import gradio as gr import pandas as pd import os import zipfile import base64 CITATION_BUTTON_LABEL = "Copy the following snippet to cite these results" CITATION_BUTTON_TEXT = r"""@misc{aienergyscore-leaderboard, author = {Sasha Luccioni and Boris Gamazaychikov and Emma Strubell and Sara Hooker and Yacine Jernite and Carole-Jean Wu and Margaret Mitchell}, title = {AI Energy Score Leaderboard - February 2025}, year = {2025}, publisher = {Hugging Face}, howpublished = "\url{https://huggingface.co./spaces/AIEnergyScore/Leaderboard}", }""" # List of tasks (CSV filenames) tasks = [ 'asr.csv', 'object_detection.csv', 'text_classification.csv', 'image_captioning.csv', 'question_answering.csv', 'text_generation.csv', 'image_classification.csv', 'sentence_similarity.csv', 'image_generation.csv', 'summarization.csv' ] def format_stars(score): try: score_int = int(score) except Exception: score_int = 0 # Render stars in black with a slightly larger font. return f'{"★" * score_int}' def make_link(mname): parts = str(mname).split('/') display_name = parts[1] if len(parts) > 1 else mname return f'{display_name}' def extract_link_text(html_link): """Extracts the inner text from an HTML link.""" start = html_link.find('>') + 1 end = html_link.rfind('') if start > 0 and end > start: return html_link[start:end] else: return html_link def generate_html_table_from_df(df): """ Given a dataframe with a numeric energy column (gpu_energy_numeric), generate an HTML table with three columns: - Model (the link, with a fixed width based on the longest model name) - GPU Energy (Wh) plus a horizontal bar whose width is proportional to the energy value relative to the maximum in the table. - Score (displayed as stars) """ # Compute a static width (in pixels) for the Model column based on the longest model name. if not df.empty: max_length = max(len(extract_link_text(link)) for link in df['Model']) else: max_length = 10 # Multiply by an estimated average character width (10 pixels) and add some extra padding. static_width = max_length * 10 + 16 max_energy = df['gpu_energy_numeric'].max() if not df.empty else 1 color_map = {"1": "black", "2": "black", "3": "black", "4": "black", "5": "black"} html = '
Model | ' html += 'GPU Energy (Wh) | ' html += 'Score | ' html += '
---|---|---|
{row["Model"]} | ' html += ( f'{energy_str} ' f' | '
)
html += f'{row["Score"]} | ' html += '
Welcome to the leaderboard for the AI Energy Score Project! — Select different tasks to see scored models.
') # Header links (using a row of components, including a Download Data link) with gr.Row(): submission_link = gr.HTML('Submission Portal') label_link = gr.HTML('Label Generator') faq_link = gr.HTML('FAQ') documentation_link = gr.HTML('Documentation') download_link = gr.HTML(get_zip_data_link()) community_link = gr.HTML('Community') with gr.Tabs(): # --- Text Generation Tab --- with gr.TabItem("Text Generation 💬"): with gr.Row(): model_class_options = [ "A (Single Consumer GPU) <20B parameters", "B (Single Cloud GPU) 20-66B parameters", "C (Multiple Cloud GPUs) >66B parameters" ] model_class_dropdown = gr.Dropdown( choices=model_class_options, label="Select Model Class", value=model_class_options[0] ) sort_dropdown_tg = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) tg_table = gr.HTML(get_text_generation_model_names_html("A", "Low to High")) # When either dropdown changes, update the table. model_class_dropdown.change(fn=update_text_generation, inputs=[model_class_dropdown, sort_dropdown_tg], outputs=tg_table) sort_dropdown_tg.change(fn=update_text_generation, inputs=[model_class_dropdown, sort_dropdown_tg], outputs=tg_table) # --- Image Generation Tab --- with gr.TabItem("Image Generation 📷"): sort_dropdown_img = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) img_table = gr.HTML(get_model_names_html('image_generation.csv', "Low to High")) sort_dropdown_img.change(fn=update_image_generation, inputs=sort_dropdown_img, outputs=img_table) # --- Text Classification Tab --- with gr.TabItem("Text Classification 🎭"): sort_dropdown_tc = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) tc_table = gr.HTML(get_model_names_html('text_classification.csv', "Low to High")) sort_dropdown_tc.change(fn=update_text_classification, inputs=sort_dropdown_tc, outputs=tc_table) # --- Image Classification Tab --- with gr.TabItem("Image Classification 🖼️"): sort_dropdown_ic = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) ic_table = gr.HTML(get_model_names_html('image_classification.csv', "Low to High")) sort_dropdown_ic.change(fn=update_image_classification, inputs=sort_dropdown_ic, outputs=ic_table) # --- Image Captioning Tab --- with gr.TabItem("Image Captioning 📝"): sort_dropdown_icap = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) icap_table = gr.HTML(get_model_names_html('image_captioning.csv', "Low to High")) sort_dropdown_icap.change(fn=update_image_captioning, inputs=sort_dropdown_icap, outputs=icap_table) # --- Summarization Tab --- with gr.TabItem("Summarization 📃"): sort_dropdown_sum = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) sum_table = gr.HTML(get_model_names_html('summarization.csv', "Low to High")) sort_dropdown_sum.change(fn=update_summarization, inputs=sort_dropdown_sum, outputs=sum_table) # --- Automatic Speech Recognition Tab --- with gr.TabItem("Automatic Speech Recognition 💬"): sort_dropdown_asr = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) asr_table = gr.HTML(get_model_names_html('asr.csv', "Low to High")) sort_dropdown_asr.change(fn=update_asr, inputs=sort_dropdown_asr, outputs=asr_table) # --- Object Detection Tab --- with gr.TabItem("Object Detection 🚘"): sort_dropdown_od = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) od_table = gr.HTML(get_model_names_html('object_detection.csv', "Low to High")) sort_dropdown_od.change(fn=update_object_detection, inputs=sort_dropdown_od, outputs=od_table) # --- Sentence Similarity Tab --- with gr.TabItem("Sentence Similarity 📚"): sort_dropdown_ss = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) ss_table = gr.HTML(get_model_names_html('sentence_similarity.csv', "Low to High")) sort_dropdown_ss.change(fn=update_sentence_similarity, inputs=sort_dropdown_ss, outputs=ss_table) # --- Extractive QA Tab --- with gr.TabItem("Extractive QA ❔"): sort_dropdown_qa = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) qa_table = gr.HTML(get_model_names_html('question_answering.csv', "Low to High")) sort_dropdown_qa.change(fn=update_extractive_qa, inputs=sort_dropdown_qa, outputs=qa_table) # --- All Tasks Tab --- with gr.TabItem("All Tasks 💡"): sort_dropdown_all = gr.Dropdown( choices=["Low to High", "High to Low"], label="Sort", value="Low to High" ) all_table = gr.HTML(get_all_model_names_html("Low to High")) sort_dropdown_all.change(fn=update_all_tasks, inputs=sort_dropdown_all, outputs=all_table) with gr.Accordion("📙 Citation", open=False): citation_button = gr.Textbox( value=CITATION_BUTTON_TEXT, label=CITATION_BUTTON_LABEL, elem_id="citation-button", lines=10, show_copy_button=True, ) gr.Markdown("""Last updated: February 2025""") demo.launch()