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# Colossal-AI
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[![logo](./docs/images/Colossal-AI_logo.png)](https://www.colossalai.org/)
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<div align="center">
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   <h3> <a href="https://arxiv.org/abs/2110.14883"> Paper </a> | 
   <a href="https://www.colossalai.org/"> Documentation </a> | 
   <a href="https://github.com/hpcaitech/ColossalAI-Examples"> Examples </a> |   
   <a href="https://github.com/hpcaitech/ColossalAI/discussions"> Forum </a> | 
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   <a href="https://medium.com/@hpcaitech"> Blog </a></h3> 
   <br/>

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   [![Build](https://github.com/hpcaitech/ColossalAI/actions/workflows/PR_CI.yml/badge.svg)](https://github.com/hpcaitech/ColossalAI/actions/workflows/PR_CI.yml)
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   [![Documentation](https://readthedocs.org/projects/colossalai/badge/?version=latest)](https://colossalai.readthedocs.io/en/latest/?badge=latest)
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   [![codebeat badge](https://codebeat.co/badges/bfe8f98b-5d61-4256-8ad2-ccd34d9cc156)](https://codebeat.co/projects/github-com-hpcaitech-colossalai-main)
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</div>
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An integrated large-scale model training system with efficient parallelization techniques.

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## Installation

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### PyPI

```bash
pip install colossalai
```
This command will install CUDA extension if your have installed CUDA, NVCC and torch. 
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If you don't want to install CUDA extension, you should add `--global-option="--no_cuda_ext"`, like:
```bash
pip install colossalai --global-option="--no_cuda_ext"
```

If you want to use `ZeRO`, you can run:
```bash
pip install colossalai[zero]
```

### Install From Source

> The documentation will be in line with the main branch of the repository. Feel free to raise an issue if you encounter any problem. :)
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```shell
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git clone https://github.com/hpcaitech/ColossalAI.git
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cd ColossalAI
# install dependency
pip install -r requirements/requirements.txt

# install colossalai
pip install .
```

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If you don't want to install and enable CUDA kernel fusion (compulsory installation when using fused optimizer):
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```shell
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pip install --global-option="--no_cuda_ext" .
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```

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## Use Docker

Run the following command to build a docker image from Dockerfile provided.

```bash
cd ColossalAI
docker build -t colossalai ./docker
```

Run the following command to start the docker container in interactive mode.

```bash
docker run -ti --gpus all --rm --ipc=host colossalai bash
```

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## Contributing

If you wish to contribute to this project, you can follow the guideline in [Contributing](./CONTRIBUTING.md)


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## Quick View

### Start Distributed Training in Lines

```python
import colossalai
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from colossalai.utils import get_dataloader


# my_config can be path to config file or a dictionary obj
# 'localhost' is only for single node, you need to specify
# the node name if using multiple nodes
colossalai.launch(
    config=my_config,
    rank=rank,
    world_size=world_size,
    backend='nccl',
    port=29500,
    host='localhost'
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)
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# build your model
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model = ...
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# build you dataset, the dataloader will have distributed data
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# sampler by default
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train_dataset = ...
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train_dataloader = get_dataloader(dataset=dataset,
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                                shuffle=True
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                                )
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# build your
optimizer = ...
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# build your loss function
criterion = ...

# build your lr_scheduler
engine, train_dataloader, _, _ = colossalai.initialize(
    model=model,
    optimizer=optimizer,
    criterion=criterion,
    train_dataloader=train_dataloader
)

# start training
engine.train()
for epoch in range(NUM_EPOCHS):
    for data, label in train_dataloader:
        engine.zero_grad()
        output = engine(data)
        loss = engine.criterion(output, label)
        engine.backward(loss)
        engine.step()

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```

### Write a Simple 2D Parallel Model

Let's say we have a huge MLP model and its very large hidden size makes it difficult to fit into a single GPU. We can
then distribute the model weights across GPUs in a 2D mesh while you still write your model in a familiar way.

```python
from colossalai.nn import Linear2D
import torch.nn as nn


class MLP_2D(nn.Module):

    def __init__(self):
        super().__init__()
        self.linear_1 = Linear2D(in_features=1024, out_features=16384)
        self.linear_2 = Linear2D(in_features=16384, out_features=1024)

    def forward(self, x):
        x = self.linear_1(x)
        x = self.linear_2(x)
        return x

```

## Features

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Colossal-AI provides a collection of parallel training components for you. We aim to support you to write your
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distributed deep learning models just like how you write your single-GPU model. We provide friendly tools to kickstart
distributed training in a few lines.

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- Data Parallelism
- Pipeline Parallelism
- 1D, 2D, 2.5D, 3D and sequence parallelism
- Friendly trainer and engine
- Extensible for new parallelism
- Mixed Precision Training
- Zero Redundancy Optimizer (ZeRO)

Please visit our [documentation and tutorials](https://www.colossalai.org/) for more details.
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## Cite Us
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```
@article{bian2021colossal,
  title={Colossal-AI: A Unified Deep Learning System For Large-Scale Parallel Training},
  author={Bian, Zhengda and Liu, Hongxin and Wang, Boxiang and Huang, Haichen and Li, Yongbin and Wang, Chuanrui and Cui, Fan and You, Yang},
  journal={arXiv preprint arXiv:2110.14883},
  year={2021}
}
```