CVE-2017-0750
published 2017-08-09CVE-2017-0750: A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
PriorityP335high7.8CVSS 3.0
AVLACLPRNUIRSUCHIHAH
EPSS
0.96%
57.7th percentile
A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
Affected
6 ranges
| Vendor | Product | Version range | Fixed in |
|---|---|---|---|
| debian | linux | — | — |
| android | <= 7.1.2 | — | |
| android | — | — | |
| google_inc | android | — | — |
| linux | linux_kernel | >= 0 < 3.13.0-142.191 | 3.13.0-142.191 |
| linux | linux_kernel | >= 0 < 4.4.0-79.100 | 4.4.0-79.100 |
CVSS provenance
nvdv3.07.8HIGHCVSS:3.0/AV:L/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H
nvdv2.06.8MEDIUMAV:N/AC:M/Au:N/C:P/I:P/A:P
osv7.8HIGH
vendor_debian7.8LOW
vendor_redhat7.8HIGH
vendor_ubuntu7.8HIGH
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Ubuntu
Linux kernel vulnerabilities
vendor_ubuntu·2018-02-23·CVSS 7.8
CVE-2017-0750 [HIGH] Linux kernel vulnerabilities
Title: Linux kernel vulnerabilities
Summary: Several security issues were fixed in the Linux kernel.
It was discovered that an out-of-bounds write vulnerability existed in the
Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could
construct a malicious file system that, when mounted, could cause a denial
of service (system crash) or possibly execute arbitrary code.
(CVE-2017-0750)
It was discovered that a race condition leading to a use-after-free
vulnerability existed in the ALSA PCM subsystem of the Linux kernel. A
local attacker could use this to cause a denial of service (system crash)
or possibly execute arbitrary code. (CVE-2017-0861)
It was discovered that the KVM implementation in the Linux kernel allowed
passthrough of the diagnostic I/O port 0x80. An attacke
Ubuntu
Linux kernel (Trusty HWE) vulnerabilities
vendor_ubuntu·2018-02-23·CVSS 7.8
CVE-2017-0750 [HIGH] Linux kernel (Trusty HWE) vulnerabilities
Title: Linux kernel (Trusty HWE) vulnerabilities
Summary: Several security issues were fixed in the Linux kernel.
USN-3583-1 fixed vulnerabilities in the Linux kernel for Ubuntu 14.04
LTS. This update provides the corresponding updates for the Linux
Hardware Enablement (HWE) kernel from Ubuntu 14.04 LTS for Ubuntu
12.04 ESM.
It was discovered that an out-of-bounds write vulnerability existed in the
Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could
construct a malicious file system that, when mounted, could cause a denial
of service (system crash) or possibly execute arbitrary code.
(CVE-2017-0750)
It was discovered that a race condition leading to a use-after-free
vulnerability existed in the ALSA PCM subsystem of the Linux kernel. A
local attacker could use this
Android
CVE-2017-0750: File system
vendor_android·2017-08-01·CVSS 7.8
CVE-2017-0750 [HIGH] CVE-2017-0750: File system
Android Security Bulletin 2017-08-01
CVE: CVE-2017-0750
Severity: MEDIUM
Type: EoP
Component: File system
References: A-36817013*
Debian
CVE-2017-0750: linux - A elevation of privilege vulnerability in the Upstream Linux file system. Produc...
vendor_debian·2017·CVSS 7.8
CVE-2017-0750 [HIGH] CVE-2017-0750: linux - A elevation of privilege vulnerability in the Upstream Linux file system. Produc...
A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
Scope: local
bookworm: resolved
bullseye: resolved
forky: resolved
sid: resolved
trixie: resolved
Red Hat
kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
vendor_redhat·2015-12-14·CVSS 7.8
CVE-2017-0750 [HIGH] CWE-787 kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
It was discovered that an out-of-bounds write vulnerability existed in the Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could construct a malicious file system that, when mounted, could cause a denial of service (system crash) or possibly execute arbitrary code.
Package: kernel (Red Hat Enterprise Linux 5) - Not affected
Package: kernel (Red Hat Enterprise Linux 6) - Not affected
Package: kernel (Red Hat Enterprise Linux 7) - Not affected
Package: kernel-alt (Red Hat Enterprise Linux 7) - Not affected
Package: kernel-rt (Red Hat E
GHSA
GHSA-w6h8-g3pv-c86f: A elevation of privilege vulnerability in the Upstream Linux file system
ghsa_unreviewed·2022-05-13
CVE-2017-0750 [HIGH] CWE-787 GHSA-w6h8-g3pv-c86f: A elevation of privilege vulnerability in the Upstream Linux file system
A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
OSV
linux vulnerabilities
osv·2018-02-23·CVSS 7.8
CVE-2017-0750 [HIGH] linux vulnerabilities
linux vulnerabilities
It was discovered that an out-of-bounds write vulnerability existed in the
Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could
construct a malicious file system that, when mounted, could cause a denial
of service (system crash) or possibly execute arbitrary code.
(CVE-2017-0750)
It was discovered that a race condition leading to a use-after-free
vulnerability existed in the ALSA PCM subsystem of the Linux kernel. A
local attacker could use this to cause a denial of service (system crash)
or possibly execute arbitrary code. (CVE-2017-0861)
It was discovered that the KVM implementation in the Linux kernel allowed
passthrough of the diagnostic I/O port 0x80. An attacker in a guest VM
could use this to cause a denial of service (system crash) in th
OSV
CVE-2017-0750: A elevation of privilege vulnerability in the Upstream Linux file system
osv·2017-08-09·CVSS 7.8
CVE-2017-0750 [HIGH] CVE-2017-0750: A elevation of privilege vulnerability in the Upstream Linux file system
A elevation of privilege vulnerability in the Upstream Linux file system. Product: Android. Versions: Android kernel. Android ID: A-36817013.
