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- /*********************************************************************************************************
- * 模块名称:Main.c
- * 摘 要:主文件,包含软硬件初始化函数和main函数
- * 当前版本:1.0.0
- * 作 者:Leyutek(COPYRIGHT 2018 - 2021 Leyutek. All rights reserved.)
- * 完成日期:2021年07月01日
- * 内 容:
- * 注 意:注意勾选Options for Target 'Target1'->Code Generation->Use MicroLIB,否则printf无法使用
- **********************************************************************************************************
- * 取代版本:
- * 作 者:
- * 完成日期:
- * 修改内容:
- * 修改文件:
- *********************************************************************************************************/
- /*********************************************************************************************************
- * 包含头文件
- *********************************************************************************************************/
- #include "Main.h"
- #include "gd32e230x_conf.h"
- #include "string.h"
- #include "NVIC.h"
- #include "SysTick.h"
- #include "Rcu.h"
- #include "Timer.h"
- #include "Led.h"
- #include "Key.h"
- #include "Relay.h"
- #include "Uart1.h"
- #include "mb.h"
- #include "Hlw8110.h"
- #include "Config.h"
- //#include "Wwdgt.h"
- #include "At24cxx.h"
- #include "I2c.h"
- #include "ReadEeprom.h"
- #include "Sn74lvc573.h"
- #include "Fwdgt.h"
- #include "key_io.h"
- /*********************************************************************************************************
- * 宏定义
- *********************************************************************************************************/
- /*********************************************************************************************************
- * 枚举结构体
- *********************************************************************************************************/
- /*********************************************************************************************************
- * 内部变量定义
- *********************************************************************************************************/
- static unsigned char RelaySlaveAddress=0x00;
- static unsigned int Uart0_Baud=115200;
- static unsigned char channel=0;
- unsigned long int Delay_Ms_1=0;
- static unsigned char Delay_End_flag=0;
- unsigned short int Devid_ChalNum = ACSingCurrid*256+RelaySlaveChaNum;//设备类型和通道数
- //测试EEPROM使用
- //static unsigned char pBuffer1[] = {0xff};
- //static unsigned int buf_qua=0;
- //static unsigned char pBuffer2[] = "hello MCU!";
- //static unsigned char pBuffer3[sizeof(pBuffer1)] = {};
- ACDC_Delay_struct_WriteReg ACDC_Delay_WriteReg[RelaySlaveChaNum];
- AC_Ele_struct_ReadReg AC_Ele_ReadReg[RelaySlaveChaNum];
- ACDC_State_struct_WriteReg ACDC_State_WriteReg[RelaySlaveChaNum];
- ACDC_ThresVal_struct_WriteReg ACDC_ThresVal_WriteReg[RelaySlaveChaNum];
- ACDC_Coef_struct_WriteReg ACDC_Coef_WriteReg[RelaySlaveChaNum];
- EE_ACDC_Delay_struct_ReadReg_On EE_ACDC_Delay_ReadReg_On[RelaySlaveChaNum];
- EE_ACDC_Delay_struct_ReadReg_Off EE_ACDC_Delay_ReadReg_Off[RelaySlaveChaNum];
- EE_ACDC_State_struct_ReadReg EE_ACDC_State_ReadReg[RelaySlaveChaNum];
- EE_ACDC_State_struct_ReadRegTrue EE_ACDC_State_ReadRegTrue[RelaySlaveChaNum];
- EE_ACDC_ThresVal_struct_ReadReg EE_ACDC_ThresVal_ReadReg[RelaySlaveChaNum];
- EE_ACDC_Coef_struct_ReadReg EE_ACDC_Coef_ReadReg[RelaySlaveChaNum];
