xref: /nrf52832-nimble/rt-thread/components/net/freemodbus/modbus/functions/mbfuncholding.c (revision 104654410c56c573564690304ae786df310c91fc)
1*10465441SEvalZero /*
2*10465441SEvalZero  * FreeModbus Libary: A portable Modbus implementation for Modbus ASCII/RTU.
3*10465441SEvalZero  * Copyright (c) 2006 Christian Walter <[email protected]>
4*10465441SEvalZero  * All rights reserved.
5*10465441SEvalZero  *
6*10465441SEvalZero  * Redistribution and use in source and binary forms, with or without
7*10465441SEvalZero  * modification, are permitted provided that the following conditions
8*10465441SEvalZero  * are met:
9*10465441SEvalZero  * 1. Redistributions of source code must retain the above copyright
10*10465441SEvalZero  *    notice, this list of conditions and the following disclaimer.
11*10465441SEvalZero  * 2. Redistributions in binary form must reproduce the above copyright
12*10465441SEvalZero  *    notice, this list of conditions and the following disclaimer in the
13*10465441SEvalZero  *    documentation and/or other materials provided with the distribution.
14*10465441SEvalZero  * 3. The name of the author may not be used to endorse or promote products
15*10465441SEvalZero  *    derived from this software without specific prior written permission.
16*10465441SEvalZero  *
17*10465441SEvalZero  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18*10465441SEvalZero  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19*10465441SEvalZero  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20*10465441SEvalZero  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21*10465441SEvalZero  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22*10465441SEvalZero  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23*10465441SEvalZero  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24*10465441SEvalZero  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25*10465441SEvalZero  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26*10465441SEvalZero  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27*10465441SEvalZero  *
28*10465441SEvalZero  * File: $Id: mbfuncholding.c,v 1.12 2007/02/18 23:48:22 wolti Exp $
29*10465441SEvalZero  */
30*10465441SEvalZero 
31*10465441SEvalZero /* ----------------------- System includes ----------------------------------*/
32*10465441SEvalZero #include "stdlib.h"
33*10465441SEvalZero #include "string.h"
34*10465441SEvalZero 
35*10465441SEvalZero /* ----------------------- Platform includes --------------------------------*/
36*10465441SEvalZero #include "port.h"
37*10465441SEvalZero 
38*10465441SEvalZero /* ----------------------- Modbus includes ----------------------------------*/
39*10465441SEvalZero #include "mb.h"
40*10465441SEvalZero #include "mbframe.h"
41*10465441SEvalZero #include "mbproto.h"
42*10465441SEvalZero #include "mbconfig.h"
43*10465441SEvalZero 
44*10465441SEvalZero /* ----------------------- Defines ------------------------------------------*/
45*10465441SEvalZero #define MB_PDU_FUNC_READ_ADDR_OFF               ( MB_PDU_DATA_OFF + 0)
46*10465441SEvalZero #define MB_PDU_FUNC_READ_REGCNT_OFF             ( MB_PDU_DATA_OFF + 2 )
47*10465441SEvalZero #define MB_PDU_FUNC_READ_SIZE                   ( 4 )
48*10465441SEvalZero #define MB_PDU_FUNC_READ_REGCNT_MAX             ( 0x007D )
49*10465441SEvalZero 
50*10465441SEvalZero #define MB_PDU_FUNC_WRITE_ADDR_OFF              ( MB_PDU_DATA_OFF + 0)
51*10465441SEvalZero #define MB_PDU_FUNC_WRITE_VALUE_OFF             ( MB_PDU_DATA_OFF + 2 )
52*10465441SEvalZero #define MB_PDU_FUNC_WRITE_SIZE                  ( 4 )
53*10465441SEvalZero 
54*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_ADDR_OFF          ( MB_PDU_DATA_OFF + 0 )
55*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_REGCNT_OFF        ( MB_PDU_DATA_OFF + 2 )
56*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF       ( MB_PDU_DATA_OFF + 4 )
57*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_VALUES_OFF        ( MB_PDU_DATA_OFF + 5 )
