Where
-Infinity
0
Severity
7.8
Input Validation
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H

Kernel panic (via skboverpanic) is encountered when sctp stack receive a malformed asconf chunks.

skboverpanic: text:ffffffffa01ea1c3 len:31056 put:30768 head:ffff88011bd81800 data:ffff88011bd81800 tail:0x7950 end:0x440 dev:<NULL> ------------[ cut here ]------------ kernel BUG at net/core/skbuff.c:129! [...] Call Trace: <IRQ> [<ffffffff8144fb1c>] skbput+0x5c/0x70 [<ffffffffa01ea1c3>] sctpaddtochunk+0x63/0xd0 [sctp] [<ffffffffa01eadaf>] sctpprocessasconf+0x1af/0x540 [sctp] [<ffffffff8152d025>] ? readunlockbh+0x15/0x20 [<ffffffffa01e0038>] sctpsfdoasconf+0x168/0x240 [sctp] ...

A remote attacker could use this flaw to crash the system.

Acknowledgements:

This issue was discovered by Liu Wei of Red Hat.

1 / 3
Source: Red Hat
First published (updated )
Severity
7.8
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H

Kernel panic is encountered when sctp stack receives duplicate asconf chunks.

Upstream commmit:

http://git.kernel.org/cgit/linux/kernel/git/torvalds/linux.git/commit/?id=b69040d8e39f20d5215a03502a8e8b4c6ab78395

1 / 3
Source: Red Hat
First published (updated )
Severity
5.5
CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H

arch/x86/kvm/vmx.c in the KVM subsystem in the Linux kernel before 3.17.2 on Intel processors does not ensure that the value in the CR4 control register remains the same after a VM entry, which allows host OS users to kill arbitrary processes or cause a denial of service (system disruption) by leveraging /dev/kvm access, as demonstrated by PRSETTSC prctl calls within a modified copy of QEMU.

1 / 3
Source: Launchpad
First published (updated )
Severity
5
Input Validation
AV:N/AC:L/Au:N/C:N/I:P/A:N

It was reported [1] that iptables can allow protocols that do not have a protocol handler kernel module loaded.

Given following iptables ruleset: -P FORWARD DROP -A FORWARD -m sctp --dport 9 -j ACCEPT -A FORWARD -p tcp --dport 80 -j ACCEPT -A FORWARD -p tcp -m conntrack -m state ESTABLISHED,RELATED -j ACCEPT

One would assume that this allows SCTP on port 9 and TCP on port 80. Unfortunately, if the SCTP conntrack module is not loaded, this allows all SCTP communication to pass through, i.e. -p sctp -j ACCEPT

[1]: http://www.spinics.net/lists/netfilter-devel/msg33430.html

1 / 3
Source: Red Hat
First published (updated )
Severity
5.5
CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H

Last updated 24 July 2024

1 / 3
Source: Ubuntu
First published (updated )
Severity
4.9
Null Pointer Dereference
CVSS:3.1/AV:P/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H

A local kernel crash on invalid USB device requiring the visor driver was reported. The treoattach() function of the [visor] driver, which is called during the driver initialization process, was dereferencing the bulk-in and interrupt-in urbs without first making sure they had been allocated by core. Due to an incomplete sanity check, the visor driver tries to dereference null-pointers, which results in crash.

Vulnerable code:

CentOS-Kernel linux-3.10.0-229.14.1.el7 (drivers/usb/serial/visor.c) ... 554 #define COPYPORT(dest, src) \ 555 do { \ 556 int i; \ 557 \ 558 for (i = 0; i < ARRAYSIZE(src->readurbs); ++i) { \ 559 dest->readurbs[i] = src->readurbs[i]; \ / Possible Nullpointer-Dereference / 560 dest->readurbs[i]->context = dest; \ 561 dest->bulkinbuffers[i] = src->bulkinbuffers[i]; \ 562 } \ 563 dest->readurb = src->readurb; \ 564 dest->bulkinendpointAddress = src->bulkinendpointAddress;\ 565 dest->bulkinbuffer = src->bulkinbuffer; \ 566 dest->bulkinsize = src->bulkinsize; \ 567 dest->interruptinurb = src->interruptinurb; \ 568 dest->interruptinurb->context = dest; \ 569 dest->interruptinendpointAddress = \ 570 src->interruptinendpointAddress;\ 571 dest->interruptinbuffer = src->interruptinbuffer; \ 572 } while (0); 573 574 swapport = kmalloc(sizeof(swapport), GFPKERNEL); 575 if (!swapport) 576 return -ENOMEM; 577 COPYPORT(swapport, serial->port[0]); / no sanity-check! / 578 COPYPORT(serial->port[0], serial->port[1]); / no sanity-check! / 579 COPYPORT(serial->port[1], swapport); / no sanity-check! / ...

