class Prism::YieldNode
^^^^^^^
yield 1
Represents the use of the ‘yield` keyword.
def self.type
def self.type :yield_node end
def ===(other)
Implements case-equality for the node. This is effectively == but without
def ===(other) other.is_a?(YieldNode) && (keyword_loc.nil? == other.keyword_loc.nil?) && (lparen_loc.nil? == other.lparen_loc.nil?) && (arguments === other.arguments) && (rparen_loc.nil? == other.rparen_loc.nil?) end
def accept(visitor)
def accept(visitor) visitor.visit_yield_node(self) end
def child_nodes
def child_nodes [arguments] end
def comment_targets
def comment_targets [keyword_loc, *lparen_loc, *arguments, *rparen_loc] #: Array[Prism::node | Location] end
def compact_child_nodes
def compact_child_nodes compact = [] #: Array[Prism::node] compact << arguments if arguments compact end
def copy(node_id: self.node_id, location: self.location, flags: self.flags, keyword_loc: self.keyword_loc, lparen_loc: self.lparen_loc, arguments: self.arguments, rparen_loc: self.rparen_loc)
def copy(node_id: self.node_id, location: self.location, flags: self.flags, keyword_loc: self.keyword_loc, lparen_loc: self.lparen_loc, arguments: self.arguments, rparen_loc: self.rparen_loc) YieldNode.new(source, node_id, location, flags, keyword_loc, lparen_loc, arguments, rparen_loc) end
def deconstruct_keys(keys)
def deconstruct_keys(keys) { node_id: node_id, location: location, keyword_loc: keyword_loc, lparen_loc: lparen_loc, arguments: arguments, rparen_loc: rparen_loc } end
def initialize(source, node_id, location, flags, keyword_loc, lparen_loc, arguments, rparen_loc)
def initialize(source, node_id, location, flags, keyword_loc, lparen_loc, arguments, rparen_loc) @source = source @node_id = node_id @location = location @flags = flags @keyword_loc = keyword_loc @lparen_loc = lparen_loc @arguments = arguments @rparen_loc = rparen_loc end
def inspect
def inspect InspectVisitor.compose(self) end
def keyword
def keyword keyword_loc.slice end
def keyword_loc
def keyword_loc location = @keyword_loc return location if location.is_a?(Location) @keyword_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF) end
def lparen
def lparen lparen_loc&.slice end
def lparen_loc
def lparen_loc location = @lparen_loc case location when nil nil when Location location else @lparen_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF) end end
def rparen
def rparen rparen_loc&.slice end
def rparen_loc
def rparen_loc location = @rparen_loc case location when nil nil when Location location else @rparen_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF) end end
def save_keyword_loc(repository)
Save the keyword_loc location using the given saved source so that
def save_keyword_loc(repository) repository.enter(node_id, :keyword_loc) end
def save_lparen_loc(repository)
Save the lparen_loc location using the given saved source so that
def save_lparen_loc(repository) repository.enter(node_id, :lparen_loc) unless @lparen_loc.nil? end
def save_rparen_loc(repository)
Save the rparen_loc location using the given saved source so that
def save_rparen_loc(repository) repository.enter(node_id, :rparen_loc) unless @rparen_loc.nil? end
def type
def type :yield_node end