan, freed in hci_disconn_loglink_complete_evt, yet still used in other places. The highest threat from this vulnerability is to data integrity, confidentiality and system availability. (CVE-2021-33034)\nThe canbus filesystem in the Linux kernel contains an information leak of kernel memory to devices on the CAN bus network link layer. An attacker with the ability to dump messages on the CAN bus is able to learn of uninitialized stack values by dumbing messages on the can bus. (CVE-2021-34693)\nAn out-of-bounds (OOB) memory access flaw was found in fs/f2fs/node.c in the f2fs module in the Linux kernel. A bounds check failure allows a local malicious user to gain access to out-of-bounds memory leading to a system crash or a leak of internal kernel information. The highest threat from this vulnerability is to system availability. (CVE-2021-3506)\nA flaw double-free memory corruption in the Linux kernel HCI device initialization subsystem was found in the way user attach malicious HCI TTY Bluetooth device. A local user could use this flaw to crash the system. (CVE-2021-3564)\nA flaw use-after-free in function hci_sock_bound_ioctl() of the Linux kernel HCI subsystem was found in the way user calls ioct HCIUNBLOCKADDR or other way triggers race condition of the call hci_unregister_dev() together with one of the calls hci_sock_blacklist_add(), hci_sock_blacklist_del(), hci_get_conn_info(), hci_get_auth_info(). A privileged local user could use this flaw to crash the system or escalate their privileges on the system. (CVE-2021-3573)\nA flaw was found in the Linux kernels NFC implementation, A NULL pointer dereference and BUG leading to a denial of service can be triggered by a local unprivileged user causing a kernel panic. (CVE-2021-38208). ==========================================================================\nUbuntu Security Notice USN-4997-2\nJune 25, 2021\n\nlinux-kvm vulnerabilities\n==========================================================================\n\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 21.04\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. \nThis update provides the corresponding updates for the Linux KVM\nkernel for Ubuntu 21.04. \n\nNorbert Slusarek discovered a race condition in the CAN BCM networking\nprotocol of the Linux kernel leading to multiple use-after-free\nvulnerabilities. A local attacker could use this issue to execute arbitrary\ncode. (CVE-2021-3609)\n\nPiotr Krysiuk discovered that the eBPF implementation in the Linux kernel\ndid not properly enforce limits for pointer operations. A local attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2021-33200)\n\nMathy Vanhoef discovered that the Linux kernel\u2019s WiFi implementation did\nnot properly clear received fragments from memory in some situations. A\nphysically proximate attacker could possibly use this issue to inject\npackets or expose sensitive information. A physically proximate attacker\ncould possibly use this issue to decrypt fragments. (CVE-2020-24587)\n\nMathy Vanhoef discovered that the Linux kernel\u2019s WiFi implementation\nincorrectly handled certain malformed frames. If a user were tricked into\nconnecting to a malicious server, a physically proximate attacker could use\nthis issue to inject packets. (CVE-2020-24588)\n\nMathy Vanhoef discovered that the Linux kernel\u2019s WiFi implementation\nincorrectly handled EAPOL