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array.rbs
120.37
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basic_object.rbs
12.49
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binding.rbs
4.11
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builtin.rbs
7.27
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class.rbs
6.72
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comparable.rbs
5.63
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complex.rbs
16.03
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constants.rbs
1.89
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data.rbs
12.71
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dir.rbs
31.12
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encoding.rbs
46.68
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enumerable.rbs
82.84
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enumerator.rbs
19.19
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env.rbs
157
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errno.rbs
10.41
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errors.rbs
18.86
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exception.rbs
8.64
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false_class.rbs
2.1
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fiber.rbs
19.03
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fiber_error.rbs
374
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file.rbs
89.71
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file_test.rbs
10.2
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float.rbs
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gc.rbs
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global_variables.rbs
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hash.rbs
58.31
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integer.rbs
38.32
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io.rbs
110.6
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kernel.rbs
100.05
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marshal.rbs
7.07
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match_data.rbs
16.99
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math.rbs
20.4
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method.rbs
8.26
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module.rbs
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nil_class.rbs
3.84
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numeric.rbs
23.74
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object.rbs
5.04
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object_space.rbs
6.11
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proc.rbs
22.37
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process.rbs
74.04
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ractor.rbs
30.8
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random.rbs
7.85
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range.rbs
31.67
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rational.rbs
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rb_config.rbs
2.9
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refinement.rbs
1.42
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regexp.rbs
66.25
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ruby_vm.rbs
13
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set.rbs
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signal.rbs
3.59
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string.rbs
117.37
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string_io.rbs
15.47
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struct.rbs
22.71
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symbol.rbs
12.82
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thread.rbs
51.93
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thread_group.rbs
2.35
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time.rbs
55.6
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trace_point.rbs
12.71
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true_class.rbs
2.23
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unbound_method.rbs
9.99
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warning.rbs
2.42
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2026-04-07 17:22
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# <!-- rdoc-file=proc.c --> # Method objects are created by Object#method, and are associated with a # particular object (not just with a class). They may be used to invoke the # method within the object, and as a block associated with an iterator. They # may also be unbound from one object (creating an UnboundMethod) and bound to # another. # # class Thing # def square(n) # n*n # end # end # thing = Thing.new # meth = thing.method(:square) # # meth.call(9) #=> 81 # [ 1, 2, 3 ].collect(&meth) #=> [1, 4, 9] # # [ 1, 2, 3 ].each(&method(:puts)) #=> prints 1, 2, 3 # # require 'date' # %w[2017-03-01 2017-03-02].collect(&Date.method(:parse)) # #=> [#<Date: 2017-03-01 ((2457814j,0s,0n),+0s,2299161j)>, #<Date: 2017-03-02 ((2457815j,0s,0n),+0s,2299161j)>] # class Method < Object type param_types = Array[[:req | :opt | :rest | :keyreq | :key | :keyrest | :block, Symbol] | [:rest | :keyrest | :nokey]] # <!-- # rdoc-file=proc.c # - meth.to_proc -> proc # --> # Returns a Proc object corresponding to this method. # def to_proc: () -> Proc # <!-- # rdoc-file=proc.c # - meth.call(args, ...) -> obj # --> # Invokes the *meth* with the specified arguments, returning the method's return # value. # # m = 12.method("+") # m.call(3) #=> 15 # m.call(20) #=> 32 # def call: (*untyped args) -> untyped # <!