58*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_SIZE_MIN          ( 5 )
59*10465441SEvalZero #define MB_PDU_FUNC_WRITE_MUL_REGCNT_MAX        ( 0x0078 )
60*10465441SEvalZero 
61*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_READ_ADDR_OFF     ( MB_PDU_DATA_OFF + 0 )
62*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_READ_REGCNT_OFF   ( MB_PDU_DATA_OFF + 2 )
63*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_WRITE_ADDR_OFF    ( MB_PDU_DATA_OFF + 4 )
64*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_WRITE_REGCNT_OFF  ( MB_PDU_DATA_OFF + 6 )
65*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_BYTECNT_OFF       ( MB_PDU_DATA_OFF + 8 )
66*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_WRITE_VALUES_OFF  ( MB_PDU_DATA_OFF + 9 )
67*10465441SEvalZero #define MB_PDU_FUNC_READWRITE_SIZE_MIN          ( 9 )
68*10465441SEvalZero 
69*10465441SEvalZero /* ----------------------- Static functions ---------------------------------*/
70*10465441SEvalZero eMBException    prveMBError2Exception( eMBErrorCode eErrorCode );
71*10465441SEvalZero 
72*10465441SEvalZero /* ----------------------- Start implementation -----------------------------*/
73*10465441SEvalZero 
74*10465441SEvalZero #if MB_FUNC_WRITE_HOLDING_ENABLED > 0
75*10465441SEvalZero 
76*10465441SEvalZero eMBException
eMBFuncWriteHoldingRegister(UCHAR * pucFrame,USHORT * usLen)77*10465441SEvalZero eMBFuncWriteHoldingRegister( UCHAR * pucFrame, USHORT * usLen )
78*10465441SEvalZero {
79*10465441SEvalZero     USHORT          usRegAddress;
80*10465441SEvalZero     eMBException    eStatus = MB_EX_NONE;
81*10465441SEvalZero     eMBErrorCode    eRegStatus;
82*10465441SEvalZero 
83*10465441SEvalZero     if( *usLen == ( MB_PDU_FUNC_WRITE_SIZE + MB_PDU_SIZE_MIN ) )
84*10465441SEvalZero     {
85*10465441SEvalZero         usRegAddress = ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_ADDR_OFF] << 8 );
86*10465441SEvalZero         usRegAddress |= ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_ADDR_OFF + 1] );
87*10465441SEvalZero         usRegAddress++;
88*10465441SEvalZero 
89*10465441SEvalZero         /* Make callback to update the value. */
90*10465441SEvalZero         eRegStatus = eMBRegHoldingCB( &pucFrame[MB_PDU_FUNC_WRITE_VALUE_OFF],
91*10465441SEvalZero                                       usRegAddress, 1, MB_REG_WRITE );
92*10465441SEvalZero 
93*10465441SEvalZero         /* If an error occured convert it into a Modbus exception. */
94*10465441SEvalZero         if( eRegStatus != MB_ENOERR )
95*10465441SEvalZero         {
96*10465441SEvalZero             eStatus = prveMBError2Exception( eRegStatus );
97*10465441SEvalZero         }
98*10465441SEvalZero     }
99*10465441SEvalZero     else
100*10465441SEvalZero     {
101*10465441SEvalZero         /* Can't be a valid request because the length is incorrect. */
102*10465441SEvalZero         eStatus = MB_EX_ILLEGAL_DATA_VALUE;
103*10465441SEvalZero     }
104*10465441SEvalZero     return eStatus;
105*10465441SEvalZero }
106*10465441SEvalZero #endif
107*10465441SEvalZero 
108*10465441SEvalZero #if MB_FUNC_WRITE_MULTIPLE_HOLDING_ENABLED > 0
109*10465441SEvalZero eMBException
eMBFuncWriteMultipleHoldingRegister(UCHAR * pucFrame,USHORT * usLen)110*10465441SEvalZero eMBFuncWriteMultipleHoldingRegister( UCHAR * pucFrame, USHORT * usLen )
111*10465441SEvalZero {
112*10465441SEvalZero     USHORT          usRegAddress;
113*10465441SEvalZero     USHORT          usRegCount;
114*10465441SEvalZero     UCHAR           ucRegByteCount;
115*10465441SEvalZero 
116*10465441SEvalZero     eMBException    eStatus = MB_EX_NONE;
117*10465441SEvalZero     eMBErrorCode    eRegStatus;
118*10465441SEvalZero 
119*10465441SEvalZero     if( *usLen >= ( MB_PDU_FUNC_WRITE_MUL_SIZE_MIN + MB_PDU_SIZE_MIN ) )
120*10465441SEvalZero     {
121*10465441SEvalZero         usRegAddress = ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_MUL_ADDR_OFF] << 8 );
