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			107 lines
		
	
	
		
			3.6 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			107 lines
		
	
	
		
			3.6 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
#!/usr/bin/env python
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# coding: utf8
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"""Example of training spaCy's named entity recognizer, starting off with an
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existing model or a blank model.
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For more details, see the documentation:
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* Training: https://spacy.io/usage/training
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* NER: https://spacy.io/usage/linguistic-features#named-entities
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Compatible with: spaCy v2.0.0+
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"""
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from __future__ import unicode_literals, print_function
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import plac
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import random
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from pathlib import Path
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import spacy
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# training data
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TRAIN_DATA = [
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    ('Who is Shaka Khan?', {
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        'entities': [(7, 17, 'PERSON')]
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    }),
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    ('I like London and Berlin.', {
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        'entities': [(7, 13, 'LOC'), (18, 24, 'LOC')]
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    })
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]
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@plac.annotations(
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    model=("Model name. Defaults to blank 'en' model.", "option", "m", str),
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    output_dir=("Optional output directory", "option", "o", Path),
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    n_iter=("Number of training iterations", "option", "n", int))
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def main(model=None, output_dir=None, n_iter=100):
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    """Load the model, set up the pipeline and train the entity recognizer."""
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    if model is not None:
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        nlp = spacy.load(model)  # load existing spaCy model
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        print("Loaded model '%s'" % model)
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    else:
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        nlp = spacy.blank('en')  # create blank Language class
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        print("Created blank 'en' model")
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    # create the built-in pipeline components and add them to the pipeline
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    # nlp.create_pipe works for built-ins that are registered with spaCy
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    if 'ner' not in nlp.pipe_names:
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        ner = nlp.create_pipe('ner')
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        nlp.add_pipe(ner, last=True)
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    # otherwise, get it so we can add labels
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    else:
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        ner = nlp.get_pipe('ner')
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    # add labels
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    for _, annotations in TRAIN_DATA:
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        for ent in annotations.get('entities'):
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            ner.add_label(ent[2])
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    # get names of other pipes to disable them during training
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    other_pipes = [pipe for pipe in nlp.pipe_names if pipe != 'ner']
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    with nlp.disable_pipes(*other_pipes):  # only train NER
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        optimizer = nlp.begin_training()
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        for itn in range(n_iter):
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            random.shuffle(TRAIN_DATA)
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            losses = {}
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            for text, annotations in TRAIN_DATA:
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                nlp.update(
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                    [text],  # batch of texts
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                    [annotations],  # batch of annotations
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                    drop=0.5,  # dropout - make it harder to memorise data
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                    sgd=optimizer,  # callable to update weights
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                    losses=losses)
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            print(losses)
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    # test the trained model
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    for text, _ in TRAIN_DATA:
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        doc = nlp(text)
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        print('Entities', [(ent.text, ent.label_) for ent in doc.ents])
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        print('Tokens', [(t.text, t.ent_type_, t.ent_iob) for t in doc])
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    # save model to output directory
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    if output_dir is not None:
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        output_dir = Path(output_dir)
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        if not output_dir.exists():
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            output_dir.mkdir()
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        nlp.to_disk(output_dir)
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        print("Saved model to", output_dir)
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        # test the saved model
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        print("Loading from", output_dir)
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        nlp2 = spacy.load(output_dir)
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        for text, _ in TRAIN_DATA:
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            doc = nlp2(text)
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            print('Entities', [(ent.text, ent.label_) for ent in doc.ents])
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            print('Tokens', [(t.text, t.ent_type_, t.ent_iob) for t in doc])
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if __name__ == '__main__':
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    plac.call(main)
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    # Expected output:
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    # Entities [('Shaka Khan', 'PERSON')]
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    # Tokens [('Who', '', 2), ('is', '', 2), ('Shaka', 'PERSON', 3),
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    # ('Khan', 'PERSON', 1), ('?', '', 2)]
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    # Entities [('London', 'LOC'), ('Berlin', 'LOC')]
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    # Tokens [('I', '', 2), ('like', '', 2), ('London', 'LOC', 3),
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    # ('and', '', 2), ('Berlin', 'LOC', 3), ('.', '', 2)]
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