Pivotal Spring Framework is vulnerable to a denial of service, caused by improper handling of range request by the ResourceHttpRequestHandler. By adding a range header with a high number of ranges, a remote attacker could exploit this vulnerability to cause a denial of service condition.
A flaw was found in dom4j library. By using the default SaxReader() provided by Dom4J, external DTDs and External Entities are allowed, resulting in a possible XXE.
In Apache Log4j 2.x before 2.8.2, when using the TCP socket server or UDP socket server to receive serialized log events from another application, a specially crafted binary payload can be sent that, when deserialized, can execute arbitrary code.
Apache Ant 1.1 to 1.9.14 and 1.10.0 to 1.10.7 uses the default temporary directory identified by the Java system property java.io.tmpdir for several tasks and may thus leak sensitive information. The fixcrlf and replaceregexp tasks also copy files from the temporary directory back into the build tree allowing an attacker to inject modified source files into the build process.
dom4j could allow a remote attacker to execute arbitrary code on the system, caused by improper input validation in multiple methods. By sending a specially-crafted XML content, an attacker could exploit this vulnerability to execute arbitrary code on the system.
Google Guava versions 11.0 through 24.1 are vulnerable to unbounded memory allocation in the AtomicDoubleArray class (when serialized with Java serialization) and Compound Ordering class (when serialized with GWT serialization). An attacker could exploit applications that use Guava and deserialize untrusted data to cause a denial of service.
External References:
https://github.com/google/guava/wiki/CVE-2018-10237 https://groups.google.com/forum/#!topic/guava-announce/xqWALw4W1vs/discussion
Upstream Patch:
https://github.com/google/guava/commit/7ec8718f1e6e2814dabaa4b9f96b6b33a813101c
Apache Log4j is vulnerable to a man-in-the-middle attack, caused by improper certificate validation with host mismatch in the SMTP appender. An attacker could exploit this vulnerability to launch a man-in-the-middle attack and gain access to the communication channel between endpoints to obtain sensitive information or further compromise the system.
A flaw was found in quartz through version 2.3.0. A XXE attack is possible in the Terracotta Quartz Scheduler using a job description. The highest threat from this vulnerability is to data confidentiality and integrity as well as system availability.
A resource consumption vulnerability was discovered in apache-commons-compress in the way NioZipEncoding encodes filenames. Applications that use Compress to create archives, with one of the filenames within the archive being controlled by the user, may be vulnerable to this flaw. A remote attacker could exploit this flaw to cause an infinite loop during the archive creation, thus leading to a denial of service.
Unspecified vulnerability in the Enterprise Manager Ops Center component in Oracle Enterprise Manager Grid Control 12.1.4, 12.2.2, and 12.3.2; the Oracle Health Sciences Information Manager component in Oracle Health Sciences Applications 1.2.8.3, 2.0.2.3, and 3.0.1.0; the Oracle Healthcare Master Person Index component in Oracle Health Sciences Applications 2.0.12, 3.0.0, and 4.0.1; the Oracle Documaker component in Oracle Insurance Applications before 12.5; the Oracle Insurance Calculation Engine component in Oracle Insurance Applications 9.7.1, 10.1.2, and 10.2.2; the Oracle Insurance Policy Administration J2EE and Oracle Insurance Rules Palette components in Oracle Insurance Applications 9.6.1, 9.7.1, 10.0.1, 10.1.2, 10.2.0, and 10.2.2; the Oracle Retail Integration Bus component in Oracle Retail Applications 15.0; the Oracle Retail Order Broker component in Oracle Retail Applications 5.1, 5.2, and 15.0; the Primavera Contract Management component in Oracle Primavera Products Suite 14.2; the Primavera P6 Enterprise Project Portfolio Management component in Oracle Primavera Products Suite 8.2, 8.3, 8.4, 15.1, 15.2, and 16.1; the Oracle Financial Services Analytical Applications Infrastructure component in Oracle Financial Services Applications 8.0.0, 8.0.1, 8.0.2, and 8.0.3; the Oracle Commerce Guided Search / Oracle Commerce Experience Manager component in Oracle Commerce 3.1.1, 3.1.2, 11.0, 11.1, and 11.2; the Oracle Agile PLM component in Oracle Supply Chain Products Suite 9.3.4 and 9.3.5; the Oracle Communications BRM - Elastic Charging Engine 11.2.0.0.0 and 11.3.0.0.0; the Oracle Enterprise Repository Enterprise Repository 12.1.3.0.0; the Oracle Financial Services Behavior Detection Platform 8.0.1 and 8.0.2; the Oracle Hyperion Essbase 12.2.1.1; the Oracle Tuxedo System and Applications Monitor (TSAM) 11.1.1.2.0, 11.1.1.2.1, 11.1.1.2.1, 12.1.1.1.0, 12.1.3.0.0, and 12.2.2.0.0; the Oracle Communications WebRTC Session Controller component of Oracle Communications Applications (subcomponent: Security (Spring)) 7.0, 7.1 and 7.2; the Oracle Endeca Information Discovery Integrator 3.2; the Converged Commerce component of Oracle Retail Applications 16.0.1; the Oracle Identity Manager 11.1.2.3.0; Oracle Enterprise Manager for MySQL Database 12.1.0.4; Oracle Retail Invoice Matching 12.0, 13.0, 13.1, 13.2, 14.0, and 14.1; Oracle Communications Performance Intelligence Center (PIC) Software Prior to 10.2.1 and the Oracle Knowledge component of Oracle Siebel CRM (subcomponent: AnswerFlow (Spring Framework)) version 8.5.1.0 - 8.5.1.7 and 8.6.0 allows remote authenticated users to affect confidentiality, integrity, and availability via unknown vectors.
Unspecified vulnerability in the Oracle Retail Integration Bus component in Oracle Retail Applications 13.0, 13.1, 13.2, 14.0, 14.1, and 15.0 allows remote attackers to affect confidentiality, integrity, and availability via vectors related to Install.
Unspecified vulnerability in the Oracle Retail Integration Bus component in Oracle Retail Applications 13.0, 13.1, 13.2, 14.0, 14.1, and 15.0 allows remote authenticated users to affect confidentiality, integrity, and availability via vectors related to Install.
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to an Information Exposure Through Timing Discrepancy vulnerabilities during DSA key generation. A malicious remote attacker could potentially exploit those vulnerabilities to recover DSA keys.
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to a Missing Required Cryptographic Step vulnerability. A malicious remote attacker could potentially exploit this vulnerability to coerce two parties into computing the same predictable shared key.
RSA BSAFE Crypto-J versions prior to 6.2.5 are vulnerable to Information Exposure Through Timing Discrepancy vulnerabilities during ECDSA key generation. A malicious remote attacker could potentially exploit those vulnerabilities to recover ECDSA keys.
faces/context/PartialViewContextImpl.java in Eclipse Mojarra, as used in Mojarra for Eclipse EE4J before 2.3.10 and Mojarra JavaServer Faces before 2.2.20, allows Reflected XSS because a client window field is mishandled.