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Recently, we have witnessed an upward trend in adopting the Transport Layer Security version 1.3 (TLS 1.3) to numerous applications (Google Cloud [25], Microsoft software products [20], CloudFlare [27]). Although TLS 1.3 provides higher efficiency than the previous versions of TLS, its handshake protocol still requires the server to send its certificate to the client which consumes a significant amount of network bandwidth. Moreover, the client becomes idle while it is waiting for the certificate to arrive. This latency is one of the causes of the TLS handshake delay. Adequate adoption of edge computing can increase the efficiency of traditional server client architectures. In this paper, we envision a new paradigm to adopt edge computing into TLS to improve the efficiency of session establishment. Our new architecture will motivate researchers to consider the edge in improving the TLS protocol in the future. TLS-EC (TLS with Edge Computing) protocol improves the TLS 1.3 handshake effi ....
XIP2113H from Xiphera is a high-speed Intellectual Property (IP) core designed for ChaCha20-Poly1305 Authenticated Encryption with Associated Data (AEAD) . ....
Forrester: Maintain Security Visibility in the TLS 1.3 Era New encryption standards TLS 1.3 and DNS-over-HTTPS (DoH) will soon sweep away security controls. Security professionals must act within the next two years or they won t be able to analyze network traffic and detect cyberthreats. Download the Forrester report Maintain Security Visibility in the TLS 1.3 Era which will help you prepare for the impact these new standards will have on your visibility and threat-detection capabilities. ....
The NSA released new guidance providing system administrators with the tools to update outdated TLS protocols. The National Security Agency (NSA) is lighting a fire under system administrators who are dragging their feet to replace insecure and outdated Transport Layer Security (TLS) protocol instances. The agency this week released new guidance and tools to equip companies to update from obsolete older versions of TLS (TLS 1.0 and TLS 1.1) to newer versions of the protocol (TLS 1.2 or TLS 1.3). TLS (as well as its precursor, Secure Sockets Layer, or SSL) was developed as a protocol aimed to provide a private, secure channel between servers and clients to communicate. However, various new attacks against TLS and the algorithms it uses have been revealed – from Heartbleed to POODLE – rendering the older versions of the protocol insecure. ....