tokenization_openai.py 7.33 KB
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# coding=utf-8
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# Copyright 2018 The Open AI Team Authors and The HuggingFace Inc. team.
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#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
#     http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
"""Tokenization classes for OpenAI GPT."""
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from __future__ import (absolute_import, division, print_function,
                        unicode_literals)

import json
import logging
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import os
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import re
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from io import open

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from .tokenization_utils import PreTrainedTokenizer
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from .tokenization_bert import BasicTokenizer
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logger = logging.getLogger(__name__)

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VOCAB_FILES_NAMES = {
    'vocab_file': 'vocab.json',
    'merges_file': 'merges.txt',
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}
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PRETRAINED_VOCAB_FILES_MAP = {
    'vocab_file':
    {
        'openai-gpt': "https://s3.amazonaws.com/models.huggingface.co/bert/openai-gpt-vocab.json",
    },
    'merges_file':
    {
        'openai-gpt': "https://s3.amazonaws.com/models.huggingface.co/bert/openai-gpt-merges.txt",
    },
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}
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PRETRAINED_POSITIONAL_EMBEDDINGS_SIZES = {
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    'openai-gpt': 512,
}
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def get_pairs(word):
    """
    Return set of symbol pairs in a word.
    word is represented as tuple of symbols (symbols being variable-length strings)
    """
    pairs = set()
    prev_char = word[0]
    for char in word[1:]:
        pairs.add((prev_char, char))
        prev_char = char
    return pairs

def text_standardize(text):
    """
    fixes some issues the spacy tokenizer had on books corpus
    also does some whitespace standardization
    """
    text = text.replace('—', '-')
    text = text.replace('–', '-')
    text = text.replace('―', '-')
    text = text.replace('…', '...')
    text = text.replace('´', "'")
    text = re.sub(r'''(-+|~+|!+|"+|;+|\?+|\++|,+|\)+|\(+|\\+|\/+|\*+|\[+|\]+|}+|{+|\|+|_+)''', r' \1 ', text)
    text = re.sub(r'\s*\n\s*', ' \n ', text)
    text = re.sub(r'[^\S\n]+', ' ', text)
    return text.strip()

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class OpenAIGPTTokenizer(PreTrainedTokenizer):
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    """
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    BPE tokenizer. Peculiarities:
        - lower case all inputs
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        - uses SpaCy tokenizer and ftfy for pre-BPE tokenization if they are installed, fallback to BERT's BasicTokenizer if not.
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    """
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    vocab_files_names = VOCAB_FILES_NAMES
    pretrained_vocab_files_map = PRETRAINED_VOCAB_FILES_MAP
    max_model_input_sizes = PRETRAINED_POSITIONAL_EMBEDDINGS_SIZES
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    def __init__(self, vocab_file, merges_file, unk_token="<unk>", **kwargs):
        super(OpenAIGPTTokenizer, self).__init__(unk_token=unk_token, **kwargs)

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        try:
            import ftfy
            import spacy
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            self.nlp = spacy.load('en', disable=['parser', 'tagger', 'ner', 'textcat'])
            self.fix_text = ftfy.fix_text
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        except ImportError:
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            logger.warning("ftfy or spacy is not installed using BERT BasicTokenizer instead of SpaCy & ftfy.")
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            self.nlp = BasicTokenizer(do_lower_case=True)
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            self.fix_text = None
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        self.encoder = json.load(open(vocab_file, encoding="utf-8"))
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        self.decoder = {v:k for k,v in self.encoder.items()}
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        merges = open(merges_file, encoding='utf-8').read().split('\n')[1:-1]
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        merges = [tuple(merge.split()) for merge in merges]
        self.bpe_ranks = dict(zip(merges, range(len(merges))))
        self.cache = {}
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    @property
    def vocab_size(self):
        return len(self.encoder)
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    def bpe(self, token):
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        word = tuple(token[:-1]) + (token[-1] + '</w>',)
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        if token in self.cache:
            return self.cache[token]
        pairs = get_pairs(word)

        if not pairs:
            return token+'</w>'

        while True:
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            bigram = min(pairs, key=lambda pair: self.bpe_ranks.get(pair, float('inf')))
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            if bigram not in self.bpe_ranks:
                break
            first, second = bigram
            new_word = []
            i = 0
            while i < len(word):
                try:
                    j = word.index(first, i)
                    new_word.extend(word[i:j])
                    i = j
                except:
                    new_word.extend(word[i:])
                    break

                if word[i] == first and i < len(word)-1 and word[i+1] == second:
                    new_word.append(first+second)
                    i += 2
                else:
                    new_word.append(word[i])
                    i += 1
            new_word = tuple(new_word)
            word = new_word
            if len(word) == 1:
                break
            else:
                pairs = get_pairs(word)
        word = ' '.join(word)
        if word == '\n  </w>':
            word = '\n</w>'
        self.cache[token] = word
        return word

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    def _tokenize(self, text):
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        """ Tokenize a string. """
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        split_tokens = []
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        if self.fix_text is None:
            # Using BERT's BasicTokenizer
            text = self.nlp.tokenize(text)
            for token in text:
                split_tokens.extend([t for t in self.bpe(token).split(' ')])
        else:
            # Using SpaCy & ftfy (original tokenization process of OpenAI GPT)
            text = self.nlp(text_standardize(self.fix_text(text)))
            for token in text:
                split_tokens.extend([t for t in self.bpe(token.text.lower()).split(' ')])
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        return split_tokens

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    def _convert_token_to_id(self, token):
        """ Converts a token (str/unicode) in an id using the vocab. """
        return self.encoder.get(token, self.encoder.get(self.unk_token))
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    def _convert_id_to_token(self, index):
        """Converts an id in a token (BPE) using the vocab."""
        return self.decoder.get(index, self.unk_token)
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    def convert_tokens_to_string(self, tokens):
        """ Converts a sequence of tokens (string) in a single string. """
        out_string = ''.join(tokens).replace('</w>', ' ').strip()
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        return out_string
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    def save_vocabulary(self, save_directory):
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        """Save the tokenizer vocabulary and merge files to a directory."""
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        if not os.path.isdir(save_directory):
            logger.error("Vocabulary path ({}) should be a directory".format(save_directory))
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            return
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        vocab_file = os.path.join(save_directory, VOCAB_FILES_NAMES['vocab_file'])
        merge_file = os.path.join(save_directory, VOCAB_FILES_NAMES['merges_file'])
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        with open(vocab_file, 'w', encoding='utf-8') as f:
            f.write(json.dumps(self.encoder, ensure_ascii=False))

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        index = 0
        with open(merge_file, "w", encoding="utf-8") as writer:
            writer.write(u'#version: 0.2\n')
            for bpe_tokens, token_index in sorted(self.bpe_ranks.items(), key=lambda kv: kv[1]):
                if index != token_index:
                    logger.warning("Saving vocabulary to {}: BPE merge indices are not consecutive."
                                   " Please check that the tokenizer is not corrupted!".format(merge_file))
                    index = token_index
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                writer.write(' '.join(bpe_tokens) + u'\n')
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                index += 1
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        return vocab_file, merge_file