Formally verified superblock scheduling

Author:

Six Cyril1,Gourdin Léo2,Boulmé Sylvain2ORCID,Monniaux David2ORCID,Fasse Justus2,Nardino Nicolas3

Affiliation:

1. Kalray, France

2. Grenoble Alps University, France / CNRS, France / Grenoble INP, France / Verimag, France

3. ENS Lyon, France

Funder

LabEx PERSYVAL-Lab

IRT Nanoelec

Publisher

ACM

Reference31 articles.

1. Pietro Alovisi. 2020. Static Branch Prediction through Representation Learning. Master’s thesis. KTH Stockholm. https://www.diva-portal.org/smash/get/diva2:1450658/FULLTEXT01.pdf Pietro Alovisi. 2020. Static Branch Prediction through Representation Learning. Master’s thesis. KTH Stockholm. https://www.diva-portal.org/smash/get/diva2:1450658/FULLTEXT01.pdf

2. Branch prediction for free

3. Sylvain Boulmé. 2021. Formally Verified Defensive Programming (efficient Coq-verified computations from untrusted ML oracles). Université Grenoble Alpes. https://hal.archives-ouvertes.fr/tel-03356701 Sylvain Boulmé. 2021. Formally Verified Defensive Programming (efficient Coq-verified computations from untrusted ML oracles). Université Grenoble Alpes. https://hal.archives-ouvertes.fr/tel-03356701

4. P. P. Chang and W. W. Hwu . 1988. Trace Selection for Compiling Large C Application Programs to Microcode . In Proceedings of the 21st Annual Workshop on Microprogramming and Microarchitecture (MICRO 21) . IEEE Computer Society Press, Washington, DC, USA. 21–29. isbn:08 1861 9198 P. P. Chang and W. W. Hwu. 1988. Trace Selection for Compiling Large C Application Programs to Microcode. In Proceedings of the 21st Annual Workshop on Microprogramming and Microarchitecture (MICRO 21). IEEE Computer Society Press, Washington, DC, USA. 21–29. isbn:0818619198

5. Improving static branch prediction in a compiler

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