Reproducer can be found in original bug report: https://bugzilla.redhat.com/showbug.cgi?id=1283374

An upstream patch: http://git.kernel.org/cgit/linux/kernel/git/torvalds/linux.git/commit/?id=cb3232138e37129e88240a98a1d2aba2187ff57c

Public via: http://seclists.org/bugtraq/2016/Mar/86

CVE-ID request and assignment: http://seclists.org/oss-sec/2016/q1/456 http://seclists.org/oss-sec/2016/q1/458

1 / 3
Source: Red Hat
First published (updated )
Severity
7.5
Infoleak
CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N

A vulnerability was found in the Linux kernel in function rdsincinfocopy of file net/rds/recv.c. The last field "flags" of object "minfo" is not initialized. Copying this object out may leak kernel stack data. Assign 0 to it to avoid leak.

Upstream bug:

https://patchwork.ozlabs.org/patch/629110/

Upstream fix:

https://git.kernel.org/cgit/linux/kernel/git/davem/net.git/commit/?id=4116def2337991b39919f3b448326e21c40e0dbb

1 / 3
Source: Red Hat
First published (updated )
Severity
6
Null Pointer Dereference
CVSS:3.1/AV:L/AC:L/PR:H/UI:N/S:C/C:N/I:N/A:H

ISSUE DESCRIPTION =================

Xen PCI backend driver does not perform proper sanity checks on the device's state.

Which in turn allows the generic MSI code (called by Xen PCI backend) to be called incorrectly leading to hitting BUG conditions or causing NULL pointer exceptions in the MSI code.

To exploit this the guest can craft specific sequence of XENPCIOP operations which will trigger this.

Furthermore the frontend can also craft an continous stream of XENPCIOPenablemsi which will trigger an continous stream of WARN() messages triggered by the MSI code leading to the logging in the initial domain to exhaust disk space.

Lastly there is also missing check to verify whether the device has memory decoding enabled set at the start of the day leading the initial domain "accesses to the respective MMIO or I/O port ranges would - - on PCI Express devices - [which can] lead to Unsupported Request responses. The treatment of such errors is platform specific." (from XSA-120). Note that if XSA-120 'addendum' patch has been applied this particular sub-issue is not exploitable.

IMPACT ======

Malicious guest administrators can cause denial of service. If driver domains are not in use, the impact is a host crash.

Only x86 systems are vulnerable. ARM systems are not vulnerable.

VULNERABLE SYSTEMS ==================

This bug affects systems using Linux as the driver domain, including non-disaggregated systems using Linux as dom0.

Linux versions v3.1 and onwards are vulnerable due to supporting PCI pass-through backend driver.

PV and HVM guests which have been granted access to physical PCI devices (PCI passthrough') can take advantage of this vulnerability.

Furthermore, the vulnerability is only applicable when the passed-through PCI devices are MSI-capable or MSI-X. (Most modern devices are).

MITIGATION ==========

Not using PCI passthrough for PV and HVM guests. Note that for HVM guests QEMU is used for PCI passthrough - however the toolstack sets up also the 'PV' PCI which the guest can utilize if it chooses to do so.

External References:

http://xenbits.xen.org/xsa/advisory-157.html

Acknowledgements:

Red Hat would like to thank the Xen project for reporting this issue.

1 / 3
First published (updated )
Severity
5
AV:N/AC:L/Au:N/C:N/I:N/A:P

GNOME NetworkManager allows remote attackers to cause a denial of service (IPv6 traffic disruption) via a crafted MTU value in an IPv6 Router Advertisement (RA) message, a different vulnerability than CVE-2015-8215.

1 / 3
Source: Launchpad
First published (updated )
Severity
10
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H

All existing releases of GraphicsMagick and ImageMagick support a file open syntax where if the first character of the file specification is a '|', then the remainder of the filename is passed to the shell for execution using the POSIX popen(3C) function. File opening is handled by an OpenBlob() function in the source file blob.c. Unlike the vulnerability described by CVE-2016-3714, this functionality is supported by the core file opening function rather than a delegates subsystem usually used to execute external programs.