No detection rules found.
No public exploits indexed.
Trendmicro
Vulnerability in F2FS Leads To Memory Corruption
blogs_trendmicro·2017-08-08·CVSS 7.8
CVE-2017-10663 [HIGH] Vulnerability in F2FS Leads To Memory Corruption
## Vulnerability in F2FS Leads To Memory Corruption
A malicious app could be used to trigger this vulnerability, which occurs when a malicious disk using the F2FS (Flash-Friendly File System) is mounted. The disk can either be an actual physical device or a virtual file image
By: Veo Zhang Aug 08, 2017 Read time: ( words)
Save to Folio
August’s Android Security Bulletin includes three file system vulnerabilities ( CVE-2017-10663 , CVE-2017-10662 , and CVE-2017-0750 ) that were discovered by Trend Micro researchers. These vulnerabilities could cause memory corruption on the affected devices, leading to code execution in the kernel context. This would allow for more data to be accessed and controlled by the malware. A malicious app could be used to trigger this vulnerability, which occur
Trendmicro
Vulnerability in F2FS Leads To Memory Corruption
blogs_trendmicro·2017-08-08·CVSS 7.8
CVE-2017-10663 [HIGH] Vulnerability in F2FS Leads To Memory Corruption
## Vulnerability in F2FS Leads To Memory Corruption
A malicious app could be used to trigger this vulnerability, which occurs when a malicious disk using the F2FS (Flash-Friendly File System) is mounted. The disk can either be an actual physical device or a virtual file image
By: Veo Zhang Aug 08, 2017 Read time: ( words)
Save to Folio
August’s Android Security Bulletin includes three file system vulnerabilities ( CVE-2017-10663 , CVE-2017-10662 , and CVE-2017-0750 ) that were discovered by Trend Micro researchers. These vulnerabilities could cause memory corruption on the affected devices, leading to code execution in the kernel context. This would allow for more data to be accessed and controlled by the malware. A malicious app could be used to trigger this vulnerability, which occur
Trendmicro
Vulnerability in F2FS Leads To Memory Corruption
blogs_trendmicro·2017-08-08·CVSS 7.8
CVE-2017-10663 [HIGH] Vulnerability in F2FS Leads To Memory Corruption
# Vulnerability in F2FS Leads To Memory Corruption
A malicious app could be used to trigger this vulnerability, which occurs when a malicious disk using the F2FS (Flash-Friendly File System) is mounted. The disk can either be an actual physical device or a virtual file image
By: Veo Zhang
2017/08/08
Read time: ( words)
Save to Folio
August’s Android Security Bulletin includes three file system vulnerabilities (CVE-2017-10663, CVE-2017-10662, and CVE-2017-0750) that were discovered by Trend Micro researchers. These vulnerabilities could cause memory corruption on the affected devices, leading to code execution in the kernel context. This would allow for more data to be accessed and controlled by the malware. A malicious app could be used to trigger this vulnerability, which occurs when
Trendmicro
Vulnerability in F2FS Leads To Memory Corruption
blogs_trendmicro·2017-08-08·CVSS 7.8
CVE-2017-10663 [HIGH] Vulnerability in F2FS Leads To Memory Corruption
## Vulnerability in F2FS Leads To Memory Corruption
A malicious app could be used to trigger this vulnerability, which occurs when a malicious disk using the F2FS (Flash-Friendly File System) is mounted. The disk can either be an actual physical device or a virtual file image
By: Veo Zhang 2017/08/08 Read time: ( words)
Save to Folio
August’s Android Security Bulletin includes three file system vulnerabilities ( CVE-2017-10663 , CVE-2017-10662 , and CVE-2017-0750 ) that were discovered by Trend Micro researchers. These vulnerabilities could cause memory corruption on the affected devices, leading to code execution in the kernel context. This would allow for more data to be accessed and controlled by the malware. A malicious app could be used to trigger this vulnerability, which occurs
Bugzilla
CVE-2017-0750 kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
bugzilla·2018-04-05·CVSS 7.8
CVE-2017-0750 [HIGH] CVE-2017-0750 kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
CVE-2017-0750 kernel: Out-of-bounds write in f2fs allows code execution when mounted malicious file system
It was discovered that an out-of-bounds write vulnerability existed in the Flash-Friendly File System (f2fs) in the Linux kernel. An attacker could construct a malicious file system that, when mounted, could cause a denial of service (system crash) or possibly execute arbitrary code.
An upstream fix:
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=9a59b62fd88196844cee5fff851bee2cfd7afb6e
Discussion:
External References:
https://blog.trendmicro.com/trendlabs-security-intelligence/vulnerability-f2fs-file-system-leads-memory-corruption-android-linux/
https://source.android.com/security/bulletin/2017-08-01#kernel-components
http://www.securityfocus.com/bid/100215https://bugzilla.novell.com/show_bug.cgi?id=1053160https://people.canonical.com/~ubuntu-security/cve/2017/CVE-2017-0750.htmlhttps://security-tracker.debian.org/tracker/CVE-2017-0750https://source.android.com/security/bulletin/2017-08-01https://usn.ubuntu.com/3583-1/https://usn.ubuntu.com/3583-2/http://www.securityfocus.com/bid/100215https://bugzilla.novell.com/show_bug.cgi?id=1053160https://people.canonical.com/~ubuntu-security/cve/2017/CVE-2017-0750.htmlhttps://security-tracker.debian.org/tracker/CVE-2017-0750https://source.android.com/security/bulletin/2017-08-01https://usn.ubuntu.com/3583-1/https://usn.ubuntu.com/3583-2/
2017-08-09
Published