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Modern Compiler Implementation in Java 2nd Revised edition


Modern Compiler Implementation in Java 2nd Revised edition

Hardback by Appel, Andrew W. (Princeton University, New Jersey); Palsberg, Jens (Purdue University, Indiana)

Modern Compiler Implementation in Java

£67.99

ISBN:
9780521820608
Publication Date:
21 Oct 2002
Edition/language:
2nd Revised edition / English
Publisher:
Cambridge University Press
Pages:
512 pages
Format:
Hardback
For delivery:
Estimated despatch 22 May 2024
Modern Compiler Implementation in Java

Description

This textbook describes all phases of a compiler: lexical analysis, parsing, abstract syntax, semantic actions, intermediate representations, instruction selection via tree matching, dataflow analysis, graph-coloring register allocation, and runtime systems. It includes good coverage of current techniques in code generation and register allocation, as well as the compilation of functional and object-oriented languages, that is missing from most books. The most accepted and successful techniques are described concisely, rather than as an exhaustive catalog of every possible variant, and illustrated with actual Java classes. This second edition has been extensively rewritten to include more discussion of Java and object-oriented programming concepts, such as visitor patterns. A unique feature is the newly redesigned compiler project in Java, for a subset of Java itself. The project includes both front-end and back-end phases, so that students can build a complete working compiler in one semester.

Contents

Part I. Fundamentals of Compilation: 1. Introduction; 2. Lexical analysis; 3. Parsing; 4. Abstract syntax; 5. Semantic analysis; 6. Activation records; 7. Translation to intermediate code; 8. Basic blocks and traces; 9. Instruction selection; 10. Liveness analysis; 11. Register allocation; 12. Putting it all together; Part II. Advanced Topics: 13. Garbage collection; 14. Object-oriented languages; 15. Functional programming languages; 16. Polymorphic types; 17. Dataflow analysis; 18. Loop optimizations; 19. Static single-assignment form; 20. Pipelining and scheduling; 21. The memory hierarchy; Appendix: Mini-Java reference manual.

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