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b3144a7a0e
* time.c (time_minus): ditto. * time.c (time_new_internal): round usec overflow and underflow here. * time.c (time_plus): move operand overflow/underflow check to time_new_internal(). * time.c (time_minus): ditto. * time.c (time_cmp): should consider tv_usec too. * time.c (time_gmtime): time_modify() should be called even if tm struct is not calculated yet. git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@1880 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
207 lines
5.5 KiB
Ruby
207 lines
5.5 KiB
Ruby
# The Singleton module implements the Singleton pattern - i.e.
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#
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# class Klass
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# include Singleton
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# # ...
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# end
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#
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# * ensures that only one instance of Klass called ``the instance''
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# can be created.
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#
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# a,b = Klass.instance, Klass.instance
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# a == b # => true
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# a.new # NoMethodError - new is private ...
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#
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# * ``The instance'' is created at instanciation time - i.e. the first call
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# of Klass.instance().
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#
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# class OtherKlass
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# include Singleton
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# # ...
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# end
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# p "#{ObjectSpace.each_object(OtherKlass) {}}" # => 0
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#
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# * This behavior is preserved under inheritance.
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#
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#
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# This achieved by marking
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# * Klass.new and Klass.allocate - as private and modifying
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# * Klass.inherited(sub_klass) - to ensure
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# that the Singleton pattern is properly inherited.
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#
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# In addition Klass is provided with the class methods
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# * Klass.instance() - returning ``the instance''
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# * Klass._load(str) - returning ``the instance''
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# * Klass._wait() - a hook method putting a second (or n-th)
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# thread calling Klass.instance on a waiting loop if the first call
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# to Klass.instance is still in progress.
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#
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# The sole instance method of Singleton is
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# * _dump(depth) - returning the empty string
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# The default Marshalling strategy is to strip all state information - i.e.
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# instance variables from ``the instance''. Providing custom
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# _dump(depth) and _load(str) method allows the (partial) resurrection
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# of a previous state of ``the instance'' - see third example.
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#
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module Singleton
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def Singleton.included (klass)
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# should this be checked?
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# raise TypeError.new "..." if klass.type == Module
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klass.module_eval {
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undef_method :clone
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undef_method :dup
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}
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class << klass
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def inherited(sub_klass)
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# @__instance__ takes on one of the following values
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# * nil - before (and after a failed) creation
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# * false - during creation
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# * sub_class instance - after a successful creation
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sub_klass.instance_eval { @__instance__ = nil }
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def sub_klass.instance
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unless @__instance__.nil?
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# is the extra flexiblity having the hook method
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# _wait() around ever useful?
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_wait()
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# check for instance creation
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return @__instance__ if @__instance__
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end
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Thread.critical = true
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unless @__instance__
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@__instance__ = false
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Thread.critical = false
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begin
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@__instance__ = new
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ensure
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if @__instance__
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define_method(:instance) {@__instance__ }
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else
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# failed instance creation
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@__instance__ = nil
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end
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end
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else
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Thread.critical = false
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end
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return @__instance__
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end
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end
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def _load(str)
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instance
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end
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def _wait
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sleep(0.05) while false.equal?(@__instance__)
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end
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private :new, :allocate
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# hook methods are also marked private
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private :_load,:_wait
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end
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klass.inherited klass
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end
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private
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def _dump(depth)
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return ""
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end
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end
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if __FILE__ == $0
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#basic example
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class SomeSingletonClass
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include Singleton
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end
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a = SomeSingletonClass.instance
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b = SomeSingletonClass.instance # a and b are same object
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p a == b # => true
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begin
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SomeSingletonClass.new
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rescue NoMethodError => mes
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puts mes
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end
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# threaded example with exception and customized hook #_wait method
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Thread.abort_on_exception = false
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def num_of_instances(mod)
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"#{ObjectSpace.each_object(mod){}} #{mod} instance"
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end
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class Ups < SomeSingletonClass
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def initialize
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type.__sleep
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puts "initialize called by thread ##{Thread.current[:i]}"
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end
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class << self
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def _wait
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@enter.push Thread.current[:i]
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sleep 0.02 while false.equal?(@__instance__)
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@leave.push Thread.current[:i]
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end
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def __sleep
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sleep (rand(0.1))
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end
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def allocate
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__sleep
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def self.allocate; __sleep; super() end
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raise "allocation in thread ##{Thread.current[:i]} aborted"
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end
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def instanciate_all
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@enter = []
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@leave = []
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1.upto(9) do |i|
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Thread.new do
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begin
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Thread.current[:i] = i
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__sleep
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instance
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rescue RuntimeError => mes
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puts mes
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end
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end
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end
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puts "Before there were #{num_of_instances(Ups)}s"
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sleep 3
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puts "Now there is #{num_of_instances(Ups)}"
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puts "#{@enter.join "; "} was the order of threads entering the waiting loop"
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puts "#{@leave.join "; "} was the order of threads leaving the waiting loop"
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end
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end
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end
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Ups.instanciate_all
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# results in message like
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# Before there were 0 Ups instances
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# boom - allocation in thread #8 aborted
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# initialize called by thread #3
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# Now there is 1 Ups instance
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# 2; 3; 6; 1; 7; 5; 9; 4 was the order of threads entering the waiting loop
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# 3; 2; 1; 7; 6; 5; 4; 9 was the order of threads leaving the waiting loop
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# Customized marshalling
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class A
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include Singleton
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attr_accessor :persist, :die
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def _dump(depth)
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# this strips the @die information from the instance
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Marshal.dump(@persist,depth)
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end
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end
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def A._load(str)
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instance.persist = Marshal.load(str)
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instance
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end
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a = A.instance
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a.persist = ["persist"]
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a.die = "die"
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stored_state = Marshal.dump(a)
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# change state
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a.persist = nil
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a.die = nil
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b = Marshal.load(stored_state)
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p a == b # => true
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p a.persist # => ["persist"]
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p a.die # => nil
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end
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