Synthesizing replacement classes

Author:

Samak Malavika1,Kim Deokhwan1,Rinard Martin C.1

Affiliation:

1. Massachusetts Institute of Technology, USA

Abstract

We present a new technique for automatically synthesizing replacement classes. The technique starts with an original class O and a potential replacement class R, then uses R to synthesize a new class that implements the same interface and provides the same functionality as O. Critically, our technique works with a synthe- sized inter-class equivalence predicate between the states of O and R. It uses this predicate to ensure that original and synthesized methods leave corresponding O and R objects in equivalent states. The predicate therefore enables the technique to synthesize individual replacement methods in isolation while still obtain- ing a replacement class that leaves the original and replacement objects in equivalent states after arbitrarily long method invocation sequences. We have implemented the technique as part of a tool, named Mask, and evaluated it using open-source Java classes. The results highlight the effectiveness of Mask in synthesizing replacement classes.

Funder

Defense Advanced Research Projects Agency

Publisher

Association for Computing Machinery (ACM)

Subject

Safety, Risk, Reliability and Quality,Software

Reference64 articles.

1. Maximal specification synthesis

2. Mining specifications

3. Apache Commons 2019. Apache Commons: An Apache project focused on all aspects of reusable Java components. (2019). https://commons.apache.org/ Apache Commons 2019. Apache Commons: An Apache project focused on all aspects of reusable Java components. (2019). https://commons.apache.org/

4. API Deprecation 2018. How and When To Deprecate APIs. (2018). https://docs.oracle.com/javase/7/docs/technotes/guides/ javadoc/deprecation/deprecation.html API Deprecation 2018. How and When To Deprecate APIs. (2018). https://docs.oracle.com/javase/7/docs/technotes/guides/ javadoc/deprecation/deprecation.html

5. FlashRelate: extracting relational data from semi-structured spreadsheets using examples

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