- EE_ACDC_Total_Consumption EE_ACDC_Total_Consum_Read_Reg[RelaySlaveChaNum];
- ACDC_Consumer_Clear EE_ACDC_Consumer_Clear[RelaySlaveChaNum] = {0};
- ACDC_Over_Func_WriteReg ACDC_Over_WriteReg[RelaySlaveChaNum];
- //float hlw8110_store[RelaySlaveChaNum] = {0.0};
- //uint8_t kwh_1s_read_flag = 0;
- ACDC_All_Chn_Consumption ACDC_Total_All_Chn_Read_Reg;
- EE_ACDC_ThresVal_struct_ReadReg EE_ACDC_All_ThrVal;
- ACDC_Over_Func_WriteReg ACDC_Over_AllWriteReg;
- ACDC_Wann_Read_Reg_t ACDC_Wann_All = {0};
- EE_ACDC_State_All_Reg_En_t EE_ACDC_State_All_en;
- AC_Ele_struct_ReadReg AC_Ele_ReadReg_All;
- uint8_t over_Func_flag[RelaySlaveChaNum] = {0};
- uint8_t over_func_all_flag = 0;
- uint32_t read_Total_Consumer[RelaySlaveChaNum] = {0};
- //uint32_t hlw8100_flash_backup[RelaySlaveChaNum] = {0};
- //uint32_t Hlw8110_Flash_value[RelaySlaveChaNum] = {0};
- float Hlw8110_Restore[RelaySlaveChaNum]={0.0};
- uint32_t write_2_minute_flag = 0;
- //uint8_t read_kWh_flag = 0;
- uint16_t detection_value = 0;
- #if SUPPORT_SELF_LOCK
- uint8_t handle_k_1_status = 1;
- uint8_t handle_k_2_status = 1;
- uint8_t handle_k_3_status = 1;
- uint8_t handle_k_4_status = 1;
- bool key_1 = 0;
- bool key_2 = 0;
- bool key_3 = 0;
- bool key_4 = 0;
- #endif
- unsigned short int Sort_Onbuf[RelaySlaveChaNum];
- unsigned short int Sort_Offbuf[RelaySlaveChaNum];
- unsigned long int AC_V_Total; //交流电压总结果
- unsigned long int AC_LINE_Freq_Total; //交流电流总结果
- unsigned int Start_Read_Flag; //开始读取数据标志
- unsigned char Jlink_Sta_Flag = 0; //Jlink 是否在线的标志位
- unsigned int StaticCur = 50; //设置每个通道的静态电流
- unsigned char No_Load[RelaySlaveChaNum]={0};
- unsigned char test1;
- extern float F_AC_V; // 电压有效值
- extern float F_AC_I; // A通道电流
- extern float F_AC_P; // A通道有功功率
- extern float F_AC_LINE_Freq; // 市电线性频率
- extern float F_AC_E; // A通道有功电能(量)
- extern float F_AC_PF; // 功率因素,A通道和B通道只能选其一
- /*********************************************************************************************************
- * 内部函数声明
- *********************************************************************************************************/
- static void InitSoftware(void); //初始化软件相关的模块
- static void InitHardware(void); //初始化硬件相关的模块
- static void Proc2msTask_Start(void); //2ms处理任务
- static void Proc1SecTask(void); //1s处理任务
- static void over_RelayState(void);
- static void over_RelayState_ch(uint8_t channel);
- static void all_over_RelayState(void);
- void switch_recode();
- #if SUPPORT_SWITCH_REMENBER
- bool handle_status[RelaySlaveChaNum] = {0};
- #if ((RelaySlaveChaNum == 6) || (SUPPORT_2_DETECTION && RelaySlaveChaNum == 8))
- uint8_t handle_detection[2] = {1,1};
- #else
- uint8_t handle_detection[1] = {1};
- #endif
- #endif
- uint8_t consumer_clear_flag = 0;
- uint32_t all_val = 0;
- /*********************************************************************************************************
- * 内部函数实现
- *********************************************************************************************************/
- /*********************************************************************************************************
- * 函数名称:InitSoftware
- * 函数功能:所有的软件相关的模块初始化函数都放在此函数中
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:void
- * 创建日期:2021年07月01日
- * 注 意:
- *********************************************************************************************************/
- static void InitSoftware(void)
- {
