FreeModbus库介绍
FreeModbus是一个简单易用的Modbus RTU库,它允许同时运行多个独立的Modbus RTU从机。这个库的特点在于它直接使用0xxxx-4xxxxregister空间,无需手动处理Register Mapping等繁琐问题,并且可以限制使用的最大number of registers。它提供了定时器接口和串口收发接口,可以根据硬件需求进行配置,非常符合常规使用Modbus通信的思路。

使用说明
以下是使用FreeModbus库的基本步骤:
- 搭建从机 1.1 引入库:将FreeModbus库添加到你的工程中,并引入头文件#include “mdrtuslave.h”。 1.2 创建Modbus RTU从机:
#include "mdrtuslave.h"
#define SLAVE_ID 5
#define BUAD_RATE 9600
static ModbusRTUSlaveHandler mdhandler;
static mdVOID popchar(ModbusRTUSlaveHandler handler, mdU8 c)
{
// 此处添加串口send代码
}
static void ModbusInit()
{
struct ModbusRTUSlaveRegisterInfo info;
info.slaveId = SLAVE_ID;
info.usartBaudRate = BUAD_RATE;
info.mdRTUPopChar = popchar;
mdCreateModbusRTUSlave(&mdhandler, info);
}
ModbusInit();1.3 调用心跳函数:
#define TIMER_UTIME 100 //定时器周期为100us
static void timer_handler(void) //100us定时器回调函数
{
mdhandler->portRTUTimerTick(mdhandler, TIMER_UTIME);
}1.4 从串口receivedata:
static void usart_rec_handler(char *buf, size_t len) //串口receive中断函数
{
for (size_t i = 0; i < len; i++)
{
mdhandler->portRTUPushChar(mdhandler, buf[i]);
}
}- 写入和读取从机register 2.1 读取输入线圈:
mdBit bit;
mdU32 addr = 0;
mdSTATUS ret;
ret = mdhandler->registerPool->mdReadInputCoil(mdhandler->registerPool, addr, &bit); //读取输入线圈,Device address为10001
if (ret == mdFALSE)
{
printf("读取失败\n");
}2.2 Read and hold register:
mdU16 data;
mdU32 addr = 0;
mdSTATUS ret;
ret = mdhandler->registerPool->mdReadHoldRegister(mdhandler->registerPool, addr, &data); //Read and hold register,address为40001
if (ret == mdFALSE)
{
printf("读取失败\n");
}2.3 写入输入线圈:
mdBit bit = mdHigh;
mdU32 addr = 0;
mdSTATUS ret;
ret = mdhandler->registerPool->mdWriteInputCoil(mdhandler->registerPool, addr, bit); //写入输入线圈,address为10001,高电平
if (ret == mdFALSE)
{
printf("写入失败\n");
}2.4 写入保持register:
mdU16 data = 0x1234;
mdU32 addr = 0;
mdSTATUS ret;
ret = mdhandler->registerPool->mdWriteHoldRegister(mdhandler->registerPool, addr, data); //写入保持register,address为40001,大小为0x1234
if (ret == mdFALSE)
{
printf("写入失败\n");
}2.5 其他registerOperationAPI(推荐方式):
/*不推荐*/
mdSTATUS (*mdReadBit)(RegisterPoolHandle handler,mdU32 addr,mdBit *bit);
mdSTATUS (*mdWriteBit)(RegisterPoolHandle handler,mdU32 addr,mdBit bit);
mdSTATUS (*mdReadBits)(RegisterPoolHandle handler,mdU32 addr,mdU32 len,mdBit *bits);
mdSTATUS (*mdWriteBits)(RegisterPoolHandle handler,mdU32 addr,mdU32 len,mdBit *bits);
mdSTATUS (*mdReadU16)(RegisterPoolHandle handler,mdU32 addr,mdU16 *data);
mdSTATUS (*mdWriteU16)(RegisterPoolHandle handler,mdU32 addr,mdU16 data);
mdSTATUS (*mdReadU16s)(RegisterPoolHandle handler,mdU32 addr,mdU32 len,mdU16 *data);
mdSTATUS (*mdWriteU16s)(RegisterPoolHandle handler,mdU32 addr,mdU32 len,mdU16 *data);
/*推荐*/
mdSTATUS (*mdReadCoil)(RegisterPoolHandle handler, mdU32 addr, mdBit* bit); //Device address1~10000,addr=0 -> 设备1
mdSTATUS (*mdReadCoils)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdBit* bits);
mdSTATUS (*mdWriteCoil)(RegisterPoolHandle handler, mdU32 addr, mdBit bit);
mdSTATUS (*mdWriteCoils)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdBit* bits);
mdSTATUS (*mdReadInputCoil)(RegisterPoolHandle handler, mdU32 addr, mdBit* bit); //Device address10001~20000,addr=0 -> 设备10001
mdSTATUS (*mdReadInputCoils)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdBit* bits);
mdSTATUS (*mdWriteInputCoil)(RegisterPoolHandle handler, mdU32 addr, mdBit bit);
mdSTATUS (*mdWriteInputCoils)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdBit* bits);
mdSTATUS (*mdReadInputRegister)(RegisterPoolHandle handler, mdU32 addr, mdU16* data);//Device address30001~40000,addr=0 -> 设备30001
mdSTATUS (*mdReadInputRegisters)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdU16* data);
mdSTATUS (*mdWriteInputRegister)(RegisterPoolHandle handler, mdU32 addr, mdU16 data);
mdSTATUS (*mdWriteInputRegisters)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdU16* data);
mdSTATUS (*mdReadHoldRegister)(RegisterPoolHandle handler, mdU32 addr, mdU16* data);//Device address40001~50000,addr=0 -> 设备40001
mdSTATUS (*mdReadHoldRegisters)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdU16* data);
mdSTATUS (*mdWriteHoldRegister)(RegisterPoolHandle handler, mdU32 addr, mdU16 data);
mdSTATUS (*mdWriteHoldRegisters)(RegisterPoolHandle handler, mdU32 addr, mdU32 len, mdU16* data);
还有其他registerOperationAPI,比如mdReadCoil、mdReadInputCoil、mdReadInputRegister等,它们更符合Modbus变量address的规范,可以更方便地读取和写入register value。
Modbus变量address
Modbus变量address表示了Modbus通信中不同register的位置和Type。这些address是Modbus协议的一部分,用于指定要读取或写入的register。以下是常见的Modbus变量address及其含义:
- 0xxxx:这是线圈register address,对应Function Code 01(读取线圈)和Function Code 05(写单个线圈)。它们用于控制switch设备等,是可读写的。
- 1xxxx:这是输入线圈register address,对应Function Code 02(读取输入线圈)。它们用于表示输入信号,通常是只读的。
- 3xxxx:这是Enter register address,对应Function Code 04(Read input register)。每个register表示一个16位无符号整数,通常是只读的。
- 4xxxx:这是保持register address,对应Function Code 03(Read and hold register)、Function Code 06(写单个保持register)和Function Code 16(写多个保持register)。它们用于存储设备参数、状态等信息,是可读写的。
这些addressType和function code是Modbus通信的核心部分,通过它们,你可以读取和写入设备的不同register,实现对设备的监控和控制。
总之,FreeModbus库提供了方便的方式来创建Modbus RTU从机,并进行register的读取和写入Operation,而Modbus变量address则定义了不同register的Type和Function,帮助
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