var-201911-1413
Vulnerability from variot
A memory leak in the adis_update_scan_mode() function in drivers/iio/imu/adis_buffer.c in the Linux kernel before 5.3.9 allows attackers to cause a denial of service (memory consumption), aka CID-ab612b1daf41. Linux Kernel Contains a resource exhaustion vulnerability. Vendors have confirmed this vulnerability CID-ab612b1daf41 It is released as.Service operation interruption (DoS) There is a possibility of being put into a state. ========================================================================= Ubuntu Security Notice USN-4226-1 January 07, 2020
linux, linux-aws, linux-aws-5.0, linux-azure, linux-gcp, linux-gke-5.0, linux-kvm, linux-oem-osp1, linux-oracle, linux-oracle-5.0, linux-raspi2 vulnerabilities ========================================================================= A security issue affects these releases of Ubuntu and its derivatives:
- Ubuntu 19.04
- Ubuntu 18.04 LTS
Summary:
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-gcp: Linux kernel for Google Cloud Platform (GCP) systems - linux-kvm: Linux kernel for cloud environments - linux-oracle: Linux kernel for Oracle Cloud systems - linux-raspi2: Linux kernel for Raspberry Pi 2 - linux-aws-5.0: Linux kernel for Amazon Web Services (AWS) systems - linux-gke-5.0: Linux kernel for Google Container Engine (GKE) systems - linux-oem-osp1: Linux kernel for OEM processors - linux-oracle-5.0: Linux kernel for Oracle Cloud systems
Details:
Michael Hanselmann discovered that the CIFS implementation in the Linux kernel did not sanitize paths returned by an SMB server. An attacker controlling an SMB server could use this to overwrite arbitrary files. (CVE-2019-10220)
It was discovered that a heap-based buffer overflow existed in the Marvell WiFi-Ex Driver for the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-14895, CVE-2019-14901)
It was discovered that a heap-based buffer overflow existed in the Marvell Libertas WLAN Driver for the Linux kernel. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-14896, CVE-2019-14897)
It was discovered that the Fujitsu ES network device driver for the Linux kernel did not properly check for errors in some situations, leading to a NULL pointer dereference. A local attacker could use this to cause a denial of service. (CVE-2019-16231)
It was discovered that the QLogic Fibre Channel driver in the Linux kernel did not properly check for error, leading to a NULL pointer dereference. A local attacker could possibly use this to cause a denial of service (system crash). (CVE-2019-16233)
Nicolas Waisman discovered that the WiFi driver stack in the Linux kernel did not properly validate SSID lengths. A physically proximate attacker could use this to cause a denial of service (system crash). (CVE-2019-17133)
Anthony Steinhauser discovered that the Linux kernel did not properly perform Spectre_RSB mitigations to all processors for PowerPC architecture systems in some situations. A local attacker could use this to expose sensitive information. (CVE-2019-18660)
It was discovered that the Mellanox Technologies Innova driver in the Linux kernel did not properly deallocate memory in certain failure conditions. (CVE-2019-19045)
It was discovered that the VirtualBox guest driver implementation in the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19048)
It was discovered that Geschwister Schneider USB CAN interface driver in the Linux kernel did not properly deallocate memory in certain failure conditions. (CVE-2019-19052)
It was discovered that the netlink-based 802.11 configuration interface in the Linux kernel did not deallocate memory in certain error conditions. (CVE-2019-19055)
It was discovered that the ADIS16400 IIO IMU Driver for the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19060)