- eMBInit(MB_RTU, RelaySlaveAddress, 0, Uart0_Baud, MB_PAR_NONE); // 初始化modbus为RTU方式,地址RelaySlaveAddress, 波特率Uart0_Baud,无校验
- eMBEnable(); // 使能modbus协议栈
- }
- void check_channel_reset()
- {
- if(consumer_clear_flag){
- for(int i = 0; i < RelaySlaveChaNum;i++)
- {
- if(EE_ACDC_Consumer_Clear[i].flag)
- {
- if(EE_ACDC_Consumer_Clear[i].value)
- {
-
- int temp = i << 2;
- uint8_t buff[4] = {0};
- //AT24CxxWrite(Eepr_AC_Sing_Total_Consumer_addr+temp, buff,4);
- read_Total_Consumer[i] = 0;
- Hlw8110_Restore[i] = 0.0;
- // channel_reset(i);
- EE_ACDC_Consumer_Clear[i].value = 0;
-
- }
- EE_ACDC_Consumer_Clear[i].flag = 0;
- }
- }
- consumer_clear_flag = 0;
- }
-
- }
- /*********************************************************************************************************
- * 函数名称:Proc100msTask
- * 函数功能:100ms处理任务 循环读取电能计量芯片的数据
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:void
- * 创建日期:2021年07月01日
- * 注 意:进行通道之间的轮询读取数据
- * 注 意:真值表
- * XEN# YEN# SEL2 SEL1 SEL0 AX AY 串口通道 实际通道 channel RELAY RELAY
- * 0 0 0 0 0 选择A0X 选择A0Y TR4 4 3 4
- * 0 0 0 0 1 选择A1X 选择A1Y TR3 3 2 3
- * 0 0 0 1 0 选择A2X 选择A2Y TR2 2 1 2
- * 0 0 0 1 1 选择A3X 选择A3Y RT1 1 0 1 靠电压互感器那边(8通道小电流)
- * 0 0 1 0 0 选择A4X 选择A4Y TR8 8 7 8 1
- * 0 0 1 0 1 选择A5X 选择A5Y TR7 7 6 7 2
- * 0 0 1 1 0 选择A6X 选择A6Y TR6 6 5 6 3
- * 0 0 1 1 1 选择A7X 选择A7Y TR5 5 4 5 4靠电压互感器那边(4通道大电流)
- * 1 1 X X X 全部断开 全部断开
- *********************************************************************************************************/
- static void Proc100msTask(void)
- {
- unsigned int chal_num=0;
- if(Get100msFlag()) //判断100ms标志状态
- {
- select_channel(channel);
- Calculate_HLW8110_MeterData();
- //AC_Ele_ReadReg[0].AC_V=(F_AC_V*EE_ACDC_Coef_ReadReg[0].ACDC_V_k)+(EE_ACDC_Coef_ReadReg[0].ACDC_V_b/1000);
- if((Start_Read_Flag)&&(channel==0x00)) //只有读完数据之后且现在轮询到通道0才会继续更新电压和频率值
- {
- Start_Read_Flag = 0;
- }
- AC_Ele_ReadReg[channel].AC_V=(F_AC_V*EE_ACDC_Coef_ReadReg[0].ACDC_V_k)+(EE_ACDC_Coef_ReadReg[channel].ACDC_V_b/1000);//实际的电压放大1000倍,实际的K,B值要缩小1000倍
- AC_Ele_ReadReg_All.AC_V = AC_Ele_ReadReg[0].AC_V;
- if(AC_Ele_ReadReg[channel].AC_V <= 10000) //小于10V频率为0
- {
- AC_Ele_ReadReg[channel].AC_LINE_Freq=0;
- AC_Ele_ReadReg[channel].AC_V = 0;
- }
- else
- {
- AC_Ele_ReadReg[channel].AC_LINE_Freq=F_AC_LINE_Freq*1000;
- }
- AC_Ele_ReadReg[channel].AC_I=(F_AC_I*EE_ACDC_Coef_ReadReg[channel].ACDC_I_k)+(EE_ACDC_Coef_ReadReg[channel].ACDC_I_b/1000);//实际的电流放大1000倍,实际的K,B值要缩小1000倍
- if((AC_Ele_ReadReg[channel].AC_I)<=No_Load[channel])
- {
- AC_Ele_ReadReg[channel].AC_I = 0;
- }
- if((AC_Ele_ReadReg[channel].AC_I)<=No_Load[channel])
- AC_Ele_ReadReg[channel].AC_P=0; //有功功率
- else
- AC_Ele_ReadReg[channel].AC_P=F_AC_P*1000; //有功功率
- Hlw8110_Restore[channel] += F_AC_E;
- AC_Ele_ReadReg[channel].AC_E=(Hlw8110_Restore[channel]*1000 + read_Total_Consumer[channel]); //电能
- AC_Ele_ReadReg[channel].AC_PF=F_AC_PF*1000; //功率因素
-
- AC_Ele_ReadReg_All.AC_V = AC_Ele_ReadReg[0].AC_V;
- AC_Ele_ReadReg_All.AC_I += AC_Ele_ReadReg[channel].AC_I; //all current
- AC_Ele_ReadReg_All.AC_P += AC_Ele_ReadReg[channel].AC_P;
- AC_Ele_ReadReg_All.AC_LINE_Freq = AC_Ele_ReadReg[0].AC_LINE_Freq;
- AC_Ele_ReadReg_All.AC_PF= AC_Ele_ReadReg[channel].AC_PF;
-
- EE_ACDC_Total_Consum_Read_Reg[channel].ACDC_Consumption = AC_Ele_ReadReg[channel].AC_E; //total consumer
- // ACDC_Total_All_Chn_Read_Reg.ACDC_All_Consumption += EE_ACDC_Total_Consum_Read_Reg[channel].ACDC_Consumption;