122*10465441SEvalZero         usRegAddress |= ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_MUL_ADDR_OFF + 1] );
123*10465441SEvalZero         usRegAddress++;
124*10465441SEvalZero 
125*10465441SEvalZero         usRegCount = ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_MUL_REGCNT_OFF] << 8 );
126*10465441SEvalZero         usRegCount |= ( USHORT )( pucFrame[MB_PDU_FUNC_WRITE_MUL_REGCNT_OFF + 1] );
127*10465441SEvalZero 
128*10465441SEvalZero         ucRegByteCount = pucFrame[MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF];
129*10465441SEvalZero 
130*10465441SEvalZero         if( ( usRegCount >= 1 ) &&
131*10465441SEvalZero             ( usRegCount <= MB_PDU_FUNC_WRITE_MUL_REGCNT_MAX ) &&
132*10465441SEvalZero             ( ucRegByteCount == ( UCHAR ) ( 2 * usRegCount ) ) )
133*10465441SEvalZero         {
134*10465441SEvalZero             /* Make callback to update the register values. */
135*10465441SEvalZero             eRegStatus =
136*10465441SEvalZero                 eMBRegHoldingCB( &pucFrame[MB_PDU_FUNC_WRITE_MUL_VALUES_OFF],
137*10465441SEvalZero                                  usRegAddress, usRegCount, MB_REG_WRITE );
138*10465441SEvalZero 
139*10465441SEvalZero             /* If an error occured convert it into a Modbus exception. */
140*10465441SEvalZero             if( eRegStatus != MB_ENOERR )
141*10465441SEvalZero             {
142*10465441SEvalZero                 eStatus = prveMBError2Exception( eRegStatus );
143*10465441SEvalZero             }
144*10465441SEvalZero             else
145*10465441SEvalZero             {
146*10465441SEvalZero                 /* The response contains the function code, the starting
147*10465441SEvalZero                  * address and the quantity of registers. We reuse the
148*10465441SEvalZero                  * old values in the buffer because they are still valid.
149*10465441SEvalZero                  */
150*10465441SEvalZero                 *usLen = MB_PDU_FUNC_WRITE_MUL_BYTECNT_OFF;
151*10465441SEvalZero             }
152*10465441SEvalZero         }
153*10465441SEvalZero         else
154*10465441SEvalZero         {
155*10465441SEvalZero             eStatus = MB_EX_ILLEGAL_DATA_VALUE;
156*10465441SEvalZero         }
157*10465441SEvalZero     }
158*10465441SEvalZero     else
159*10465441SEvalZero     {
160*10465441SEvalZero         /* Can't be a valid request because the length is incorrect. */
161*10465441SEvalZero         eStatus = MB_EX_ILLEGAL_DATA_VALUE;
162*10465441SEvalZero     }
163*10465441SEvalZero     return eStatus;
164*10465441SEvalZero }
165*10465441SEvalZero #endif
166*10465441SEvalZero 
167*10465441SEvalZero #if MB_FUNC_READ_HOLDING_ENABLED > 0
168*10465441SEvalZero 
169*10465441SEvalZero eMBException
eMBFuncReadHoldingRegister(UCHAR * pucFrame,USHORT * usLen)170*10465441SEvalZero eMBFuncReadHoldingRegister( UCHAR * pucFrame, USHORT * usLen )
171*10465441SEvalZero {
172*10465441SEvalZero     USHORT          usRegAddress;
173*10465441SEvalZero     USHORT          usRegCount;
174*10465441SEvalZero     UCHAR          *pucFrameCur;
175*10465441SEvalZero 
176*10465441SEvalZero     eMBException    eStatus = MB_EX_NONE;
177*10465441SEvalZero     eMBErrorCode    eRegStatus;
178*10465441SEvalZero 
179*10465441SEvalZero     if( *usLen == ( MB_PDU_FUNC_READ_SIZE + MB_PDU_SIZE_MIN ) )
180*10465441SEvalZero     {
181*10465441SEvalZero         usRegAddress = ( USHORT )( pucFrame[MB_PDU_FUNC_READ_ADDR_OFF] << 8 );
182*10465441SEvalZero         usRegAddress |= ( USHORT )( pucFrame[MB_PDU_FUNC_READ_ADDR_OFF + 1] );
183*10465441SEvalZero         usRegAddress++;
184*10465441SEvalZero 
185*10465441SEvalZero         usRegCount = ( USHORT )( pucFrame[MB_PDU_FUNC_READ_REGCNT_OFF] << 8 );
186*10465441SEvalZero         usRegCount |= ( USHORT )( pucFrame[MB_PDU_FUNC_READ_REGCNT_OFF + 1] );
187*10465441SEvalZero 
188*10465441SEvalZero         /* Check if the number of registers to read is valid. If not
189*10465441SEvalZero          * return Modbus illegal data value exception.
