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HSXP HK32F030M template project for GNU Arm Embedded Toolchain

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HK32F030MF4P6 Project Template

  • HSXP HK32F030M template project for GNU Arm Embedded Toolchain
  • Supported programmers: J-Link, DAPLink/PyOCD, ST-LINK/PyOCD
  • Supported IDE: VSCode

HK32F030MF4P6

Pinout - TSSOP20

Pin Func Pin Func
1 PD4 20 PD3 AIN3
2 PD5 AIN0 SWDIO 19 PD2 AIN4
3 PD6 AIN1 18 PD1
4 NRST 17 PC7
5 PA1 EXTCLK1 16 PC6
6 PA2 15 PC5 EXTCLK4
7 VSS VSSA 14 PC4 AIN2 WKUP0
8 PD7 VCAP 13 PC3
9 VDD VDDA 12 PB4
10 PA3 11 PB5 EXTCLK3 SWCLK

File Structure

├── Build                       # Build results
├── Docs                        # Datasheet
├── Examples                    # Example code
├── flash.jlink                 # JLink download commander script
├── Libraries
│   ├── CMSIS
│   ├── Debug                   # SysTick delay and printf for debug
│   ├── FreeRTOS                # FreeRTOS library
│   ├── HK32F030M_Driver        # MCU peripheral driver
│   └── LDScripts
├── LICENSE
├── Makefile                    # Make config
├── Misc
│   └── vscode
├── README.md
├── rules.mk                    # Pre-defined rules include in Makefile 
└── User                        # User application code

Requirements

Building

1. Install GNU Arm Embedded Toolchain

Download the toolchain from Arm GNU Toolchain Downloads according to your pc architecture, extract the files

tar xvf gcc-arm-11.2-2022.02-x86_64-arm-none-eabi.tar.xz
cd /opt/gcc-arm/
sudo mv ~/Backup/linux/gcc-arm-11.2-2022.02-x86_64-arm-none-eabi/ .
sudo chown -R root:root gcc-arm-11.2-2022.02-x86_64-arm-none-eabi/

2. Option #1: Install SEGGER J-Link

Download and install JLink from J-Link / J-Trace Downloads.

# installation command for .deb
sudo dpkg -i JLink_Linux_V770a_x86_64.deb

The default installation directory is /opt/SEGGER

2. Option #2: Install PyOCD

Install from pip instead of apt repository because the version is 0.13.1+dfsg-1, which is too low to recognize J-Link probe

pip install pyocd

This will install PyOCD into:

/home/[user]/.local/bin/pyocd
/home/[user]/.local/bin/pyocd-gdbserver
/home/[user]/.local/lib/python3.10/site-packages/pyocd-0.34.2.dist-info/*
/home/[user]/.local/lib/python3.10/site-packages/pyocd/*

.profile will take care of the PATH, run source ~/.profile to make pyocd command available

3. Clone This Repository

Clone this repository to local workspace

git clone https://github.com/IOsetting/hk32f030m-template.git

4. Edit Makefile

Change the settings in Makefile

  • make sure ARM_TOOCHAIN points to the correct path
  • If you use J-Link, FLASH_PROGRM can be jlink or pyocd
  • If you use DAPLink or ST-LINK, set FLASH_PROGRM to pyocd
##### Project #####

PROJECT 		?= app
# The path for generated files
BUILD_DIR 		= Build


##### Options #####

# Enable printf float %f support, y:yes, n:no
ENABLE_PRINTF_FLOAT	?= n
# Build with FreeRTOS, y:yes, n:no
USE_FREERTOS	?= n
# Programmer, jlink or pyocd
FLASH_PROGRM	?= pyocd


##### Toolchains #######

# path to gcc arm
ARM_TOOCHAIN 	?= /opt/gcc-arm/arm-gnu-toolchain-12.2.mpacbti-bet1-x86_64-arm-none-eabi/bin

# path to JLinkExe
JLINKEXE		?= /opt/SEGGER/JLink/JLinkExe
# JLink device type: HK32F030MD4P6, HK32F030MF4U6, HK32F030MF4P6 or HK32F030MJ4M6
JLINK_DEVICE	?= HK32F030MF4P6
# path to PyOCD
PYOCD_EXE		?= pyocd
# PyOCD device type: hk32f030md4p6, hk32f030mf4p6, hk32f030mf4u6, hk32f030mj4m6
PYOCD_DEVICE	?= hk32f030mf4p6

5. Compiling And Flashing

# clean source code
make clean
# build
make
# or make with verbose output
V=1 make
# flash
make flash

Try Other Examples

More examples can be found in Examples folder, copy and replace the files under User folder to try different examples.

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