зеркало из https://github.com/github/ruby.git
334 строки
11 KiB
Ruby
334 строки
11 KiB
Ruby
# for ast.c
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# AbstractSyntaxTree provides methods to parse Ruby code into
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# abstract syntax trees. The nodes in the tree
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# are instances of RubyVM::AbstractSyntaxTree::Node.
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#
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# This module is MRI specific as it exposes implementation details
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# of the MRI abstract syntax tree.
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#
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# This module is experimental and its API is not stable, therefore it might
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# change without notice. As examples, the order of children nodes is not
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# guaranteed, the number of children nodes might change, there is no way to
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# access children nodes by name, etc.
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#
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# If you are looking for a stable API or an API working under multiple Ruby
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# implementations, consider using the _parser_ gem or Ripper. If you would
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# like to make RubyVM::AbstractSyntaxTree stable, please join the discussion
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# at https://bugs.ruby-lang.org/issues/14844.
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#
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module RubyVM::AbstractSyntaxTree
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# call-seq:
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# RubyVM::AbstractSyntaxTree.parse(string, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false) -> RubyVM::AbstractSyntaxTree::Node
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#
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# Parses the given _string_ into an abstract syntax tree,
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# returning the root node of that tree.
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#
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# RubyVM::AbstractSyntaxTree.parse("x = 1 + 2")
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# # => #<RubyVM::AbstractSyntaxTree::Node:SCOPE@1:0-1:9>
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#
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# If <tt>keep_script_lines: true</tt> option is provided, the text of the parsed
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# source is associated with nodes and is available via Node#script_lines.
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#
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# If <tt>keep_tokens: true</tt> option is provided, Node#tokens are populated.
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#
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# SyntaxError is raised if the given _string_ is invalid syntax. To overwrite this
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# behavior, <tt>error_tolerant: true</tt> can be provided. In this case, the parser
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# will produce a tree where expressions with syntax errors would be represented by
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# Node with <tt>type=:ERROR</tt>.
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#
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# root = RubyVM::AbstractSyntaxTree.parse("x = 1; p(x; y=2")
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# # <internal:ast>:33:in `parse': syntax error, unexpected ';', expecting ')' (SyntaxError)
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# # x = 1; p(x; y=2
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# # ^
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#
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# root = RubyVM::AbstractSyntaxTree.parse("x = 1; p(x; y=2", error_tolerant: true)
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# # (SCOPE@1:0-1:15
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# # tbl: [:x, :y]
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# # args: nil
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# # body: (BLOCK@1:0-1:15 (LASGN@1:0-1:5 :x (LIT@1:4-1:5 1)) (ERROR@1:7-1:11) (LASGN@1:12-1:15 :y (LIT@1:14-1:15 2))))
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# root.children.last.children
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# # [(LASGN@1:0-1:5 :x (LIT@1:4-1:5 1)),
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# # (ERROR@1:7-1:11),
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# # (LASGN@1:12-1:15 :y (LIT@1:14-1:15 2))]
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#
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# Note that parsing continues even after the errored expression.
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#
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def self.parse string, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false
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Primitive.ast_s_parse string, keep_script_lines, error_tolerant, keep_tokens
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end
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# call-seq:
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# RubyVM::AbstractSyntaxTree.parse_file(pathname, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false) -> RubyVM::AbstractSyntaxTree::Node
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#
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# Reads the file from _pathname_, then parses it like ::parse,
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# returning the root node of the abstract syntax tree.
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#
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# SyntaxError is raised if _pathname_'s contents are not
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# valid Ruby syntax.
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#
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# RubyVM::AbstractSyntaxTree.parse_file("my-app/app.rb")
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# # => #<RubyVM::AbstractSyntaxTree::Node:SCOPE@1:0-31:3>
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#
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# See ::parse for explanation of keyword argument meaning and usage.