190*10465441SEvalZero          */
191*10465441SEvalZero         if( ( usRegCount >= 1 ) && ( usRegCount <= MB_PDU_FUNC_READ_REGCNT_MAX ) )
192*10465441SEvalZero         {
193*10465441SEvalZero             /* Set the current PDU data pointer to the beginning. */
194*10465441SEvalZero             pucFrameCur = &pucFrame[MB_PDU_FUNC_OFF];
195*10465441SEvalZero             *usLen = MB_PDU_FUNC_OFF;
196*10465441SEvalZero 
197*10465441SEvalZero             /* First byte contains the function code. */
198*10465441SEvalZero             *pucFrameCur++ = MB_FUNC_READ_HOLDING_REGISTER;
199*10465441SEvalZero             *usLen += 1;
200*10465441SEvalZero 
201*10465441SEvalZero             /* Second byte in the response contain the number of bytes. */
202*10465441SEvalZero             *pucFrameCur++ = ( UCHAR ) ( usRegCount * 2 );
203*10465441SEvalZero             *usLen += 1;
204*10465441SEvalZero 
205*10465441SEvalZero             /* Make callback to fill the buffer. */
206*10465441SEvalZero             eRegStatus = eMBRegHoldingCB( pucFrameCur, usRegAddress, usRegCount, MB_REG_READ );
207*10465441SEvalZero             /* If an error occured convert it into a Modbus exception. */
208*10465441SEvalZero             if( eRegStatus != MB_ENOERR )
209*10465441SEvalZero             {
210*10465441SEvalZero                 eStatus = prveMBError2Exception( eRegStatus );
211*10465441SEvalZero             }
212*10465441SEvalZero             else
213*10465441SEvalZero             {
214*10465441SEvalZero                 *usLen += usRegCount * 2;
215*10465441SEvalZero             }
216*10465441SEvalZero         }
217*10465441SEvalZero         else
218*10465441SEvalZero         {
219*10465441SEvalZero             eStatus = MB_EX_ILLEGAL_DATA_VALUE;
220*10465441SEvalZero         }
221*10465441SEvalZero     }
222*10465441SEvalZero     else
223*10465441SEvalZero     {
224*10465441SEvalZero         /* Can't be a valid request because the length is incorrect. */
225*10465441SEvalZero         eStatus = MB_EX_ILLEGAL_DATA_VALUE;
226*10465441SEvalZero     }
227*10465441SEvalZero     return eStatus;
228*10465441SEvalZero }
229*10465441SEvalZero 
230*10465441SEvalZero #endif
231*10465441SEvalZero 
232*10465441SEvalZero #if MB_FUNC_READWRITE_HOLDING_ENABLED > 0
233*10465441SEvalZero 
234*10465441SEvalZero eMBException
eMBFuncReadWriteMultipleHoldingRegister(UCHAR * pucFrame,USHORT * usLen)235*10465441SEvalZero eMBFuncReadWriteMultipleHoldingRegister( UCHAR * pucFrame, USHORT * usLen )
236*10465441SEvalZero {
237*10465441SEvalZero     USHORT          usRegReadAddress;
238*10465441SEvalZero     USHORT          usRegReadCount;
239*10465441SEvalZero     USHORT          usRegWriteAddress;
240*10465441SEvalZero     USHORT          usRegWriteCount;
241*10465441SEvalZero     UCHAR           ucRegWriteByteCount;
242*10465441SEvalZero     UCHAR          *pucFrameCur;
243*10465441SEvalZero 
244*10465441SEvalZero     eMBException    eStatus = MB_EX_NONE;
245*10465441SEvalZero     eMBErrorCode    eRegStatus;
246*10465441SEvalZero 
247*10465441SEvalZero     if( *usLen >= ( MB_PDU_FUNC_READWRITE_SIZE_MIN + MB_PDU_SIZE_MIN ) )
248*10465441SEvalZero     {
249*10465441SEvalZero         usRegReadAddress = ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_READ_ADDR_OFF] << 8U );
250*10465441SEvalZero         usRegReadAddress |= ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_READ_ADDR_OFF + 1] );
251*10465441SEvalZero         usRegReadAddress++;
252*10465441SEvalZero 
