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import gradio as gr |
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import ctranslate2 |
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from transformers import AutoTokenizer |
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from huggingface_hub import snapshot_download |
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from codeexecutor import get_majority_vote |
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import re |
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model_prompt = "Explain and solve the following mathematical problem step by step, showing all work: " |
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tokenizer = AutoTokenizer.from_pretrained("AI-MO/NuminaMath-7B-TIR") |
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model_path = snapshot_download(repo_id="Makima57/deepseek-math-Numina") |
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generator = ctranslate2.Generator(model_path, device="cpu", compute_type="int8") |
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iterations = 10 |
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def get_prediction(question): |
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input_text = model_prompt + question |
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input_tokens = tokenizer.tokenize(input_text) |
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results = generator.generate_batch( |
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[input_tokens], |
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max_length=512, |
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sampling_temperature=0.7, |
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sampling_topk=40, |
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) |
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output_tokens = results[0].sequences[0] |
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predicted_answer = tokenizer.convert_tokens_to_string(output_tokens) |
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return predicted_answer |
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def parse_prediction(prediction): |
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lines = prediction.strip().split('\n') |
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answer = None |
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steps = [] |
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for line in lines: |
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match = re.match(r'^\s*(?:Answer|answer)\s*[:=]\s*(.*)', line) |
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if match: |
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answer = match.group(1).strip() |
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else: |
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steps.append(line) |
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if answer is None: |
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answer = lines[-1].strip() |
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steps = lines[:-1] |
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steps_text = '\n'.join(steps).strip() |
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return answer, steps_text |
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def majority_vote_with_steps(question, num_iterations=10): |
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all_predictions = [] |
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all_answers = [] |
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steps_list = [] |
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for _ in range(num_iterations): |
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prediction = get_prediction(question) |
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answer, steps = parse_prediction(prediction) |
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all_predictions.append(prediction) |
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all_answers.append(answer) |
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steps_list.append(steps) |
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majority_voted_ans = get_majority_vote(all_answers) |
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for i, ans in enumerate(all_answers): |
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if ans == majority_voted_ans: |
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steps_solution = steps_list[i] |
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break |
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else: |
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steps_solution = "No steps found" |
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return majority_voted_ans, steps_solution |
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def gradio_interface(question, correct_answer): |
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final_answer, steps_solution = majority_vote_with_steps(question, iterations) |
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return { |
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"Question": question, |
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"Majority-Voted Answer": final_answer, |
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"Steps to Solve": steps_solution, |
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"Correct Solution": correct_answer |
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} |
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custom_css = """ |
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body { |
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background-color: #fafafa; |
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font-family: 'Open Sans', sans-serif; |
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} |
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.gradio-container { |
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background-color: #ffffff; |
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border: 3px solid #007acc; |
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border-radius: 15px; |
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padding: 20px; |
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box-shadow: 0 8px 20px rgba(0, 0, 0, 0.15); |
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max-width: 800px; |
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margin: 50px auto; |
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} |
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h1 { |
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font-family: 'Poppins', sans-serif; |
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color: #007acc; |
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font-weight: bold; |
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font-size: 32px; |
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text-align: center; |
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margin-bottom: 20px; |
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} |
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p { |
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font-family: 'Roboto', sans-serif; |
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font-size: 18px; |
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color: #333; |
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text-align: center; |
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margin-bottom: 15px; |
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} |
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input, textarea { |
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font-family: 'Montserrat', sans-serif; |
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font-size: 16px; |
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padding: 10px; |
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border: 2px solid #007acc; |
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border-radius: 10px; |
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background-color: #f1f8ff; |
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margin-bottom: 15px; |
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} |
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#math_question, #correct_answer { |
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font-size: 20px; |
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font-family: 'Poppins', sans-serif; |
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font-weight: 500px; |
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color: #007acc; |
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margin-bottom: 5px; |
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display: inline-block; |
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} |
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textarea { |
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min-height: 150px; |
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} |
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.gr-button-primary { |
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background-color: #007acc !important; |
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color: white !important; |
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border-radius: 10px !important; |
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font-size: 18px !important; |
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font-weight: bold !important; |
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padding: 10px 20px !important; |
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font-family: 'Montserrat', sans-serif !important; |
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transition: background-color 0.3s ease !important; |
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} |
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.gr-button-primary:hover { |
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background-color: #005f99 !important; |
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} |
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.gr-button-secondary { |
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background-color: #f44336 !important; |
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color: white !important; |
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border-radius: 10px !important; |
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font-size: 18px !important; |
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font-weight: bold !important; |
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padding: 10px 20px !important; |
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font-family: 'Montserrat', sans-serif !important; |
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transition: background-color 0.3s ease !important; |
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} |
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.gr-button-secondary:hover { |
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background-color: #c62828 !important; |
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} |
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.gr-output { |
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background-color: #e0f7fa; |
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border: 2px solid #007acc; |
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border-radius: 10px; |
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padding: 15px; |
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font-size: 16px; |
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font-family: 'Roboto', sans-serif; |
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font-weight: bold; |
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color: #00796b; |
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} |
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""" |
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interface = gr.Interface( |
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fn=gradio_interface, |
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inputs=[ |
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gr.Textbox(label="π§ Math Question", placeholder="Enter your math question here...", elem_id="math_question"), |
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gr.Textbox(label="β
Correct Answer", placeholder="Enter the correct answer here...", elem_id="correct_answer"), |
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], |
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outputs=[ |
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gr.JSON(label="π Results"), |
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], |
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title="π’ Math Question Solver", |
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description="Enter a math question to get the model's majority-voted answer and steps to solve the problem.", |
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css=custom_css |
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) |
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if __name__ == "__main__": |
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interface.launch() |
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