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        EEPW首頁 > EDA/PCB > 設(shè)計(jì)應(yīng)用 > avr eeprom保護(hù)方法.

        avr eeprom保護(hù)方法.

        作者: 時(shí)間:2024-05-10 來源:EDA365 收藏

        在項(xiàng)目中復(fù)制出來的程序,使用時(shí)可能有些地方需要修改。
        編譯環(huán)境:WinAVR-20060421+AVRStudio4.12.498ServicePack4
        基本思路:每份寫到EEPRM的數(shù)據(jù),都做三個(gè)備份,每個(gè)備份的數(shù)據(jù)都做CRC16校驗(yàn),只要系統(tǒng)運(yùn)行中出錯(cuò),錯(cuò)誤地修改了數(shù)據(jù),
        那么根據(jù)校驗(yàn)字節(jié)就知道哪個(gè)備份的數(shù)據(jù)被修改了,然后用正確的備份覆蓋出錯(cuò)的備份,達(dá)到數(shù)據(jù)恢復(fù)的目的。
        Save.h文件:
        #defineEepromPageSize 64 //頁容量定義
        #defineEepromPage0Addr 0x0000 //各個(gè)頁的其始地址定義
        #defineEepromPage1Addr (EepromPage0Addr+EepromPageSize)
        #defineEepromPage2Addr (EepromPage1Addr+EepromPageSize)
        #defineEepromPage3Addr (EepromPage2Addr+EepromPageSize)
        #defineEepromPage4Addr (EepromPage3Addr+EepromPageSize)
        #defineEepromPage5Addr (EepromPage4Addr+EepromPageSize)
        #defineEepromPage6Addr (EepromPage5Addr+EepromPageSize)
        #defineEepromPage7Addr (EepromPage6Addr+EepromPageSize)
        #defineVALID 0x01
        #defineINVALID 0x00
        Save.c文件:
        unsignedcharEepromReadByte(unsignedchar*address)
        {
        unsignedchardata;
        data=0;
        eeprom_busy_wait();
        data=eeprom_read_byte(address);
        returndata;
        }
        uint16_tEepromReadWord(uint16_t*address)
        {
        uint16_tdata;
        data=0;
        eeprom_busy_wait();
        data=eeprom_read_word(address);
        returndata;
        }
        voidEepromWriteByte(unsignedchar*address,unsignedchardata)
        {
        eeprom_busy_wait();
        eeprom_write_byte(address,data);
        }
        voidEepromWriteWord(unsignedint*address,unsignedintdata)
        {
        eeprom_busy_wait();
        eeprom_write_word(address,data);
        }
        voidEepromWriteBlock(unsignedchar*buff,unsignedchar*address,unsignedcharn)
        {
        unsignedchari;
        for(i=0;i<n;i++)
        {
        EepromWriteByte((unsignedchar*)(address+i),*buff);
        buff++;
        }
        }
        unsignedcharEepromCheck(unsignedchar*pdata,unsignedcharpacksize)
        {
        unsignedchari,j;
        unsignedintcrc,ref_crc;
        crc=0;
        ref_crc=0;
        for(i=0;i<(packsize-2);i++)
        {
        crc=crc^((uint16_t)EepromReadByte(pdata)<<8);
        for(j=0;j<8;j++)
        {
        if(crc&0x8000)
        {
        crc=(crc<<1)^0x1021;
        }
        else
        {
        crc=crc<<1;
        }
        }
        pdata++;
        }
        ref_crc=(uint16_t)EepromReadByte(pdata);
        ref_crc=ref_crc<<8;
        pdata++;
        ref_crc|=(uint16_t)EepromReadByte(pdata);
        if(crc==ref_crc)
        {
        returnVALID;
        }
        else
        {
        returnINVALID;
        }
        }
        unsignedcharCheckWriteCRC(unsignedchar*pdata,unsignedcharpacksize)
        {
        unsignedchari,j;
        unsignedintcrc;
        crc=0;
        for(i=0;i<(packsize-2);i++)