References:

http://seclists.org/oss-sec/2016/q2/432

1 / 2
Source: Red Hat
First published (updated )
Severity
4.7
CVSS:3.1/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:L/A:H

Unspecified vulnerability in Oracle MySQL 5.5.48 and earlier, 5.6.29 and earlier, and 5.7.11 and earlier allows local users to affect integrity and availability via vectors related to Federated.

1 / 2
Source: MITRE
First published (updated )
Severity
5.5
CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H

Unspecified vulnerability in Oracle MySQL 5.5.46 and earlier allows local users to affect availability via vectors related to Optimizer.

1 / 2
Source: MITRE
First published (updated )
Severity
4.1
CVSS:3.1/AV:L/AC:H/PR:H/UI:N/S:U/C:N/I:N/A:H

Unspecified vulnerability in Oracle MySQL 5.6.28 and earlier and 5.7.10 and earlier and MariaDB 10.0.x before 10.0.24 and 10.1.x before 10.1.12 allows local users to affect availability via vectors related to InnoDB.

1 / 2
Source: MITRE
First published (updated )
Severity
6.5
AV:N/AC:L/Au:S/C:P/I:P/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier, and 5.6.19 and earlier, allows remote authenticated users to affect confidentiality, integrity, and availability via vectors related to CLIENT:MYSQLDUMP.

First published (updated )
Severity
4
AV:N/AC:L/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.6.19 and earlier allows remote authenticated users to affect availability via vectors related to SERVER:INNODB FULLTEXT SEARCH DML.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:N/I:P/A:N

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier, and 5.6.19 and earlier, allows remote attackers to affect integrity via vectors related to SERVER:SSL:yaSSL.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier, and 5.6.20 and earlier, allows remote authenticated users to affect confidentiality, integrity, and availability via vectors related to SERVER:DML.

First published (updated )
Severity
4
AV:N/AC:L/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier, and 5.6.19 and earlier, allows remote authenticated users to affect availability via vectors related to SERVER:MEMORY STORAGE ENGINE.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:P/I:N/A:N

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier, and 5.6.20 and earlier, allows remote attackers to affect confidentiality via vectors related to C API SSL CERTIFICATE HANDLING.

First published (updated )
Severity
4
AV:N/AC:L/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier and 5.6.20 and earlier allows remote authenticated users to affect availability via vectors related to SERVER:INNODB DML FOREIGN KEYS.

First published (updated )
Severity
4
AV:N/AC:L/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier, and 5.6.19 and earlier, allows remote authenticated users to affect availability via vectors related to SERVER:DML.

First published (updated )
Severity
4
AV:N/AC:L/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier allows remote authenticated users to affect availability via vectors related to SERVER:DDL.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier, and 5.6.20 and earlier, allows remote attackers to affect availability via vectors related to CLIENT:SSL:yaSSL, a different vulnerability than CVE-2014-6494.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier, and 5.6.19 and earlier, allows remote attackers to affect availability via vectors related to SERVER:SSL:yaSSL.

First published (updated )
Severity
6.5
AV:N/AC:L/Au:S/C:P/I:P/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier and 5.6.20 and earlier allows remote authenticated users to affect confidentiality, integrity, and availability via vectors related to SERVER:DML.

First published (updated )
Severity
4.3
AV:N/AC:M/Au:N/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier, and 5.6.20 and earlier, allows remote attackers to affect availability via vectors related to CLIENT:SSL:yaSSL, a different vulnerability than CVE-2014-6496.

First published (updated )
Severity
2.1
AV:L/AC:L/Au:N/C:P/I:N/A:N

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier and 5.6.19 and earlier allows local users to affect confidentiality via vectors related to CLIENT:MYSQLADMIN.

First published (updated )
Severity
3.3
AV:N/AC:L/Au:M/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.38 and earlier and 5.6.19 and earlier allows remote authenticated users to affect availability via vectors related to SERVER:REPLICATION ROW FORMAT BINARY LOG DML.

First published (updated )
Severity
3.5
AV:N/AC:M/Au:S/C:N/I:N/A:P

Unspecified vulnerability in Oracle MySQL Server 5.5.40 and earlier, and 5.6.21 and earlier, allows remote authenticated users to affect availability via vectors related to Server : InnoDB : DML.

First published (updated )
Severity
6.8
AV:N/AC:L/Au:S/C:N/I:N/A:C

Unspecified vulnerability in Oracle MySQL Server 5.5.39 and earlier and 5.6.20 and earlier allows remote authenticated users to affect availability via vectors related to SERVER:OPTIMIZER.

First published (updated )

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