2015-05-13 15:06:38 +02:00
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module Parfait
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# A word is a a short sequence of characters
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# Characters are not modeled as objects but as (small) integers
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2015-10-26 11:23:52 +01:00
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# The small means two of them have to fit into a machine word, utf16 or similar
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2015-05-13 15:06:38 +02:00
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#
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# Words are constant, maybe like js strings, ruby symbols
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# Words are short, but may have spaces
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2015-05-15 15:45:36 +02:00
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2015-05-17 13:41:18 +02:00
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# Words are objects, that means they carry Layout as index 0
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# So all indexes are offset by one in the implementation
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# Object length is measured in non-layout cells though
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2015-05-13 15:06:38 +02:00
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class Word < Object
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2015-10-26 11:23:52 +01:00
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attribute :char_length
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2015-11-09 22:28:40 +01:00
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#semi "indexed" methods for interpreter
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def self.get_length_index
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2015-11-11 18:11:08 +01:00
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2 # 2 is the amount of attributes, layout and char_length. the offset after which chars start
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2015-11-09 22:28:40 +01:00
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end
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def self.get_indexed i
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2015-11-19 09:09:24 +01:00
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i + get_length_index * 4
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2015-11-09 22:28:40 +01:00
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end
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2015-05-14 19:39:12 +02:00
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# initialize with length. For now we try to keep all non-parfait (including String) out
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2015-05-20 12:50:25 +02:00
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# String will contain spaces for non-zero length
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2015-10-22 17:16:29 +02:00
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# Register provides methods to create Parfait objects from ruby
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2015-05-15 15:45:36 +02:00
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def initialize len
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super()
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2015-10-26 11:23:52 +01:00
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self.char_length = 0
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2015-05-15 15:45:36 +02:00
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raise "Must init with int, not #{len.class}" unless len.kind_of? Fixnum
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raise "Must init with positive, not #{len}" if len < 0
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2015-10-26 11:23:52 +01:00
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set_length( len , 32 ) unless len == 0 #32 beeing ascii space
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2015-11-08 22:58:54 +01:00
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#puts "layout #{self.get_layout} #{self.object_id.to_s(16)}"
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2015-05-15 15:45:36 +02:00
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end
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2015-05-20 12:50:25 +02:00
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# return a copy of self
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def copy
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cop = Word.new( self.length )
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index = 1
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while( index <= self.length )
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cop.set_char(index , self.get_char(index))
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index = index + 1
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end
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cop
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end
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# return the number of characters
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def length()
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2015-10-26 11:23:52 +01:00
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obj_len = self.char_length
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2015-05-15 15:45:36 +02:00
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return obj_len
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2015-05-14 19:39:12 +02:00
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end
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2015-05-28 20:10:27 +02:00
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# make every char equal the given one
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def fill_with char
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fill_from_with(0 , char)
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end
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def fill_from_with from , char
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len = self.length()
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return if from <= 0
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while( from <= len)
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set_char( from , char)
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from = from + 1
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end
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from
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end
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2015-05-20 12:50:25 +02:00
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# true if no characters
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2015-05-15 15:45:36 +02:00
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def empty?
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return self.length == 0
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end
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2015-05-14 19:39:12 +02:00
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2015-05-20 12:50:25 +02:00
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# pad the string with the given character to the given length
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#
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2015-05-14 19:39:12 +02:00
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def set_length(len , fill_char)
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2015-05-17 14:34:45 +02:00
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return if len <= 0
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2015-10-26 11:23:52 +01:00
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old = self.char_length
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return if old >= len
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self.char_length = len
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check_length
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fill_from_with( old + 1 , fill_char )
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2015-05-14 19:39:12 +02:00
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end
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2015-05-20 12:50:25 +02:00
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# set the character at the given index to the given character
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# character must be an integer, as is the index
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# the index starts at one, but may be negative to count from the end
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# indexes out of range will raise an error
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2015-05-14 19:39:12 +02:00
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def set_char at , char
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2015-10-26 11:23:52 +01:00
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raise "char not fixnum #{char.class}" unless char.kind_of? Fixnum
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2015-05-14 19:39:12 +02:00
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index = range_correct_index(at)
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2015-11-19 09:09:24 +01:00
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set_internal_byte( index , char)
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end
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def set_internal_byte index , char
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word_index = (index) / 4
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rest = ((index) % 4)
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2015-11-11 18:11:08 +01:00
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shifted = char << (rest * 8)
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2015-11-18 14:36:43 +01:00
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was = get_internal_word( word_index )
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2015-11-11 18:11:08 +01:00
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was = 0 unless was.is_a?(Numeric)
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2015-11-11 19:36:07 +01:00
