2019-10-24 17:56:09 +08:00
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# LPC55S69-EVK 板级支持包
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## 1. 简介(Introduction)
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LPC55S69 是由恩智浦NXP半导体推出的基于Cortex-M33内核的高性能单片机
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包括如下硬件特性:
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| 硬件 | 描述 |
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| -- | -- |
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|芯片型号| LPC556x/LPC55S6x 全系列 |
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|CPU| Cortex-M33 Dual Core, with FPU |
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|主频| 150MHz |
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|基本外设| 8个Flexcomm(任意配置为USART/SPI/I2C/I2S) / 1个50MHz SPI / 双USB(1高1全,支持主从) |
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|特色| PowerQuad DSP协处理器 / 安全外设:PRINCE/PUF/CASPER/AES-256/HASH |
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## 2. 硬件开发环境(Hardware development system)
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开发板(EVK)
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![开发板示意图](./figures/board.png)
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## 3. 编译说明
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| 环境 | 说明 |
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| ------------ | ------------------------------------------------------------ |
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| PC操作系统 | Linux/MacOS/Windows |
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| 编译器 | arm-none-eabi-gcc version 6.3.1 20170620 (release)/armcc/iar |
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| 构建工具 | scons/mdk5/iar |
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| 依赖软件环境 | Env工具/(MDK或IAR或arm-none-eabi-gcc)/git/调试器驱动 |
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1) 下载源码
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```bash
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git clone https://github.com/RT-Thread/rt-thread.git
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```
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2) 配置工程并准备env
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(Linux/Mac)
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```bash
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cd rt-thread/bsp/lpc55s69_evk
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scons --menuconfig
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source ~/.env/env.sh
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pkgs --upgrade
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```
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(Windows)
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>在[RT-Thread官网][1]下载ENV工具包
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3) 配置芯片型号
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(Linux/Mac)
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```bash
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scons --menuconfig
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```
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(Windows(ENV环境中))
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```bash
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menuconfig
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```
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在menuconfig页面配置并选择对应的芯片型号,若开发环境为MDK/IAR,则需要生成工程
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4) 生成工程(Mac/Linux下请跳过此步骤)
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(Windows IAR)
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```bash
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SET RTT_CC=iar
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scons --target=iar -s
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```
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(Windows MDK5)*
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```bash
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scons --target=mdk5 -s
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```
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*该板级支持包不支持生成mdk4的工程
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**MDK 与 IAR 在生成完成工程之后一定要在工程中手动选择一次芯片信号,否则会产生严重编译错误**
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5) 编译
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使用MDK或IAR请参见对应教程
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(Windows arm-none-eabi-gcc)
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使用以下指令设置gcc路径
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```bash
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2022-10-10 07:08:19 +08:00
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set RTT_EXEC_PATH=[GCC路径]
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2019-10-24 17:56:09 +08:00
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```
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(Linux/Mac arm-none-eabi-gcc)
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使用以下指令设置gcc路径
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```bash
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export RTT_EXEC_PATH=[GCC路径]
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```
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编译(WindowsLinux/Mac arm-none-eabi-gcc)
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```bash
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scons -j4
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```
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2022-10-10 07:08:19 +08:00
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或者通过 `scons --exec-path="GCC工具链路径"` 命令,在指定工具链位置的同时直接编译。
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2019-10-24 17:56:09 +08:00
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出现下列信息即为编译成功
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```bash
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LINK rtthread-lpc55s69.elf
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arm-none-eabi-objcopy -O binary rtthread-lpc55s6x.elf rtthread.bin
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arm-none-eabi-size rtthread-lpc55s69.elf
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text data bss dec hex filename
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41596 356 1456 43408 a990 rtthread-lpc55s6x.elf
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scons: done building targets.
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```
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如果编译正确无误,会产生rtthread-lpc55s6x.elf、rtthread.bin文件。其中rtthread.bin为二进制固件
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## 3. 烧写及执行
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烧写可以使用仿真器 ISP等多种方式 此处不再赘述
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### 3.1 运行结果
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如果编译 & 烧写无误,会在Flexcomm0串口*上看到RT-Thread的启动logo信息:
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```bash
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\ | /
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- RT - Thread Operating System
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/ | \ 4.0.1 build Jul 30 2019
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2006 - 2019 Copyright by rt-thread team
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uising armclang, version: 6120001
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msh />
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```
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*默认串口
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## 4. 驱动支持情况及计划
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| 驱动 | 支持情况 | 备注 |
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| ---------- | :------: | :--------------------------: |
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| UART | 支持 | UART0/2 |
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| GPIO | 支持 | 自动根据芯片型号选择引脚布局 |
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| SPI | 支持 | 支持High Speed SPI |
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| USB Device | 不支持 | 暂不支持 |
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| USB Host | 不支持 | 暂不支持 |
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| Windowed WatchDog | 不支持 | 支持 |
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| ADC | 不支持 | 暂不支持 |
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| I2C | 支持 | 可配合MMA8562 |
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| I2C Sensor | 支持 | 获取板上MMA8562加速度传感器数据 |
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| RTC | 支持 | RTC时钟自动配置 |
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| SDIO | 支持 | 操作SD卡 |
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| I2S | 不支持 | 暂不支持 |
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### 4.1 IO在板级支持包中的映射情况
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| PIO号 | 板级包中的定义 |
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| -- | -- |
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| PIO0_29 | Flexcomm0 USART RXD |
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| PIO0_30 | Flexcomm0 USART TXD |
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| | |
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| PIO0_7 | SDIO SD0_CLK |
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| PIO0_8 | SDIO SD0_CMD |
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| PIO0_9 | SDIO SD0_POW_EN |
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| PIO0_15 | SDIO SD0_WR_PRT |
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| PIO0_17 | SDIO SD0_CARD_INT |
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| PIO0_24 | SDIO SD0_D(0) |
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| PIO0_25 | SDIO SD0_D(1) |
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| PIO0_31 | SDIO SD0_D(2) |
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| PIO1_0 | SDIO SD0_D(3) |
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| PIO0_26 | High Speed SPI MOSI |
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| PIO1_2 | High Speed SPI SCK |
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| PIO1_3 | High Speed SPI MISO |
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| PIO1_4 | GPIO1_4 output LED BLUE |
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| PIO1_6 | GPIO1_6 output LED RED |
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| PIO1_7 | GPIO1_7 output LED GREEN |
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| PIO0_27 | Flexcomm2 USART TXD mikro BUS |
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| PIO1_24 | Flexcomm2 USART RXD mikro BUS |
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| PIO1_20 | Flexcomm4 I2C SCL |
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| PIO1_21 | Flexcomm4 I2C SDA |
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## 5. menuconfig Bsp菜单详解
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| 选项 | 解释 |
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| -- | -- |
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| Device type | 选择芯片型号,修改此处需修改MDK/IAR工程为相同芯片型号 |
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*部分选项需要在RT-Thread组件菜单中开启对应的设备框架才能显示。
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## 6. 联系人信息
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维护人:
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[Magicoe][2] < [magicoe@163.com][3] >
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2022-11-27 15:25:35 +08:00
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[AlexYang][2] < [alex.yang@nxp.com][3] >
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2019-10-24 17:56:09 +08:00
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[1]: https://www.rt-thread.org/page/download.html
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[2]: https://github.com/Magicoe
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[3]: mailto:magicoe@163.com
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