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Titlebook: NASA Formal Methods; 13th International S Aaron Dutle,Mariano M. Moscato,Ivan Perez Conference proceedings 2021 Springer Nature Switzerland

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An Infrastructure for Faithful Execution of Remote Attestation Protocols,on protocols that operate in diverse, layered measurement topologies. An accompanying reference semantics characterizes attestation-relevant system events and bundling of cryptographic evidence. In this work we formally define and verify the Copland Compiler and Copland Virtual Machine for executing
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Verifying Min-Plus Computations with Coq, . algebra on real functions. Algorithms on specific subsets can be found in the literature. Such algorithms and related implementations are however complicated. Instead of redeveloping a provably correct implementation, we take an existing implementation as an oracle and propose a . based verifier.
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Efficient Verification of Optimized Code,son about. For cryptography on low-power devices, it is nonetheless crucial that implementations be functionally correct, secure, and efficient. These are usually crafted in hand-optimized machine code that eschew conventional control flow as much as possible..We have formally verified such code: a
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nnenum: Verification of ReLU Neural Networks with Optimized Abstraction Refinement,rocess is a classic approach in formal methods, directly applying it to the neural network verification problem actually reduces performance, due to a cascade of overapproxmation error when using abstraction. This makes optimizations and their systematic evaluation essential for high performance.
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Conference proceedings 2021d 3 short papers presented in this volume were carefully reviewed and selected from 66 submissions. The papers aim to identify challenges and provide solutions to achieve assurance in mission-critical and safety-critical systems. Examples of such systems include advanced separation assurance algorit
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