<--- Back to Details
First PageDocument Content
Computing / Software / Cryptography / Pseudorandom number generators / Computing platforms / Cross-platform software / Random number generation / Cryptographic software / /dev/random / Key generation / Entropy / Java
Date: 2014-03-31 06:15:11
Computing
Software
Cryptography
Pseudorandom number generators
Computing platforms
Cross-platform software
Random number generation
Cryptographic software
/dev/random
Key generation
Entropy
Java

Motivations PRNG Security Model Java SecureRandom Analysis

Add to Reading List

Source URL: www-fourier.ujf-grenoble.fr

Download Document from Source Website

File Size: 4,34 MB

Share Document on Facebook

Similar Documents

High Performance Computing Dror Goldenberg, HPCAC Switzerland Conference March 2015 End-to-End Interconnect Solutions for All Platforms Highest Performance and Scalability for

High Performance Computing Dror Goldenberg, HPCAC Switzerland Conference March 2015 End-to-End Interconnect Solutions for All Platforms Highest Performance and Scalability for

DocID: 1xURD - View Document

Distributed Computing Prof. R. Wattenhofer BA/MA/SA/Group/Lab:  Online Matching (in Gaming Platforms)

Distributed Computing Prof. R. Wattenhofer BA/MA/SA/Group/Lab: Online Matching (in Gaming Platforms)

DocID: 1v9jY - View Document

The Efficiency of Open Access in Platforms for Networked Cournot Markets John Z. F. Pang∗ , Hu Fu† , Won I. Lee∗ , and Adam Wierman∗ ∗ Department  of Computing and Mathematical Sciences

The Efficiency of Open Access in Platforms for Networked Cournot Markets John Z. F. Pang∗ , Hu Fu† , Won I. Lee∗ , and Adam Wierman∗ ∗ Department of Computing and Mathematical Sciences

DocID: 1uz9I - View Document

Java Byte Code Synthesis for Reconfigurable Computing Platforms Christophe Dubach Computer Science, master thesis  Processor Architecture Laboratory

Java Byte Code Synthesis for Reconfigurable Computing Platforms Christophe Dubach Computer Science, master thesis Processor Architecture Laboratory

DocID: 1tNUy - View Document

THE DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING PRESENTS:  PROFESSOR AHMED M. ELTAWIL LOW POWER, HIGH THROUGHPUT APPROACHES FOR 5G COMPUTING AND COMMUNICATION PLATFORMS

THE DEPARTMENT OF ELECTRICAL AND COMPUTER ENGINEERING PRESENTS: PROFESSOR AHMED M. ELTAWIL LOW POWER, HIGH THROUGHPUT APPROACHES FOR 5G COMPUTING AND COMMUNICATION PLATFORMS

DocID: 1tFSQ - View Document