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def self.parse_file pathname, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false
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Primitive.ast_s_parse_file pathname, keep_script_lines, error_tolerant, keep_tokens
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end
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# call-seq:
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# RubyVM::AbstractSyntaxTree.of(proc, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false) -> RubyVM::AbstractSyntaxTree::Node
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# RubyVM::AbstractSyntaxTree.of(method, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false) -> RubyVM::AbstractSyntaxTree::Node
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#
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# Returns AST nodes of the given _proc_ or _method_.
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#
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# RubyVM::AbstractSyntaxTree.of(proc {1 + 2})
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# # => #<RubyVM::AbstractSyntaxTree::Node:SCOPE@1:35-1:42>
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#
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# def hello
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# puts "hello, world"
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# end
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#
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# RubyVM::AbstractSyntaxTree.of(method(:hello))
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# # => #<RubyVM::AbstractSyntaxTree::Node:SCOPE@1:0-3:3>
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#
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# See ::parse for explanation of keyword argument meaning and usage.
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def self.of body, keep_script_lines: RubyVM.keep_script_lines, error_tolerant: false, keep_tokens: false
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Primitive.ast_s_of body, keep_script_lines, error_tolerant, keep_tokens
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end
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# call-seq:
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# RubyVM::AbstractSyntaxTree.node_id_for_backtrace_location(backtrace_location) -> integer
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#
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# Returns the node id for the given backtrace location.
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#
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# begin
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# raise
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# rescue => e
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# loc = e.backtrace_locations.first
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# RubyVM::AbstractSyntaxTree.node_id_for_backtrace_location(loc)
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# end # => 0
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def self.node_id_for_backtrace_location backtrace_location
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Primitive.node_id_for_backtrace_location backtrace_location
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end
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# RubyVM::AbstractSyntaxTree::Node instances are created by parse methods in
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# RubyVM::AbstractSyntaxTree.
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#
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# This class is MRI specific.
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#
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class Node
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# call-seq:
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# node.type -> symbol
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#
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# Returns the type of this node as a symbol.
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#
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# root = RubyVM::AbstractSyntaxTree.parse("x = 1 + 2")
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# root.type # => :SCOPE
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# lasgn = root.children[2]
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# lasgn.type # => :LASGN
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# call = lasgn.children[1]
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# call.type # => :OPCALL
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def type
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Primitive.ast_node_type
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end
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# call-seq:
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# node.first_lineno -> integer
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#
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# The line number in the source code where this AST's text began.
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def first_lineno
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Primitive.ast_node_first_lineno
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end
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# call-seq:
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# node.first_column -> integer
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#
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# The column number in the source code where this AST's text began.
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def first_column
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Primitive.ast_node_first_column
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end
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# call-seq:
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# node.last_lineno -> integer
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#
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# The line number in the source code where this AST's text ended.
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def last_lineno
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Primitive.ast_node_last_lineno
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end
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# call-seq:
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# node.last_column -> integer
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#
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# The column number in the source code where this AST's text ended.
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def last_column
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Primitive.ast_node_last_column
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end
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# call-seq:
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# node.tokens -> array
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#
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# Returns tokens corresponding to the location of the node.
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# Returns +nil+ if +keep_tokens+ is not enabled when #parse method is called.
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#
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# root = RubyVM::AbstractSyntaxTree.parse("x = 1 + 2", keep_tokens: true)
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# root.tokens # => [[0, :tIDENTIFIER, "x", [1, 0, 1, 1]], [1, :tSP, " ", [1, 1, 1, 2]], ...]
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# root.tokens.map{_1[2]}.join # => "x = 1 + 2"
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#
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# Token is an array of:
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#
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# - id
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# - token type
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# - source code text
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# - location [ first_lineno, first_column, last_lineno, last_column ]
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def tokens
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return nil unless all_tokens
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all_tokens.each_with_object([]) do |token, a|
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loc = token.last
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if ([first_lineno, first_column] <=> [loc[0], loc[1]]) <= 0 &&
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([last_lineno, last_column] <=> [loc[2], loc[3]]) >= 0
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a << token
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end
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end
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end
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# call-seq:
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# node.all_tokens -> array
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#
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# Returns all tokens for the input script regardless the receiver node.
