Syntax tree
- 网络语法树;句法树;语法分析树
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Analysis and Design of Code Smell Detection Tool Based on Abstract Syntax Tree
基于抽象语法树的代码味道识别工具的分析与设计
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Design and Implementation of A Software Metrics Tool Based on Abstract Syntax Tree
基于抽象语法树的软件度量工具的设计与实现
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Use the abstract syntax tree when you cannot use Eclipse markers
当您不能使用Eclipse标记时可以使用抽象语法树
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Build and Traverse of Abstract Syntax Tree Based on Java Program
基于Java语言的抽象语法树的创建与遍历
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Automatic Refactoring Method of Cloned Code Using Abstract Syntax Tree and Static Analysis
使用抽象语法树和静态分析的克隆代码自动重构方法
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A Static Checking Method of Array Access Violation Based on Abstract Syntax Tree
基于抽象语法树的数组越界的静态检测方法
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Storage Mapping of Syntax Tree for Context-Free Language and its Application
一种上下文无关语言语法树的存储模式及其应用
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Analysis of the C + + Source Program Structure Based on GCC Abstract Syntax Tree
基于GCC的抽象语法树对C++源程序结构的分析
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This thesis designed an abstract syntax tree based on statement for software reverse engineering .
为适应逆向工程的需求,本文研究和设计了一棵以语句为基本单元的语法分析树。
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The first pass of the compiler turns this into a syntax tree .
编译器的首个编译过程会将其编译成语法树。
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An abstract syntax tree is an expression represented as a collection of objects .
抽象语法树是一个表示为对象集合的表达式。
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The structure of GCC syntax tree and its functions in compiling are introduced .
介绍了GCC抽象语法树的结构及在编译过程中的作用。
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Abstract Syntax Tree , referred as intermediate representation of program , has many applications in Program Analysis .
抽象语法树(AbstractSyntaxTree,AST)作为程序的一种中间表示形式,在程序分析等诸多领域有广泛的应用。
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A storage mapping of G tree of syntax tree in relational databases is represented .
针对上下文无关语言的句子所对应的语法树G树的表示形式提出了一种关系数据库的存储形式。
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The interpreter has two components : Syntactic parser and Syntax tree interpreter .
CNLInterpreter有两部分组成:句法剖析器和语法树解释器。
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A Method for Parsing GCC abstract Syntax Tree
一种解析GCC抽象语法树的方法
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The syntax tree is gained during parsing web resources by means of using heap and stack .
在解析网页资源的过程中,通过使用堆栈来进行相关的操作,得到了所需的语法树。
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The generation of control flow graph is according to preorder traverse of the syntax tree .
控制流图的生成是通过对构件语法树进行先序遍历完成的。
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Changes are made by making copies of the syntax tree , replacing portions as one goes along .
想要做出改变,我们需要复制语法树,并替换需要变更的部分。
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You define a language by defining the structure of its abstract syntax tree , its abstract grammar .
定义语言就是定义它的抽象句法树,它的抽象文法。
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A syntax tree can be created from an entire file or just a loose statement or expression .
我们可以从完整的文件创建语法树,也可以从松散的声明或者表达式生成它。
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Therefore , executing a bytecode instruction is much faster than visiting a syntax tree node .
因此,执行字节码指令要比访问语法树节点快得多。
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This time , you will fetch all of the import statements in the abstract syntax tree .
这一次,您可以读取抽象语法树中的所有导入声明了。
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This method removes the need to manually copy the unchanged portions of the syntax tree .
这个方法让我们不需要手动复制语法树中没有变更的部分。
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The syntax tree consists of syntax nodes , tokens , and trivia .
语法树是由语法节点、令牌和一些琐碎的内容(trivia)组成的。
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This paper introduced a kind of variable type collecting method , which is based on layered thoughtway and abstract syntax tree .
提出了一种基于分层思想的,并且无需构造具体语法树的变量类型提取方法。
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The analysis of the abstract syntax tree of the Groovy code , allows us to collect all relevant information we need .
对于Groovy代码的抽象语法树的分析,可以让我们搜集到我们需要的所有相关信息。
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In terms of common data query , using the syntax tree to semantic optimization ; Using memory database to merge multiple source results .
在小数据查询方面,利用语法树进行语义优化;利用内存数据库实现多数据源结果集合并。
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Modifications are made to the syntax tree using a combination of constructors and the ReplaceNode method .
变更是针对语法树做出的,变更时会使用了构造器和ReplaceNode方法的组合。
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Here other techniques such as compiling an abstract syntax tree and resolving variables in closures are discussed .
在这里,对其它技术(如:编译一个抽象语法树和解析闭包中的变量)也进行了讨论。