        {
        crc=crc^((uint16_t)EepromReadByte(pdata)<<8);
        for(j=0;j<8;j++)
        {
        if(crc&0x8000)
        {
        crc=(crc<<1)^0x1021;
        }
        else
        {
        crc=crc<<1;
        }
        }
        pdata++;
        }
        EepromWriteByte(pdata,(uint8_t)(crc>>8));
        pdata++;
        EepromWriteByte(pdata,(uint8_t)crc);
        pdata++;
        if(EepromCheck((pdata-packsize),packsize))
        {
        returnVALID;
        }
        else
        {
        returnINVALID;
        }
        }
        uint8_tCheckAllPage(void)
        {
        if((EepromCheck((unsignedchar*)EepromPage1Add,EepromPageSize)==VALID)
        &&(EepromCheck((unsignedchar*)EepromPage2Add,EepromPageSize)==VALID)
        &&(EepromCheck((unsignedchar*)EepromPage3Add,EepromPageSize)==VALID))
        {
        returnVALID;
        }
        returnINVALID;
        }
        uint8_tDataRecover(void)
        {
        unsignedchari;
        unsignedchartemp;
        unsignedcharpage;
        unsignedintinvalidpage[3];
        unsignedintvalidpage;
        invalidpage[0]=0;
        invalidpage[1]=0;
        invalidpage[2]=0;
        validpage=0;
        temp=0;
        page=0;
        if(EepromCheck((uint8_t*)EepromPage1Add,EepromPageSize)==VALID)
        {
        validpage=EepromPage1Add;
        }
        else
        {
        invalidpage[page]=EepromPage1Add;
        page++;
        }
        if(EepromCheck((uint8_t*)EepromPage2Add,EepromPageSize)==VALID)
        {
        validpage=EepromPage2Add;
        }
        else
        {
        invalidpage[page]=EepromPage2Add;
        page++;
        }
        if(EepromCheck((uint8_t*)EepromPage3Add,EepromPageSize)==VALID)
        {
        validpage=EepromPage3Add;
        }
        else
        {
        invalidpage[page]=EepromPage3Add;
        page++;
        }
        if(page==3) //三個(gè)備份都被破壞了
        {
        returnINVALID; //數(shù)據(jù)完全無效了
        }
        while((page--)>0) //數(shù)據(jù)恢復(fù)
        {
        for(i=0;i<EepromPageSize;i++)
        {
        temp=EepromReadByte((uint8_t*)(validpage+i));
        EepromWriteByte((uint8_t*)(invalidpage[page]+i),temp);
        }
        }
        if(CheckAllPage()==VALID)
        {
        returnVALID;
        }
        returnINVALID;
        }
        使用方法(三個(gè)備份):
        1、定義一個(gè)數(shù)組:EEPROMData[EepromPageSize-2],數(shù)組定義為EepromPageSize-2是為了給每個(gè)備份留2個(gè)字節(jié)的校驗(yàn)
        2、要保存數(shù)據(jù)時(shí),先把數(shù)據(jù)放到數(shù)組中,然后調(diào)用EepromWriteBlock()函數(shù),把這個(gè)數(shù)組的數(shù)據(jù)寫進(jìn)EEPROM,三個(gè)備份要寫三次。
        3、寫完了之后,調(diào)用CheckWriteCRC()函數(shù),該函數(shù)會計(jì)算出當(dāng)前備份的CRC16檢驗(yàn)數(shù)據(jù)并寫到EEPROM備份的尾部,有多少個(gè)備份就要調(diào)用多少次。
        4、至此,數(shù)據(jù)的備份工作已經(jīng)完成。
        5、校驗(yàn)數(shù)據(jù)(一般在復(fù)位后運(yùn)行),執(zhí)行CheckAllPage()函數(shù),若通過了,則EEPROM數(shù)據(jù)沒有問題,否則要運(yùn)行DataRecover()函數(shù),對損壞的備份進(jìn)行修復(fù)

        本文引用地址:http://www.antipu.com.cn/article/202405/458561.htm


        關(guān)鍵詞: EEPROM avr

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