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dfe91fcd08
* numeric.c (flo_round, int_round): support round-to-nearest-even semantics of IEEE 754 to match sprintf behavior, and add `half:` optional keyword argument for the old behavior. [ruby-core:76273] [Bug #12548] git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/trunk@56590 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
398 lines
11 KiB
Ruby
398 lines
11 KiB
Ruby
# frozen_string_literal: false
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module REXML
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# If you add a method, keep in mind two things:
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# (1) the first argument will always be a list of nodes from which to
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# filter. In the case of context methods (such as position), the function
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# should return an array with a value for each child in the array.
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# (2) all method calls from XML will have "-" replaced with "_".
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# Therefore, in XML, "local-name()" is identical (and actually becomes)
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# "local_name()"
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module Functions
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@@context = nil
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@@namespace_context = {}
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@@variables = {}
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def Functions::namespace_context=(x) ; @@namespace_context=x ; end
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def Functions::variables=(x) ; @@variables=x ; end
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def Functions::namespace_context ; @@namespace_context ; end
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def Functions::variables ; @@variables ; end
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def Functions::context=(value); @@context = value; end
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def Functions::text( )
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if @@context[:node].node_type == :element
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return @@context[:node].find_all{|n| n.node_type == :text}.collect{|n| n.value}
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elsif @@context[:node].node_type == :text
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return @@context[:node].value
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else
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return false
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end
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end
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# Returns the last node of the given list of nodes.
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def Functions::last( )
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@@context[:size]
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end
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def Functions::position( )
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@@context[:index]
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end
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# Returns the size of the given list of nodes.
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def Functions::count( node_set )
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node_set.size
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end
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# Since REXML is non-validating, this method is not implemented as it
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# requires a DTD
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def Functions::id( object )
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end
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# UNTESTED
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def Functions::local_name( node_set=nil )
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get_namespace( node_set ) do |node|
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return node.local_name
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end
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end
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def Functions::namespace_uri( node_set=nil )
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get_namespace( node_set ) {|node| node.namespace}
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end
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def Functions::name( node_set=nil )
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get_namespace( node_set ) do |node|
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node.expanded_name
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end
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end
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# Helper method.
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def Functions::get_namespace( node_set = nil )
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if node_set == nil
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yield @@context[:node] if defined? @@context[:node].namespace
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else
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if node_set.respond_to? :each
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node_set.each { |node| yield node if defined? node.namespace }
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elsif node_set.respond_to? :namespace
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yield node_set
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end
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end
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end
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# A node-set is converted to a string by returning the string-value of the
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# node in the node-set that is first in document order. If the node-set is
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# empty, an empty string is returned.
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#
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# A number is converted to a string as follows
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#
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# NaN is converted to the string NaN
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#
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# positive zero is converted to the string 0
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#
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# negative zero is converted to the string 0
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#
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# positive infinity is converted to the string Infinity
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#
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# negative infinity is converted to the string -Infinity
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#
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# if the number is an integer, the number is represented in decimal form
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# as a Number with no decimal point and no leading zeros, preceded by a
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# minus sign (-) if the number is negative
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#
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# otherwise, the number is represented in decimal form as a Number
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# including a decimal point with at least one digit before the decimal
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# point and at least one digit after the decimal point, preceded by a
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# minus sign (-) if the number is negative; there must be no leading zeros
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# before the decimal point apart possibly from the one required digit
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# immediately before the decimal point; beyond the one required digit
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# after the decimal point there must be as many, but only as many, more
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# digits as are needed to uniquely distinguish the number from all other
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# IEEE 754 numeric values.
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#
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# The boolean false value is converted to the string false. The boolean
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# true value is converted to the string true.
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#
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# An object of a type other than the four basic types is converted to a
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# string in a way that is dependent on that type.
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def Functions::string( object=nil )
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#object = @context unless object
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if object.instance_of? Array
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string( object[0] )
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elsif defined? object.node_type
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if object.node_type == :attribute
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object.value
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elsif object.node_type == :element || object.node_type == :document
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string_value(object)
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else
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object.to_s
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end
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elsif object.nil?
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return ""
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else
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object.to_s
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end
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end
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# A node-set is converted to a string by
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# returning the concatenation of the string-value
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# of each of the children of the node in the
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# node-set that is first in document order.
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# If the node-set is empty, an empty string is returned.
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def Functions::string_value( o )
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rv = ""
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o.children.each { |e|
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if e.node_type == :text
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rv << e.to_s
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elsif e.node_type == :element
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rv << string_value( e )
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end
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}
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rv
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end
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# UNTESTED
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def Functions::concat( *objects )
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objects.join
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end
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# Fixed by Mike Stok
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def Functions::starts_with( string, test )
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string(string).index(string(test)) == 0
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end
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# Fixed by Mike Stok
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def Functions::contains( string, test )
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string(string).include?(string(test))
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end
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# Kouhei fixed this
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def Functions::substring_before( string, test )
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ruby_string = string(string)
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ruby_index = ruby_string.index(string(test))
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if ruby_index.nil?
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""
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else
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ruby_string[ 0...ruby_index ]
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end
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end
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# Kouhei fixed this too
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def Functions::substring_after( string, test )
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ruby_string = string(string)
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return $1 if ruby_string =~ /#{test}(.*)/
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""
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end
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# Take equal portions of Mike Stok and Sean Russell; mix
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# vigorously, and pour into a tall, chilled glass. Serves 10,000.