-- # rdoc-file=proc.c # - meth << g -> a_proc # --> # Returns a proc that is the composition of this method and the given *g*. The # returned proc takes a variable number of arguments, calls *g* with them then # calls this method with the result. # # def f(x) # x * x # end # # f = self.method(:f) # g = proc {|x| x + x } # p (f << g).call(2) #=> 16 # def <<: (Proc g) -> Proc # <!-- rdoc-file=proc.c --> # Invokes the *meth* with the specified arguments, returning the method's return # value. # # m = 12.method("+") # m.call(3) #=> 15 # m.call(20) #=> 32 # alias === call # <!-- # rdoc-file=proc.c # - meth >> g -> a_proc # --> # Returns a proc that is the composition of this method and the given *g*. The # returned proc takes a variable number of arguments, calls this method with # them then calls *g* with the result. # # def f(x) # x * x # end # # f = self.method(:f) # g = proc {|x| x + x } # p (f >> g).call(2) #=> 8 # def >>: (Proc g) -> Proc # <!-- rdoc-file=proc.c --> # Invokes the *meth* with the specified arguments, returning the method's return # value. # # m = 12.method("+") # m.call(3) #=> 15 # m.call(20) #=> 32 # alias [] call # <!-- # rdoc-file=proc.c # - meth.arity -> integer # --> # Returns an indication of the number of arguments accepted by a method. Returns # a nonnegative integer for methods that take a fixed number of arguments. For # Ruby methods that take a variable number of arguments, returns -n-1, where n # is the number of required arguments. Keyword arguments will be considered as a # single additional argument, that argument being mandatory if any keyword # argument is mandatory. For methods written in C, returns -1 if the call takes # a variable number of arguments. # # class C # def one; end # def two(a); end # def three(*a); end # def four(a, b); end # def five(a, b, *c); end # def six(a, b, *c, &d); end # def seven(a, b, x:0); end # def eight(x:, y:); end # def nine(x:, y:, **z); end # def ten(*a, x:, y:); end # end # c = C.new # c.method(:one).arity #=> 0 # c.method(:two).arity #=> 1 # c.method(:three).arity #=> -1 # c.method(:four).arity #=> 2 # c.method(:five).arity #=> -3 # c.method(:six).arity #=> -3 # c.method(:seven).arity #=> -3 # c.method(:eight).arity #=> 1 # c.method(:nine).arity #=> 1 # c.method(:ten).arity #=> -2 # # "cat".method(:size).arity #=> 0 # "cat".method(:replace).arity #=> 1 # "cat".method(:squeeze).arity #=> -1 # "cat".method(:count).arity #=> -1 # def arity: () -> Integer # <!-- # rdoc-file=proc.c # - method.clone -> new_method # --> # Returns a clone of this method. # # class A # def foo # return "bar" # end # end # # m = A.new.method(:foo) # m.call # => "bar" # n = m.clone.call # => "bar" # def clone: () -> Method # <!-- # rdoc-file=proc.c # - meth.curry -> proc # - meth.curry(arity) -> proc # --> # Returns a curried proc based on the method. When the proc is called with a # number of arguments that is lower than the method's arity, then another # curried proc is returned. Only when enough arguments have been supplied to # satisfy the method signature, will the method actually be called. # # The optional *arity* argument should be supplied when currying methods with # variable arguments to determine how many arguments are needed before the # method is called. # # def foo(a,b,c) # [a, b, c] # end # # proc = self.method(:foo).curry # proc2 = proc.call(1, 2) #=> #<Proc> # proc2.call(3) #=> [1,2,3] # # def vararg(*args) # args # end # # proc = self.method(:vararg).curry(4) # proc2 = proc.call(:x) #=> #<Proc> # proc3 = proc2.call(:y, :z) #=> #<Proc> # proc3.call(:a) #=> [:x, :y, :z, :a] # def curry: (?Integer arity) -> Proc # <!-- # rdoc-file=proc.c # - meth.name -> symbol # --> # Returns the name of the method. # def name: () -> Symbol # <!-- # rdoc-file=proc.c # - meth.original_name -> symbol # --> # Returns the original name of the method. # # class C # def foo; end # alias bar foo # end # C.instance_method(:bar).original_name # => :foo # def original_name: () -> Symbol # <!-- # rdoc-file=proc.c # - meth.owner -> class_or_module # --> # Returns the class or module on which this method is defined. In other words, # # meth.owner.instance_methods(false).include?(meth.name) # => true # # holds as long as the method is not removed/undefined/replaced, (with # private_instance_methods instead of instance_methods if the method is # private). # # See also Method#receiver. # # (1..3).method(:map).owner #=> Enumerable # def owner: () -> (Class | Module) # <!-- # rdoc-file=proc.c # - meth.parameters -> array # --> # Returns the parameter information of this method. # # def foo(bar); end # method(:foo).parameters #=> [[:req, :bar]] # # def foo(bar, baz, bat, &blk); end # method(:foo).parameters #=> [[:req, :bar], [:req, :baz], [:req, :bat], [:block, :blk]] # # def foo(bar, *args); end # method(:foo).parameters #=> [[:req, :bar], [:rest, :args]] # # def foo(bar, baz, *args, &blk); end # method(:foo).parameters #=> [[:req, :bar], [:req, :baz], [:rest, :args], [:block, :blk]] # def parameters: () -> param_types # <!-- # rdoc-file=proc.c # - meth.receiver -> object # --> # Returns the bound receiver of the method object. # # (1..3).method(:map).receiver # => 1..3 # def receiver: () -> untyped # <!-- # rdoc-file=proc.c # - meth.source_location -> [String, Integer] # --> # Returns the Ruby source filename and line number containing this method or nil # if this method was not defined in Ruby (i.e. native). # def source_location: () -> [ String, Integer ]? # <!-- # rdoc-file=proc.c # - meth.super_method -> method # --> # Returns a Method of superclass which would be called when super is used or nil # if there is no method on superclass. # def super_method: () -> Method? # <!-- # rdoc-file=proc.c # - meth.unbind -> unbound_method # --> # Dissociates *meth* from its current receiver. The resulting UnboundMethod can # subsequently be bound to a new object of the same class (see UnboundMethod). # def unbind: () -> UnboundMethod end