364 lines
5.6 KiB
Ruby
364 lines
5.6 KiB
Ruby
require 'enumerator'
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module Hashery
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# Hash with LRU expiry policy. There are at most max_size elements in a
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# LRUHash. When adding more elements old elements are removed according
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# to LRU policy.
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#
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# Based on Robert Klemme's LRUHash class.
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#
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# LRUHash, Copyright (c) 2010 Robert Klemme.
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#
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class LRUHash
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include Enumerable
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attr_reader :max_size
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attr_accessor :default
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attr_accessor :default_proc
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attr_accessor :release_proc
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#
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# Initialize new LRUHash instance.
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#
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# max_size -
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# default_value -
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# block -
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#
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def initialize(max_size, default_value=nil, &block)
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@max_size = normalize_max(max_size)
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@default = default_value
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@default_proc = block
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@h = {}
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@head = Node.new
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@tail = front(Node.new)
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end
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#
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# Iterate over each pair.
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#
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def each_pair
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if block_given?
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each_node do |n|
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yield [n.key, n.value]
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end
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else
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enum_for :each_pair
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end
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end
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#
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# Same as each pair.
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#
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alias each each_pair
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#
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# Iterate over each key.
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#
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def each_key
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if block_given?
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each_node do |n|
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yield n.key
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end
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else
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enum_for :each_key
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end
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end
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#
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# Iterate over each value.
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#
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def each_value
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if block_given?
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each_node do |n|
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yield n.value
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end
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else
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enum_for :each_value
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end
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end
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#
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# Size of the hash.
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#
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def size
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@h.size
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end
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#
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#
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#
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def empty?
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@head.succ.equal? @tail
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end
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#
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#
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#
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def fetch(key, &b)
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n = @h[key]
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if n
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front(n).value
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else
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(b || FETCH)[key]
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end
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end
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#
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#
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#
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def [](key)
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fetch(key) do |k|
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@default_proc ? @default_proc[self, k] : default
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end
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end
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#
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#
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#
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def keys
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@h.keys
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end
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#
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#
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#
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def values
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@h.map {|k,n| n.value}
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end
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#
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#
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#
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def has_key?(key)
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@h.has_key? key
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end
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alias key? has_key?
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alias member? has_key?
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alias include? has_key?
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#
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#
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#
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def has_value?(value)
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each_pair do |k, v|
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return true if value.eql? v
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end
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false
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end
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alias value? has_value?
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def values_at(*key_list)
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key_list.map {|k| self[k]}
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end
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#
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#
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#
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def assoc(key)
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n = @h[key]
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if n
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front(n)
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[n.key, n.value]
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end
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end
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#
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#
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#
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def rassoc(value)
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each_node do |n|
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if value.eql? n.value
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front(n)
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return [n.key, n.value]
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end
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end
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nil
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end
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#
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#
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#
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def key(value)
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pair = rassoc(value) and pair.first
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end
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#
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#
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#
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def store(key, value)
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# same optimization as in Hash
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key = key.dup.freeze if String === key && !key.frozen?
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n = @h[key]
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unless n
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if size == max_size
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# reuse node to optimize memory usage
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n = delete_oldest
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n.key = key
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n.value = value
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else
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n = Node.new key, value
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end
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@h[key] = n
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end
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front(n).value = value
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end
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alias []= store
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#
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#
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#
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def delete(key)
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n = @h[key] and remove_node(n).value
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end
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#
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#
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#
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def delete_if
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each_node do |n|
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remove_node n if yield n.key, n.value
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end
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end
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#
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#
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#
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def max_size=(limit)
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limit = normalize_max(limit)
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while size > limit
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delete_oldest
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end
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@max_size = limit
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end
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#
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#
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#
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def clear
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until empty?
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delete_oldest
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end
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self
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end
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#
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#
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#
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def to_s
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s = nil
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each_pair {|k, v| (s ? (s << ', ') : s = '{') << k.to_s << '=>' << v.to_s}
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s ? (s << '}') : '{}'
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end
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alias inspect to_s
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private
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#
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# Iterate nodes.
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#
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def each_node
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n = @head.succ
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until n.equal? @tail
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succ = n.succ
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yield n
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n = succ
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end
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self
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end
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#
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# Move node to front.
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#
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# node - [Node]
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#
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def front(node)
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node.insert_after(@head)
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end
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#
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# Remove the node and invoke release_proc
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# if set
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#
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# node - [Node]
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#
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def remove_node(node)
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n = @h.delete(node.key)
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n.unlink
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release_proc and release_proc[n.key, n.value]
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n
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end
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#
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# Remove the oldest node returning the node
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#
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def delete_oldest
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n = @tail.pred
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raise "Cannot delete from empty hash" if @head.equal? n
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remove_node n
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end
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#
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# Normalize the argument in order to be usable as max_size
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# criterion is that n.to_i must be an Integer and it must
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# be larger than zero.
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#
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# n - [#to_i] max size
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#
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def normalize_max(n)
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n = n.to_i
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raise ArgumentError, 'Invalid max_size: %p' % n unless Integer === n && n > 0
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n
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end
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#
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FETCH = Proc.new {|k| raise KeyError, 'key not found'}
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# A single node in the doubly linked LRU list of nodes.
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Node = Struct.new :key, :value, :pred, :succ do
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def unlink
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pred.succ = succ if pred
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succ.pred = pred if succ
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self.succ = self.pred = nil
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self
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end
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def insert_after(node)
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raise 'Cannot insert after self' if equal? node
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return self if node.succ.equal? self
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unlink
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self.succ = node.succ
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self.pred = node
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node.succ.pred = self if node.succ
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node.succ = self
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self
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end
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end
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end
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end
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