Miraya Poddar-Agrawal

dblp:314/7789 · DBLP profile ↗
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2ranked-venue papers
0as first author
2since 2021 · last 2022
—ORCID · unresolved

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Theory of computation · 2 · 2 since 2021
YearPublicationVenuePosition
2022 Accelerating Verified-Compiler Development with a Verified Rewriting Engine
abstract
Compilers are a prime target for formal verification, since compiler bugs invalidate higher-level correctness guarantees, but compiler changes may become more labor-intensive to implement, if they must come with proof patches. One appealing approach is to present compilers as sets of algebraic rewrite rules, which a generic engine can apply efficiently. Now each rewrite rule can be proved separately, with no need to revisit past proofs for other parts of the compiler. We present the first realization of this idea, in the form of a framework for the Coq proof assistant. Our new Coq command takes normal proved theorems and combines them automatically into fast compilers with proofs. We applied our framework to improve the Fiat Cryptography toolchain for generating cryptographic arithmetic, producing an extracted command-line compiler that is about 1000$\times$ faster while actually featuring simpler compiler-specific proofs.
Jason Gross, Andres Erbsen, Jade Philipoom, Miraya Poddar-Agrawal, Adam Chlipala
ITP4
2022 Automatic Test-Case Reduction in Proof Assistants: A Case Study in Coq
abstract
A program fails. Under which circumstances does this failure occur? One single algorithm, the delta debugging algorithm, suffices to determine these failure-inducing circumstances. Delta debugging tests a program systematically and automatically to isolate failure-inducing circumstances such as the program input, changes to the program code, or executed statements.
Jason Gross, Théo Zimmermann, Miraya Poddar-Agrawal, Adam Chlipala
ITP3