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mask = 0xFF << (rest * 8)
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mask = 0xFFFFFFFF - mask
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masked = was & mask
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2015-11-11 18:11:08 +01:00
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put = masked + shifted
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2015-11-18 14:36:43 +01:00
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set_internal_word( word_index , put )
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2015-11-11 18:11:08 +01:00
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msg = "set index=#{index} word_index=#{word_index} rest=#{rest}= "
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msg += "char=#{char.to_s(16)} shifted=#{shifted.to_s(16)} "
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msg += "was=#{was.to_s(16)} masked=#{masked.to_s(16)} put=#{put.to_s(16)}"
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#puts msg
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char
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2015-05-13 15:17:10 +02:00
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end
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2015-11-11 18:11:08 +01:00
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# get the character at the given index (lowest 1)
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2015-05-20 12:50:25 +02:00
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# the index starts at one, but may be negative to count from the end
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# indexes out of range will raise an error
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#the return "character" is an integer
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2015-05-14 19:39:12 +02:00
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def get_char at
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index = range_correct_index(at)
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2015-11-19 09:09:24 +01:00
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get_internal_byte(index)
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end
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def get_internal_byte( index )
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word_index = (index ) / 4
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rest = ((index) % 4)
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2015-11-18 14:36:43 +01:00
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char = get_internal_word(word_index)
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2015-11-11 18:11:08 +01:00
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char = 0 unless char.is_a?(Numeric)
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shifted = char >> (8 * rest)
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ret = shifted & 0xFF
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msg = "get index=#{index} word_index=#{word_index} rest=#{rest}= "
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msg += " char=#{char.to_s(16)} shifted=#{shifted.to_s(16)} ret=#{ret.to_s(16)}"
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#puts msg
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return ret
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2015-05-14 19:39:12 +02:00
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end
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2015-05-20 12:50:25 +02:00
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# private method to calculate negative indexes into positives
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2015-05-14 19:39:12 +02:00
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def range_correct_index at
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index = at
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2015-11-20 12:25:49 +01:00
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# index = self.length + at if at < 0
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2015-05-18 09:10:31 +02:00
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raise "index must be positive , not #{at}" if (index <= 0)
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2015-11-08 22:58:54 +01:00
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raise "index too large #{at} > #{self.length}" if (index > self.length )
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2015-11-20 12:25:49 +01:00
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return index + 11
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2015-05-14 19:39:12 +02:00
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end
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2015-05-20 12:50:25 +02:00
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# compare the word to another
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# currently checks for same class, though really identity of the characters
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# in right order would suffice
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2015-05-14 19:39:12 +02:00
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def == other
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2015-05-15 15:45:36 +02:00
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return false if other.class != self.class
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2015-05-14 19:39:12 +02:00
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return false if other.length != self.length
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len = self.length
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2015-05-20 12:50:25 +02:00
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while(len > 0)
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2015-05-14 19:39:12 +02:00
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return false if self.get_char(len) != other.get_char(len)
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len = len - 1
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end
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return true
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end
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2015-05-15 15:45:36 +02:00
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2015-11-18 10:55:29 +01:00
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def == other
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return false unless other.is_a?(String) or other.is_a?(Word)
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as_string = self.to_string
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unless other.is_a? String
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other = other.to_string
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end
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as_string == other
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end
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def to_string
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string = ""
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index = 1
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while( index <= self.char_length)
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char = get_char(index)
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string += char ? char.chr : "*"
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index = index + 1
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end
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string
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end
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2015-05-20 12:50:25 +02:00
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# as we answered is_value? with true, sof will create a basic node with this string
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2015-05-15 20:11:29 +02:00
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def to_sof
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2015-05-24 15:55:03 +02:00
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"'" + to_s + "'"
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2015-05-15 20:11:29 +02:00
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end
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2015-05-18 09:47:29 +02:00
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2015-11-14 14:04:04 +01:00
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def padded_length
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padded( 4 * get_layout().instance_length + self.char_length )
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end
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2015-10-26 11:23:52 +01:00
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private
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def check_length
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2015-11-14 23:35:43 +01:00
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raise "Length out of bounds #{self.char_length}" if self.char_length > 1000
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2015-10-26 11:23:52 +01:00
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end
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2015-05-13 15:06:38 +02:00
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end
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2015-11-18 10:55:29 +01:00
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2015-11-19 09:09:24 +01:00
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# Word from string
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2015-11-18 10:55:29 +01:00
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def self.new_word( string )
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string = string.to_s if string.is_a? Symbol
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word = Parfait::Word.new( string.length )
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string.codepoints.each_with_index do |code , index |
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word.set_char(index + 1 , code)
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end
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word
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end
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2015-05-13 15:06:38 +02:00
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end
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