frames from unauthenticated senders. A physically\nproximate attacker could inject malicious packets to cause a denial of\nservice (system crash). (CVE-2020-26139)\n\nMathy Vanhoef discovered that the Linux kernel\u2019s WiFi implementation did\nnot properly verify certain fragmented frames. A physically proximate\nattacker could possibly use this issue to inject or decrypt packets. A physically proximate\nattacker could use this issue to inject packets. (CVE-2020-26145)\n\nMathy Vanhoef discovered that the Linux kernel\u2019s WiFi implementation could\nreassemble mixed encrypted and plaintext fragments. A local attacker could use this to cause a denial of service\n(system crash) or possibly execute arbitrary code. (CVE-2021-23133)\n\nOr Cohen and Nadav Markus discovered a use-after-free vulnerability in the\nnfc implementation in the Linux kernel. (CVE-2021-23134)\n\nManfred Paul discovered that the extended Berkeley Packet Filter (eBPF)\nimplementation in the Linux kernel contained an out-of-bounds\nvulnerability. A local attacker could use this issue to execute arbitrary\ncode. (CVE-2021-31440)\n\nPiotr Krysiuk discovered that the eBPF implementation in the Linux kernel\ndid not properly prevent speculative loads in certain situations. A local\nattacker could use this to expose sensitive information (kernel memory). An attacker could use this\nissue to possibly execute arbitrary code. A local attacker could use this to cause a denial of\nservice (system crash) or possibly execute arbitrary code. (CVE-2021-3506)\n\nMathias Krause discovered that a null pointer dereference existed in the\nNitro Enclaves kernel driver of the Linux kernel. (CVE-2021-3543)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 21.04:\n linux-image-5.11.0-1009-kvm 5.11.0-1009.9\n linux-image-kvm 5.11.0.1009.9\n\nAfter a standard system update you need to reboot your computer to make\nall the necessary changes. \n\nATTENTION: Due to an unavoidable ABI change the kernel updates have\nbeen given a new version number, which requires you to recompile and\nreinstall all third party kernel modules you might have installed. \nUnless you manually uninstalled the standard kernel metapackages\n(e.g. linux-generic, linux-generic-lts-RELEASE, linux-virtual,\nlinux-powerpc), a standard system upgrade will automatically perform\nthis as well. \n\nReferences:\n https://ubuntu.com/security/notices/USN-4997-2\n https://ubuntu.com/security/notices/USN-4997-1\n CVE-2020-24586, CVE-2020-24587, CVE-2020-24588, CVE-2020-26139,\n CVE-2020-26141, CVE-2020-26145, CVE-2020-26147, CVE-2021-23133,\n CVE-2021-23134, CVE-2021-31440, CVE-2021-31829, CVE-2021-32399,\n CVE-2021-33034, CVE-2021-33200, CVE-2021-3506, CVE-2021-3543,\n CVE-2021-3609\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/linux-kvm/5.11.0-1009.9\n\n. Bugs fixed (https://bugzilla.redhat.com/):\n\n2030932 - CVE-2021-44228 log4j-core: Remote code execution in Log4j 2.x when logs contain an attacker-controlled string value\n\n5. -----BEGIN PGP SIGNED MESSAGE-----\nHash: SHA256\n\n==================================================================== \nRed Hat Security Advisory\n\nSynopsis: Moderate: kernel security, bug fix, and enhancement update\nAdvisory ID: RHSA-2021:4356-01\nProduct: Red Hat Enterprise Linux\nAdvisory URL: https://access.redhat.com/errata/RHSA-2021:4356\nIssue date: 2021-11-09\nCVE Names: CVE-2020-0427 