- all_val += EE_ACDC_Total_Consum_Read_Reg[channel].ACDC_Consumption;
- AC_Ele_ReadReg_All.AC_E += EE_ACDC_Total_Consum_Read_Reg[channel].ACDC_Consumption;
- WarnState_ch(channel); //更新状态寄存器的告警阈值
- //over_RelayState();
- over_RelayState_ch(channel);
- channel=channel+1;
- if(channel>=RelaySlaveChaNum){
- ACDC_Total_All_Chn_Read_Reg.ACDC_All_Consumption = all_val;
- AC_Ele_ReadReg_All.AC_E = all_val;
- all_val = 0;
- // jugement all
- All_Warn_State();
- all_over_RelayState();
- channel=0;
- AC_Ele_ReadReg_All.AC_I = 0;
- //AC_Ele_ReadReg_All.AC_E = 0;
- AC_Ele_ReadReg_All.AC_P = 0;
- }
- // Uart_Read_HLW8110_Reg(REG_HFCONST_ADDR,2);//测试使用,看是否和电能计量芯片是否通信成功,成功串口接收到10 00 48
- Clr100msFlag(); //清除100ms标志
- }
- }
- /*********************************************************************************************************
- * 函数名称:InitHardware
- * 函数功能:所有的硬件相关的模块初始化函数都放在此函数中
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:void米皮米mimMMDAAADFADAdadafadfyang
- * 创建日期:2021年07月01日
- * 注 意:
- *********************************************************************************************************/
- static void InitHardware(void)
- {
- unsigned int i;
- //SystemInit(); //系统初始化,函数里面默认是配置为内部晶振
- // InitRCU(); //初始化RCC模块,使用外部晶振则需要打开此函数
- ViewRcuClock(); //在线调试查看系统时钟频率
- InitNVIC(); //初始化NVIC模块
- for(i=0;i<RelaySlaveChaNum;i++)
- No_Load[i] = StaticCur;
- InitSysTick(); //初始化SysTick模块
- Init74Lvc(); //初始化74lvc573锁存器
- if(gpio_input_bit_get(LOCK_LE_CH_RCU,LOCK_CHECK)) //更新程序后没有及时的拔掉下载器则置标志位,不用等到程序进入主循环LED闪烁左右判断依据
- Jlink_Sta_Flag = 1;
- InitLED(); //初始化LED模块
- InitKey(); //初始化Key模块
- InitRelay(); //初始化Relay模块
- InitTimer(); //初始化Timer模块
- InitUART1(9600); //初始化UART1模块 电能计量芯片默认的波特率为9600,偶校验
- InitCH448F(); //初始化CH448F,使能XEN YEN
- key_io_init(NULL);
- RelaySlaveAddress=ReadKeyValue(); //读取从机的地址
- InitSoftware(); //初始化软件相关函数,就是modbus这个部分
- channel = 0;
- while(1) //切换开关轮询初始化8110计量芯片
- {
- select_channel(channel);
- Init_HLW8110();
- channel++;
- if(channel>=RelaySlaveChaNum){
- channel=0;
- break;
- }
- }
- InitAT24Cxx(); //初始化24C64模块
- #if SURPPORT_2_2
- solid_on();
- BUFF;
- LOCK;
- #endif
- ReadEeprom();
- Delay_Ms_1 = 0;
- #if SUPPORT_DETECTION
- detection_value = get_detection();
- #endif
- //check_or_control_detection();
- switch_recode();
- #if SUPPORT_SELF_LOCK
- key_1 = get_key_io_1();
- key_2 = get_key_io_2();
- key_3 = get_key_io_3();
- key_4 = get_key_io_4();
- if(key_1 == false)
- {
- handle_k_1_status = 0;
- }
- if(key_2 == false)
- {
- handle_k_2_status = 0;
- }
- if(key_3 == false)
- {
- handle_k_3_status = 0;
- }
- if(key_4 == false)
- {
- handle_k_4_status = 0;
- }
- #endif
- while(1)
- {
- eMBPoll();
- //Proc100msTask(); //100ms处理任务
- //Proc1SecTask(); //1s处理任务
- if((gpio_input_bit_get(LOCK_LE_CH_RCU,LOCK_CHECK))||(Jlink_Sta_Flag==0x01)) //如果有jlink接入,则不会动作继电器,直接跳出进入主函数
- {
- //补上电平,让IO输出电平,有一个起始状态,但不会动作,锁存器起作用
- RelayState();
- Delay_Ms_1 = 0;
- Delay_End_flag = 0;
- Jlink_Sta_Flag = 0;
- timer_disable(TIMER14);
- break;
- }
- Proc2msTask_Start(); //2ms处理任务完成后才初始化modbus。
- if(Delay_End_flag)
- {
- timer_disable(TIMER14);
- Delay_Ms_1 = 0;
- Delay_End_flag = 0;
- break;
- }
- }
- }
- void set_channel_status(uint8_t channel,uint8_t status)
- {
-
- if(status)
- {
- EE_ACDC_State_ReadReg[channel].ACDC_Cha_On_Off_State = true;
- }else
- {