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def Functions::substring( string, start, length=nil )
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ruby_string = string(string)
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ruby_length = if length.nil?
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ruby_string.length.to_f
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else
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number(length)
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end
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ruby_start = number(start)
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# Handle the special cases
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return '' if (
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ruby_length.nan? or
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ruby_start.nan? or
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ruby_start.infinite?
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)
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infinite_length = ruby_length.infinite? == 1
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ruby_length = ruby_string.length if infinite_length
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# Now, get the bounds. The XPath bounds are 1..length; the ruby bounds
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# are 0..length. Therefore, we have to offset the bounds by one.
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ruby_start = round(ruby_start) - 1
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ruby_length = round(ruby_length)
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if ruby_start < 0
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ruby_length += ruby_start unless infinite_length
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ruby_start = 0
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end
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return '' if ruby_length <= 0
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ruby_string[ruby_start,ruby_length]
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end
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# UNTESTED
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def Functions::string_length( string )
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string(string).length
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end
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# UNTESTED
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def Functions::normalize_space( string=nil )
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string = string(@@context[:node]) if string.nil?
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if string.kind_of? Array
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string.collect{|x| string.to_s.strip.gsub(/\s+/um, ' ') if string}
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else
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string.to_s.strip.gsub(/\s+/um, ' ')
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end
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end
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# This is entirely Mike Stok's beast
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def Functions::translate( string, tr1, tr2 )
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from = string(tr1)
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to = string(tr2)
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# the map is our translation table.
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#
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# if a character occurs more than once in the
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# from string then we ignore the second &
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# subsequent mappings
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#
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# if a character maps to nil then we delete it
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# in the output. This happens if the from
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# string is longer than the to string
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#
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# there's nothing about - or ^ being special in
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# http://www.w3.org/TR/xpath#function-translate
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# so we don't build ranges or negated classes
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map = Hash.new
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0.upto(from.length - 1) { |pos|
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from_char = from[pos]
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unless map.has_key? from_char
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map[from_char] =
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if pos < to.length
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to[pos]
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else
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nil
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end
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end
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}
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if ''.respond_to? :chars
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string(string).chars.collect { |c|
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if map.has_key? c then map[c] else c end
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}.compact.join
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else
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string(string).unpack('U*').collect { |c|
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if map.has_key? c then map[c] else c end
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}.compact.pack('U*')
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end
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end
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# UNTESTED
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def Functions::boolean( object=nil )
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if object.kind_of? String
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if object =~ /\d+/u
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return object.to_f != 0
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else
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return object.size > 0
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end
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elsif object.kind_of? Array
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object = object.find{|x| x and true}
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end
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return object ? true : false
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end
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# UNTESTED
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def Functions::not( object )
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not boolean( object )
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end
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# UNTESTED
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def Functions::true( )
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true
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end
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# UNTESTED
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def Functions::false( )
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false
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end
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# UNTESTED
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def Functions::lang( language )
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lang = false
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node = @@context[:node]
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attr = nil
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until node.nil?
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if node.node_type == :element
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attr = node.attributes["xml:lang"]
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unless attr.nil?
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lang = compare_language(string(language), attr)
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break
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else
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end
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end
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node = node.parent
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end
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lang
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end
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def Functions::compare_language lang1, lang2
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lang2.downcase.index(lang1.downcase) == 0
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end
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# a string that consists of optional whitespace followed by an optional
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# minus sign followed by a Number followed by whitespace is converted to
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# the IEEE 754 number that is nearest (according to the IEEE 754
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# round-to-nearest rule) to the mathematical value represented by the
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# string; any other string is converted to NaN
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#
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# boolean true is converted to 1; boolean false is converted to 0
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#
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# a node-set is first converted to a string as if by a call to the string
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# function and then converted in the same way as a string argument
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#
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# an object of a type other than the four basic types is converted to a
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# number in a way that is dependent on that type
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def Functions::number( object=nil )
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object = @@context[:node] unless object
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case object
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when true
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Float(1)
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when false
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Float(0)
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when Array
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number(string( object ))
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when Numeric
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object.to_f
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else
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str = string( object )
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# If XPath ever gets scientific notation...
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#if str =~ /^\s*-?(\d*\.?\d+|\d+\.)([Ee]\d*)?\s*$/
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if str =~ /^\s*-?(\d*\.?\d+|\d+\.)\s*$/
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str.to_f
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else
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(0.0 / 0.0)
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end
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end
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end
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def Functions::sum( nodes )
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nodes = [nodes] unless nodes.kind_of? Array
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nodes.inject(0) { |r,n| r + number(string(n)) }
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end
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def Functions::floor( number )
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number(number).floor
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end
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def Functions::ceiling( number )
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number(number).ceil
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end
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def Functions::round( number )
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number = number(number)
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begin
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neg = number.negative?
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number = number.abs.round(half: :up)
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neg ? -number : number
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rescue FloatDomainError
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number
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end
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end
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def Functions::processing_instruction( node )
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node.node_type == :processing_instruction
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end
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def Functions::method_missing( id )
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puts "METHOD MISSING #{id.id2name}"
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XPath.match( @@context[:node], id.id2name )
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end
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end
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end
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