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##
# Hash
#
# ISO 15.2.13
##
# Hash is enumerable
#
# ISO 15.2.13.3
include Enumerable
##
# call-seq:
# hash == object -> true or false
#
# Equality---Two hashes are equal if they each contain the same number
# of keys and if each key-value pair is equal to (according to
# <code>Object#==</code>) the corresponding elements in the other
# hash.
#
# ISO 15.2.13.4.1
return true if self.equal?(hash)
unless Hash === hash
return false
end
return false if self.size != hash.size
self.each do
return false unless hash.key?(k)
return false unless self[k] == hash[k]
end
return true
end
##
# call-seq:
# hash.eql? object -> true or false
#
# Returns <code>true</code> if <i>hash</i> and <i>other</i> are
# both hashes with the same content compared by eql?.
#
return true if self.equal?(hash)
unless Hash === hash
return false
end
return false if self.size != hash.size
self.each do
return false unless hash.key?(k)
return false unless self[k].eql?(hash[k])
end
return true
end
##
# call-seq:
# hash.delete(key) -> value or nil
# hash.delete(key) {|key| ... } -> object
#
# Delete the element with the key +key+.
# Return the value of the element if +key+
# was found. Return nil if nothing was
# found. If a block is given, call the
# block with the value of the element.
#
# ISO 15.2.13.4.8
if block && !self.has_key?(key)
return block.call(key)
end
self.__delete(key)
end
##
# call-seq:
# hsh.each {| key, value | block } -> hsh
# hsh.each_pair {| key, value | block } -> hsh
# hsh.each -> an_enumerator
# hsh.each_pair -> an_enumerator
#
# Calls the given block for each element of +self+
# and pass the key and value of each element.
#
# If no block is given, an enumerator is returned instead.
#
# h = { "a" => 100, "b" => 200 }
# h.each {|key, value| puts "#{key} is #{value}" }
#
# <em>produces:</em>
#
# a is 100
# b is 200
#
# ISO 15.2.13.4.9
return to_enum :each unless block
keys = self.keys
vals = self.values
len = self.size
i = 0
while i < len
block.call [keys[i], vals[i]]
i += 1
end
self
end
##
# call-seq:
# hsh.each_key {| key | block } -> hsh
# hsh.each_key -> an_enumerator
#
# Calls the given block for each element of +self+
# and pass the key of each element.
#
# If no block is given, an enumerator is returned instead.
#
# h = { "a" => 100, "b" => 200 }
# h.each_key {|key| puts key }
#
# <em>produces:</em>
#
# a
# b
#
# ISO 15.2.13.4.10
return to_enum :each_key unless block
self.keys.each{ block.call(k)}
self
end
##
# call-seq:
# hsh.each_value {| value | block } -> self
# hsh.each_value -> an_enumerator
#
# Calls the given block with each value; returns +self+:
#
# If no block is given, an enumerator is returned instead.
#
# h = { "a" => 100, "b" => 200 }
# h.each_value {|value| puts value }
#
# <em>produces:</em>
#
# 100
# 200
#
# ISO 15.2.13.4.11
return to_enum :each_value unless block
self.values.each{ block.call(v)}
self
end
##
# call-seq:
# hsh.merge(other_hash..) -> hsh
# hsh.merge(other_hash..){|key, oldval, newval| block} -> hsh
#
# Returns the new \Hash formed by merging each of +other_hashes+
# into a copy of +self+.
#
# Each argument in +other_hashes+ must be a \Hash.
# Adds the contents of _other_hash_ to _hsh_. If no block is specified,
# entries with duplicate keys are overwritten with the values from
# _other_hash_, otherwise the value of each duplicate key is determined by
# calling the block with the key, its value in _hsh_ and its value in
# _other_hash_.
#
# Example:
# h = {foo: 0, bar: 1, baz: 2}
# h1 = {bat: 3, bar: 4}
# h2 = {bam: 5, bat:6}
# h3 = h.merge(h1, h2) { |key, old_value, new_value| old_value + new_value }
# h3 # => {:foo=>0, :bar=>5, :baz=>2, :bat=>9, :bam=>5}
#
# ISO 15.2.13.4.22
i=0; len=others.size
h = self.dup
return h.__merge(*others) unless block
while i<len
other = others[i]
i += 1
raise TypeError, unless Hash === other
other.each_key{
h[k] = (self.has_key?(k))? block.call(k, self[k], other[k]): other[k]
}
end
h
end
# internal method for Hash inspection
return if self.size == 0
return if recur_list[self.object_id]
recur_list[self.object_id] = true
ary=[]
keys=self.keys
vals=self.values
size=keys.size
i=0
while i<size
ary<<(keys[i]._inspect(recur_list) + + vals[i]._inspect(recur_list))
i+=1
end
+ary.join()+
end
##
# Return the contents of this hash as a string.
#
self._inspect({})
end
alias to_s inspect
##
# call-seq:
# hsh.reject! {| key, value | block } -> hsh or nil
# hsh.reject! -> an_enumerator
#
# Equivalent to <code>Hash#delete_if</code>, but returns
# <code>nil</code> if no changes were made.
#
# 1.8/1.9 Hash#reject! returns Hash; ISO says nothing.
#
return to_enum :reject! unless block
keys = []
self.each{
if block.call([k, v])
keys.push(k)
end
}
return nil if keys.size == 0
keys.each{
self.delete(k)
}
self
end
##
# call-seq:
# hsh.reject {|key, value| block} -> a_hash
# hsh.reject -> an_enumerator
#
# Returns a new hash consisting of entries for which the block returns false.
#
# If no block is given, an enumerator is returned instead.
#
# h = { "a" => 100, "b" => 200, "c" => 300 }
# h.reject {|k,v| k < "b"} #=> {"b" => 200, "c" => 300}
# h.reject {|k,v| v > 100} #=> {"a" => 100}
#
# 1.8/1.9 Hash#reject returns Hash; ISO says nothing.
#
return to_enum :reject unless block
h = {}
self.each{
unless block.call([k, v])
h[k] = v
end
}
h
end
##
# call-seq:
# hsh.select! {| key, value | block } -> hsh or nil
# hsh.select! -> an_enumerator
#
# Equivalent to <code>Hash#keep_if</code>, but returns
# <code>nil</code> if no changes were made.
#
# 1.9 Hash#select! returns Hash; ISO says nothing.
#
return to_enum :select! unless block
keys = []
self.each{
unless block.call([k, v])
keys.push(k)
end
}
return nil if keys.size == 0
keys.each{
self.delete(k)
}
self
end
##
# call-seq:
# hsh.select {|key, value| block} -> a_hash
# hsh.select -> an_enumerator
#
# Returns a new hash consisting of entries for which the block returns true.
#
# If no block is given, an enumerator is returned instead.
#
# h = { "a" => 100, "b" => 200, "c" => 300 }
# h.select {|k,v| k > "a"} #=> {"b" => 200, "c" => 300}
# h.select {|k,v| v < 200} #=> {"a" => 100}
#
# 1.9 Hash#select returns Hash; ISO says nothing
#
return to_enum :select unless block
h = {}
self.each{
if block.call([k, v])
h[k] = v
end
}
h
end
end