CVE-2020-24502 CVE-2020-24503\n CVE-2020-24504 CVE-2020-24586 CVE-2020-24587\n CVE-2020-24588 CVE-2020-26139 CVE-2020-26140\n CVE-2020-26141 CVE-2020-26143 CVE-2020-26144\n CVE-2020-26145 CVE-2020-26146 CVE-2020-26147\n CVE-2020-27777 CVE-2020-29368 CVE-2020-29660\n CVE-2020-36158 CVE-2020-36386 CVE-2021-0129\n CVE-2021-3348 CVE-2021-3489 CVE-2021-3564\n CVE-2021-3573 CVE-2021-3600 CVE-2021-3635\n CVE-2021-3659 CVE-2021-3679 CVE-2021-3732\n CVE-2021-20194 CVE-2021-20239 CVE-2021-23133\n CVE-2021-28950 CVE-2021-28971 CVE-2021-29155\n CVE-2021-29646 CVE-2021-29650 CVE-2021-31440\n CVE-2021-31829 CVE-2021-31916 CVE-2021-33200\n====================================================================\n1. \n\nRed Hat Product Security has rated this update as having a security impact\nof Moderate. A Common Vulnerability Scoring System (CVSS) base score, which\ngives a detailed severity rating, is available for each vulnerability from\nthe CVE link(s) in the References section. \n\n2. Relevant releases/architectures:\n\nRed Hat Enterprise Linux BaseOS (v. 8) - aarch64, noarch, ppc64le, s390x, x86_64\nRed Hat Enterprise Linux CRB (v. 8) - aarch64, ppc64le, x86_64\n\n3. \n\nSecurity Fix(es):\n* kernel: out-of-bounds reads in pinctrl subsystem (CVE-2020-0427)\n* kernel: Improper input validation in some Intel(R) Ethernet E810 Adapter\ndrivers (CVE-2020-24502)\n* kernel: Insufficient access control in some Intel(R) Ethernet E810\nAdapter drivers (CVE-2020-24503)\n* kernel: Uncontrolled resource consumption in some Intel(R) Ethernet E810\nAdapter drivers (CVE-2020-24504)\n* kernel: Fragmentation cache not cleared on reconnection (CVE-2020-24586)\n* kernel: Reassembling fragments encrypted under different keys\n(CVE-2020-24587)\n* kernel: wifi frame payload being parsed incorrectly as an L2 frame\n(CVE-2020-24588)\n* kernel: Forwarding EAPOL from unauthenticated wifi client\n(CVE-2020-26139)\n* kernel: accepting plaintext data frames in protected networks\n(CVE-2020-26140)\n* kernel: not verifying TKIP MIC of fragmented frames (CVE-2020-26141)\n* kernel: accepting fragmented plaintext frames in protected networks\n(CVE-2020-26143)\n* kernel: accepting unencrypted A-MSDU frames that start with RFC1042\nheader (CVE-2020-26144)\n* kernel: accepting plaintext broadcast fragments as full frames\n(CVE-2020-26145)\n* kernel: powerpc: RTAS calls can be used to compromise kernel integrity\n(CVE-2020-27777)\n* kernel: locking inconsistency in tty_io.c and tty_jobctrl.c can lead to a\nread-after-free (CVE-2020-29660)\n* kernel: buffer overflow in mwifiex_cmd_802_11_ad_hoc_start function via a\nlong SSID value (CVE-2020-36158)\n* kernel: slab out-of-bounds read in hci_extended_inquiry_result_evt()\n(CVE-2020-36386)\n* kernel: Improper access control in BlueZ may allow information disclosure\nvulnerability. (CVE-2021-0129)\n* kernel: Use-after-free in ndb_queue_rq() in drivers/block/nbd.c\n(CVE-2021-3348)\n* kernel: Linux kernel eBPF RINGBUF map oversized allocation\n(CVE-2021-3489)\n* kernel: double free in bluetooth subsystem when the HCI device\ninitialization fails (CVE-2021-3564)\n* kernel: use-after-free in function hci_sock_bound_ioctl() (CVE-2021-3573)\n* kernel: eBPF 32-bit source register truncation on div/mod (CVE-2021-3600)\n* kernel: DoS in rb_per_cpu_empty() (CVE-2021-3679)\n* kernel: Mounting overlayfs inside an unprivileged user namespace can\nreveal files (CVE-2021-3732)\n* kernel: heap overflow in __cgroup_bpf_run_filter_getsockopt()\n(CVE-2021-20194)\n* kernel: Race condition in sctp_destroy_sock list_del (CVE-2021-23133)\n* kernel: fuse: stall on CPU can occur because a retry loop continually\nfinds the same bad inode (CVE-2021-28950)\n* kernel: System crash in intel_pmu_drain_pebs_nhm in\narch/x86/events/intel/ds.c (CVE-2021-28971)\n* kernel: protection can be bypassed to leak content of kernel memory\n(CVE-2021-29155)\n* kernel: improper input validation in tipc_nl_retrieve_key function in\nnet/tipc/node.c (CVE-2021-29646)\n* kernel: lack a full memory barrier may lead to DoS (CVE-2021-29650)\n* kernel: local escalation of privileges in handling of eBPF programs\n(CVE-2021-31440)\n* kernel: protection of stack pointer against speculative pointer\narithmetic can be bypassed to leak content of kernel memory\n(CVE-2021-31829)\n* kernel: out-of-bounds reads and writes due to enforcing incorrect limits\nfor pointer arithmetic operations by BPF verifier (CVE-2021-33200)\n* kernel: reassembling encrypted fragments with non-consecutive packet\nnumbers (CVE-2020-26146)\n* kernel: reassembling mixed encrypted/plaintext fragments (CVE-2020-26147)\n* kernel: the copy-on-write implementation can grant unintended write\naccess because of a race condition in a THP mapcount check (CVE-2020-29368)\n* kernel: flowtable list del corruption with kernel BUG at\nlib/list_debug.c:50 (CVE-2021-3635)\n* kernel: NULL pointer dereference in llsec_key_alloc() in\nnet/mac802154/llsec.c (CVE-2021-3659)\n* kernel: setsockopt System Call Untrusted Pointer Dereference Information\nDisclosure (CVE-2021-20239)\n* kernel: out of bounds array access in drivers/md/dm-ioctl.c\n(CVE-2021-31916)\n\n4. Solution:\n\nFor more details about the security issue(s), including the impact, a CVSS\nscore, acknowledgments, and other related information, refer to the CVE\npage(s) listed in the References section. \n\nAdditional Changes:\n\nFor detailed information on changes in this release, see the Red Hat\nEnterprise Linux 8.5 Release Notes linked from the References section. \n\nFor details on how to apply this update, which includes the changes\ndescribed in this advisory, refer to:\n\nhttps://access.redhat.com/articles/11258\n\nThe system must be rebooted for this update to take effect. \n\n5. Bugs fixed (https://bugzilla.redhat.com/):\n\n1509204 - dlm: Add ability to set SO_MARK on DLM sockets\n1793880 - Unreliable RTC synchronization (11-minute mode)\n1816493 - [RHEL 8.3] Discard request from mkfs.xfs takes too much time on raid10\n1900844 - CVE-2020-27777 kernel: powerpc: RTAS calls can be used to compromise kernel integrity\n1903244 - CVE-2020-29368 kernel: the copy-on-write implementation can grant unintended write access because of a race condition in a THP mapcount check\n1906522 - CVE-2020-29660 kernel: locking inconsistency in drivers/tty/tty_io.c and drivers/tty/tty_jobctrl.c can lead to a read-after-free\n1912683 - CVE-2021-20194 kernel: heap overflow in __cgroup_bpf_run_filter_getsockopt()\n1913348 - CVE-2020-36158 kernel: buffer overflow in mwifiex_cmd_802_11_ad_hoc_start function in drivers/net/wireless/marvell/mwifiex/join.c via a long SSID value\n1915825 - Allow falling back to genfscon labeling when the FS doesn\u0027t support xattrs and there is a fs_use_xattr rule for it\n1919893 - CVE-2020-0427 kernel: out-of-bounds