Graph explorer

Quantitative Strongest Post

We present a novel strongest-postcondition-style calculus for quantitative reasoning about non-deterministic programs with loops. Whereas existing quantitative weakest pre allows reasoning about the value of a quantity after a program terminates on a given initial state, quantitative strongest post allows reasoning about the value that a quantity had before the program was executed and reached a given final state. We show how strongest post enables reasoning about the flow of quantitative information through programs. Similarly to weakest liberal preconditions, we also develop a quantitative strongest liberal post. As a byproduct, we obtain the entirely unexplored notion of strongest liberal postconditions and show how these foreshadow a potential new program logic - partial incorrectness logic - which would be a more liberal version of O'Hearn's recent incorrectness logic.

6 nodes8 linksoverview previewQuantitative Strongest Post
6 nodes8 links
Quantitative Strongest Post6 visible / 6 total nodes / 9 links
Related contextRelated contextCo-authorshipAuthorshipAuthorshipTopic signalTopic signalTopic signalRelated contextWQuantitative Strongest Postpreprint / 2022ALinpeng ZhangResearcherABenjamin Lucien KaminskiResearcherTCryptography and Security7258 worksTLogic in Computer Science2208 worksTProgramming Languages1239 works
PaperSignal 105 links

Quantitative Strongest Post

preprint / 2022

Open