2025-06-16 13:58:49 +08:00
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2025-06-16 15:07:12 +08:00
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# 🟣 第六层:网络通信与物联网协议(Network & IoT)
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本模块聚焦于嵌入式系统中的通信机制和物联网协议栈,涵盖串口通信、无线模块、MQTT 等协议到云平台对接,适用于 IoT 产品开发全流程。
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---
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2025-06-16 15:11:31 +08:00
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## 串口通信与Socket通信
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2025-06-16 15:07:12 +08:00
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2025-06-16 15:11:31 +08:00
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### 串口通信
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2025-06-16 15:07:12 +08:00
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- 串口基础:波特率、校验位、停止位、数据位
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- 应用:模块通信、调试信息输出
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- 中断方式与 DMA 模式接收
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```c
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// 基本 UART 初始化
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USART1->BRR = 0x1A1; // 设置波特率
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USART1->CR1 |= USART_CR1_TE | USART_CR1_RE | USART_CR1_UE; // 使能收发
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```
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2025-06-16 15:11:31 +08:00
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### Socket网络通信
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2025-06-16 15:07:12 +08:00
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- Socket 基础:TCP/UDP 区别、连接建立过程
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- 在 ESP32 等模块中使用 LWIP 实现 TCP 客户端/服务器
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```c
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// TCP 客户端基础逻辑 (伪代码)
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socket();
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connect();
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send();
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recv();
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```
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---
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## 无线通信协议
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### Wi-Fi
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- ESP32 支持 STA / AP 模式,常用于联网或热点传输
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- SmartConfig、ESP-NOW、HTTP Server 应用
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### BLE(蓝牙低功耗)
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- GATT 协议模型:服务、特征值、通知机制
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- 使用 nRF52、ESP32 等平台进行广播、连接和数据交互
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### LoRa / ZigBee
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- 长距离通信:适用于室外传感器
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- 使用 Semtech SX1278 / ZigBee 模块通信帧格式解析
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---
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## 物联网协议栈
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### MQTT
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- 轻量级发布-订阅协议,常用于设备与云平台交互
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- QoS 等级、主题结构、客户端连接
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- 常见平台支持:EMQX、OneNet、阿里云 IoT
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### HTTP / HTTPS
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2025-06-16 19:37:44 +08:00
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#### HTTP 请求方法(Methods)
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* **GET**:请求指定资源。常用于获取数据。
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* **POST**:提交数据到服务器,如表单、上传。
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* **PUT**:上传数据,通常是更新资源。
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* **DELETE**:删除指定资源。
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* **HEAD**:与 GET 类似,但不返回响应体。
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* **OPTIONS**:返回服务器支持的请求方法。
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* **TRACE**:诊断请求响应路径,回显请求报文。
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* **CONNECT**:用于建立隧道(如 HTTPS 代理)。
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---
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#### ✅ HTTP 状态码
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| 分类 | 范围 | 含义 |
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| --- | -------- | -------- |
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| 1xx | 100\~199 | 接收中,继续处理 |
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| 2xx | 200\~299 | 请求成功 |
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| 3xx | 300\~399 | 重定向或更多操作 |
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| 4xx | 400\~499 | 客户端错误 |
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| 5xx | 500\~599 | 服务器错误 |
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**部分状态码示例:**
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* 200 OK
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* 201 Created
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* 204 No Content
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* 301 Moved Permanently
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* 302 Found
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* 304 Not Modified
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* 400 Bad Request
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* 401 Unauthorized
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* 403 Forbidden
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* 404 Not Found
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* 500 Internal Server Error
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* 502 Bad Gateway
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---
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#### ✅ HTTP 长连接与短连接
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* **HTTP/1.0** 默认使用短连接(每次请求后断开)
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* **HTTP/1.1** 默认使用长连接(`Connection: keep-alive`)
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---
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#### ✅ HTTP 请求报文格式
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```
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GET /hello.htm HTTP/1.1
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Host: www.example.com
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User-Agent: Mozilla/5.0
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Accept: */*
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Connection: Keep-Alive
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... 其他头部字段
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```
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#### ✅ HTTP 响应报文格式
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```
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HTTP/1.1 200 OK
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Content-Type: text/html
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Content-Length: 158
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Server: Apache
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Date: Sun, 14 Jun 2025 10:00:00 GMT
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<html>...</html>
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```
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---
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### 🔹 HTTPS 通信过程
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HTTPS = HTTP + TLS/SSL 加密
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#### 通信过程:
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1. 客户端发起 HTTPS 请求(握手开始)
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2. 服务器返回证书(含公钥)
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3. 客户端验证证书合法性
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4. 客户端生成随机对称密钥(用公钥加密传给服务器)
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5. 双方使用对称密钥开始加密通信
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---
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#### 对称加密(加解密使用同一密钥)
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* **DES**(56 位)