reads in pinctrl subsystem. \n1921958 - CVE-2021-3348 kernel: Use-after-free in ndb_queue_rq() in drivers/block/nbd.c\n1923636 - CVE-2021-20239 kernel: setsockopt System Call Untrusted Pointer Dereference Information Disclosure\n1930376 - CVE-2020-24504 kernel: Uncontrolled resource consumption in some Intel(R) Ethernet E810 Adapter drivers\n1930379 - CVE-2020-24502 kernel: Improper input validation in some Intel(R) Ethernet E810 Adapter drivers\n1930381 - CVE-2020-24503 kernel: Insufficient access control in some Intel(R) Ethernet E810 Adapter drivers\n1933527 - Files on cifs mount can get mixed contents when underlying file is removed but inode number is reused, when mounted with \u0027serverino\u0027 and \u0027cache=strict \u0027\n1939341 - CNB: net: add inline function skb_csum_is_sctp\n1941762 - CVE-2021-28950 kernel: fuse: stall on CPU can occur because a retry loop continually finds the same bad inode\n1941784 - CVE-2021-28971 kernel: System crash in intel_pmu_drain_pebs_nhm in arch/x86/events/intel/ds.c\n1945345 - CVE-2021-29646 kernel: improper input validation in tipc_nl_retrieve_key function in net/tipc/node.c\n1945388 - CVE-2021-29650 kernel: lack a full memory barrier upon the assignment of a new table value in net/netfilter/x_tables.c and include/linux/netfilter/x_tables.h may lead to DoS\n1946965 - CVE-2021-31916 kernel: out of bounds array access in drivers/md/dm-ioctl.c\n1948772 - CVE-2021-23133 kernel: Race condition in sctp_destroy_sock list_del\n1951595 - CVE-2021-29155 kernel: protection for sequences of pointer arithmetic operations against speculatively out-of-bounds loads can be bypassed to leak content of kernel memory\n1953847 - [ethtool] The `NLM_F_MULTI` should be used for `NLM_F_DUMP`\n1954588 - RHEL kernel 8.2 and higher are affected by data corruption bug in raid1 arrays using bitmaps. \n1957788 - CVE-2021-31829 kernel: protection of stack pointer against speculative pointer arithmetic can be bypassed to leak content of kernel memory\n1959559 - CVE-2021-3489 kernel: Linux kernel eBPF RINGBUF map oversized allocation\n1959642 - CVE-2020-24586 kernel: Fragmentation cache not cleared on reconnection\n1959654 - CVE-2020-24587 kernel: Reassembling fragments encrypted under different keys\n1959657 - CVE-2020-24588 kernel: wifi frame payload being parsed incorrectly as an L2 frame\n1959663 - CVE-2020-26139 kernel: Forwarding EAPOL from unauthenticated wifi client\n1960490 - CVE-2020-26140 kernel: accepting plaintext data frames in protected networks\n1960492 - CVE-2020-26141 kernel: not verifying TKIP MIC of fragmented frames\n1960496 - CVE-2020-26143 kernel: accepting fragmented plaintext frames in protected networks\n1960498 - CVE-2020-26144 kernel: accepting unencrypted A-MSDU frames that start with RFC1042 header\n1960500 - CVE-2020-26145 kernel: accepting plaintext broadcast fragments as full frames\n1960502 - CVE-2020-26146 kernel: reassembling encrypted fragments with non-consecutive packet numbers\n1960504 - CVE-2020-26147 kernel: reassembling mixed encrypted/plaintext fragments\n1960708 - please add CAP_CHECKPOINT_RESTORE to capability.h\n1964028 - CVE-2021-31440 kernel: local escalation of privileges in handling of eBPF programs\n1964139 - CVE-2021-3564 kernel: double free in bluetooth subsystem when the HCI device initialization fails\n1965038 - CVE-2021-0129 kernel: Improper access control in BlueZ may allow