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import gradio as gr |
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import pandas as pd |
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import plotly.express as px |
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QUANT_DATA = [ |
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"Model π€", |
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"DType π₯", |
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"Backend π", |
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"Params (B)", |
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"Architecture ποΈ", |
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"Open LLM Score (%)", |
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"DType π₯", |
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"Backend π", |
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"Optimization π οΈ", |
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"Quantization ποΈ", |
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"Optimization π οΈ Custom Kernel", |
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"Quantization ποΈ Custom Kernel", |
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"Prefill (s)", |
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"Prefill (s) Custom Kernel", |
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"Decode (tokens/s)", |
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"Decode (tokens/s) Custom Kernel", |
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"Prefill Speedup (%)", |
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"Decode Speedup (%)", |
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] |
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def get_quant_df(llm_perf_df): |
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copy_df = llm_perf_df.copy() |
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vanilla_df = copy_df[ |
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(copy_df["Backend π"] == "pytorch") |
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& (copy_df["Quantization ποΈ"] == "None") |
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& (copy_df["Optimization π οΈ"] == "None") |
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& (copy_df["DType π₯"] == "float16") |
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] |
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exllamav1_df = copy_df[(copy_df["Quantization ποΈ"] == "GPTQ.4bit+ExllamaV1")] |
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exllamav2_df = copy_df[(copy_df["Quantization ποΈ"] == "GPTQ.4bit+ExllamaV2")] |
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gemm_df = copy_df[(copy_df["Quantization ποΈ"] == "AWQ.4bit+GEMM")] |
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gemv_df = copy_df[(copy_df["Quantization ποΈ"] == "AWQ.4bit+GEMV")] |
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exllamav1_df = pd.merge( |
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vanilla_df, |
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exllamav1_df, |
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on=["Model π€"], |
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suffixes=["", " Custom Kernel"], |
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) |
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exllamav2_df = pd.merge( |
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vanilla_df, |
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exllamav2_df, |
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on=["Model π€"], |
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suffixes=["", " Custom Kernel"], |
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) |
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gemm_df = pd.merge( |
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vanilla_df, |
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gemm_df, |
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on=["Model π€"], |
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suffixes=["", " Custom Kernel"], |
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) |
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gemv_df = pd.merge( |
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vanilla_df, |
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gemv_df, |
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on=["Model π€"], |
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suffixes=["", " Custom Kernel"], |
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) |
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quant_df = pd.concat([exllamav1_df, exllamav2_df, gemm_df, gemv_df]) |
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quant_df["Prefill Speedup (%)"] = ((quant_df["Prefill (s)"] / quant_df["Prefill (s) Custom Kernel"]) * 100).round( |
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2 |
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) - 100 |
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quant_df["Decode Speedup (%)"] = ( |
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(quant_df["Decode (tokens/s) Custom Kernel"] / quant_df["Decode (tokens/s)"]) * 100 |
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).round(2) - 100 |
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quant_df = quant_df[quant_df["Prefill Speedup (%)"] < 1000] |
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quant_df = quant_df[quant_df["Decode Speedup (%)"] < 1000] |
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return quant_df |
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def get_quant_decode_fig(llm_perf_df): |
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quant_df = get_quant_df(llm_perf_df) |
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decode_fig = px.box( |
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quant_df, |
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x="Architecture ποΈ", |
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y="Decode Speedup (%)", |
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color_discrete_sequence=px.colors.qualitative.Light24, |
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custom_data=QUANT_DATA, |
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color="Quantization ποΈ Custom Kernel", |
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points="all", |
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) |
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decode_fig.update_traces( |
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hovertemplate="<br>".join([f"<b>{column}:</b> %{{customdata[{i}]}}" for i, column in enumerate(QUANT_DATA)]) |
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) |
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decode_fig.update_layout( |
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title={ |
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"text": "Decode Speedup per Architecture", |
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"y": 0.95, |
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"x": 0.5, |
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"xanchor": "center", |
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"yanchor": "top", |
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}, |
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xaxis_title="LLM Architecture", |
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yaxis_title="Decode Speedup (%)", |
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legend_title="Quantization Scheme", |
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width=1200, |
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height=600, |
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) |
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return decode_fig |
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def get_quant_prefill_fig(llm_perf_df): |
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quant_df = get_quant_df(llm_perf_df) |
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prefill_fig = px.box( |
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quant_df, |
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x="Architecture ποΈ", |
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y="Prefill Speedup (%)", |
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color_discrete_sequence=px.colors.qualitative.Light24, |
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custom_data=QUANT_DATA, |
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color="Quantization ποΈ Custom Kernel", |
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points="all", |
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) |
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prefill_fig.update_traces( |
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hovertemplate="<br>".join([f"<b>{column}:</b> %{{customdata[{i}]}}" for i, column in enumerate(QUANT_DATA)]) |
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) |
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prefill_fig.update_layout( |
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title={ |
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"text": "Prefill Speedup per Architecture", |
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"y": 0.95, |
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"x": 0.5, |
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"xanchor": "center", |
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"yanchor": "top", |
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}, |
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xaxis_title="LLM Architecture", |
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yaxis_title="Prefill Speedup (%)", |
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legend_title="Quantization Scheme", |
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width=1200, |
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height=600, |
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) |
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return prefill_fig |
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def create_quant_plots(llm_perf_df): |
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gr.HTML("π Hover over the points π for additional information.", elem_id="text") |
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prefill_fig = get_quant_prefill_fig(llm_perf_df) |
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decode_fig = get_quant_decode_fig(llm_perf_df) |
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prefill_plot = gr.components.Plot(value=prefill_fig, elem_id="plot", show_label=False) |
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decode_plot = gr.components.Plot(value=decode_fig, elem_id="plot", show_label=False) |
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return prefill_plot, decode_plot |
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