By G. Russell, I.L. Sayers
Ebook by way of Russell, G., Sayers, I.L.
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Extra info for Advanced Simulation and Test Methodologies for VLSI Design
You need a Terminal subclass for each group of characters or tokens you want to recognize. You can compose new parsers as sequences, alternations, and repetitions of other parsers, creating an infinite variety of parsers from these few building blocks. Top Building Parsers with Java By Steven John Metsker Table of Contents Content Chapter 3. Building a Parser This chapter explains the steps in designing and coding a working parser. The core design of a parser is the same for all the parsers in this book: recognize a language and build a result.
It is a good idea to work incrementally and iteratively. When you work incrementally, you get part of your language to work before the entire language works. Working iteratively means that you can expect to cycle through the steps of designing, coding, and testing many times on each increment you create. Build your language gradually, expanding your parser and adding new features as you go. You will see your language grow, and you will become skillful in expanding the features of your language.
Consider the good grammar: 55 56 good = adjective* "coffee"; adjective = "steaming" | "hot"; The rule for good uses an asterisk to describe a string that begins with 0 or more adjectives and ends with "coffee". 6. Imply sequence by writing subparsers next to each other. For example, the good grammar implies that good is a sequence of a-repetition-of-adjectives followed by the word "coffee". 7. Show alternation by using a vertical bar. For example, the adjective rule declares that both "steaming" and "hot" are suitable adjectives.
Advanced Simulation and Test Methodologies for VLSI Design by G. Russell, I.L. Sayers