A NULL pointer dereference flaw was discovered in the DrawGlyphList class in the 2D component in OpenJDK. A specially crafted font file could use this flaw to cause a Java application to crash.
An unspecified vulnerability in Java SE related to the JAXP component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
An unspecified vulnerability in Java SE related to the Concurrency component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
A use-after-free vulnerability was found in a network namespaces code affecting the Linux kernel since v4.0-rc1 through v4.15-rc5. The function getnetnsbyid() does not check for the net::count value after it has found a peer network in netnsids idr which could lead to double free and memory corruption. This vulnerability could allow an unprivileged local user to induce kernel memory corruption on the system, leading to a crash. Due to the nature of the flaw, privilege escalation cannot be fully ruled out, although we believe it is unlikely.
References:
https://marc.info/?l=linux-netdev&m=151370451121029&w=2
https://marc.info/?t=151370468900001&r=1&w=2 (a whole thread)
http://seclists.org/oss-sec/2018/q1/7
An upstream patch:
https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git/commit/?id=21b5944350052d2583e82dd59b19a9ba94a007f0
Browser proxy settings can be bypassed by using the automount feature with autofs to create a mount point on the local file system. Content can be loaded from this mounted file system directly using a file: URI, bypassing configured proxy settings. Note: this issue only affects OS X in default configurations. On Linux systems, autofs must be installed for the vulnerability to occur and Windows is not affected.
Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: DDL). Supported versions that are affected are 5.5.57 and earlier 5.6.37 and earlier 5.7.19 and earlier. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server.
External References:
http://www.oracle.com/technetwork/security-advisory/cpuoct2017-3236626.html#AppendixMSQL
Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Client programs). Supported versions that are affected are 5.5.57 and earlier, 5.6.37 and earlier and 5.7.19 and earlier. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized access to critical data or complete access to all MySQL Server accessible data.
External References:
http://www.oracle.com/technetwork/security-advisory/cpuoct2017-3236626.html#AppendixMSQL
Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Optimizer). Supported versions that are affected are 5.5.57 and earlier, 5.6.37 and earlier and 5.7.11 and earlier. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized ability to cause a hang or frequently repeatable crash (complete DOS) of MySQL Server.
External References:
http://www.oracle.com/technetwork/security-advisory/cpuoct2017-3236626.html#AppendixMSQL
Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Server: Replication). Supported versions that are affected are 5.5.57 and earlier, 5.6.37 and earlier and 5.7.19 and earlier. Difficult to exploit vulnerability allows high privileged attacker with logon to the infrastructure where MySQL Server executes to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized access to critical data or complete access to all MySQL Server accessible data.
External References:
http://www.oracle.com/technetwork/security-advisory/cpuoct2017-3236626.html#AppendixMSQL
It was discovered that key store implementations in the Security component of OpenJDK did not use sufficient number of iterations when generating password-based encryption keys used to protect private keys in key stores. This made it easier to perform password guessing attacks to decrypt stored keys if an attacker could gain access to a key store.
An unspecified vulnerability in Oracle Java SE related to the Java SE, Java SE Embedded, JRockit Networking component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
It was found that the HttpURLConnection and HttpsURLConnection classes implementations in the Networking component of OpenJDK failed to check for newline characters embedded in URLs. An attacker able to make a Java application to perform an HTTP request to an attacker provided URL could possibly inject additional headers into the request.
It was discovered that the implementation of multiple classes in the Serialization component of OpenJDK did not limit the amount of memory allocated when creating object instances from a serialized form. A specially-crafted input could cause a Java application to use an excessive amount of memory when deserialized.
It was discovered that the implementation of the JAXWSExceptionBase class in the JAX-WS component of OpenJDK did not limit the amount of memory allocated when creating object instance from a serialized form. A specially-crafted input could cause a Java application to use an excessive amount of memory when deserialized.
