mirror of
https://github.com/netdata-be/libnodave
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607 lines
18 KiB
C
607 lines
18 KiB
C
/*
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Test and demo program for Libnodave, a free communication libray for Siemens S7.
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**********************************************************************
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* WARNING: This and other test programs overwrite data in your PLC. *
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* DO NOT use it on PLC's when anything is connected to their outputs.*
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* This is alpha software. Use entirely on your own risk. *
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**********************************************************************
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(C) Thomas Hergenhahn (thomas.hergenhahn@web.de) 2002, 2003.
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This is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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This is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with Libnodave; see the file COPYING. If not, write to
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the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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//#include "nodavesimple.h"
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#include "nodave.h"
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#include "setport.h"
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#ifdef LINUX
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#include <unistd.h>
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#include <sys/time.h>
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#include <fcntl.h>
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#define UNIX_STYLE
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#endif
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#ifdef BCCWIN
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#include <time.h>
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void usage(void);
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void wait(void);
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#define WIN_STYLE
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#endif
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void usage()
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{
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printf("Usage: testPPI [-d] [-w] serial port.\n");
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printf("-w will try to write to Flag words. It will overwrite FB0 to FB15 (MB0 to MB15) !\n");
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printf("-d will produce a lot of debug messages.\n");
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printf("-b will run benchmarks. Specify -b and -w to run write benchmarks.\n");
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printf("-m will run a test for multiple variable reads.\n");
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printf("-c will write 0 to the PLC memory used in write tests.\n");
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printf("-s stops the PLC.\n");
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printf("-r tries to put the PLC in run mode.\n");
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printf("--readout read program and data blocks from PLC.\n");
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printf("--ppi=<number> will use number as the PPI adddres of the PLC. Default is 2.\n");
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printf("--mpi=<number> will use number as the PPI adddres of the PLC.\n");
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printf("--local=<number> will set the local PPI adddres to number. Default is 0.\n");
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printf("--debug=<number> will set daveDebug to number.\n");
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#ifdef UNIX_STYLE
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printf("Example: testPPI -w /dev/ttyS0\n");
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#endif
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#ifdef WIN_STYLE
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printf("Example: testPPI -w COM1\n");
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#endif
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}
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void wait() {
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uc c;
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printf("Press return to continue.\n");
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#ifdef UNIX_STYLE
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read(0,&c,1);
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#endif
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}
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void loadBlocksOfType(daveConnection * dc, int blockType) {
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int i,j,uploadID, len, more;
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#ifdef UNIX_STYLE
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int fd;
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#endif
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#ifdef WIN_STYLE
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HANDLE fd;
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unsigned long res;
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#endif
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char blockName [20];
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uc blockBuffer[20000],*bb;
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daveBlockEntry dbe[256];
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j=daveListBlocksOfType(dc, blockType, dbe);
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if (j<0) {
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printf("error %d = %s\n",-j,daveStrerror(-j));
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return;
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}
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printf("%d blocks of type %s\n",j,daveBlockName(blockType));
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for (i=0; i<j; i++) {
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printf("%s%d %d %d\n",
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daveBlockName(blockType),
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dbe[i].number, dbe[i].type[0],dbe[i].type[1]);
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bb=blockBuffer;
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len=0;
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if (0==initUpload(dc, blockType, dbe[i].number, &uploadID)) {
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do {
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doUpload(dc,&more,&bb,&len,uploadID);
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} while (more);
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sprintf(blockName,"%s%d.mc7",daveBlockName(blockType), dbe[i].number);
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#ifdef UNIX_STYLE
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fd=open(blockName,O_RDWR|O_CREAT|O_TRUNC,0644);
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write(fd, blockBuffer, len);
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close(fd);
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#endif
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#ifdef WIN_STYLE
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fd = CreateFile(blockName,
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GENERIC_WRITE, 0, 0, 2,
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FILE_FLAG_WRITE_THROUGH, 0);
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WriteFile(fd, blockBuffer, len, &res, NULL);
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CloseHandle(fd);
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#endif
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endUpload(dc,uploadID);
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}
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}
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}
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#include "benchmark.c"
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int main(int argc, char **argv) {
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int i, a,b,c,adrPos, doWrite, doBenchmark, doMultiple, doClear, doNewfunctions,
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doExperimental, doRun, doStop, doReadout,
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res, localPPI, plcPPI;
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float d;
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daveInterface * di;
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daveConnection * dc;
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daveResultSet rs;
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_daveOSserialType fds;
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PDU p;
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adrPos=1;
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doWrite=0;