253*10465441SEvalZero         usRegReadCount = ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_READ_REGCNT_OFF] << 8U );
254*10465441SEvalZero         usRegReadCount |= ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_READ_REGCNT_OFF + 1] );
255*10465441SEvalZero 
256*10465441SEvalZero         usRegWriteAddress = ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_WRITE_ADDR_OFF] << 8U );
257*10465441SEvalZero         usRegWriteAddress |= ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_WRITE_ADDR_OFF + 1] );
258*10465441SEvalZero         usRegWriteAddress++;
259*10465441SEvalZero 
260*10465441SEvalZero         usRegWriteCount = ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_WRITE_REGCNT_OFF] << 8U );
261*10465441SEvalZero         usRegWriteCount |= ( USHORT )( pucFrame[MB_PDU_FUNC_READWRITE_WRITE_REGCNT_OFF + 1] );
262*10465441SEvalZero 
263*10465441SEvalZero         ucRegWriteByteCount = pucFrame[MB_PDU_FUNC_READWRITE_BYTECNT_OFF];
264*10465441SEvalZero 
265*10465441SEvalZero         if( ( usRegReadCount >= 1 ) && ( usRegReadCount <= 0x7D ) &&
266*10465441SEvalZero             ( usRegWriteCount >= 1 ) && ( usRegWriteCount <= 0x79 ) &&
267*10465441SEvalZero             ( ( 2 * usRegWriteCount ) == ucRegWriteByteCount ) )
268*10465441SEvalZero         {
269*10465441SEvalZero             /* Make callback to update the register values. */
270*10465441SEvalZero             eRegStatus = eMBRegHoldingCB( &pucFrame[MB_PDU_FUNC_READWRITE_WRITE_VALUES_OFF],
271*10465441SEvalZero                                           usRegWriteAddress, usRegWriteCount, MB_REG_WRITE );
272*10465441SEvalZero 
273*10465441SEvalZero             if( eRegStatus == MB_ENOERR )
274*10465441SEvalZero             {
275*10465441SEvalZero                 /* Set the current PDU data pointer to the beginning. */
276*10465441SEvalZero                 pucFrameCur = &pucFrame[MB_PDU_FUNC_OFF];
277*10465441SEvalZero                 *usLen = MB_PDU_FUNC_OFF;
278*10465441SEvalZero 
279*10465441SEvalZero                 /* First byte contains the function code. */
280*10465441SEvalZero                 *pucFrameCur++ = MB_FUNC_READWRITE_MULTIPLE_REGISTERS;
281*10465441SEvalZero                 *usLen += 1;
282*10465441SEvalZero 
283*10465441SEvalZero                 /* Second byte in the response contain the number of bytes. */
284*10465441SEvalZero                 *pucFrameCur++ = ( UCHAR ) ( usRegReadCount * 2 );
285*10465441SEvalZero                 *usLen += 1;
286*10465441SEvalZero 
287*10465441SEvalZero                 /* Make the read callback. */
288*10465441SEvalZero                 eRegStatus =
289*10465441SEvalZero                     eMBRegHoldingCB( pucFrameCur, usRegReadAddress, usRegReadCount, MB_REG_READ );
290*10465441SEvalZero                 if( eRegStatus == MB_ENOERR )
291*10465441SEvalZero                 {
292*10465441SEvalZero                     *usLen += 2 * usRegReadCount;
293*10465441SEvalZero                 }
294*10465441SEvalZero             }
295*10465441SEvalZero             if( eRegStatus != MB_ENOERR )
296*10465441SEvalZero             {
297*10465441SEvalZero                 eStatus = prveMBError2Exception( eRegStatus );
298*10465441SEvalZero             }
299*10465441SEvalZero         }
300*10465441SEvalZero         else
301*10465441SEvalZero         {
302*10465441SEvalZero             eStatus = MB_EX_ILLEGAL_DATA_VALUE;
303*10465441SEvalZero         }
304*10465441SEvalZero     }
305*10465441SEvalZero     return eStatus;
306*10465441SEvalZero }
307*10465441SEvalZero 
308*10465441SEvalZero #endif
309