- EE_ACDC_State_ReadReg[channel].ACDC_Cha_On_Off_State = false;
- }
- }
- int check_or_control_detection(void)
- {
- #if SUPPORT_DETECTION_SWITCH
- uint8_t channels = RelaySlaveChaNum;
- if(detection_value == 0)
- {
- for(int i = 0; i < RelaySlaveChaNum;i++)
- {
- set_channel_status(i,0);
- }
- RelayState();
- return 0;
- }
- return 1;
- #endif
- return 1;
- }
- void switch_recode()
- {
-
- #if SUPPORT_DETECTION
- #if SUPPORT_SWITCH_REMENBER
- #if ((RelaySlaveChaNum == 6) || ((RelaySlaveChaNum == 8) && SUPPORT_2_DETECTION))
- if((detection_value & 1) == 0)
- {
- if(handle_detection[0] == 1)
- {
- for(uint8_t k = 0; k < (RelaySlaveChaNum/2);k++)
- handle_status[k] = EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State;
- }
- handle_detection[0] = 0;
- for(uint8_t k = 0; k < (RelaySlaveChaNum/2);k++)
- EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State=false;
- for(uint8_t k = 0; k < (RelaySlaveChaNum/2);k++)
- RelayState_ch(k);
- }else
- {
- if(handle_detection[0] == 0)
- {
- handle_detection[0] = 1;
- for(uint8_t k = 0; k < (RelaySlaveChaNum/2);k++)
- EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State=handle_status[k];
- for(uint8_t k = 0; k < (RelaySlaveChaNum/2);k++)
- RelayState_ch(k);
- }
- }
- if((detection_value & 2) == 0)
- {
- if(handle_detection[1] == 1)
- {
- for(uint8_t k = (RelaySlaveChaNum/2); k < RelaySlaveChaNum;k++)
- handle_status[k] = EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State;
- }
- handle_detection[1] = 0;
- for(uint8_t k = (RelaySlaveChaNum/2); k < RelaySlaveChaNum;k++)
- EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State=false;
-
- for(uint8_t k = (RelaySlaveChaNum/2); k < RelaySlaveChaNum;k++)
- RelayState_ch(k);
- }else
- {
- if(handle_detection[1] == 0)
- {
- handle_detection[1] = 1;
- for(uint8_t k = (RelaySlaveChaNum/2); k < RelaySlaveChaNum;k++)
- EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State=handle_status[k];
- for(uint8_t k = (RelaySlaveChaNum/2); k < RelaySlaveChaNum;k++)
- RelayState_ch(k);
- }
- }
- #else
- if(detection_value == 0)
- {
- if(handle_detection[0] == 1)
- {
- for(int i = 0;i < RelaySlaveChaNum;i++)
- handle_status[i] = EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State;
- }
- handle_detection[0] = 0;
- for(int i = 0;i < RelaySlaveChaNum;i++)
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State = false;
- RelayState();
- }else
- {
- if(handle_detection[0] == 0)
- {
- handle_detection[0] = 1;
- for(int i = 0;i < RelaySlaveChaNum;i++)
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State=handle_status[i];
- RelayState();
- }
- }
- #endif
- #else
- #if (RelaySlaveChaNum == 6 || ((RelaySlaveChaNum == 8) && SUPPORT_2_DETECTION))
- if((detection_value & 1) == 0)
- {
- for(int i = 0; i < (RelaySlaveChaNum)/2;i++)
- {
- set_channel_status(i,0);
- }
- RelayState();
- }
- if((detection_value & 2) == 0)
- {
- for(int i = (RelaySlaveChaNum)/2; i < RelaySlaveChaNum;i++)
- {
- set_channel_status(i,0);
- }
- RelayState();
- }
- #else
- if(detection_value == 0)
- {
- for(int i = 0; i < RelaySlaveChaNum;i++)
- {
- set_channel_status(i,0);
- }
- RelayState();
- }
- #endif
- #endif
- #endif
-
- }
- /*********************************************************************************************************
- * 函数名称:Proc20msTask_Start
- * 函数功能:2ms处理任务开机根据延时开启继电器
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:void