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doBenchmark=0;
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doMultiple=0;
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doClear=0;
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doNewfunctions=0;
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doExperimental=0;
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doRun=0;
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doStop=0;
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doReadout=0;
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localPPI=0;
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plcPPI=2;
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if (argc<2) {
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usage();
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exit(-1);
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}
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while (argv[adrPos][0]=='-') {
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if (strcmp(argv[adrPos],"-s")==0) {
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doStop=1;
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} else
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if (strcmp(argv[adrPos],"-r")==0) {
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doRun=1;
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} else
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if (strncmp(argv[adrPos],"--local=",8)==0) {
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localPPI=atol(argv[adrPos]+8);
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printf("setting local PPI address to:%d\n",localPPI);
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} else
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if (strncmp(argv[adrPos],"--mpi=",6)==0) {
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plcPPI=atol(argv[adrPos]+6);
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printf("setting PPI address of PLC to:%d\n",plcPPI);
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} else
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if (strncmp(argv[adrPos],"--ppi=",6)==0) {
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plcPPI=atol(argv[adrPos]+6);
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printf("setting PPI address of PLC to:%d\n",plcPPI);
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} else
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if (strncmp(argv[adrPos],"--readout",9)==0) {
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doReadout=1;
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} else
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if (strcmp(argv[adrPos],"-d")==0) {
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daveSetDebug(daveDebugAll);
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}
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else if (strcmp(argv[adrPos],"-w")==0) {
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doWrite=1;
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}
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else if (strcmp(argv[adrPos],"-b")==0) {
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doBenchmark=1;
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}
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else if (strcmp(argv[adrPos],"-m")==0) {
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doMultiple=1;
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}
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else if (strcmp(argv[adrPos],"-c")==0) {
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doClear=1;
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}
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else if (strcmp(argv[adrPos],"-n")==0) {
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doNewfunctions=1;
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}
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else if (strcmp(argv[adrPos],"-e")==0) {
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doExperimental=1;
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}
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adrPos++;
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if (argc<=adrPos) {
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usage();
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exit(-1);
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}
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}
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fds.rfd=setPort(argv[adrPos],"9600",'E');
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fds.wfd=fds.rfd;
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if (fds.rfd>0) {
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di =daveNewInterface(fds, "IF1", localPPI, daveProtoPPI, daveSpeed187k);
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dc =daveNewConnection(di, plcPPI, 0, 0);
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daveConnectPLC(dc);
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//
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// just try out what else might be readable in an S7-200 (on your own risk!):
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//
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/*
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for (i=0;i<=255;i++) {
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printf("Trying to read 8 bytes from area %d.\n",i);
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wait();
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res=daveReadBytes(dc,i,0,0,10,NULL);
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printf("Function result: %d %s\n",res,daveStrerror(res));
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_daveDump("Data",dc->resultPointer,dc->AnswLen);
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}
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*/
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printf("Trying to read 64 bytes (32 words) from data block 1.\n This is V memory of the 200.\n");
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wait();
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res=daveReadBytes(dc,daveDB,1,0,64,NULL);
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if (res==0) {
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a=daveGetU16(dc);
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printf("VW0: %d\n",a);
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a=daveGetU16(dc);
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printf("VW2: %d\n...\n",a);
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}
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// a=daveGetU16at(dc,62);
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// printf("DB1:DW32: %d\n",a);
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printf("Trying to read 16 bytes from FW0.\n");
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wait();
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/*
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* Some comments about daveReadBytes():
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*
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* The 200 family PLCs have the V area. This is accessed like a datablock with number 1.
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* This is not a quirk or convention introduced by libnodave, but the command transmitted
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* to the PLC is exactly the same that would read from DB1 of a 300 or 400.
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*
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* to read VD68 and VD72 use:
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* daveReadBytes(dc, daveDB, 1, 68, 6, NULL);
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* to read VD68 and VD72 into your applications buffer appBuffer use:
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* daveReadBytes(dc, daveDB, 1, 68, 6, appBuffer);
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* to read VD68 and VD78 into your applications buffer appBuffer use:
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* daveReadBytes(dc, daveDB, 1, 68, 14, appBuffer);
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* this reads DBD68 and DBD78 and everything in between and fills the range
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* appBuffer+4 to appBuffer+9 with unwanted bytes, but is much faster than:
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* daveReadBytes(dc, daveDB, 1, 68, 4, appBuffer);
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* daveReadBytes(dc, daveDB, 1, 78, 4, appBuffer+4);
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*/
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res=daveReadBytes(dc,daveFlags,0,0,16,NULL);
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if (res==0) {
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/*
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* daveGetU32(dc); reads a word (2 bytes) from the current buffer position and increments
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* an internal pointer by 2, so next daveGetXXX() wil read from the new position behind that
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* word.
