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Ubuntu Security Notice USN-6416-1

Ubuntu Security Notice 6416-1 - It was discovered that the IPv6 implementation in the Linux kernel contained a high rate of hash collisions in connection lookup table. A remote attacker could use this to cause a denial of service. Daniel Trujillo, Johannes Wikner, and Kaveh Razavi discovered that some AMD processors utilising speculative execution and branch prediction may allow unauthorised memory reads via a speculative side-channel attack. A local attacker could use this to expose sensitive information, including kernel memory.

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==========================================================================Ubuntu Security Notice USN-6416-1October 04, 2023linux, linux-aws, linux-aws-5.15, linux-azure, linux-azure-5.15,linux-azure-fde, linux-azure-fde-5.15, linux-gcp, linux-gcp-5.15,linux-gke, linux-gkeop, linux-gkeop-5.15, linux-ibm, linux-ibm-5.15,linux-kvm, linux-lowlatency, linux-lowlatency-hwe-5.15, linux-nvidia,linux-oracle vulnerabilities==========================================================================A security issue affects these releases of Ubuntu and its derivatives:- Ubuntu 22.04 LTS- Ubuntu 20.04 LTSSummary:Several security issues were fixed in the Linux kernel.Software Description:- linux: Linux kernel- linux-aws: Linux kernel for Amazon Web Services (AWS) systems- linux-azure: Linux kernel for Microsoft Azure Cloud systems- linux-azure-fde: Linux kernel for Microsoft Azure CVM cloud systems- linux-gcp: Linux kernel for Google Cloud Platform (GCP) systems- linux-gke: Linux kernel for Google Container Engine (GKE) systems- linux-gkeop: Linux kernel for Google Container Engine (GKE) systems- linux-ibm: Linux kernel for IBM cloud systems- linux-kvm: Linux kernel for cloud environments- linux-lowlatency: Linux low latency kernel- linux-nvidia: Linux kernel for NVIDIA systems- linux-oracle: Linux kernel for Oracle Cloud systems- linux-aws-5.15: Linux kernel for Amazon Web Services (AWS) systems- linux-azure-5.15: Linux kernel for Microsoft Azure cloud systems- linux-azure-fde-5.15: Linux kernel for Microsoft Azure CVM cloud systems- linux-gcp-5.15: Linux kernel for Google Cloud Platform (GCP) systems- linux-gkeop-5.15: Linux kernel for Google Container Engine (GKE) systems- linux-ibm-5.15: Linux kernel for IBM cloud systems- linux-lowlatency-hwe-5.15: Linux low latency kernelDetails:It was discovered that the IPv6 implementation in the Linux kernelcontained a high rate of hash collisions in connection lookup table. Aremote attacker could use this to cause a denial of service (excessive CPUconsumption). (CVE-2023-1206)Daniel Trujillo, Johannes Wikner, and Kaveh Razavi discovered that some AMDprocessors utilising speculative execution and branch prediction may allowunauthorised memory reads via a speculative side-channel attack. A localattacker could use this to expose sensitive information, including kernelmemory. (CVE-2023-20569)It was discovered that the IPv6 RPL protocol implementation in the Linuxkernel did not properly handle user-supplied data. A remote attacker coulduse this to cause a denial of service (system crash). (CVE-2023-2156)Davide Ornaghi discovered that the DECnet network protocol implementationin the Linux kernel contained a null pointer dereference vulnerability. Aremote attacker could use this to cause a denial of service (system crash)or possibly execute arbitrary code. Please note that kernel support for theDECnet has been removed to resolve this CVE. (CVE-2023-3338)Chih-Yen Chang discovered that the KSMBD implementation in the Linux kerneldid not properly validate command