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* **AES**(128/192/256 位)
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#### 非对称加密(加密/解密使用公钥/私钥)
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* **RSA**:支持加密、签名
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* **DSA**:只支持签名(效率高,但不用于加解密)
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#### 哈希算法(不可逆)
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* **MD5**(128 位)
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* **SHA-1**(160 位)
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* **SHA-256**(256 位)
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2025-06-16 15:07:12 +08:00
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### CoAP / LwM2M
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- 适合低功耗终端的简化协议,UDP 传输,可压缩
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- 用于 NB-IoT、LwIP 等网络栈中
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2025-06-16 19:37:44 +08:00
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---
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2025-06-16 15:07:12 +08:00
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2025-06-16 17:50:51 +08:00
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## TCP/IP 协议栈基础与嵌入式实现
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### TCP/IP 协议栈分层结构(四层模型)
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| 层级 | 协议/组件 | 功能说明 |
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|----------------|----------------------------|----------------------------------|
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| 应用层 | HTTP, MQTT, CoAP, DNS | 面向用户的协议 |
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| 传输层 | TCP, UDP | 数据传输可靠性与端口管理 |
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| 网络层 | IP, ICMP, ARP | 地址与路由 |
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| 链路层 | Ethernet, Wi-Fi, BLE | 硬件通信和数据帧传输 |
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---
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### TCP 与 UDP 区别
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| 特性 | TCP | UDP |
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|----------------|----------------------------|----------------------------|
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| 是否连接 | 是(面向连接) | 否(无连接) |
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| 是否可靠 | 是(有重传、确认) | 否(可能丢包) |
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| 适用场景 | Web、文件传输、SSH | 视频流、语音、广播 |
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| 开销 | 较大(握手、窗口等) | 较小(直接发送) |
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---
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### 嵌入式 TCP/IP 协议栈组件
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- **LwIP(Lightweight IP)**
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- 开源轻量级 TCP/IP 协议栈
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- 支持 TCP/UDP/IP/DNS/DHCP 等
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- 常用于 STM32、ESP32、RT-Thread 中
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- **uIP(micro IP)**
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- 更轻量,适合资源极小的 MCU
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- **FreeRTOS+TCP**
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- 与 FreeRTOS 配套的 TCP/IP 协议栈
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- **Nut/Net、CycloneTCP**:其他常用协议栈
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---
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### 嵌入式 TCP/IP 通信流程(以 LwIP 为例)
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1. **初始化网络接口**:配置 IP、MAC、网关
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2. **创建 socket 套接字**:TCP 或 UDP
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3. **建立连接 / 绑定端口**
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4. **接收/发送数据**:`recv()`, `send()`
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5. **关闭连接**:`close()`
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---
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### 常用 API 示例(LwIP BSD socket)
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```c
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// TCP 客户端示例
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int sock = socket(AF_INET, SOCK_STREAM, 0);
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struct sockaddr_in server;
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server.sin_family = AF_INET;
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server.sin_port = htons(12345);
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server.sin_addr.s_addr = inet_addr("192.168.1.10");
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connect(sock, (struct sockaddr*)&server, sizeof(server));
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send(sock, "Hello", strlen("Hello"), 0);
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recv(sock, buffer, sizeof(buffer), 0);
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close(sock);
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```
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---
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2025-06-16 17:51:23 +08:00
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### DHCP / DNS / ICMP 说明
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2025-06-16 17:50:51 +08:00
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* **DHCP**:动态分配 IP(LwIP 可配置)
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* **DNS**:域名解析,调用 `gethostbyname()` 等
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* **ICMP**:如 `ping` 实现通信测试
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---
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2025-06-16 17:51:23 +08:00
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### 推荐阅读资料
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2025-06-16 17:50:51 +08:00
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* [LwIP 官方文档](https://savannah.nongnu.org/projects/lwip/)
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* [FreeRTOS+TCP 文档](https://freertos.org/FreeRTOS-Plus/FreeRTOS_Plus_TCP/index.html)
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* [TCP/IP Illustrated (Vol 1)](https://book.douban.com/subject/1088054/)
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---
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2025-06-16 15:07:12 +08:00
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## 云平台接入 & OTA 实现
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### 云平台对接
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- 主流平台:阿里云 IoT、腾讯连连、OneNet、ThingsBoard
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- 认证方式:三元组 / MQTT 密钥 / TLS 证书
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### OTA 升级机制
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- 本地或远程固件更新,防止刷写失败
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- 双分区设计(bootA / bootB)
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- 签名验证与版本控制
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```c
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// OTA 示例流程
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1. 下载固件至指定 Flash 区域
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2. 校验 MD5 / 签名
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3. 更新启动地址 / 重启
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```
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---
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## ✅ 推荐学习顺序
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1. 学习 UART 通信与基本网络 socket 原理
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2. 掌握 Wi-Fi / BLE 开发流程(推荐 ESP32/nRF52)
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3. 理解 MQTT 协议与平台接入逻辑
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4. 实践 OTA 升级流程,构建远程维护能力
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---
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## 📌 常见问题 FAQ
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| 问题 | 解答 |
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|------|------|
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| MQTT 断线如何重连? | 设置心跳机制与 reconnect 回调逻辑 |
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| OTA 更新失败怎么办? | 回退机制 + 双镜像分区设计 |
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| CoAP 和 MQTT 有何区别? | CoAP 基于 UDP,适合低功耗设备;MQTT 基于 TCP,稳定性好 |
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