It was discovered that the XMLEntityManager class implementation in the JAXP component of OpenJDK did not properly perform access checks. A Java application using SAX XML parser in certain configuration could be tricked into disclosing information when parsing a specially-crafted XML file.
A flaw was found in the way the XMLEntityScanner and XML11EntityScanner classes in the JAXP component of OpenJDK handled and normalized newlines in XML entities. A specially-crafted XML document could cause a Java application to enter an infinite loop when parsed.
An implementation flaw was discovered in the AES cipher in the Hotspot component of OpenJDK. This could weaken the cipher protection and lead to confidentiality issue.
A flaw was found in the way the Attributes class in the Libraries component of OpenJDK performed reading of attributes with very long values from JAR file manifests. A specially-crafted JAR archive could cause a Java application reading its manifest to use excessive amount of system resources and hang.
An unspecified vulnerability in Java SE related to the Libraries component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
Vulnerability in the Oracle Java SE, Oracle GraalVM Enterprise Edition product of Oracle Java SE (component: JGSS). Supported versions that are affected are Oracle Java SE: 17.0.4.1, 19; Oracle GraalVM Enterprise Edition: 21.3.3 and 22.2.0. Easily exploitable vulnerability allows unauthenticated attacker with network access via Kerberos to compromise Oracle Java SE, Oracle GraalVM Enterprise Edition. Successful attacks of this vulnerability can result in unauthorized update, insert or delete access to some of Oracle Java SE, Oracle GraalVM Enterprise Edition accessible data. Note: This vulnerability applies to Java deployments, typically in clients running sandboxed Java Web Start applications or sandboxed Java applets, that load and run untrusted code (e.g., code that comes from the internet) and rely on the Java sandbox for security. This vulnerability can also be exploited by using APIs in the specified Component, e.g., through a web service which supplies data to the APIs. CVSS 3.1 Base Score 5.3 (Integrity impacts). CVSS Vector: (CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:L/A:N).
An unspecified vulnerability in Java SE related to the Libraries component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
A flaw was found in the Pattern class implementation in the Libraries component of OpenJDK. A specially crated input could cause the Pattern class to raise an unexpected exception while performing regular expression matching, possibly causing a Java application using the class to misbehave.
An unspecified vulnerability in Java SE related to the Security component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
A flaw was found in the way the TIFFFaxDecompressor, TIFFLZWDecompressor, and TIFFPackBitsDecompressor classes implementations in the ImageIO component of OpenJDK handled memory allocations when processing TIFF images. A specially-crafted TIFF image with a small size could cause a Java application to allocate an excessive amount of memory when opened.
A flaw was found in the way the Hotspot component of OpenJDK generated class code. An untrusted Java application or applet could potentially use this flaw to bypass Java sandbox restrictions.
It was discovered that the computeNextExponential() method in the Libraries component of OpenJDK failed to comply with the documentation, returning sometimes negative numbers.
A flaw was found in the way the Hotspot component of OpenJDK handled array indexes on 64-bit x86 platform. A large index could trigger a displacement overflow in LIRGenerator::emitarrayaddress, possibly leading to an access at an invalid array position.
A flaw was found in the way the BMPImageReader class implementation in the ImageIO component of OpenJDK preformed memory allocations when reading palette information from BMP images. A specially-crafted BMP file could cause a Java application to consume an excessive amount of memory when opened.
An unspecified vulnerability in Java SE related to the Serialization component could allow an unauthenticated attacker to cause a denial of service resulting in a low availability impact using unknown attack vectors.
A flaw was found in the way the Hotspot component of OpenJDK processed classes with fields that needed to be written to in Rewriter::scanmethod(). A specially-crafted Java class file could use this flaw to crash Java virtual machine.
It was discovered that the TransformerImpl class implementation in the JAXP component of OpenJDK did not properly check access restrictions when performing URI resolution. This could possibly lead to information disclosure when performing XSLT transformations.
A flaw was found in the way the TIFFNullDecompressor class implementation in the ImageIO component of OpenJDK performed reading of uncompressed TIFF files. A specially-crafted TIFF image could cause the decompressor to create image objects with an inconsistent state due to failure to fully read the image.
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.
It was discovered that the TLS implementation in the JSSE component of OpenJDK failed to properly handle certificate chains during TLS session negotiation. A remote attacker attacker could use this flaw to affect the availability of a TLS connection (denial-of-service condition).
A flaw was found in the object reclamation process of the Hotspot JVM garbage collector in the way it enqueued references. An untrusted Java application or applet could use this flaw to possibly bypass Java sandbox restrictions and access sensitive information.
An HTML validation flaw was found in the Swing component of OpenJDK. A specially crafted HTML document could cause a Swing Java application to misbehave leading to integrity problems.
Java SE is vulnerable to a denial of service, caused by a flaw in the Lightweight HTTP Server. By sending a specially-crafted request, a remote attacker could exploit this vulnerability to cause a denial of service condition.
A flaw was found in the Serialization component of OpenJDK. The invokeWriteObject() method of the ObjectStreamClass method failed to catch InstantiationError exception during object stream deserialization, which could cause an unexpected exception to be raised when processing an untrusted serialized input.
A flaw was found in the Serialization component of OpenJDK. A reference to an uninitialized class descriptor encountered during object stream deserialization could cause an unexpected exception to be raised when processing an untrusted serialized input.
An unspecified vulnerability in Java SE related to the VM component could allow an unauthenticated attacker to cause no confidentiality impact, high integrity impact, and no availability impact.
An unspecified vulnerability in Java SE related to the Serialization 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 JNDI component could allow an unauthenticated attacker to obtain sensitive information resulting in a low confidentiality impact using unknown attack vectors.
An unspecified vulnerability in Java SE related to the Libraries component could allow an unauthenticated attacker to cause no confidentiality impact, low integrity impact, and no availability impact.
An unspecified vulnerability in Java SE related to the Hotspot component could allow an unauthenticated attacker to cause low confidentiality impact, low integrity impact, and no availability impact.