payload size, leading to a out-of-boundsread vulnerability. A remote attacker could possibly use this to cause adenial of service (system crash). (CVE-2023-38432)It was discovered that the NFC implementation in the Linux kernel containeda use-after-free vulnerability when performing peer-to-peer communicationin certain conditions. A privileged attacker could use this to cause adenial of service (system crash) or possibly expose sensitive information(kernel memory). (CVE-2023-3863)Laurence Wit discovered that the KSMBD implementation in the Linux kerneldid not properly validate a buffer size in certain situations, leading toan out-of-bounds read vulnerability. A remote attacker could use this tocause a denial of service (system crash) or possibly expose sensitiveinformation. (CVE-2023-3865)Laurence Wit discovered that the KSMBD implementation in the Linux kernelcontained a null pointer dereference vulnerability when handling handlingchained requests. A remote attacker could use this to cause a denial ofservice (system crash). (CVE-2023-3866)It was discovered that the Siano USB MDTV receiver device driver in theLinux kernel did not properly handle device initialization failures incertain situations, leading to a use-after-free vulnerability. A physicallyproximate attacker could use this cause a denial of service (system crash).(CVE-2023-4132)Andy Nguyen discovered that the KVM implementation for AMD processors inthe Linux kernel with Secure Encrypted Virtualization (SEV) contained arace condition when accessing the GHCB page. A local attacker in a SEVguest VM could possibly use this to cause a denial of service (host systemcrash). (CVE-2023-4155)It was discovered that the TUN/TAP driver in the Linux kernel did notproperly initialize socket data. A local attacker could use this to cause adenial of service (system crash). (CVE-2023-4194)Maxim Suhanov discovered that the exFAT file system implementation in theLinux kernel did not properly check a file name length, leading to an out-of-bounds write vulnerability. An attacker could use this to construct amalicious exFAT image that, when mounted and operated on, could cause adenial of service (system crash) or possibly execute arbitrary code.(CVE-2023-4273)Thelford Williams discovered that the Ceph file system messenger protocolimplementation in the Linux kernel did not properly validate frame segmentlength in certain situation, leading to a buffer overflow vulnerability. Aremote attacker could use this to cause a denial of service (system crash)or possibly execute arbitrary code. (CVE-2023-44466)Update instructions:The problem can be corrected by updating your system to the followingpackage versions:Ubuntu 22.04 LTS:   linux-image-5.15.0-1030-gkeop   5.15.0-1030.35   linux-image-5.15.0-1037-nvidia  5.15.0-1037.37   linux-image-5.15.0-1037-nvidia-lowlatency  5.15.0-1037.37   linux-image-5.15.0-1040-ibm     5.15.0-1040.43   linux-image-5.15.0-1044-gcp     5.15.0-1044.52   linux-image-5.15.0-1044-gke     5.15.0-1044.49   linux-image-5.15.0-1044-kvm     5.15.0-1044.49   linux-image-5.15.0-1045-oracle  5.15.0-1045.51   linux-image-5.15.0-1047-aws     5.15.0-1047.52   linux-image-5.15.0-1049-azure   5.15.0-1049.56   linux-image-5.15.0-1049-azure-fde  5.15.0-1049.56.1   linux-image-5.15.0-86-generic   5.15.0-86.96   linux-image-5.15.0-86-generic-64k  5.15.0-86.96   linux-image-5.15.0-86-generic-lpae  5.15.0-86.96   linux-image-5.15.0-86-lowlatency  5.15.0-86.95   linux-image-5.15.0-86-lowlatency-64k  5.15.0-86.95   linux-image-aws-lts-22.04       5.15.0.1047.46   linux-image-azure-fde-lts-22.04  5.15.0.1049.56.27   linux-image-azure-lts-22.04     5.15.0.1049.45   linux-image-gcp-lts-22.04       5.15.0.1044.40   