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import json |
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import torch |
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import torch.nn.functional as F |
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from torch import Tensor |
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from transformers import AutoTokenizer, AutoModel |
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import gradio as gr |
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def get_model(base_name='intfloat/e5-large-v2'): |
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tokenizer = AutoTokenizer.from_pretrained(base_name) |
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model = AutoModel.from_pretrained(base_name) |
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return tokenizer, model |
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def get_scores(model, tokenizer, input_texts, max_length=512, how_many_q=1, normalize=True): |
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batch_dict = tokenizer( |
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input_texts, |
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max_length=max_length, |
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padding=True, |
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truncation=True, |
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return_tensors='pt' |
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) |
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outputs = model(**batch_dict) |
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embeddings = average_pool( |
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outputs.last_hidden_state, batch_dict['attention_mask'] |
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) |
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if normalize: |
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embeddings = F.normalize(embeddings, p=2, dim=1) |
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scores = (embeddings[:how_many_q] @ embeddings[how_many_q:].T) * 100 |
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return scores |
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def get_top(scores, top_k=None): |
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result = torch.sort(scores, descending=True, dim=1) |
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top_indices = result.indices |
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top_values = result.values |
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if top_k: |
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top_indices = top_indices[:, :top_k] |
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top_values = top_values[:, :top_k] |
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return top_indices, top_values |
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def get_human_readable_top(scores, input_texts, top_k=None): |
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input_texts = list(filter(lambda text: "query:" not in text, input_texts)) |
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top_indices, top_values = get_top(scores, top_k) |
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result = {} |
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for input_idx, (indices, values) in enumerate(zip(top_indices, top_values)): |
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q = input_texts[input_idx] |
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a = [] |
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for idx, val in zip(indices.tolist(), values.tolist()): |
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a.append({ |
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"idx": idx, |
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"val": round(val, 3), |
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"text": input_texts[idx] |
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}) |
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result[q] = a |
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return result |
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def average_pool(last_hidden_states: Tensor, |
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attention_mask: Tensor) -> Tensor: |
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last_hidden = last_hidden_states.masked_fill(~attention_mask[..., None].bool(), 0.0) |
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return last_hidden.sum(dim=1) / attention_mask.sum(dim=1)[..., None] |
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def get_result(q_txt, p_txt1, p_txt2, p_txt3, p_txt4, p_txt5): |
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input_texts = [ |
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f"query: {q_txt}" |
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] |
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if p_txt1 != '': |
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input_texts.append(f"passage: {p_txt1}") |
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if p_txt2 != '': |
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input_texts.append(f"passage: {p_txt2}") |
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if p_txt3 != '': |
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input_texts.append(f"passage: {p_txt3}") |
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if p_txt4 != '': |
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input_texts.append(f"passage: {p_txt4}") |
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if p_txt5 != '': |
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input_texts.append(f"passage: {p_txt5}") |
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scores = get_scores(model, tokenizer, input_texts) |
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result = get_human_readable_top(scores, input_texts) |
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return json.dumps(result, indent=4) |
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tokenizer, model = get_model('intfloat/e5-large-v2') |
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with gr.Blocks() as demo: |
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gr.Markdown("# E5 Large V2 Demo") |
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q_txt = gr.Textbox(placeholder="Enter your query", label="Query") |
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p_txt1 = gr.Textbox(placeholder="Enter passage 1", label="Passage 1") |
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p_txt2 = gr.Textbox(placeholder="Enter passage 2", label="Passage 2") |
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p_txt3 = gr.Textbox(placeholder="Enter passage 3", label="Passage 3") |
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p_txt4 = gr.Textbox(placeholder="Enter passage 4", label="Passage 4") |
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p_txt5 = gr.Textbox(placeholder="Enter passage 5", label="Passage 5") |
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submit = gr.Button("Submit") |
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o_txt = gr.Textbox(placeholder="Output", lines=10, interactive=False, label="Output") |
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gr.Examples( |
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[ |
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[ |
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"I'm searching for a planet not too far from Earth.", |
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"Neptune is the eighth and farthest-known Solar planet from the Sun. In the Solar System, it is the fourth-largest planet by diameter, the third-most-massive planet, and the densest giant planet. It is 17 times the mass of Earth, slightly more massive than its near-twin Uranus.", |
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"TRAPPIST-1d, also designated as 2MASS J23062928-0502285 d, is a small exoplanet (about 30% the mass of the earth), which orbits on the inner edge of the habitable zone of the ultracool dwarf star TRAPPIST-1 approximately 40 light-years (12.1 parsecs, or nearly 3.7336×1014 km) away from Earth in the constellation of Aquarius.", |
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"A harsh desert world orbiting twin suns in the galaxy’s Outer Rim, Tatooine is a lawless place ruled by Hutt gangsters. Many settlers scratch out a living on moisture farms, while spaceport cities such as Mos Eisley and Mos Espa serve as home base for smugglers, criminals, and other rogues.", |
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"", |
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"" |
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] |
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], |
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inputs=[q_txt, p_txt1, p_txt2, p_txt3, p_txt4, p_txt5] |
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) |
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submit.click( |
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get_result, |
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[q_txt, p_txt1, p_txt2, p_txt3, p_txt4, p_txt5], |
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o_txt |
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) |
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demo.launch() |