information disclosure vulnerability. \n1965360 - kernel: get_timespec64 does not ignore padding in compat syscalls\n1965458 - CVE-2021-33200 kernel: out-of-bounds reads and writes due to enforcing incorrect limits for pointer arithmetic operations by BPF verifier\n1966578 - CVE-2021-3573 kernel: use-after-free in function hci_sock_bound_ioctl()\n1969489 - CVE-2020-36386 kernel: slab out-of-bounds read in hci_extended_inquiry_result_evt() in net/bluetooth/hci_event.c\n1971101 - ceph: potential data corruption in cephfs write_begin codepath\n1972278 - libceph: allow addrvecs with a single NONE/blank address\n1974627 - [TIPC] kernel BUG at lib/list_debug.c:31!\n1975182 - CVE-2021-33909 kernel: size_t-to-int conversion vulnerability in the filesystem layer [rhel-8.5.0]\n1975949 - CVE-2021-3659 kernel: NULL pointer dereference in llsec_key_alloc() in net/mac802154/llsec.c\n1976679 - blk-mq: fix/improve io scheduler batching dispatch\n1976699 - [SCTP]WARNING: CPU: 29 PID: 3165 at mm/page_alloc.c:4579 __alloc_pages_slowpath+0xb74/0xd00\n1976946 - CVE-2021-3635 kernel: flowtable list del corruption with kernel BUG at lib/list_debug.c:50\n1976969 - XFS: followup to XFS sync to upstream v5.10 (re BZ1937116)\n1977162 - [XDP] test program warning: libbpf: elf: skipping unrecognized data section(16) .eh_frame\n1977422 - Missing backport of IMA boot aggregate calculation in rhel 8.4 kernel\n1977537 - RHEL8.5: Update the kernel workqueue code to v5.12 level\n1977850 - geneve virtual devices lack the NETIF_F_FRAGLIST feature\n1978369 - dm writecache: sync with upstream 5.14\n1979070 - Inaccessible NFS server overloads clients (native_queued_spin_lock_slowpath connotation?)\n1979680 - Backport openvswitch tracepoints\n1981954 - CVE-2021-3600 kernel: eBPF 32-bit source register truncation on div/mod\n1986138 - Lockd invalid cast to nlm_lockowner\n1989165 - CVE-2021-3679 kernel: DoS in rb_per_cpu_empty()\n1989999 - ceph omnibus backport for RHEL-8.5.0\n1991976 - block: fix New warning in nvme_setup_discard\n1992700 - blk-mq: fix kernel panic when iterating over flush request\n1995249 - CVE-2021-3732 kernel: overlayfs: Mounting overlayfs inside an unprivileged user namespace can reveal files\n1996854 - dm crypt: Avoid percpu_counter spinlock contention in crypt_page_alloc()\n\n6. Package List:\n\nRed Hat Enterprise Linux BaseOS (v. 8):\n\nSource:\nkernel-4.18.0-348.el8.src.rpm\n\naarch64:\nbpftool-4.18.0-348.el8.aarch64.rpm\nbpftool-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-4.18.0-348.el8.aarch64.rpm\nkernel-core-4.18.0-348.el8.aarch64.rpm\nkernel-cross-headers-4.18.0-348.el8.aarch64.rpm\nkernel-debug-4.18.0-348.el8.aarch64.rpm\nkernel-debug-core-4.18.0-348.el8.aarch64.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-debug-devel-4.18.0-348.el8.aarch64.rpm\nkernel-debug-modules-4.18.0-348.el8.aarch64.rpm\nkernel-debug-modules-extra-4.18.0-348.el8.aarch64.rpm\nkernel-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-debuginfo-common-aarch64-4.18.0-348.el8.aarch64.rpm\nkernel-devel-4.18.0-348.el8.aarch64.rpm\nkernel-headers-4.18.0-348.el8.aarch64.rpm\nkernel-modules-4.18.0-348.el8.aarch64.rpm\nkernel-modules-extra-4.18.0-348.el8.aarch64.rpm\nkernel-tools-4.18.0-348.el8.aarch64.