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# Returns +nil+ if +keep_tokens+ is not enabled when #parse method is called.
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#
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# root = RubyVM::AbstractSyntaxTree.parse("x = 1 + 2", keep_tokens: true)
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# root.all_tokens # => [[0, :tIDENTIFIER, "x", [1, 0, 1, 1]], [1, :tSP, " ", [1, 1, 1, 2]], ...]
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# root.children[-1].all_tokens # => [[0, :tIDENTIFIER, "x", [1, 0, 1, 1]], [1, :tSP, " ", [1, 1, 1, 2]], ...]
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def all_tokens
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Primitive.ast_node_all_tokens
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end
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# call-seq:
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# node.children -> array
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#
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# Returns AST nodes under this one. Each kind of node
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# has different children, depending on what kind of node it is.
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#
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# The returned array may contain other nodes or <code>nil</code>.
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def children
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Primitive.ast_node_children
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end
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# call-seq:
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# node.inspect -> string
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#
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# Returns debugging information about this node as a string.
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def inspect
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Primitive.ast_node_inspect
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end
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# call-seq:
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# node.node_id -> integer
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#
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# Returns an internal node_id number.
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# Note that this is an API for ruby internal use, debugging,
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# and research. Do not use this for any other purpose.
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# The compatibility is not guaranteed.
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def node_id
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Primitive.ast_node_node_id
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end
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# call-seq:
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# node.script_lines -> array
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#
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# Returns the original source code as an array of lines.
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#
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# Note that this is an API for ruby internal use, debugging,
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# and research. Do not use this for any other purpose.
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# The compatibility is not guaranteed.
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def script_lines
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Primitive.ast_node_script_lines
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end
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# call-seq:
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# node.source -> string
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#
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# Returns the code fragment that corresponds to this AST.
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#
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# Note that this is an API for ruby internal use, debugging,
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# and research. Do not use this for any other purpose.
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# The compatibility is not guaranteed.
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#
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# Also note that this API may return an incomplete code fragment
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# that does not parse; for example, a here document following
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# an expression may be dropped.
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def source
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lines = script_lines
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if lines
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lines = lines[first_lineno - 1 .. last_lineno - 1]
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lines[-1] = lines[-1].byteslice(0...last_column)
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lines[0] = lines[0].byteslice(first_column..-1)
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lines.join
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else
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nil
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end
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end
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# call-seq:
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# node.locations -> array
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#
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# Returns location objects associated with the AST node.
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# The returned array contains RubyVM::AbstractSyntaxTree::Location.
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def locations
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Primitive.ast_node_locations
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end
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end
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# RubyVM::AbstractSyntaxTree::Location instances are created by
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# RubyVM::AbstractSyntaxTree#locations.
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#
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# This class is MRI specific.
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#
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class Location
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# call-seq:
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# location.first_lineno -> integer
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#
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# The line number in the source code where this AST's text began.
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def first_lineno
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Primitive.ast_location_first_lineno
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end
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# call-seq:
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# location.first_column -> integer
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#
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# The column number in the source code where this AST's text began.
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def first_column
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Primitive.ast_location_first_column
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end
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# call-seq:
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# location.last_lineno -> integer
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#
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# The line number in the source code where this AST's text ended.
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def last_lineno
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Primitive.ast_location_last_lineno
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end
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# call-seq:
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# location.last_column -> integer
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#
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# The column number in the source code where this AST's text ended.
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def last_column
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Primitive.ast_location_last_column
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end
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# call-seq:
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# location.inspect -> string
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#
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# Returns debugging information about this location as a string.
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def inspect
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Primitive.ast_location_inspect
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end
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end
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end
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