- * 创建日期:2021年07月01日
- * 注 意:需要对应读取关系
- *********************************************************************************************************/
- static void Proc2msTask_Start(void)
- {
- if(Get2msFlag()) //判断2ms标志状态
- {
- #if SUPPORT_DETECTION
- if(detection_value == 0)
- {
- Delay_End_flag = 1;
- Clr2msFlag();
- return;
- }
- //#if ((RelaySlaveChaNum == 6) || ((RelaySlaveChaNum == 8) && SUPPORT_2_DETECTION))
- // if((detection_value & 0x1) == 0)
- // {
- // uint8_t k = 0;
- // for(k=0;k <(RelaySlaveChaNum)/2;k++)
- // EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State = false;
- // }
- // if((detection_value & 0x2) == 0)
- // {
- // uint8_t k = 0;
- // for(k=(RelaySlaveChaNum)/2;k <RelaySlaveChaNum;k++)
- // EE_ACDC_State_ReadReg[k].ACDC_Cha_On_Off_State = false;
- // }
- //#endif
- #endif
-
- Delay_Ms_1 = Delay_Ms_1 +1;
-
- #if (RelaySlaveChaNum >= 1)
- if((EE_ACDC_Delay_ReadReg_On[0].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[0].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[0].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay1State();
- LOCK;
- }
- #endif
- #if (RelaySlaveChaNum >= 2)
- if((EE_ACDC_Delay_ReadReg_On[1].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[1].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[1].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay2State();
- LOCK;
- }
- #endif
- #if (RelaySlaveChaNum >= 3)
- if((EE_ACDC_Delay_ReadReg_On[2].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[2].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[2].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay3State();
- LOCK;
- }
- #endif
- #if (RelaySlaveChaNum >= 4)
- if((EE_ACDC_Delay_ReadReg_On[3].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[3].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[3].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay4State();
- LOCK;
- }
- #endif
-
- #if (RelaySlaveChaNum >= 5)
- if((EE_ACDC_Delay_ReadReg_On[4].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[4].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[4].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay5State();
- LOCK;
- }
- #endif
-
- #if (RelaySlaveChaNum >= 6)
- if((EE_ACDC_Delay_ReadReg_On[5].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[5].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[5].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay6State();
- LOCK;
- }
- #endif
-
- #if (RelaySlaveChaNum >= 7)
- if((EE_ACDC_Delay_ReadReg_On[6].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[6].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[6].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay7State();
- LOCK;
- }
- #endif
- #if (RelaySlaveChaNum >= 8)
- if((EE_ACDC_Delay_ReadReg_On[7].ACDC_Delay==Delay_Ms_1)||(EE_ACDC_Delay_ReadReg_On[7].ACDC_Delay==0xffff)||(EE_ACDC_Delay_ReadReg_On[7].ACDC_Delay==0))//确保这里的和读取电能参数的顺序是一致的
- {
- BUFF;
- Relay8State();
- LOCK;
- }
- #endif
- if((Sort_Onbuf[RelaySlaveChaNum-1]==Delay_Ms_1)||(Sort_Onbuf[RelaySlaveChaNum-1]==0xffff)||(Sort_Onbuf[RelaySlaveChaNum-1]==0)) //当达到最大延时时间后退出当前循环
- Delay_End_flag = 1; //这里还需要排序,然后才能生效
- Clr2msFlag(); //清除2ms标志
- }
- }
- /*********************************************************************************************************
- * 函数名称:Proc1SecTask
- * 函数功能:1s处理任务