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-tools-libs-4.18.0-348.el8.aarch64.rpm\nperf-4.18.0-348.el8.aarch64.rpm\nperf-debuginfo-4.18.0-348.el8.aarch64.rpm\npython3-perf-4.18.0-348.el8.aarch64.rpm\npython3-perf-debuginfo-4.18.0-348.el8.aarch64.rpm\n\nnoarch:\nkernel-abi-stablelists-4.18.0-348.el8.noarch.rpm\nkernel-doc-4.18.0-348.el8.noarch.rpm\n\nppc64le:\nbpftool-4.18.0-348.el8.ppc64le.rpm\nbpftool-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-4.18.0-348.el8.ppc64le.rpm\nkernel-core-4.18.0-348.el8.ppc64le.rpm\nkernel-cross-headers-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-core-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-devel-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-modules-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-modules-extra-4.18.0-348.el8.ppc64le.rpm\nkernel-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-4.18.0-348.el8.ppc64le.rpm\nkernel-devel-4.18.0-348.el8.ppc64le.rpm\nkernel-headers-4.18.0-348.el8.ppc64le.rpm\nkernel-modules-4.18.0-348.el8.ppc64le.rpm\nkernel-modules-extra-4.18.0-348.el8.ppc64le.rpm\nkernel-tools-4.18.0-348.el8.ppc64le.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-tools-libs-4.18.0-348.el8.ppc64le.rpm\nperf-4.18.0-348.el8.ppc64le.rpm\nperf-debuginfo-4.18.0-348.el8.ppc64le.rpm\npython3-perf-4.18.0-348.el8.ppc64le.rpm\npython3-perf-debuginfo-4.18.0-348.el8.ppc64le.rpm\n\ns390x:\nbpftool-4.18.0-348.el8.s390x.rpm\nbpftool-debuginfo-4.18.0-348.el8.s390x.rpm\nkernel-4.18.0-348.el8.s390x.rpm\nkernel-core-4.18.0-348.el8.s390x.rpm\nkernel-cross-headers-4.18.0-348.el8.s390x.rpm\nkernel-debug-4.18.0-348.el8.s390x.rpm\nkernel-debug-core-4.18.0-348.el8.s390x.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.s390x.rpm\nkernel-debug-devel-4.18.0-348.el8.s390x.rpm\nkernel-debug-modules-4.18.0-348.el8.s390x.rpm\nkernel-debug-modules-extra-4.18.0-348.el8.s390x.rpm\nkernel-debuginfo-4.18.0-348.el8.s390x.rpm\nkernel-debuginfo-common-s390x-4.18.0-348.el8.s390x.rpm\nkernel-devel-4.18.0-348.el8.s390x.rpm\nkernel-headers-4.18.0-348.el8.s390x.rpm\nkernel-modules-4.18.0-348.el8.s390x.rpm\nkernel-modules-extra-4.18.0-348.el8.s390x.rpm\nkernel-tools-4.18.0-348.el8.s390x.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-core-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-debuginfo-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-devel-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-modules-4.18.0-348.el8.s390x.rpm\nkernel-zfcpdump-modules-extra-4.18.0-348.el8.s390x.rpm\nperf-4.18.0-348.el8.s390x.rpm\nperf-debuginfo-4.18.0-348.el8.s390x.rpm\npython3-perf-4.18.0-348.el8.s390x.rpm\npython3-perf-debuginfo-4.18.0-348.el8.s390x.rpm\n\nx86_64:\nbpftool-4.18.0-348.el8.x86_64.rpm\nbpftool-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-4.18.0-348.el8.x86_64.rpm\nkernel-core-4.18.0-348.el8.x86_64.rpm\nkernel-cross-headers-4.18.0-348.el8.x86_64.rpm\nkernel-debug-4.18.0-348.el8.x86_64.rpm\nkernel-debug-core-4.18.0-348.el8.x86_64.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-debug-devel-4.18.0-348.el8.x86_64.rpm\nkernel-debug-modules-4.18.0-348.el8.x86_64.rpm\nkernel-debug-modules-extra-4.18.0-348.el8.x86_64.rpm\nkernel-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-debuginfo-common-x86_64-4.18.0-348.el8.x86_64.rpm\nkernel-devel-4.18.0-348.el8.x86_64.rpm\nkernel-headers-4.18.0-348.el8.x86_64.rpm\nkernel-modules-4.18.0-348.el8.x86_64.rpm\nkernel-modules-extra-4.18.0-348.el8.x86_64.rpm\nkernel-tools-4.18.0-348.el8.x86_64.