It was discovered that the Intel OPA Gen1 Infiniband Driver for the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19065)
It was discovered that the AMD Audio CoProcessor Driver for the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19067)
It was discovered that the event tracing subsystem of the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19072)
It was discovered that the Cascoda CA8210 SPI 802.15.4 wireless controller driver for the Linux kernel did not properly deallocate memory in certain error conditions. (CVE-2019-19075)
It was discovered that the AMD Display Engine Driver in the Linux kernel did not properly deallocate memory in certain error conditions. A physically proximate attacker could possibly use this to cause a denial of service (system crash) or execute arbitrary code. (CVE-2019-19524)
It was discovered that the NXP PN533 NFC USB driver in the Linux kernel did not properly free resources after a late probe error, leading to a use- after-free vulnerability. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-19526)
It was discovered that the Microchip CAN BUS Analyzer driver in the Linux kernel contained a use-after-free vulnerability on device disconnect. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-19529)
It was discovered that multiple USB HID device drivers in the Linux kernel did not properly validate device metadata on attachment, leading to out-of- bounds writes. A physically proximate attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-19532)
It was discovered that the PEAK-System Technik USB driver in the Linux kernel did not properly sanitize memory before sending it to the device. A physically proximate attacker could use this to expose sensitive information (kernel memory). (CVE-2019-19534)
It was discovered that in some situations the fair scheduler in the Linux kernel did not permit a process to use its full quota time slice. A local attacker could use this to cause a denial of service. (CVE-2019-19922)
It was discovered that the binder IPC implementation in the Linux kernel did not properly perform bounds checking in some situations, leading to an out-of-bounds write. A local attacker could use this to cause a denial of service (system crash) or possibly execute arbitrary code. (CVE-2019-2214)
Nicolas Waisman discovered that the Chelsio T4/T5 RDMA Driver for the Linux kernel performed DMA from a kernel stack. A local attacker could use this to cause a denial of service (system crash). (CVE-2019-17075)
It was discovered that the DesignWare USB3 controller driver in the Linux kernel did not properly deallocate memory in some error conditions. (CVE-2019-18813)
Update instructions:
The problem can be corrected by updating your system to the following package versions:
Ubuntu 19.04: linux-image-5.0.0-1009-oracle 5.0.0-1009.14 linux-image-5.0.0-1023-aws 5.0.0-1023.26 linux-image-5.0.0-1024-kvm 5.0.0-1024.26 linux-image-5.0.0-1024-raspi2 5.0.0-1024.25 linux-image-5.0.0-1028-azure 5.0.0-1028.30 linux-image-5.0.0-1028-gcp 5.0.0-1028.29 linux-image-5.0.0-38-generic 5.0.0-38.41 linux-image-5.0.0-38-generic-lpae 5.0.0-38.41 linux-image-5.0.0-38-lowlatency 5.0.0-38.41 linux-image-aws 5.0.0.1023.25 linux-image-azure 5.0.0.1028.28 linux-image-gcp 5.0.0.1028.53 linux-image-generic 5.0.0.38.40 linux-image-generic-lpae 5.0.0.38.40 linux-image-gke 5.0.0.1028.53 linux-image-kvm 5.0.0.1024.25 linux-image-lowlatency 5.0.0.38.40 linux-image-oracle 5.0.0.1009.35 linux-image-raspi2 5.0.0.1024.22 linux-image-virtual 5.0.0.38.40
