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Besides the typical bugs committed by Java programmers, the introduced security vulnerabilities cover both language-specific issues and problems stemming from the runtime environment.
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The course also goes through and explains the most frequent and severe programming flaws of the Java language and platform and web-related vulnerabilities. The use of all components is presented through several practical exercises, where participants can try out the discussed APIs and tools for themselves. Various exercises deal with declarative and programmatic security techniques in JEE, while both transport-layer and end-to-end security of web services is discussed. Discussion of specific services is preceded with the foundations of cryptography and secure communication. The course – besides introducing security components of Standard Java Edition – deals with security issues of Java Enterprise Edition (JEE) and web services. Get practical knowledge in using security testing toolsĮven experienced Java programmers are not mastering by all means the various security services offered by Java, and are likewise not aware of the different vulnerabilities that are relevant for web applications written in Java. Learn client-side vulnerabilities and secure coding practices All vulnerabilities and the relevant attacks are demonstrated through easy-to-understand exercises, followed by the recommended coding guidelines and the possible mitigation techniques. The use of all components is presented through practical exercises, where participants can try out the discussed APIs and tools for themselves.įinally, the course explains the most frequent and severe programming flaws of the Java language and platform. The course introduces security components of Standard Java Edition, which is preceded with the foundations of cryptography, providing a common baseline for understanding the purpose and the operation of the applicable components. In addition, a special focus is given to client-side security tackling security issues of JavaScript, Ajax and HTML5. General web-based vulnerabilities are demonstrated through presenting the relevant attacks, while the recommended coding techniques and mitigation methods are explained in the context of Java with the most important aim to avoid the associated problems. Get sources and further readings on secure coding practicesīeyond solid knowledge in using Java components, even for experienced Java programmers it is essential to have a deep knowledge in web-related vulnerabilities both on server and client side, the different vulnerabilities that are relevant for web applications written in Java, and the consequences of the various risks. Get information about some recent vulnerabilities in the Java framework
#Learn java programming san diego how to
Learn about typical coding mistakes and how to avoid them
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Have a practical understanding of cryptography Learn to use various security features of the Java development environment Learn Web vulnerabilities beyond OWASP Top Ten and know how to avoid them Understand basic concepts of security, IT security and secure coding The course also goes through and explains the most frequent and severe programming flaws of the Java language and platform, covering both the typical bugs committed by Java programmers and the language- and environment-specific issues. The use of these components is presented through several practical exercises, where participants can try out the discussed APIs for themselves. The introduction of security services is preceded with a brief overview of the foundations of cryptography, providing a common baseline for understanding the purpose and the operation of the applicable components.
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Yet, software developers and architects should not only know how to use the various security features of the Java environment (positive security), but should also be aware of the numerous vulnerabilities that are still relevant for Java development (negative security).
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The Java language and the Runtime Environment (JRE) was designed to be free from the most problematic common security vulnerabilities experienced in other languages, like C/C++.