<h1 align="center">
<br>
<a href="https://static.wixstatic.com/media/841f2a_ec3de0c290c14fddb9f4c3e90d85d9d6~mv2.png"><img src="https://static.wixstatic.com/media/841f2a_ec3de0c290c14fddb9f4c3e90d85d9d6~mv2.png" alt="RV64X" width="200"></a> <br>
RV64X
<br>
</h1>
<h4 align="center">RV64X aims at creating and offering open-source GPUs with a RISC-V-derived architecture.</h4>
<p align="center">
<a href="https://join.slack.com/t/rv64x/signup"></a>
<a href="https://join.slack.com/t/rv64x/signup"><img src="https://static.wixstatic.com/media/841f2a_704ce8b0a76e42349eebbe2ba74b285c~mv2.png"></a>
</p>
<p align="center">
<a href="#about">About the project</a> •
<a href="#getting-started">Getting starteds</a> •
<a href="#usage">Usage</a> •
<a href="#roadmap">Roadmap</a> •
<a href="#contributing">Contributing</a> •
<a href="#license">License</a>
<a href="#contact">Contact</a>
<a href="#acknowledgements">Acknowledgements</a>
</p>
<!-- ABOUT THE PROJECT -->
## About the project
We want to enable small companies to develop purpose-built processors and GPUs without paying a royalty. There are numerous free and commercial IP building blocks for RISC-V-based system-on-chips (SoCs), but the portfolio lacks a graphics option so we decided to develop and offer open-source GPUs based on the RISC-V architecture.
#### Key Features
RV64X-designed GPUs use a basic RV32I or RV64I core that supports new instructions built on the base vector instruction set. Initially, it will use an RV32I core, and later on, an RV64I core will replace it. The basic RISC-V core will support:
1. New graphics and machine learning specific data types, including scalars and matrices;
2. Vector/math instructions;
3. Pixel/texture instructions;
4. Frame buffer instructions;
5. A special register set (featuring configurable 136-bit vector registers);
5. Some graphics-specific instructions;
The graphics core will support the Vulkan API, but the group strives to make it DirectX (shader model 5) and OpenGL/ES-compliant. :smile:
<!-- GETTING STARTED -->
## Getting Started
This is an example of how we want to give instructions on setting up the project locally.
To get a local copy up and running follow these simple example steps.
### Prerequisites
This is an example of how to list things you need to use the software and how to install them.
* npm
```sh
npm install npm@latest -g
```
### Installation
1. Get a free API Key at [https://example.com](https://example.com)
2. Clone the repo
```sh
git clone https://github.com/your_username_/Project-Name.git
```
3. Install NPM packages
```sh
npm install
```
4. Enter your API in `config.js`
```JS
const API_KEY = 'ENTER YOUR API';
```
<!-- USAGE EXAMPLES -->
## Usage
We will use this space to show useful examples of how a project can be used. Additional screenshots, code examples and demos work well in this space. You may also link to more resources.
_For more examples, please refer to the [Documentation](https://example.com)_
<!-- ROADMAP -->
## Roadmap
See the [open issues]() for a list of proposed features (and known issues).
<!-- CONTRIBUTING -->
## Contributing
Contributions are what make the open source community such an amazing place to be learn, inspire, and create. Any contributions you make are **greatly appreciated**.
1. Fork the Project
2. Create your Feature Branch (`git checkout -b feature/AmazingFeature`)
3. Commit your Changes (`git commit -m 'Add some AmazingFeature'`)
4. Push to the Branch (`git push origin feature/AmazingFeature`)
5. Open a Pull Request
## License
GNU General Public License v3.0
<!-- CONTACT -->
## Contact
Atif Zafar - [github account]() - atif@email -
Project Link: [https://github.com/your_username/repo_name](https://github.com/your_username/repo_name)
<!-- ACKNOWLEDGEMENTS -->
## Acknowledgements

两只妖精同上树
- 粉丝: 40
最新资源
- 电力系统中基于扩展卡尔曼观测器的无模型预测电流控制仿真分析
- 直驱永磁同步发电机结合超级电容与蓄电池储能的并网控制MATLABSimulink建模及策略分析 直驱永磁同步发电机
- (源码)基于React框架的入门项目.zip
- 机械工程领域基于MATLAB的小波时频图与卷积神经网络在西储大学滚动轴承故障诊断的应用
- (源码)基于C语言AVR单片机的实时天气站控制器.zip
- COMSOL仿真解析:激光烧蚀靶材中的流体传热、水平集与层流研究 详细版
- 基于NARX模型的多变量时间序列预测及其Matlab实现 - 非线性自回归 全面版
- (源码)基于ESP32CAM的物联网人脸识别智能门锁.zip
- 基于MatlabSimulink的MPC模型预测控制车队控制队列系统(3车队列控制+多车扩展)
- (源码)基于LoRa通信协议的Digipeater项目.zip
- Matlab中基于IMM与UKFEKF的三维路径跟踪预测仿真研究
- MATLAB编程专家:代改车辆参数与能源管理策略模型,优化仿真图像,动态控制技术提升汽车性能
- (源码)基于React Native和Dva框架的移动应用模板.zip
- 机器人技术领域中全局路径规划与DWA算法融合实现动态避障的应用研究
- (源码)基于Arduino和Alexa的智能家居自动化系统.zip
- 磁链控制优化新突破:全阶磁链观测器FFO-FOC异步电机无感矢量控制
资源上传下载、课程学习等过程中有任何疑问或建议,欢迎提出宝贵意见哦~我们会及时处理!
点击此处反馈


