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📄 mbfunccoils.c

📁 freemodbus-v1-1-1-0.zip v1.1.1版本的代码 支持多个平台
💻 C
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 /*  * FreeRTOS Modbus Libary: A Modbus serial implementation for FreeRTOS  * Copyright (C) 2006 Christian Walter <wolti@sil.at>  *  * This library is free software; you can redistribute it and/or  * modify it under the terms of the GNU Lesser General Public  * License as published by the Free Software Foundation; either  * version 2.1 of the License, or (at your option) any later version.  *  * This library is distributed in the hope that it will be useful,  * but WITHOUT ANY WARRANTY; without even the implied warranty of  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU  * Lesser General Public License for more details.  *  * You should have received a copy of the GNU Lesser General Public  * License along with this library; if not, write to the Free Software  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA  *//* ----------------------- System includes ----------------------------------*/#include "stdlib.h"#include "string.h"/* ----------------------- Platform includes --------------------------------*/#include "port.h"/* ----------------------- Modbus includes ----------------------------------*/#include "mb.h"#include "mbframe.h"#include "mbproto.h"#include "mbconfig.h"/* ----------------------- Defines ------------------------------------------*/#define MB_PDU_FUNC_READ_ADDR_OFF           ( MB_PDU_DATA_OFF )#define MB_PDU_FUNC_READ_COILCNT_OFF        ( MB_PDU_DATA_OFF + 2 )#define MB_PDU_FUNC_READ_SIZE               ( 4 )#define MB_PDU_FUNC_READ_COILCNT_MAX        ( 0x07D0 )#define MB_PDU_FUNC_WRITE_ADDR_OFF          ( MB_PDU_DATA_OFF )#define MB_PDU_FUNC_WRITE_VALUE_OFF         ( MB_PDU_DATA_OFF + 2 )#define MB_PDU_FUNC_WRITE_SIZE              ( 4 )#define MB_PDU_FUNC_WRITE_MUL_ADDR_OFF      ( MB_PDU_DATA_OFF )#define MB_PDU_FUNC_WRITE_MUL_COILCNT_OFF   ( MB_PDU_DATA_OFF + 2 )#define MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF   ( MB_PDU_DATA_OFF + 4 )#define MB_PDU_FUNC_WRITE_MUL_VALUES_OFF    ( MB_PDU_DATA_OFF + 5 )#define MB_PDU_FUNC_WRITE_MUL_SIZE_MIN      ( 5 )#define MB_PDU_FUNC_WRITE_MUL_COILCNT_MAX   ( 0x07B0 )/* ----------------------- Static functions ---------------------------------*/eMBException    prveMBError2Exception( eMBErrorCode eErrorCode );/* ----------------------- Start implementation -----------------------------*/#if MB_FUNC_READ_COILS_ENABLED > 0eMBExceptioneMBFuncReadCoils( UCHAR * pucFrame, USHORT * usLen ){    USHORT          usRegAddress;    USHORT          usCoilCount;    UCHAR           ucNBytes;    UCHAR          *pucFrameCur;    eMBException    eStatus = MB_EX_NONE;    eMBErrorCode    eRegStatus;    if( *usLen == ( MB_PDU_FUNC_READ_SIZE + MB_PDU_SIZE_MIN ) )    {        usRegAddress = pucFrame[MB_PDU_FUNC_READ_ADDR_OFF] << 8;        usRegAddress |= pucFrame[MB_PDU_FUNC_READ_ADDR_OFF + 1];        usRegAddress++;        usCoilCount = pucFrame[MB_PDU_FUNC_READ_COILCNT_OFF] << 8;        usCoilCount |= pucFrame[MB_PDU_FUNC_READ_COILCNT_OFF + 1];        /* Check if the number of registers to read is valid. If not         * return Modbus illegal data value exception.          */        if( ( usCoilCount >= 1 ) &&            ( usCoilCount < MB_PDU_FUNC_READ_COILCNT_MAX ) )        {            /* Set the current PDU data pointer to the beginning. */            pucFrameCur = &pucFrame[MB_PDU_FUNC_OFF];            *usLen = MB_PDU_FUNC_OFF;            /* First byte contains the function code. */            *pucFrameCur++ = MB_FUNC_READ_COILS;            *usLen += 1;            /* Test if the quantity of coils is a multiple of 8. If not last             * byte is only partially field with unused coils set to zero. */            if( ( usCoilCount & 0x0007 ) != 0 )            {                ucNBytes = ( UCHAR )( usCoilCount / 8 + 1 );            }            else            {                ucNBytes = ( UCHAR )( usCoilCount / 8 );            }            *pucFrameCur++ = ucNBytes;            *usLen += 1;            eRegStatus =                eMBRegCoilsCB( pucFrameCur, usRegAddress, usCoilCount,                               MB_REG_READ );            /* If an error occured convert it into a Modbus exception. */            if( eRegStatus != MB_ENOERR )            {                eStatus = prveMBError2Exception( eRegStatus );            }            else            {                /* The response contains the function code, the starting address                 * and the quantity of registers. We reuse the old values in the                  * buffer because they are still valid. */                *usLen += ucNBytes;;            }        }        else        {            eStatus = MB_EX_ILLEGAL_DATA_VALUE;        }    }    else    {        /* Can't be a valid read coil register request because the length         * is incorrect. */        eStatus = MB_EX_ILLEGAL_DATA_VALUE;    }    return eStatus;}#if MB_FUNC_WRITE_COIL_ENABLED > 0eMBExceptioneMBFuncWriteCoil( UCHAR * pucFrame, USHORT * usLen ){    USHORT          usRegAddress;    UCHAR           ucBuf[2];    eMBException    eStatus = MB_EX_NONE;    eMBErrorCode    eRegStatus;    if( *usLen == ( MB_PDU_FUNC_WRITE_SIZE + MB_PDU_SIZE_MIN ) )    {        usRegAddress = pucFrame[MB_PDU_FUNC_WRITE_ADDR_OFF] << 8;        usRegAddress |= pucFrame[MB_PDU_FUNC_WRITE_ADDR_OFF + 1];        usRegAddress++;        if( ( pucFrame[MB_PDU_FUNC_WRITE_VALUE_OFF + 1] == 0x00 ) &&            ( ( pucFrame[MB_PDU_FUNC_WRITE_VALUE_OFF] == 0xFF ) ||              ( pucFrame[MB_PDU_FUNC_WRITE_VALUE_OFF] == 0x00 ) ) )        {            ucBuf[1] = 0;            if( pucFrame[MB_PDU_FUNC_WRITE_VALUE_OFF] == 0xFF )            {                ucBuf[0] = 1;            }            else            {                ucBuf[0] = 0;            }            eRegStatus =                eMBRegCoilsCB( &ucBuf[0], usRegAddress, 1, MB_REG_WRITE );            /* If an error occured convert it into a Modbus exception. */            if( eRegStatus != MB_ENOERR )            {                eStatus = prveMBError2Exception( eRegStatus );            }        }        else        {            eStatus = MB_EX_ILLEGAL_DATA_VALUE;        }    }    else    {        /* Can't be a valid write coil register request because the length         * is incorrect. */        eStatus = MB_EX_ILLEGAL_DATA_VALUE;    }    return eStatus;}#endif#if MB_FUNC_WRITE_MULTIPLE_COILS_ENABLED > 0eMBExceptioneMBFuncWriteMultipleCoils( UCHAR * pucFrame, USHORT * usLen ){    USHORT          usRegAddress;    USHORT          usCoilCnt;    UCHAR           ucByteCount;    UCHAR           ucByteCountVerify;    eMBException    eStatus = MB_EX_NONE;    eMBErrorCode    eRegStatus;    if( *usLen > ( MB_PDU_FUNC_WRITE_SIZE + MB_PDU_SIZE_MIN ) )    {        usRegAddress = pucFrame[MB_PDU_FUNC_WRITE_MUL_ADDR_OFF] << 8;        usRegAddress |= pucFrame[MB_PDU_FUNC_WRITE_MUL_ADDR_OFF + 1];        usRegAddress++;        usCoilCnt = pucFrame[MB_PDU_FUNC_WRITE_MUL_COILCNT_OFF] << 8;        usCoilCnt |= pucFrame[MB_PDU_FUNC_WRITE_MUL_COILCNT_OFF + 1];        ucByteCount = pucFrame[MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF];        /* Compute the number of expected bytes in the request. */        if( ( usCoilCnt & 0x0007 ) != 0 )        {            ucByteCountVerify = ( UCHAR )( usCoilCnt / 8 + 1 );        }        else        {            ucByteCountVerify = ( UCHAR )( usCoilCnt / 8 );        }        if( ( usCoilCnt >= 1 ) &&            ( usCoilCnt <= MB_PDU_FUNC_WRITE_MUL_COILCNT_MAX ) &&            ( ucByteCountVerify == ucByteCount ) )        {            eRegStatus =                eMBRegCoilsCB( &pucFrame[MB_PDU_FUNC_WRITE_MUL_VALUES_OFF],                               usRegAddress, usCoilCnt, MB_REG_WRITE );            /* If an error occured convert it into a Modbus exception. */            if( eRegStatus != MB_ENOERR )            {                eStatus = prveMBError2Exception( eRegStatus );            }            else            {                /* The response contains the function code, the starting address                 * and the quantity of registers. We reuse the old values in the                  * buffer because they are still valid. */                *usLen = MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF;            }        }        else        {            eStatus = MB_EX_ILLEGAL_DATA_VALUE;        }    }    else    {        /* Can't be a valid write coil register request because the length         * is incorrect. */        eStatus = MB_EX_ILLEGAL_DATA_VALUE;    }    return eStatus;}#endif#endif

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