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Abstract: Formal Program running time verification is an important issue in system design required for performance optimization under "first-time-right" design constraints and for real-time system verification. Simulation based approaches or simple instruction counting are not appropriate and risky for more complex architectures in particular with data dependent execution paths. Formal analysis techniques have suffered from loose timing bounds leading to significant performance penalties when strictly... (Update)
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BibTeX entry: (Update)
R. Ernst and W. Ye, "Embedded program timing analysis based on path clustering and architecture classification," in Proc. Int'l Conf. on Computer Aided Design, pp. 598--604, Nov. 1997. http://citeseer.ist.psu.edu/ernst97embedded.html More
@inproceedings{ ernstembedded,
author = "R. Ernst and W. Ye",
title = "Embedded Program Timing Analysis Based on Path Clustering and Architecture Classification",
booktitle ="International Conference on Computer Aided Design",
year = 1997,
month = nov,
pages = "598--604",
url = "citeseer.ist.psu.edu/ernst97embedded.html" }
Citations (may not include all citations):
193
Superscalar Microprocessor Design (context) - Johnson - 1991
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Bounding Worst-Case Instruction Cache Performance (context) - Mueller, Arnold et al. - 1994
54
Evaluating Tight Execution Time Bounds of Programs by Annota.. (context) - Mok
20
Predicting Deterministic Execution Times of Real--Time Progr.. (context) - Park - 1992
9
Bell Telephone Laboratories (context) - Aho, Sethi et al. - 1987
9
Fast simulation of computer architectures (context) - Conte, Gimarc - 1995
8
Predictable Cache Design for Real-Time Systems (context) - Kirk - 1990
5
Workshop on Hardware--Software Co-Design (context) - Malik, Wolf et al. - 1995
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Fast Timing Analysis for Harware--Software Cosynthesis (context) - Ye, Ernst et al. - 1993
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Worst Case Timing Estimation based on Symbolic Execution
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Narayan Software execution from executable specification (context) - Gong, Gajski - 1994
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