linux-image-generic             5.15.0.86.83   linux-image-generic-64k         5.15.0.86.83   linux-image-generic-lpae        5.15.0.86.83   linux-image-gke                 5.15.0.1044.43   linux-image-gke-5.15            5.15.0.1044.43   linux-image-gkeop               5.15.0.1030.29   linux-image-gkeop-5.15          5.15.0.1030.29   linux-image-ibm                 5.15.0.1040.36   linux-image-kvm                 5.15.0.1044.40   linux-image-lowlatency          5.15.0.86.88   linux-image-lowlatency-64k      5.15.0.86.88   linux-image-nvidia              5.15.0.1037.37   linux-image-nvidia-lowlatency   5.15.0.1037.37   linux-image-oracle              5.15.0.1045.40   linux-image-oracle-lts-22.04    5.15.0.1045.40   linux-image-virtual             5.15.0.86.83Ubuntu 20.04 LTS:   linux-image-5.15.0-1030-gkeop   5.15.0-1030.35~20.04.1   linux-image-5.15.0-1040-ibm     5.15.0-1040.43~20.04.1   linux-image-5.15.0-1044-gcp     5.15.0-1044.52~20.04.1   linux-image-5.15.0-1047-aws     5.15.0-1047.52~20.04.1   linux-image-5.15.0-1049-azure   5.15.0-1049.56~20.04.1   linux-image-5.15.0-1049-azure-fde  5.15.0-1049.56~20.04.1.1   linux-image-5.15.0-86-lowlatency  5.15.0-86.95~20.04.1   linux-image-5.15.0-86-lowlatency-64k  5.15.0-86.95~20.04.1   linux-image-aws                 5.15.0.1047.52~20.04.35   linux-image-azure               5.15.0.1049.56~20.04.38   linux-image-azure-cvm           5.15.0.1049.56~20.04.38   linux-image-azure-fde           5.15.0.1049.56~20.04.1.27   linux-image-gcp                 5.15.0.1044.52~20.04.1   linux-image-gkeop-5.15          5.15.0.1030.35~20.04.26   linux-image-ibm                 5.15.0.1040.43~20.04.12   linux-image-lowlatency-64k-hwe-20.04  5.15.0.86.95~20.04.41   linux-image-lowlatency-hwe-20.04  5.15.0.86.95~20.04.41After a standard system update you need to reboot your computer to makeall the necessary changes.ATTENTION: Due to an unavoidable ABI change the kernel updates havebeen given a new version number, which requires you to recompile andreinstall 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 performthis as well.References:   https://ubuntu.com/security/notices/USN-6416-1   CVE-2023-1206, CVE-2023-20569, CVE-2023-2156, CVE-2023-3338,   CVE-2023-38432, CVE-2023-3863, CVE-2023-3865, CVE-2023-3866,   CVE-2023-4132, CVE-2023-4155, CVE-2023-4194, CVE-2023-4273,   CVE-2023-44466Package Information:   https://launchpad.net/ubuntu/+source/linux/5.15.0-86.96   https://launchpad.net/ubuntu/+source/linux-aws/5.15.0-1047.52   https://launchpad.net/ubuntu/+source/linux-azure/5.15.0-1049.56   https://launchpad.net/ubuntu/+source/linux-azure-fde/5.15.0-1049.56.1   https://launchpad.net/ubuntu/+source/linux-gcp/5.15.0-1044.52   https://launchpad.net/ubuntu/+source/linux-gke/5.15.0-1044.49   https://launchpad.net/ubuntu/+source/linux-gkeop/5.15.0-1030.35   https://launchpad.net/ubuntu/+source/linux-ibm/5.15.0-1040.43   https://launchpad.net/ubuntu/+source/linux-kvm/5.15.0-1044.49   https://launchpad.net/ubuntu/+source/linux-lowlatency/5.15.0-86.95   https://launchpad.net/ubuntu/+source/linux-nvidia/5.15.0-1037.37   https://launchpad.net/ubuntu/+source/linux-oracle/5.15.0-1045.51   https://launchpad.net/ubuntu/+source/linux-aws-5.15/5.15.0-1047.52~20.04.1   https://launchpad.net/ubuntu/+source/linux-azure-5.15/5.15.0-1049.56~20.04.1 https://launchpad.net/ubuntu/+source/linux-azure-fde-5.15/5.15.0-1049.56~20.04.1.1   https://launchpad.net/ubuntu/+source/linux-gcp-5.15/5.15.0-1044.52~20.04.1   https://launchpad.net/ubuntu/+source/linux-gkeop-5.15/5.15.0-1030.35~20.04.1   https://launchpad.net/ubuntu/+source/linux-ibm-5.15/5.15.0-1040.43~20.04.1 https://launchpad.net/ubuntu/+source/linux-lowlatency-hwe-5.15/5.15.0-86.95~20.04.1