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*/
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a=daveGetU32(dc);
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b=daveGetU32(dc);
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c=daveGetU32(dc);
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d=daveGetFloat(dc);
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printf("FD0: %d\n",a);
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printf("FD4: %d\n",b);
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printf("FD8: %d\n",c);
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printf("FD12: %f\n",d);
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/*
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d=daveGetFloatAt(dc,12);
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printf("FD12: %f\n",d);
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*/
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}
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if(doNewfunctions) {
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// saveDebug=daveDebug;
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// daveDebug=daveDebugAll;
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printf("Trying to read 2 bit from I0.2\n");
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res=daveReadBits(dc, daveInputs, 0, 2, 1,NULL);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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if (res==0) {
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c=daveGetU8(dc);
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printf("Bit: %d\n",c);
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}
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// daveDebug=0;
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printf("Trying to read 2 bits from DB1.DBX0.1=V0.1\n");
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res=daveReadBits(dc, daveDB, 1, 1, 2,NULL);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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if (res==0) {
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c=daveGetU8(dc);
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printf("Bit: %d\n",c);
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}
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printf("Trying to read 0 bits from DB1.DBX0.1=V0.1\n");
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res=daveReadBits(dc, daveDB, 1, 1, 0,NULL);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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if (res==0) {
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c=daveGetU8(dc);
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printf("Bit: %d\n",c);
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}
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printf("Trying to read 1 bit from DB1.DBX0.1=V0.1\n");
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res=daveReadBits(dc, daveDB, 1, 1, 1,NULL);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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if (res==0) {
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c=daveGetU8(dc);
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printf("Bit: %d\n",c);
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}
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a=0;
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printf("Writing 0 to QB0\n");
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res=daveWriteBytes(dc, daveOutputs, 0, 0, 1, &a);
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// daveDebug=daveDebugAll;
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a=1;
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printf("About to write 1 to Q0.4\n");
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wait();
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res=daveWriteBits(dc, daveOutputs, 0, 4, 1, &a);
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a=255;
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printf("About to write %d to QB0\n",a);
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wait();
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res=daveWriteBytes(dc, daveOutputs, 0, 0, 1, &a);
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a=0;
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printf("About to write 0 to Q0.3\n");
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wait();
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res=daveWriteBits(dc, daveOutputs, 0, 4, 1, &a);
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printf("Trying to read 1 word from AQW0\n");
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res=daveReadBytes(dc, daveAnaOut, 0, 0, 1,NULL);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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a=2341;
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printf("Trying to write 1 word to AQW0\n");
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res=daveWriteBytes(dc, daveAnaOut, 0, 0, 2,&a);
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printf("function result:%d=%s\n", res, daveStrerror(res));
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printf("Trying to read 3 items from Timers\n");
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res=daveReadBytes(dc, daveTimer200, 0, 0, 4,NULL);
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printf("function result:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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if (res==0) {
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printf("Bytes:");
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for (b= 0;b<dc->AnswLen;b++) {
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c=daveGetU8(dc);
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printf(" %0x, ",c);
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}
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printf("\n");
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/*
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d=daveGetSeconds(dc);
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printf("Times(by getSeconds() ): %0.3f, ",d);
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d=daveGetSeconds(dc);
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printf("%0.3f, ",d);
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d=daveGetSeconds(dc);
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printf("%0.3f, ",d);
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d=daveGetSeconds(dc);
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printf(" %0.3f\n",d);
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d=daveGetSecondsAt(dc,0);
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printf("Times(by getSecondsAt()): %0.3f, ",d);
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d=daveGetSecondsAt(dc,2);
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printf("%0.3f, ",d);
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d=daveGetSecondsAt(dc,4);
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printf("%0.3f, ",d);
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d=daveGetSecondsAt(dc,6);
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printf(" %0.3f\n",d);
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*/
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}
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printf("Trying to read 3 items from Counters\n");
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res=daveReadBytes(dc, daveCounter200, 0, 0, 3,NULL);
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printf("function result:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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if (res==0) {
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c=daveGetCounterValue(dc);
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printf("Count: %d, ",c);
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c=daveGetCounterValue(dc);
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printf("%d, ",c);