It was discovered that the implementation of the SimpleTimeZone class in the Serialization component of OpenJDK did not limit the amount of memory allocated when creating object instance from a serialized form. A specially-crafted input could cause a Java application to use an excessive amount of memory when deserialized.
It was discovered that implementations of multiple classes in the Libraries component of OpenJDK did not limit the amount of memory allocated when creating object instances from a serialized form. A specially-crafted input could cause a Java application to use an excessive amount of memory when deserialized.
It was discovered that the implementation of the ObjectInputStream class in the Serialization component of OpenJDK did not limit the amount of memory allocated when creating object instances from a serialized form. A specially-crafted input could cause a Java application to use an excessive amount of memory when deserialized.
It was discovered that the CardImpl class in the Smart Card IO component of OpenJDK failed to properly update its state in the finalize() method. An untrusted Java application or applet could possibly use this flaw to gain unexpected access to a smart card, bypassing certain Java sandbox restrictions.
ntpq in NTP 4.2.x before 4.2.8p4, and 4.3.x before 4.3.77 allows remote attackers to cause a denial of service (crash) via crafted mode 6 response packets.
The cryptoxmit function in ntpd in NTP 4.2.x before 4.2.8p4, and 4.3.x before 4.3.77 allows remote attackers to cause a denial of service (crash). NOTE: This vulnerability exists due to an incomplete fix for CVE-2014-9750.
Vulnerability in the MySQL Server component of Oracle MySQL (subcomponent: Client mysqldump). Supported versions that are affected are 5.5.56 and earlier, 5.6.36 and earlier and 5.7.18 and earlier. Easily exploitable vulnerability allows low privileged attacker with network access via multiple protocols to compromise MySQL Server. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of MySQL Server accessible data.
External References:
http://www.oracle.com/technetwork/security-advisory/cpujul2017-3236622.html#AppendixMSQL
Oracle Java SE 6u161, 7u151, and 8u141 fixes an unspecified vulnerability in the JAX-WS component (CVE-2017-10243). Upstream has CVSS scored this issue as: 6.5/CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:L
External Reference:
http://www.oracle.com/technetwork/security-advisory/cpujul2017-3236622.html#AppendixJAVA
It was discovered that the Security component of OpenJDK could fail to properly enforce restrictions (specified using the jdk.certpath.disabledAlgorithms security property) defined for processing of X.509 certificate chains. A remote attacker could possibly use this flaw to make Java accept certificate using one of the disabled algorithms.
It was discovered that the JPEGImageReader implementation in the 2D component of OpenJDK would, in certain cases, read all image data even if that was not used later. A specially crafted image could cause a Java application to temporarily use an excessive amount of CPU and memory.
It was discovered that the implementation of the BasicAttribute class in OpenJDK did not limit the amount of memory allocated when creating object instance from a serialized form. A specially-crafted serialized input stream could cause JVM to consume an excessive amount of memory.
A covert timing channel flaw was found in the PKCS#8 implementation in the JCE component of OpenJDK. A remote attacker able to make a Java application repeatedly compared PKCS#8 key against an attacker controlled value could possibly use this flaw to determine the key via a timing side channel.
It was discovered that the implementation of the CodeSource class in OpenJDK did not limit the amount of memory allocated when creating object instance from a serialized form. An untrusted Java application or applet could use this flaw to cause JVM to allocate an excessive amount of memory, bypassing certain Java sandbox restrictions.
The parsedosextended function in partitions/dos.c in the libblkid library in util-linux allows physically proximate attackers to cause a denial of service (memory consumption) via a crafted MSDOS partition table with an extended partition boot record at zero offset.
Unspecified vulnerability in Oracle MySQL 5.5.51 and earlier, 5.6.32 and earlier, and 5.7.14 and earlier allows remote administrators to affect availability via vectors related to Server: Federated.
Unspecified vulnerability in Oracle MySQL 5.5.51 and earlier allows remote authenticated users to affect availability via vectors related to DML.