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# CH32V307V-R1 BSP Introduction
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**English** | [中文 ](README_zh.md )
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## Introduction
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CH32V307V-R1 is a RISC-V core-based development board with a maximum main frequency of 144Mhz. It delivers the best value for developers to try and get started with RISC-V architecture.
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This document records the execution instruction of the BSP (board support package) provided by the RT-Thread community for the CH32V307V-R1 development board.
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The document is covered in three parts:
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- Board Resources Introduction
- Compiling
- Quickly Get Started
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By reading the Quickly Get Started section developers can quickly get their hands on this BSP and run RT-Thread on the board.
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![board ](./figures/ch32v307.jpg )
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**Features**
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- MCU: CH32V307VCT6, main frequency 144MHz, FLASH and RAM are available for configuration.
- LED: 2, user LEDs, LED1(blue), LED2(blue).
- Button: 2, Reset, User.
- USB: 2, Tpye-C.
- Network Port: 1, 10M PHY inside.
- WCH-Link download debugging tools onboard.
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For more details about this board, please refer to: [CH32V307 ](https://www.wch.cn/products/CH32V307.html )
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## Compiling
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The BSP supports the RISC-V GCC development environment, here's the specific version information:
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| IDE/Compiler | Version Tested |
| ------------ | -------------------- |
| GCC | WCH RISC-V GCC 8.2.0 |
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## Quickly Get Started
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#### 3.1 Using [Env](https://www.rt-thread.io/download.html?download=Env) to compile BSP
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This section is about to introduce how to use Env to compile the BSP.
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#### 3.1.1 Compile BSP
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1. [Download WCH Compile Toolchain ](https://github.com/NanjingQinheng/sdk-toolchain-RISC-V-GCC-WCH/archive/refs/tags/V1.0.0.zip )
2. [Download the Env tool latest version ](https://github.com/RT-Thread/env-windows/releases )
3. [Download the RT-Thread latest code ](https://github.com/RT-Thread/rt-thread/archive/refs/heads/master.zip )
4. Open the Env tool in the current BSP root directory and execute the `scons --exec-path=D:sdk-toolchain-RISC-V-GCC-WCH-1.0.0bin` command, compile it directly while specifying the toolchain location.
5. After compilation, the **rtthread.bin** file will be generated
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![sconscompile ](./figures/sconscompile.jpg )
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#### 3.1.2 Hardware Connection
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Use a data cable to connect the onboard wch-link to the PC, and turn on the power switch.
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#### 3.1.3 Download
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Open the WCH RISC-V MCU ProgrammerTool, select the **rtthread.bin** file that we just generated, and download it.
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![tool ](./figures/tool.png )
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> Note that Chip Mem here is set to 224K ROM + 96K RAM.
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#### 3.1.4 Running Result
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In the terminal tool, open the onboard wch-link serial port (WCHDapLink SERIAL, default 115200-8-1-N), and after resetting the device, you can see the output information of RT-Thread on the serial port:
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![end ](./figures/end.png )
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<!-- ### 3.2 Import RT - Thread Studio Project
**CH32V307V-R1 is pending upgrade in Studio. It's not encouraged now to use Studio to compile this BSP.**
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#### 3.2.1 Import
Open RT-Thread Studio and click: File-> Import:
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![import ](./figures/import.png )
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Select "RT-Thread BSP Project into Workspace":
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![windows ](./figures/windows.png )
填写项目信息, Bsp 根目录为 \rt-thread\bsp\wch\risc-v\ch32v307v-r1 目录:
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Fill in the project info, the BSP root directory is \rt-thread\bsp\wch\risc-v\ch32v307v-r1:
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![config ](./figures/config.png )
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#### 3.2.2 Compilation Environment
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工程导入后进行编译环境的设置,首先点击“打开构建设置”进入设置界面:
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After the project is imported, set the compilation environment, click "Open Build Settings" to enter the setting interface:
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![set ](./figures/set.png )
将编译链路径复制到 Toolchain path 中:
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Copy the compilation chain path into the Toolchain path:
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![toolchain ](./figures/toolchain.png )
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Change Prefix:
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![prefix ](./figures/prefix.png )
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Set the tool:
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![toolset ](./figures/toolset.png )
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#### 3.2.3 Compiling
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The result is shown as below:
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![success](./figures/success.png -->