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Parent(s):
3fe032d
add app
Browse files- src/app.py +109 -0
src/app.py
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import streamlit as st
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import pandas as pd
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from utils import extract_from_url, get_model, calculate_memory
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import plotly.express as px
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import numpy as np
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st.set_page_config(page_title='Can you run it? LLM GPU check', layout="wide", initial_sidebar_state="expanded")
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st.title("Can you run it? LLM GPU check")
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percentage_width_main = 80
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st.markdown(
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f"""<style>
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.appview-container .main .block-container{{
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max-width: {percentage_width_main}%;}}
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</style>
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""",
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unsafe_allow_html=True,
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)
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@st.cache_resource
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def get_gpu_specs():
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return pd.read_csv("data/gpu_specs.csv")
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def get_name(index):
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row = gpu_specs.iloc[index]
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return f"{row['Product Name']} ({row['RAM (GB)']} GB, {row['Year']})"
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def create_plot(memory_table, y, title, container):
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fig = px.bar(memory_table, x=memory_table.index, y=y, color_continuous_scale="RdBu_r")
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fig.update_layout(yaxis_title="Number of GPUs", title=dict(text=title, font=dict(size=25)))
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fig.update_coloraxes(showscale=False)
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container.plotly_chart(fig, use_container_width=True)
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gpu_specs = get_gpu_specs()
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access_token = st.sidebar.text_input("Access token")
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model_name = st.sidebar.text_input("Model name", value="mistralai/Mistral-7B-v0.1")
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if not model_name:
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st.info("Please enter a model name")
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st.stop()
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model_name = extract_from_url(model_name)
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if model_name not in st.session_state:
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model = get_model(model_name, library="transformers", access_token=access_token)
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st.session_state[model_name] = (model, calculate_memory(model, ["float32", "float16/bfloat16", "int8", "int4"]))
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gpu_vendor = st.sidebar.selectbox("GPU Vendor", ["NVIDIA", "AMD", "Intel"])
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year = st.sidebar.selectbox("Filter by Release Year", list(range(2014, 2024))[::-1], index=None)
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gpu_info = gpu_specs[gpu_specs['Vendor'] == gpu_vendor].sort_values('RAM (GB)', ascending=False)
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if year:
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gpu_info = gpu_info[gpu_info['Year'] == year]
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min_ram = gpu_info['RAM (GB)'].min()
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max_ram = gpu_info['RAM (GB)'].max()
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ram = st.sidebar.slider("Filter by RAM (GB)", min_ram, max_ram, (min_ram, max_ram), step=0.5)
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gpu_info = gpu_info[gpu_info["RAM (GB)"].between(*ram)]
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gpu = st.sidebar.selectbox("GPU", gpu_info['Product Name'].index.tolist(), index=21, format_func=lambda x : gpu_specs.iloc[x]['Product Name'])
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gpu_spec = gpu_specs.iloc[gpu]
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gpu_spec.name = 'INFO'
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lora_pct = st.sidebar.slider("LoRa % trainable parameters", 0.1, 100.0, 2.0, step=0.1)
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st.sidebar.dataframe(gpu_spec.T)
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memory_table = pd.DataFrame(st.session_state[model_name][1]).set_index('dtype')
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memory_table['LoRA Fine-Tunning (GB)'] = (memory_table["Total Size (GB)"] +
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(memory_table["Parameters (Billion)"]* lora_pct/100 * (16/8)*4)) * 1.2
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_, col, _ = st.columns([1,3,1])
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with col.expander("Information", expanded=True):
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st.markdown("""- GPU information comes from [TechPowerUp GPU Specs](https://www.techpowerup.com/gpu-specs/)
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- Mainly based on [Model Memory Calculator by hf-accelerate](https://huggingface.co/spaces/hf-accelerate/model-memory-usage)
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using `transformers` library
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- Inference is calculated following [EleutherAI Transformer Math 101](https://blog.eleuther.ai/transformer-math/),
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where is estimated as """)
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st.latex(r"""\text{Memory}_\text{Inference} \approx \text{Model Size} \times 1.2""")
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st.markdown("""- For LoRa Fine-tunning, I'm asuming a **16-bit** dtype of trainable parameters. The formula (in terms of GB) is""")
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st.latex(r"\text{Memory}_\text{LoRa} \approx \text{Model Size} + \left(\text{ \# trainable Params}_\text{Billions}\times\frac{16}{8} \times 4\right) \times 1.2")
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st.markdown("- You can understand `int4` as models in `GPTQ-4bit`, `AWQ-4bit` or `Q4_0 GGUF/GGML` formats")
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_memory_table = memory_table.copy()
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memory_table = memory_table.round(2).T
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_memory_table /= gpu_spec['RAM (GB)']
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_memory_table = _memory_table.apply(np.ceil).astype(int).drop(columns=['Parameters (Billion)', 'Total Size (GB)'])
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_memory_table.columns = ['Inference', 'Full Training Adam', 'LoRa Fine-tuning']
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_memory_table = _memory_table.stack().reset_index()
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_memory_table.columns = ['dtype', 'Variable', 'Number of GPUs']
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col1, col2 = st.columns([1,1.3])
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with col1:
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st.write(f"#### [{model_name}](https://huggingface.co/{model_name}) ({memory_table.iloc[3,0]:.1f}B)")
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st.write(memory_table.iloc[[0, 1, 2, 4]])
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with col2:
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num_colors= 4
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colors = [px.colors.sequential.RdBu[int(i*(len(px.colors.sequential.RdBu)-1)/(num_colors-1))] for i in range(num_colors)]
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fig = px.bar(_memory_table, x='Variable', y='Number of GPUs', color='dtype', barmode='group', color_discrete_sequence=colors)
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fig.update_layout(title=dict(text=f"Number of GPUs required for<br> {get_name(gpu)}", font=dict(size=25))
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, xaxis_tickfont_size=14, yaxis_tickfont_size=16, yaxis_dtick='1')
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st.plotly_chart(fig, use_container_width=True)
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