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:void
- * 创建日期:2021年07月01日
- * 注 意:开启闪烁LED的功能
- *********************************************************************************************************/
- static void Proc1SecTask(void)
- {
- if(Get1SecFlag()) //判断1s标志状态
- {
- LEDFlicker2();
- Clr1SecFlag(); //清除1s标志
- #if SUPPORT_DETECTION
- detection_value = get_detection();
- #endif
- #if SUPPORT_SELF_LOCK
- key_1 = get_key_io_1();
- key_2 = get_key_io_2();
- key_3 = get_key_io_3();
- key_4 = get_key_io_4();
- #endif
- }
- }
- static void all_over_RelayState(void)
- {
- //all
- if(over_func_all_flag)
- {
- for(int i = 0 ; i < RelaySlaveChaNum;i++)
- set_channel_status(i,0);
- RelayState();
- }
- return;
- }
- static void over_RelayState(void)
- {
- for(int i = 0; i < RelaySlaveChaNum;i++)
- {
- if(over_Func_flag[i])
- {
- set_channel_status(i,0);
- RelayState_ch(i);
- over_Func_flag[i] = 0;
- }
- }
- }
- static void over_RelayState_ch(uint8_t channel)
- {
- if(over_Func_flag[channel])
- {
- set_channel_status(channel,0);
- RelayState_ch(channel);
- over_Func_flag[channel] = 0;
- }
- }
- #if SUPPORT_ALL_ON_OFF
- void check_or_controll_all()
- {
- bool rst = false;
- bool test = false;
- rst = get_rst();
- test = get_test();
- if(detection_value != 0)
- {
- if(rst != test)
- {
- uint8_t buff[20]= {0};
- timer_disable(TIMER14);
- if(rst)
- {
- // while(All_On_Flag == 1)
- // DelayNms(5);
-
- All_Off_Flag = 1; //全关标志置1
- All_On_Flag = 0;
- Delay_Ms_2 = 0;
- EE_ACDC_State_ReadReg[0].ACDC_Cha_On_Off_State=false;
- EE_ACDC_State_ReadReg[0].ACDC_ALLCha_Off_State=true;
- for(int i =0; i < RelaySlaveChaNum;i++){
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State = false;
- }
- }
- else
- {
- // while(All_Off_Flag == 1)
- // DelayNms(5);
- All_Off_Flag =0;
- All_On_Flag = 1; //全关标志置1
- EE_ACDC_State_ReadReg[0].ACDC_Cha_On_Off_State=true;
- EE_ACDC_State_ReadReg[0].ACDC_ALLCha_On_State=true;
-
- for(int i =0; i < RelaySlaveChaNum;i++)
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State = true;
- Delay_Ms_2 = 0;
-
- }
- memcpy(&buff,&EE_ACDC_State_ReadReg,RelaySlaveChaNum*2);
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr,buff,RelaySlaveChaNum*2);
- timer_enable(TIMER14);
- }
- }else
- {
-
- for(int i =0; i < RelaySlaveChaNum;i++){
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State = false;
- set_channel_status(i,0);
- }
- RelayState();
- }
- }
- #endif
- #if SUPPORT_SELF_LOCK
- void sub_control()
- {
- if(detection_value == 0) //all close
- {
- for(int i = 0; i < RelaySlaveChaNum;i++){
- EE_ACDC_State_ReadReg[i].ACDC_Cha_On_Off_State = false;
- set_channel_status(i,0);
- }
- RelayState();
-
- if(key_1 == false)
- {
- handle_k_1_status = 0;
- }
- if(key_2 == false)
- {
- handle_k_2_status = 0;
- }
- if(key_3 == false)
- {
- handle_k_3_status = 0;
- }
- if(key_4 == false)
- {
- handle_k_4_status = 0;
- }
-
- }else
- {
- #if (RelaySlaveChaNum >= 1)
- if(key_1 == false) //not in line
- {
- set_channel_status(0,0);
- Relay1State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr,(uint8_t*)&(EE_ACDC_State_ReadReg[0]),2);
- handle_k_1_status = 0;
- }else
- {
- if(handle_k_1_status == 0)
- {
- handle_k_1_status = 1;
- set_channel_status(0,1);
- Relay1State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr,(uint8_t*)&(EE_ACDC_State_ReadReg[0]),2);
- }
- }
- #endif