Ubuntu 18.04 LTS: linux-image-5.0.0-1009-oracle 5.0.0-1009.14~18.04.1 linux-image-5.0.0-1023-aws 5.0.0-1023.26~18.04.1 linux-image-5.0.0-1027-gke 5.0.0-1027.28~18.04.1 linux-image-5.0.0-1028-azure 5.0.0-1028.30~18.04.1 linux-image-5.0.0-1033-oem-osp1 5.0.0-1033.38 linux-image-aws-edge 5.0.0.1023.37 linux-image-azure 5.0.0.1028.39 linux-image-gke-5.0 5.0.0.1027.16 linux-image-oem-osp1 5.0.0.1033.37 linux-image-oracle-edge 5.0.0.1009.8
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://usn.ubuntu.com/4226-1 CVE-2019-10220, CVE-2019-14895, CVE-2019-14896, CVE-2019-14897, CVE-2019-14901, CVE-2019-16231, CVE-2019-16233, CVE-2019-17075, CVE-2019-17133, CVE-2019-18660, CVE-2019-18813, CVE-2019-19045, CVE-2019-19048, CVE-2019-19052, CVE-2019-19055, CVE-2019-19060, CVE-2019-19065, CVE-2019-19067, CVE-2019-19072, CVE-2019-19075, CVE-2019-19083, CVE-2019-19524, CVE-2019-19526, CVE-2019-19529, CVE-2019-19532, CVE-2019-19534, CVE-2019-19922, CVE-2019-2214
Package Information: https://launchpad.net/ubuntu/+source/linux/5.0.0-38.41 https://launchpad.net/ubuntu/+source/linux-aws/5.0.0-1023.26 https://launchpad.net/ubuntu/+source/linux-azure/5.0.0-1028.30 https://launchpad.net/ubuntu/+source/linux-gcp/5.0.0-1028.29 https://launchpad.net/ubuntu/+source/linux-kvm/5.0.0-1024.26 https://launchpad.net/ubuntu/+source/linux-oracle/5.0.0-1009.14 https://launchpad.net/ubuntu/+source/linux-raspi2/5.0.0-1024.25 https://launchpad.net/ubuntu/+source/linux-aws-5.0/5.0.0-1023.26~18.04.1 https://launchpad.net/ubuntu/+source/linux-azure/5.0.0-1028.30~18.04.1 https://launchpad.net/ubuntu/+source/linux-gke-5.0/5.0.0-1027.28~18.04.1 https://launchpad.net/ubuntu/+source/linux-oem-osp1/5.0.0-1033.38 https://launchpad.net/ubuntu/+source/linux-oracle-5.0/5.0.0-1009.14~18.04.1
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Linux Kernel Contains a resource exhaustion vulnerability. Vendors have confirmed this vulnerability CID-ab612b1daf41 It is released as.Service operation interruption (DoS) There is a possibility of being put into a state. =========================================================================\nUbuntu Security Notice USN-4226-1\nJanuary 07, 2020\n\nlinux, linux-aws, linux-aws-5.0, linux-azure, linux-gcp, linux-gke-5.0,\nlinux-kvm, linux-oem-osp1, linux-oracle, linux-oracle-5.0, linux-raspi2\nvulnerabilities\n=========================================================================\nA security issue affects these releases of Ubuntu and its derivatives:\n\n- Ubuntu 19.04\n- Ubuntu 18.04 LTS\n\nSummary:\n\nSeveral security issues were fixed in the Linux kernel. \n\nSoftware Description:\n- linux: Linux kernel\n- linux-aws: Linux kernel for Amazon Web Services (AWS) systems\n- linux-azure: Linux kernel for Microsoft Azure Cloud systems\n- linux-gcp: Linux kernel for Google Cloud Platform (GCP) systems\n- linux-kvm: Linux kernel for cloud environments\n- linux-oracle: Linux kernel for Oracle Cloud systems\n- linux-raspi2: Linux kernel for Raspberry Pi 2\n- linux-aws-5.0: Linux kernel for Amazon Web Services (AWS) systems\n- linux-gke-5.0: Linux kernel for Google Container Engine (GKE) systems\n- linux-oem-osp1: Linux kernel for OEM processors\n- linux-oracle-5.0: Linux kernel for Oracle Cloud systems\n\nDetails:\n\nMichael Hanselmann discovered that the CIFS implementation in the Linux\nkernel did not sanitize paths returned by an SMB server. An attacker\ncontrolling an SMB server could use this to overwrite arbitrary files. \n(CVE-2019-10220)\n\nIt was discovered that a heap-based buffer overflow existed in the Marvell\nWiFi-Ex Driver for the Linux kernel. A physically proximate attacker could\nuse this to cause a denial of service (system crash) or possibly execute\narbitrary code. (CVE-2019-14895, CVE-2019-14901)\n\nIt was discovered that a heap-based buffer overflow existed in the Marvell\nLibertas WLAN Driver for the Linux kernel. A physically proximate attacker\ncould use this to cause