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feat: Make the Tokenizer support Kanjis
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@ -105,13 +105,79 @@ impl<'a> Iterator for Tokenizer<'a> {
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char_index: self.char_index,
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};
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println!("no-cjk with start_word returns: {:?}", token);
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self.char_index += word.chars().count();
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return Some(token)
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}
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distance.replace(distance.map_or(sep, |s| s.add(sep)));
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distance = Some(distance.map_or(sep, |s| s.add(sep)));
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},
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None => {
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// if this is a Chinese, a Japanese or a Korean character
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// See <http://unicode-table.com>
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if (c >= '\u{2e80}' && c <= '\u{2eff}') ||
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(c >= '\u{2f00}' && c <= '\u{2fdf}') ||
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(c >= '\u{3040}' && c <= '\u{309f}') ||
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(c >= '\u{30a0}' && c <= '\u{30ff}') ||
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(c >= '\u{3100}' && c <= '\u{312f}') ||
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(c >= '\u{3200}' && c <= '\u{32ff}') ||
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(c >= '\u{3400}' && c <= '\u{4dbf}') ||
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(c >= '\u{4e00}' && c <= '\u{9fff}') ||
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(c >= '\u{f900}' && c <= '\u{faff}')
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{
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let char_len = c.len_utf8();
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match start_word {
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Some(start_word) => {
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let (prefix, tail) = self.inner.split_at(i);
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let (spaces, word) = prefix.split_at(start_word);
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self.inner = tail;
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self.char_index += spaces.chars().count();
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self.word_index += distance.map(Separator::to_usize).unwrap_or(0);
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let token = Token {
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word: word,
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word_index: self.word_index,
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char_index: self.char_index,
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};
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println!("cjk with start_word returns: {:?}", token);
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self.word_index += 1;
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self.char_index += word.chars().count();
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return Some(token)
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},
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None => {
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let (prefix, tail) = self.inner.split_at(i + char_len);
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let (spaces, word) = prefix.split_at(i);
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self.inner = tail;
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self.char_index += spaces.chars().count();
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self.word_index += distance.map(Separator::to_usize).unwrap_or(0);
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let token = Token {
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word: word,
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word_index: self.word_index,
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char_index: self.char_index,
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};
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println!("cjk without start_word returns: {:?}", token);
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if tail.chars().next().and_then(detect_separator).is_none() {
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self.word_index += 1;
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}
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self.char_index += char_len;
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return Some(token)
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}
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}
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}
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if start_word.is_none() { start_word = Some(i) }
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},
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None => { start_word.get_or_insert(i); },
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}
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}
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@ -186,4 +252,24 @@ mod tests {
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assert_eq!(tokenizer.next(), Some(Token { word: "😣", word_index: 32, char_index: 22 }));
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assert_eq!(tokenizer.next(), None);
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}
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#[test]
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fn hard_kanjis() {
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let mut tokenizer = Tokenizer::new("\u{2ec4}lolilol\u{2ec7}");
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ec4}", word_index: 0, char_index: 0 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "lolilol", word_index: 1, char_index: 3 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ec7}", word_index: 2, char_index: 10 }));
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assert_eq!(tokenizer.next(), None);
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let mut tokenizer = Tokenizer::new("\u{2ec4}\u{2ed3}\u{2ef2} lolilol - hello \u{2ec7}");
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ec4}", word_index: 0, char_index: 0 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ed3}", word_index: 1, char_index: 3 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ef2}", word_index: 2, char_index: 6 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "lolilol", word_index: 3, char_index: 10 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "hello", word_index: 11, char_index: 20 }));
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assert_eq!(tokenizer.next(), Some(Token { word: "\u{2ec7}", word_index: 12, char_index: 29 }));
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assert_eq!(tokenizer.next(), None);
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}
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}
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