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  1. Proceedings of the 21st annual ACM SIGPLAN conference on Object-oriented programming systems, languages, and applications (OOPSLA '06)
  2. On system design
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Eliminating distinctions of class: using prototypes to model virtual classes
A framework for implementing pluggable type systems
Adapting virtual machine techniques for seamless aspect support
Javana: a system for building customized Java program analysis tools
Declarative, formal, and extensible syntax definition for aspectJ
A flexible framework for implementing software transactional memory
A flow-based approach for variant parametric types
A formal framework for component deployment
Isolating and relating concerns in requirements using latent semantic analysis
Conscientious software
On system design
J&: nested intersection for scalable software composition
Design fragments make using frameworks easier
Efficient control flow quantification
The DaCapo benchmarks: java benchmarking development and analysis
Method-specific dynamic compilation using logistic regression
Eliminating synchronization-related atomic operations with biased locking and bulk rebiasing
Concepts: linguistic support for generic programming in C++
An operational semantics and type safety prooffor multiple inheritance in C++
Understanding the shape of Java software
Intentional software
The paradoxical success of aspect-oriented programming
Statically scoped object adaptation with expanders
JTL: the Java tools language
Uniform proxies for Java
Virgil: objects on the head of a pin
Replay compilation: improving debuggability of a just-in-time compiler
Generic ownership for generic Java
Efficient software model checking of data structure properties
XSnippet: mining For sample code

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On system design

Content Provider ACM Digital Library
Author Waldo, Jim
Abstract In this essay, I consider some of the factors that are making it more and more difficult to expend the effort necessary to do system design. Because of changes in the economics of the field in both industry and research, we have become less able to take the time needed to do real system design, and to train the next generation of designers. Because of the intellectual property landscape, we are less able to discuss system design. The end result is that we do less good system design than we used to, at least in those environments where system design used to be most common. But there are reasons to be optimistic about the future of system design, which appears to be happening in non-traditional ways and in non-traditional venues.
Starting Page 467
Ending Page 480
Page Count 14
File Format PDF
ISBN 1595933484
DOI 10.1145/1167473.1167513
Language English
Publisher Association for Computing Machinery (ACM)
Publisher Date 2006-10-23
Publisher Place New York
Access Restriction Subscribed
Subject Keyword Training Education System design
Content Type Text
Resource Type Article
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