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c=daveGetCounterValue(dc);
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printf("%d, ",c);
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c=daveGetCounterValue(dc);
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printf(" %d\n",c);
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c=daveGetCounterValueAt(dc,0);
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printf("Count: %d, ",c);
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c=daveGetCounterValueAt(dc,2);
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printf("%d, ",c);
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c=daveGetCounterValueAt(dc,4);
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printf("%d, ",c);
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c=daveGetCounterValueAt(dc,6);
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printf(" %d\n",c);
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}
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}
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if(doExperimental) {
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printf("Trying to read outputs\n");
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res=daveReadBytes(dc, daveOutputs, 0, 0, 2,NULL);
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printf("function result:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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if (res==0) {
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printf("Bytes:");
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for (b= 0;b<dc->AnswLen;b++) {
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c=daveGetU8(dc);
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printf(" %0x, ",c);
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}
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printf("\n");
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}
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a=0x01;
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printf("Trying to write outputs\n");
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res=daveWriteBytes(dc, daveOutputs, 0, 0, 1,&a);
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printf("function result:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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daveSetDebug(daveDebugAll);
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res=daveForce200(dc, daveOutputs, 0,0);
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printf("function result of force:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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daveSetDebug(0);
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res=daveForce200(dc, daveOutputs, 0,1);wait();
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res=daveForce200(dc, daveOutputs, 0,2);wait();
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res=daveForce200(dc, daveOutputs, 0,3);wait();
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res=daveForce200(dc, daveOutputs, 1,4);wait();
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res=daveForce200(dc, daveOutputs, 2,5);wait();
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res=daveForce200(dc, daveOutputs, 3,7);wait();
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printf("Trying to read outputs again\n");
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res=daveReadBytes(dc, daveOutputs, 0, 0, 4,NULL);
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printf("function result:%d=%s length:%d\n", res, daveStrerror(res),dc->AnswLen);
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if (res==0) {
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printf("Bytes:");
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for (b= 0;b<dc->AnswLen;b++) {
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c=daveGetU8(dc);
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printf(" %0x, ",c);
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}
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printf("\n");
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}
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}
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if(doMultiple) {
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printf("Now testing read multiple variables.\n"
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"This will read 1 Byte from inputs,\n"
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"4 bytes from flags, 2 bytes from DB6\n"
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" and other 2 bytes from flags\n");
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wait();
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davePrepareReadRequest(dc, &p);
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daveAddVarToReadRequest(&p,daveInputs,0,0,1);
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daveAddVarToReadRequest(&p,daveFlags,0,0,4);
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daveAddVarToReadRequest(&p,daveDB,6,20,2);
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daveAddVarToReadRequest(&p,daveSysInfo, 0, 0, 40);
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daveAddVarToReadRequest(&p,daveFlags,0,12,2);
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daveAddVarToReadRequest(&p,daveAnaIn,0,0,2);
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daveAddVarToReadRequest(&p,daveAnaOut,0,0,2);
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res=daveExecReadRequest(dc, &p, &rs);
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printf("Input Byte 0 ");
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res=daveUseResult(dc, &rs, 0); // first result
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if (res==0) {
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a=daveGetU8(dc);
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printf("%d\n",a);
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} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("Flag DWord 0 ");
|
|
res=daveUseResult(dc, &rs, 1); // 2nd result
|
|
if (res==0) {
|
|
a=daveGetS16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("DB 6 Word 20 (not present in 200): ");
|
|
res=daveUseResult(dc, &rs, 2); // 3rd result
|
|
if (res==0) {
|
|
a=daveGetS16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("System Information: ");
|
|
res=daveUseResult(dc, &rs, 3); // 4th result
|
|
if (res==0) {
|
|
for (i=0;i<40;i++) {
|
|
a=daveGetU8(dc);
|
|
printf("%c",a);
|
|
}
|
|
printf("\n");
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("Flag Word 12: ");
|
|
res=daveUseResult(dc, &rs, 4); // 5th result
|
|
if (res==0) {
|
|
a=daveGetU16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("Analog Input Word 0:");
|
|
res=daveUseResult(dc, &rs, 5); // 6th result
|
|
if (res==0) {
|
|
a=daveGetU16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
printf("Analog Output Word 0:");
|
|
res=daveUseResult(dc, &rs, 6); // 7th result
|
|
if (res==0) {
|
|
a=daveGetU16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
daveFreeResults(&rs);
|
|
|
|
printf("non existing result: ");
|
|
res=daveUseResult(dc, &rs, 7); // 8th result
|
|
if (res==0) {
|
|
a=daveGetU16(dc);
|
|
printf("%d\n",a);
|
|
} else
|
|
printf("*** Error: %s\n",daveStrerror(res));
|
|
|
|
/*
|
|
for (i=0; i<rs.numResults;i++) {
|
|
r2=&(rs.results[i]);
|
|
printf("result: %s length:%d\n",daveStrerror(r2->error), r2->length);
|
|
res=daveUseResult(dc, &rs, i);
|
|
if (r2->length>0) _daveDump("bytes",r2->bytes,r2->length);
|
|
if (r2->bytes!=NULL) {
|
|
_daveDump("bytes",r2->bytes,r2->length);
|
|
d=daveGetFloat(dc);
|
|
printf("FD12: %f\n",d);
|
|
}
|
|
}
|
|
*/
|
|
}
|
|
|
|
if(doWrite) {
|
|
printf("Now we write back these data after incrementing the first to by 1,2 and 3 and the first two floats by 1.1.\n");
|
|
wait();
|
|
/*
|
|
Attention! you need to daveSwapIed little endian variables before using them as a buffer for
|
|
daveWriteBytes() or before copying them into a buffer for daveWriteBytes()!