- #if (RelaySlaveChaNum >= 2)
- if(key_2 == false)
- {
- set_channel_status(1,0);
- Relay2State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+2,(uint8_t*)&(EE_ACDC_State_ReadReg[1]),2);
- handle_k_2_status = 0;
- }else
- {
- if(handle_k_2_status == 0)
- {
- handle_k_2_status = 1;
- set_channel_status(1,1);
- Relay2State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+2,(uint8_t*)&(EE_ACDC_State_ReadReg[1]),2);
- }
- }
- #endif
- #if (RelaySlaveChaNum >= 3)
- if(key_3 == false)
- {
- set_channel_status(2,0);
- Relay3State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+4,(uint8_t*)&(EE_ACDC_State_ReadReg[2]),2);
- handle_k_3_status = 0;
- }else
- {
- if(handle_k_3_status == 0)
- {
- handle_k_3_status = 1;
- set_channel_status(2,1);
- Relay3State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+4,(uint8_t*)&(EE_ACDC_State_ReadReg[2]),2);
- }
- }
- #endif
- #if (RelaySlaveChaNum >= 4)
- if(key_4 == false)
- {
- set_channel_status(3,0);
- Relay4State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+6,(uint8_t*)&(EE_ACDC_State_ReadReg[3]),2);
- handle_k_4_status = 0;
- }else
- {
- if(handle_k_4_status == 0)
- {
- handle_k_4_status = 1;
- set_channel_status(3,1);
- Relay4State();
- BUFF;
- LOCK;
- AT24CxxWrite(Eepr_AC_Sing_State_SmaWAddr+6,(uint8_t*)&(EE_ACDC_State_ReadReg[3]),2);
- }
- }
- #endif
- }
- }
- #endif
- /*********************************************************************************************************
- * 函数名称:main
- * 函数功能:主函数
- * 输入参数:void
- * 输出参数:void
- * 返 回 值:int
- * 创建日期:2021年07月01日
- * 注 意:
- *********************************************************************************************************/
- int main(void)
- {
- InitHardware(); //初始化硬件相关函数
- Fwdgt_Init(); //watch dog
-
- while(1)
- {
- eMBPoll();
- Proc100msTask(); //100ms处理任务
- check_channel_reset();
- Proc1SecTask(); //1s处理任务
- Fwdgt_reload();
- switch_recode();
-
- #if SUPPORT_ALL_ON_OFF
- check_or_controll_all();
- #endif
- #if SUPPORT_SELF_LOCK
- sub_control();
- #endif
- if(write_2_minute_flag == 1)
- {
- write_2_minute_flag = 0;
- uint8_t buff[4*RelaySlaveChaNum] = {0};
-
- for(int i = 0 ; i < RelaySlaveChaNum;i++)
- {
- int temp = i << 2;
- buff[temp + 0] = EE_ACDC_Total_Consum_Read_Reg[i].ACDC_Consumption >> 24;
- buff[temp + 1] = EE_ACDC_Total_Consum_Read_Reg[i].ACDC_Consumption >> 16;
- buff[temp + 2] = EE_ACDC_Total_Consum_Read_Reg[i].ACDC_Consumption >> 8;
- buff[temp + 3] = EE_ACDC_Total_Consum_Read_Reg[i].ACDC_Consumption >> 0;
- }
- AT24CxxWrite(Eepr_AC_Sing_Total_Consumer_addr, buff,4*RelaySlaveChaNum);
- }
- }
- }
- /*freemodbus作者使用了assert,故增加如下代码,同时
- *options for target 对话框,target页面,勾选Use MicroLib
- */
- #ifdef USE_FULL_ASSERT
- /**
- * @brief Reports the name of the source file and the source line number
- * where the assert_param error has occurred.
- * @param file: pointer to the source file name
- * @param line: assert_param error line source number
- * @retval None
- */
- void assert_failed(uint8_t* file, uint32_t line)
- {
- /* User can add his own implementation to report the file name and line number,
- ex: printf("Wrong parameters value: file %s on line %d\r\n", file, line) */
-
- /* Infinite loop */
- while (1)
- {
- }
- }
- #else
- void __aeabi_assert(const char * x1, const char * x2, int x3)
- {
- (void)x3;
- }
- #endif
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