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SPDX-FileCopyrightText: Copyright (c) 2024-2025 NVIDIA CORPORATION & AFFILIATES. All rights reserved.
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SPDX-License-Identifier: Apache-2.0
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Licensed under the Apache License, Version 2.0 (the "License");
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# NVIDIA Dynamo
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[![License](https://img.shields.io/badge/License-Apache_2.0-blue.svg)](https://opensource.org/licenses/Apache-2.0)
[![GitHub Release](https://img.shields.io/github/v/release/ai-dynamo/dynamo)](https://github.com/ai-dynamo/dynamo/releases/latest)
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[![Discord](https://dcbadge.limes.pink/api/server/D92uqZRjCZ?style=flat)](https://discord.gg/nvidia-dynamo)
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| **[Guides](docs/guides)** | **[Architecture and Features](docs/architecture.md)** | **[APIs](lib/bindings/python/README.md)** | **[SDK](deploy/dynamo/sdk/README.md)** |
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NVIDIA Dynamo is a high-throughput low-latency inference framework designed for serving generative AI and reasoning models in multi-node distributed environments. Dynamo is designed to be inference engine agnostic (supports TRT-LLM, vLLM, SGLang or others) and captures LLM-specific capabilities such as:
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- **Disaggregated prefill & decode inference** – Maximizes GPU throughput and facilitates trade off between throughput and latency.
- **Dynamic GPU scheduling** – Optimizes performance based on fluctuating demand
- **LLM-aware request routing** – Eliminates unnecessary KV cache re-computation
- **Accelerated data transfer** – Reduces inference response time using NIXL.
- **KV cache offloading** – Leverages multiple memory hierarchies for higher system throughput
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Built in Rust for performance and in Python for extensibility, Dynamo is fully open-source and driven by a transparent, OSS (Open Source Software) first development approach.
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### Installation
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The following examples require a few system level packages.
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```
apt-get update
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DEBIAN_FRONTEND=noninteractive apt-get install -yq python3-dev python3-pip libucx0
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pip install ai-dynamo[all]
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```
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> [!NOTE]
> TensorRT-LLM Support is currently available on a [branch](https://github.com/ai-dynamo/dynamo/tree/dynamo/trtllm_llmapi_v1/examples/trtllm#building-the-environment)
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### Running and Interacting with an LLM Locally
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To run a model and interact with it locally you can call `dynamo
run` with a hugging face model. `dynamo run` supports several backends
including: `mistralrs`, `sglang`, `vllm`, and `tensorrtllm`.
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#### Example Command
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```
dynamo run out=vllm deepseek-ai/DeepSeek-R1-Distill-Llama-8B
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```
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```
? User › Hello, how are you?
✔ User · Hello, how are you?
Okay, so I'm trying to figure out how to respond to the user's greeting. They said, "Hello, how are you?" and then followed it with "Hello! I'm just a program, but thanks for asking." Hmm, I need to come up with a suitable reply. ...
```
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### LLM Serving
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Dynamo provides a simple way to spin up a local set of inference
components including:
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- **OpenAI Compatible Frontend** – High performance OpenAI compatible http api server written in Rust.
- **Basic and Kv Aware Router** – Route and load balance traffic to a set of workers.
- **Workers** – Set of pre-configured LLM serving engines.
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To run a minimal configuration you can use a pre-configured
example.
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#### Start Dynamo Distributed Runtime Services
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First start the Dynamo Distributed Runtime services:
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```bash
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docker compose -f deploy/docker-compose.yml up -d
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```
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#### Start Dynamo LLM Serving Components

Next serve a minimal configuration with an http server, basic
round-robin router, and a single worker.
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```bash
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cd examples/llm
dynamo serve graphs.agg:Frontend -f configs/agg.yaml
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```

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#### Send a Request
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```bash
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curl localhost:8000/v1/chat/completions   -H "Content-Type: application/json"   -d '{
    "model": "deepseek-ai/DeepSeek-R1-Distill-Llama-8B",
    "messages": [
    {
        "role": "user",
        "content": "Hello, how are you?"
    }
    ],
    "stream":false,
    "max_tokens": 300
  }' | jq
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```