|
|
*/
|
|
a=daveSwapIed_32(a+1);
|
|
daveWriteBytes(dc,daveFlags,0,0,4,&a);
|
|
b=daveSwapIed_32(b+2);
|
|
daveWriteBytes(dc,daveFlags,0,4,4,&b);
|
|
c=daveSwapIed_32(c+3);
|
|
daveWriteBytes(dc,daveFlags,0,8,4,&c);
|
|
d=toPLCfloat(d+1.1);
|
|
daveWriteBytes(dc,daveFlags,0,12,4,&d);
|
|
daveReadBytes(dc,daveFlags,0,0,16,NULL);
|
|
a=daveGetU32(dc);
|
|
b=daveGetU32(dc);
|
|
c=daveGetU32(dc);
|
|
d=daveGetFloat(dc);
|
|
printf("FD0: %d\n",a);
|
|
printf("FD4: %d\n",b);
|
|
printf("FD8: %d\n",c);
|
|
printf("FD12: %f\n",d);
|
|
} // doWrite
|
|
if(doClear) {
|
|
printf("Now writing 0 to the bytes FB0...FB15.\n");
|
|
wait();
|
|
a=0;
|
|
daveWriteBytes(dc,daveFlags,0,0,4,&a);
|
|
daveWriteBytes(dc,daveFlags,0,4,4,&a);
|
|
daveWriteBytes(dc,daveFlags,0,8,4,&a);
|
|
daveWriteBytes(dc,daveFlags,0,12,4,&a);
|
|
daveReadBytes(dc,daveFlags,0,0,16,NULL);
|
|
a=daveGetU32(dc);
|
|
b=daveGetU32(dc);
|
|
c=daveGetU32(dc);
|
|
d=daveGetFloat(dc);
|
|
printf("FD0: %d\n",a);
|
|
printf("FD4: %d\n",b);
|
|
printf("FD8: %d\n",c);
|
|
printf("FD12: %f\n",d);
|
|
} // doClear
|
|
if(doStop) {
|
|
daveStop(dc);
|
|
}
|
|
if(doRun) {
|
|
daveStart(dc);
|
|
}
|
|
if(doReadout) {
|
|
loadBlocksOfType(dc, daveBlockType_OB);
|
|
loadBlocksOfType(dc, daveBlockType_DB);
|
|
loadBlocksOfType(dc, daveBlockType_SDB);
|
|
}
|
|
|
|
|
|
if(doBenchmark) {
|
|
rBenchmark(dc, daveDB);
|
|
if(doWrite) {
|
|
wBenchmark(dc, daveDB);
|
|
} // doWrite
|
|
} // doBenchmark
|
|
|
|
return 0;
|
|
} else {
|
|
printf("Couldn't open serial port %s\n",argv[adrPos]);
|
|
return -1;
|
|
}
|
|
}
|
|
|
|
/*
|
|
Changes:
|
|
07/19/04 added return values in main().
|
|
09/09/04 applied patch for variable Profibus speed from Andrew Rostovtsew.
|
|
09/09/04 removed unused include byteswap.h
|
|
09/10/04 removed SZL read, it doesn?t work on 200 family.
|
|
09/11/04 added multiple variable read example code.
|
|
03/23/04 added options to set local and target PPI addresses.
|
|
04/09/05 removed CYGWIN defines. As there were no more differences against LINUX, it should
|
|
work with LINUX defines.
|
|
*/
|