a denial of service (system crash) or possibly\nexecute arbitrary code. (CVE-2019-14896, CVE-2019-14897)\n\nIt was discovered that the Fujitsu ES network device driver for the Linux\nkernel did not properly check for errors in some situations, leading to a\nNULL pointer dereference. A local attacker could use this to cause a denial\nof service. (CVE-2019-16231)\n\nIt was discovered that the QLogic Fibre Channel driver in the Linux kernel\ndid not properly check for error, leading to a NULL pointer dereference. A\nlocal attacker could possibly use this to cause a denial of service (system\ncrash). (CVE-2019-16233)\n\nNicolas Waisman discovered that the WiFi driver stack in the Linux kernel\ndid not properly validate SSID lengths. A physically proximate attacker\ncould use this to cause a denial of service (system crash). \n(CVE-2019-17133)\n\nAnthony Steinhauser discovered that the Linux kernel did not properly\nperform Spectre_RSB mitigations to all processors for PowerPC architecture\nsystems in some situations. A local attacker could use this to expose\nsensitive information. (CVE-2019-18660)\n\nIt was discovered that the Mellanox Technologies Innova driver in the Linux\nkernel did not properly deallocate memory in certain failure conditions. (CVE-2019-19045)\n\nIt was discovered that the VirtualBox guest driver implementation in the\nLinux kernel did not properly deallocate memory in certain error\nconditions. (CVE-2019-19048)\n\nIt was discovered that Geschwister Schneider USB CAN interface driver in\nthe Linux kernel did not properly deallocate memory in certain failure\nconditions. (CVE-2019-19052)\n\nIt was discovered that the netlink-based 802.11 configuration interface in\nthe Linux kernel did not deallocate memory in certain error conditions. (CVE-2019-19055)\n\nIt was discovered that the ADIS16400 IIO IMU Driver for the Linux kernel\ndid not properly deallocate memory in certain error conditions. \n(CVE-2019-19060)\n\nIt was discovered that the Intel OPA Gen1 Infiniband Driver for the Linux\nkernel did not properly deallocate memory in certain error conditions. (CVE-2019-19065)\n\nIt was discovered that the AMD Audio CoProcessor Driver for the Linux\nkernel did not properly deallocate memory in certain error conditions. (CVE-2019-19067)\n\nIt was discovered that the event tracing subsystem of the Linux kernel did\nnot properly deallocate memory in certain error conditions. (CVE-2019-19072)\n\nIt was discovered that the Cascoda CA8210 SPI 802.15.4 wireless controller\ndriver for the Linux kernel did not properly deallocate memory in certain\nerror conditions. (CVE-2019-19075)\n\nIt was discovered that the AMD Display Engine Driver in the Linux kernel\ndid not properly deallocate memory in certain error conditions. A\nphysically proximate attacker could possibly use this to cause a denial of\nservice (system crash) or execute arbitrary code. (CVE-2019-19524)\n\nIt was discovered that the NXP PN533 NFC USB driver in the Linux kernel did\nnot properly free resources after a late probe error, leading to a use-\nafter-free vulnerability. A physically proximate attacker could use this to\ncause a denial of service (system crash) or possibly execute arbitrary\ncode. (CVE-2019-19526)\n\nIt was discovered that the Microchip CAN BUS Analyzer driver in the Linux\nkernel contained a use-after-free vulnerability on device disconnect. A\nphysically proximate attacker could use this to cause a denial of service\n(system crash) or possibly execute arbitrary code. (CVE-2019-19529)\n\nIt was discovered that multiple USB HID device drivers in the Linux kernel\ndid not properly validate device metadata on attachment, leading to out-of-\nbounds writes. A physically proximate attacker could use this