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-tools-libs-4.18.0-348.el8.x86_64.rpm\nperf-4.18.0-348.el8.x86_64.rpm\nperf-debuginfo-4.18.0-348.el8.x86_64.rpm\npython3-perf-4.18.0-348.el8.x86_64.rpm\npython3-perf-debuginfo-4.18.0-348.el8.x86_64.rpm\n\nRed Hat Enterprise Linux CRB (v. 8):\n\naarch64:\nbpftool-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-debuginfo-common-aarch64-4.18.0-348.el8.aarch64.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.aarch64.rpm\nkernel-tools-libs-devel-4.18.0-348.el8.aarch64.rpm\nperf-debuginfo-4.18.0-348.el8.aarch64.rpm\npython3-perf-debuginfo-4.18.0-348.el8.aarch64.rpm\n\nppc64le:\nbpftool-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-debuginfo-common-ppc64le-4.18.0-348.el8.ppc64le.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.ppc64le.rpm\nkernel-tools-libs-devel-4.18.0-348.el8.ppc64le.rpm\nperf-debuginfo-4.18.0-348.el8.ppc64le.rpm\npython3-perf-debuginfo-4.18.0-348.el8.ppc64le.rpm\n\nx86_64:\nbpftool-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-debug-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-debuginfo-common-x86_64-4.18.0-348.el8.x86_64.rpm\nkernel-tools-debuginfo-4.18.0-348.el8.x86_64.rpm\nkernel-tools-libs-devel-4.18.0-348.el8.x86_64.rpm\nperf-debuginfo-4.18.0-348.el8.x86_64.rpm\npython3-perf-debuginfo-4.18.0-348.el8.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. 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 2021 Red Hat, Inc. \n-----BEGIN PGP SIGNATURE-----\nVersion: GnuPG v1\n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\n+PuV5cms0sE=2UUA\n-----END PGP SIGNATURE-----\n\n--\nRHSA-announce mailing list\nRHSA-announce@redhat.com\nhttps://listman.redhat.com/mailman/listinfo/rhsa-announce\n. Solution:\n\nFor OpenShift Container Platform 4.9 see the following documentation, which\nwill be updated shortly for this release, for important instructions on how\nto upgrade your cluster and fully apply this errata update:\n\nhttps://docs.openshift.com/container-platform/4.9/release_notes/ocp-4-9-release-notes.html\n\nFor Red Hat OpenShift Logging 5.3, see the following instructions to apply\nthis update:\n\nhttps://docs.openshift.com/container-platform/4.7/logging/cluster-logging-upgrading.html\n\n4. Bugs fixed (https://bugzilla.redhat.com/):\n\n1963232 - CVE-2021-33194 golang: x/net/html: infinite loop in ParseFragment\n\n5. JIRA issues fixed (https://issues.jboss.org/):\n\nLOG-1168 - Disable hostname verification in syslog TLS settings\nLOG-1235 - Using HTTPS without a secret does not translate into the correct \u0027scheme\u0027 value in Fluentd\nLOG-1375 - ssl_ca_cert should be optional\nLOG-1378 - CLO should support sasl_plaintext(Password over http)\nLOG-1392 - In fluentd config, flush_interval can\u0027t be set with flush_mode=immediate\nLOG-1494 - Syslog output is serializing json incorrectly\nLOG-1555 - Fluentd logs emit transaction failed: error_class=NoMethodError while forwarding to external syslog server\nLOG-1575 - Rejected by Elasticsearch and unexpected json-parsing\nLOG-1735 - Regression introducing flush_at_shutdown \nLOG-1774 - The collector logs should be excluded in fluent.conf\nLOG-1776 - fluentd total_limit_size sets value beyond available space\nLOG-1822 - OpenShift Alerting Rules Style-Guide Compliance\nLOG-1859 - CLO Should not error and exit early on missing ca-bundle when cluster 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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.