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Ubuntu Security Notice USN-6343-1

Ubuntu Security Notice 6343-1 - It was discovered that the IPv6 implementation in the Linux kernel contained a high rate of hash collisions in connection lookup table. A remote attacker could use this to cause a denial of service. Ross Lagerwall discovered that the Xen netback backend driver in the Linux kernel did not properly handle certain unusual packets from a paravirtualized network frontend, leading to a buffer overflow. An attacker in a guest VM could use this to cause a denial of service or possibly execute arbitrary code.

Ubuntu Security Notice USN-6343-1

Ubuntu Security Notice 6343-1 - It was discovered that the IPv6 implementation in the Linux kernel contained a high rate of hash collisions in connection lookup table. A remote attacker could use this to cause a denial of service. Ross Lagerwall discovered that the Xen netback backend driver in the Linux kernel did not properly handle certain unusual packets from a paravirtualized network frontend, leading to a buffer overflow. An attacker in a guest VM could use this to cause a denial of service or possibly execute arbitrary code.

Ubuntu Security Notice USN-6343-1

Ubuntu Security Notice 6343-1 - It was discovered that the IPv6 implementation in the Linux kernel contained a high rate of hash collisions in connection lookup table. A remote attacker could use this to cause a denial of service. Ross Lagerwall discovered that the Xen netback backend driver in the Linux kernel did not properly handle certain unusual packets from a paravirtualized network frontend, leading to a buffer overflow. An attacker in a guest VM could use this to cause a denial of service or possibly execute arbitrary code.

Ubuntu Security Notice USN-6343-1

Ubuntu Security Notice 6343-1 - It was discovered that the IPv6 implementation in the Linux kernel contained a high rate of hash collisions in connection lookup table. A remote attacker could use this to cause a denial of service. Ross Lagerwall discovered that the Xen netback backend driver in the Linux kernel did not properly handle certain unusual packets from a paravirtualized network frontend, leading to a buffer overflow. An attacker in a guest VM could use this to cause a denial of service or possibly execute arbitrary code.

Ubuntu Security Notice USN-6319-1

Ubuntu Security Notice 6319-1 - Daniël Trujillo, Johannes Wikner, and Kaveh Razavi discovered that some AMD processors utilising speculative execution and branch prediction may allow unauthorized memory reads via a speculative side-channel attack. A local attacker could use this to expose sensitive information, including kernel memory.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5480-1

Debian Linux Security Advisory 5480-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Ubuntu Security Notice USN-6285-1

Ubuntu Security Notice 6285-1 - It was discovered that the NTFS file system implementation in the Linux kernel did not properly check buffer indexes in certain situations, leading to an out-of-bounds read vulnerability. A local attacker could possibly use this to expose sensitive information. Stonejiajia, Shir Tamari and Sagi Tzadik discovered that the OverlayFS implementation in the Ubuntu Linux kernel did not properly perform permission checks in certain situations. A local attacker could possibly use this to gain elevated privileges.

Ubuntu Security Notice USN-6285-1

Ubuntu Security Notice 6285-1 - It was discovered that the NTFS file system implementation in the Linux kernel did not properly check buffer indexes in certain situations, leading to an out-of-bounds read vulnerability. A local attacker could possibly use this to expose sensitive information. Stonejiajia, Shir Tamari and Sagi Tzadik discovered that the OverlayFS implementation in the Ubuntu Linux kernel did not properly perform permission checks in certain situations. A local attacker could possibly use this to gain elevated privileges.

Debian Security Advisory 5475-1

Debian Linux Security Advisory 5475-1 - Daniel Moghimi discovered Gather Data Sampling (GDS), a hardware vulnerability for Intel CPUs which allows unprivileged speculative access to data which was previously stored in vector registers. This mitigation requires updated CPU microcode provided in the intel-microcode package. Daniel Trujillo, Johannes Wikner and Kaveh Razavi discovered INCEPTION, also known as Speculative Return Stack Overflow (SRSO), a transient execution attack that leaks arbitrary data on all AMD Zen CPUs. An attacker can mis-train the CPU BTB to predict non-architectural CALL instructions in kernel space and use this to control the speculative target of a subsequent kernel RET, potentially leading to information disclosure via a speculative side-channel.

Collide+Power, Downfall, and Inception: New Side-Channel Attacks Affecting Modern CPUs

Cybersecurity researchers have disclosed details of a trio of side-channel attacks that could be exploited to leak sensitive data from modern CPUs. Called Collide+Power (CVE-2023-20583), Downfall (CVE-2022-40982), and Inception (CVE-2023-20569), the novel methods follow the disclosure of another newly discovered security vulnerability affecting AMD's Zen 2 architecture-based processors known as

CVE-2023-4273: cve-details

A flaw was found in the exFAT driver of the Linux kernel. The vulnerability exists in the implementation of the file name reconstruction function, which is responsible for reading file name entries from a directory index and merging file name parts belonging to one file into a single long file name. Since the file name characters are copied into a stack variable, a local privileged attacker could use this flaw to overflow the kernel stack.

