class Prism::SingletonClassNode

^^^^^^^^^^^^^^^^^
class << self end
Represents a singleton class declaration involving the ‘class` keyword.

def self.type

Return a symbol representation of this node type. See `Node::type`.
def self.type
  :singleton_class_node
end

def ===(other)

comparing the value of locations. Locations are checked only for presence.
Implements case-equality for the node. This is effectively == but without
def ===(other)
  other.is_a?(SingletonClassNode) &&
    (locals.length == other.locals.length) &&
    locals.zip(other.locals).all? { |left, right| left === right } &&
    (class_keyword_loc.nil? == other.class_keyword_loc.nil?) &&
    (operator_loc.nil? == other.operator_loc.nil?) &&
    (expression === other.expression) &&
    (body === other.body) &&
    (end_keyword_loc.nil? == other.end_keyword_loc.nil?)
end

def accept(visitor)

def accept: (Visitor visitor) -> void
def accept(visitor)
  visitor.visit_singleton_class_node(self)
end

def child_nodes

def child_nodes: () -> Array[nil | Node]
def child_nodes
  [expression, body]
end

def class_keyword

def class_keyword: () -> String
def class_keyword
  class_keyword_loc.slice
end

def class_keyword_loc

attr_reader class_keyword_loc: Location
def class_keyword_loc
  location = @class_keyword_loc
  return location if location.is_a?(Location)
  @class_keyword_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF)
end

def comment_targets

def comment_targets: () -> Array[Node | Location]
def comment_targets
  [class_keyword_loc, operator_loc, expression, *body, end_keyword_loc] #: Array[Prism::node | Location]
end

def compact_child_nodes

def compact_child_nodes: () -> Array[Node]
def compact_child_nodes
  compact = [] #: Array[Prism::node]
  compact << expression
  compact << body if body
  compact
end

def copy(node_id: self.node_id, location: self.location, flags: self.flags, locals: self.locals, class_keyword_loc: self.class_keyword_loc, operator_loc: self.operator_loc, expression: self.expression, body: self.body, end_keyword_loc: self.end_keyword_loc)

def copy: (?node_id: Integer, ?location: Location, ?flags: Integer, ?locals: Array[Symbol], ?class_keyword_loc: Location, ?operator_loc: Location, ?expression: Prism::node, ?body: StatementsNode | BeginNode | nil, ?end_keyword_loc: Location) -> SingletonClassNode
def copy(node_id: self.node_id, location: self.location, flags: self.flags, locals: self.locals, class_keyword_loc: self.class_keyword_loc, operator_loc: self.operator_loc, expression: self.expression, body: self.body, end_keyword_loc: self.end_keyword_loc)
  SingletonClassNode.new(source, node_id, location, flags, locals, class_keyword_loc, operator_loc, expression, body, end_keyword_loc)
end

def deconstruct_keys(keys)

def deconstruct_keys: (Array[Symbol] keys) -> { node_id: Integer, location: Location, locals: Array[Symbol], class_keyword_loc: Location, operator_loc: Location, expression: Prism::node, body: StatementsNode | BeginNode | nil, end_keyword_loc: Location }
def deconstruct_keys(keys)
  { node_id: node_id, location: location, locals: locals, class_keyword_loc: class_keyword_loc, operator_loc: operator_loc, expression: expression, body: body, end_keyword_loc: end_keyword_loc }
end

def end_keyword

def end_keyword: () -> String
def end_keyword
  end_keyword_loc.slice
end

def end_keyword_loc

attr_reader end_keyword_loc: Location
def end_keyword_loc
  location = @end_keyword_loc
  return location if location.is_a?(Location)
  @end_keyword_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF)
end

def initialize(source, node_id, location, flags, locals, class_keyword_loc, operator_loc, expression, body, end_keyword_loc)

Initialize a new SingletonClassNode node.
def initialize(source, node_id, location, flags, locals, class_keyword_loc, operator_loc, expression, body, end_keyword_loc)
  @source = source
  @node_id = node_id
  @location = location
  @flags = flags
  @locals = locals
  @class_keyword_loc = class_keyword_loc
  @operator_loc = operator_loc
  @expression = expression
  @body = body
  @end_keyword_loc = end_keyword_loc
end

def inspect

def inspect -> String
def inspect
  InspectVisitor.compose(self)
end

def operator

def operator: () -> String
def operator
  operator_loc.slice
end

def operator_loc

attr_reader operator_loc: Location
def operator_loc
  location = @operator_loc
  return location if location.is_a?(Location)
  @operator_loc = Location.new(source, location >> 32, location & 0xFFFFFFFF)
end

def type

Return a symbol representation of this node type. See `Node#type`.
def type
  :singleton_class_node
end