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1def preprocess(text):
2 preprocessed_text = []
3 for t in text.split():
4 if len(t) > 1:
5 t = '@user' if t[0] == '@' and t.count('@') == 1 else t
6 t = 'http' if t.startswith('http') else t
7 preprocessed_text.append(t)
8 return ' '.join(preprocessed_text)1from transformers import pipeline, AutoTokenizer
2
3MODEL = "cardiffnlp/twitter-roberta-base-2021-124m"
4fill_mask = pipeline("fill-mask", model=MODEL, tokenizer=MODEL)
5tokenizer = AutoTokenizer.from_pretrained(MODEL)
6
7def pprint(candidates, n):
8 for i in range(n):
9 token = tokenizer.decode(candidates[i]['token'])
10 score = candidates[i]['score']
11 print("%d) %.5f %s" % (i+1, score, token))
12
13texts = [
14 "So glad I'm <mask> vaccinated.",
15 "I keep forgetting to bring a <mask>.",
16 "Looking forward to watching <mask> Game tonight!",
17]
18
19for text in texts:
20 t = preprocess(text)
21 print(f"{'-'*30}\n{t}")
22 candidates = fill_mask(t)
23 pprint(candidates, 5)------------------------------
So glad I'm <mask> vaccinated.
1) 0.39613 fully
2) 0.26333 getting
3) 0.18988 not
4) 0.02312 still
5) 0.02099 already
------------------------------
I keep forgetting to bring a <mask>.
1) 0.08356 mask
2) 0.05696 book
3) 0.03505 bag
4) 0.02983 backpack
5) 0.02847 blanket
------------------------------
Looking forward to watching <mask> Game tonight!
1) 0.46618 the
2) 0.24042 The
3) 0.03216 End
4) 0.02925 Squid
5) 0.02610 this1from transformers import AutoTokenizer, AutoModel, TFAutoModel
2import numpy as np
3from scipy.spatial.distance import cosine
4from collections import Counter
5
6def get_embedding(text): # naive approach for demonstration
7 text = preprocess(text)
8 encoded_input = tokenizer(text, return_tensors='pt')
9 features = model(**encoded_input)
10 features = features[0].detach().cpu().numpy()
11 return np.mean(features[0], axis=0)
12
13
14MODEL = "cardiffnlp/twitter-roberta-base-2021-124m"
15tokenizer = AutoTokenizer.from_pretrained(MODEL)
16model = AutoModel.from_pretrained(MODEL)
17
18query = "The book was awesome"
19tweets = ["I just ordered fried chicken 🐣",
20 "The movie was great",
21 "What time is the next game?",
22 "Just finished reading 'Embeddings in NLP'"]
23
24sims = Counter()
25for tweet in tweets:
26 sim = 1 - cosine(get_embedding(query), get_embedding(tweet))
27 sims[tweet] = sim
28
29print('Most similar to: ', query)
30print(f"{'-'*30}")
31for idx, (tweet, sim) in enumerate(sims.most_common()):
32 print("%d) %.5f %s" % (idx+1, sim, tweet))Most similar to: The book was awesome
------------------------------
1) 0.98969 The movie was great
2) 0.96102 Just finished reading 'Embeddings in NLP'
3) 0.95565 I just ordered fried chicken 🐣
4) 0.95041 What time is the next game?1from transformers import AutoTokenizer, AutoModel, TFAutoModel
2import numpy as np
3
4MODEL = "cardiffnlp/twitter-roberta-base-2021-124m"
5tokenizer = AutoTokenizer.from_pretrained(MODEL)
6
7text = "Good night 😊"
8text = preprocess(text)
9
10# Pytorch
11model = AutoModel.from_pretrained(MODEL)
12encoded_input = tokenizer(text, return_tensors='pt')
13features = model(**encoded_input)
14features = features[0].detach().cpu().numpy()
15features_mean = np.mean(features[0], axis=0)
16#features_max = np.max(features[0], axis=0)
17
18# # Tensorflow
19# model = TFAutoModel.from_pretrained(MODEL)
20# encoded_input = tokenizer(text, return_tensors='tf')
21# features = model(encoded_input)
22# features = features[0].numpy()
23# features_mean = np.mean(features[0], axis=0)
24# #features_max = np.max(features[0], axis=0)