CVE-2023-33953: Security Bulletins

gRPC contains a vulnerability that allows hpack table accounting errors could lead to unwanted disconnects between clients and servers in exceptional cases/ Three vectors were found that allow the following DOS attacks: - Unbounded memory buffering in the HPACK parser - Unbounded CPU consumption in the HPACK parser The unbounded CPU consumption is down to a copy that occurred per-input-block in the parser, and because that could be unbounded due to the memory copy bug we end up with an O(n^2) parsing loop, with n selected by the client. The unbounded memory buffering bugs: - The header size limit check was behind the string reading code, so we needed to first buffer up to a 4 gigabyte string before rejecting it as longer than 8 or 16kb. - HPACK varints have an encoding quirk whereby an infinite number of 0’s can be added at the start of an integer. gRPC’s hpack parser needed to read all of them before concluding a parse. - gRPC’s metadata overflow check was performed per frame, so ...

Microsoft Releases Patches for 74 New Vulnerabilities in August Update

Microsoft has patched a total of 74 flaws in its software as part of the company's Patch Tuesday updates for August 2023, down from the voluminous 132 vulnerabilities the company fixed last month. This comprises six Critical and 67 Important security vulnerabilities. Also released by the tech giant are two defense-in-depth updates for Microsoft Office (ADV230003) and the Memory Integrity System

Novel ‘Inception’ Attack Exposes Sensitive Data in CPUs

By Habiba Rashid Dreams of Science Fiction Realized: ETH Researchers Demonstrate "Inception" Attack on CPUs. This is a post from HackRead.com Read the original post: Novel ‘Inception’ Attack Exposes Sensitive Data in CPUs

CVE-2023-4194: [PATCH 0/2] tun/tap: set sk_uid from current_fsuid()

A flaw was found in the Linux kernel's TUN/TAP functionality. This issue could allow a local user to bypass network filters and gain unauthorized access to some resources. The original patches fixing CVE-2023-1076 are incorrect or incomplete. The problem is that the following upstream commits - a096ccca6e50 ("tun: tun_chr_open(): correctly initialize socket uid"), - 66b2c338adce ("tap: tap_open(): correctly initialize socket uid"), pass "inode->i_uid" to sock_init_data_uid() as the last parameter and that turns out to not be accurate.

CVE-2023-4132: cve-details

A use-after-free vulnerability was found in the siano smsusb module in the Linux kernel. The bug occurs during device initialization when the siano device is plugged in. This flaw allows a local user to crash the system, causing a denial of service condition.

CVE-2023-3863: cve-details

A use-after-free flaw was found in nfc_llcp_find_local in net/nfc/llcp_core.c in NFC in the Linux kernel. This flaw allows a local user with special privileges to impact a kernel information leak issue.

CVE-2023-38432

An issue was discovered in the Linux kernel before 6.3.10. fs/smb/server/smb2misc.c in ksmbd does not validate the relationship between the command payload size and the RFC1002 length specification, leading to an out-of-bounds read.

Debian Security Advisory 5453-1

Debian Linux Security Advisory 5453-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

Debian Security Advisory 5448-1

Debian Linux Security Advisory 5448-1 - Several vulnerabilities have been discovered in the Linux kernel that may lead to a privilege escalation, denial of service or information leaks.

CVE-2023-1206: Invalid Bug ID

A hash collision flaw was found in the IPv6 connection lookup table in the Linux kernel’s IPv6 functionality when a user makes a new kind of SYN flood attack. A user located in the local network or with a high bandwidth connection can increase the CPU usage of the server that accepts IPV6 connections up to 95%.

CVE-2023-3338: Linux Kernel NULL Pointer Dereference in DECnet

A flaw null pointer dereference in the Linux kernel DECnet networking protocol was found. A remote user could use this flaw to crash the system.

CVE-2023-2156: ZDI-23-547

A flaw was found in the networking subsystem of the Linux kernel within the handling of the RPL protocol. This issue results from the lack of proper handling of user-supplied data, which can lead to an assertion failure. This may allow an unauthenticated remote attacker to create a denial of service condition on the system.

Packet Storm: Latest News

CUPS IPP Attributes LAN Remote Code Execution