to cause a\ndenial of service (system crash) or possibly execute arbitrary code. \n(CVE-2019-19532)\n\nIt was discovered that the PEAK-System Technik USB driver in the Linux\nkernel did not properly sanitize memory before sending it to the device. A\nphysically proximate attacker could use this to expose sensitive\ninformation (kernel memory). (CVE-2019-19534)\n\nIt was discovered that in some situations the fair scheduler in the Linux\nkernel did not permit a process to use its full quota time slice. A local\nattacker could use this to cause a denial of service. (CVE-2019-19922)\n\nIt was discovered that the binder IPC implementation in the Linux kernel\ndid not properly perform bounds checking in some situations, leading to an\nout-of-bounds write. A local attacker could use this to cause a denial of\nservice (system crash) or possibly execute arbitrary code. (CVE-2019-2214)\n\nNicolas Waisman discovered that the Chelsio T4/T5 RDMA Driver for the Linux\nkernel performed DMA from a kernel stack. A local attacker could use this\nto cause a denial of service (system crash). (CVE-2019-17075)\n\nIt was discovered that the DesignWare USB3 controller driver in the Linux\nkernel did not properly deallocate memory in some error conditions. (CVE-2019-18813)\n\nUpdate instructions:\n\nThe problem can be corrected by updating your system to the following\npackage versions:\n\nUbuntu 19.04:\n linux-image-5.0.0-1009-oracle 5.0.0-1009.14\n linux-image-5.0.0-1023-aws 5.0.0-1023.26\n linux-image-5.0.0-1024-kvm 5.0.0-1024.26\n linux-image-5.0.0-1024-raspi2 5.0.0-1024.25\n linux-image-5.0.0-1028-azure 5.0.0-1028.30\n linux-image-5.0.0-1028-gcp 5.0.0-1028.29\n linux-image-5.0.0-38-generic 5.0.0-38.41\n linux-image-5.0.0-38-generic-lpae 5.0.0-38.41\n linux-image-5.0.0-38-lowlatency 5.0.0-38.41\n linux-image-aws 5.0.0.1023.25\n linux-image-azure 5.0.0.1028.28\n linux-image-gcp 5.0.0.1028.53\n linux-image-generic 5.0.0.38.40\n linux-image-generic-lpae 5.0.0.38.40\n linux-image-gke 5.0.0.1028.53\n linux-image-kvm 5.0.0.1024.25\n linux-image-lowlatency 5.0.0.38.40\n linux-image-oracle 5.0.0.1009.35\n linux-image-raspi2 5.0.0.1024.22\n linux-image-virtual 5.0.0.38.40\n\nUbuntu 18.04 LTS:\n linux-image-5.0.0-1009-oracle 5.0.0-1009.14~18.04.1\n linux-image-5.0.0-1023-aws 5.0.0-1023.26~18.04.1\n linux-image-5.0.0-1027-gke 5.0.0-1027.28~18.04.1\n linux-image-5.0.0-1028-azure 5.0.0-1028.30~18.04.1\n linux-image-5.0.0-1033-oem-osp1 5.0.0-1033.38\n linux-image-aws-edge 5.0.0.1023.37\n linux-image-azure 5.0.0.1028.39\n linux-image-gke-5.0 5.0.0.1027.16\n linux-image-oem-osp1 5.0.0.1033.37\n linux-image-oracle-edge 5.0.0.1009.8\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://usn.ubuntu.com/4226-1\n CVE-2019-10220, CVE-2019-14895, CVE-2019-14896, CVE-2019-14897,\n CVE-2019-14901, CVE-2019-16231, CVE-2019-16233, CVE-2019-17075,\n CVE-2019-17133, CVE-2019-18660, CVE-2019-18813, CVE-2019-19045,\n CVE-2019-19048, CVE-2019-19052, CVE-2019-19055, CVE-2019-19060,\n CVE-2019-19065, CVE-2019-19067, CVE-2019-19072, CVE-2019-19075,\n CVE-2019-19083, CVE-2019-19524, CVE-2019-19526, CVE-2019-19529,\n CVE-2019-19532, CVE-2019-19534, CVE-2019-19922, CVE-2019-2214\n\nPackage Information:\n https://launchpad.net/ubuntu/+source/linux/5.0.0-38.41\n https://launchpad.net/ubuntu/+source/linux-aws/5.0.0-1023.26\n https://launchpad.net/ubuntu/+source/linux-azure/5.0.0-1028.30\n https://launchpad.net/ubuntu/+source/linux-gcp/5.0.0-1028.29\n https://launchpad.net/ubuntu/+source/linux-kvm/5.0.0-1024.26\n https://launchpad.net/ubuntu/+source/linux-oracle/5.0.0-1009.14\n https://launchpad.net/ubuntu/+source/linux-raspi2/5.0.0-1024.25\n 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- 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.