📄 myapi.pc
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/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
* File name : myapi.pc *
* Module ID : *
* Module Name : *
* Purpose : Sub Function Used By Pcs_Rcv_GH.pc *
* Author : Liu Yan Qiu (DIMPT) * *
* Date Created : 1999,10,27 *
* Version : Version 1.0 *
* Environment : Digital UNIX *
* Portability : UNIX Platform *
* Warnings : *
* References : *
* Calling Syntax : *
* Parameters : None *
* Returns : void *
* Calling Function : *
* Called Functions : When system startup *
* Datastores and usages : *
* (a) Input *
* (b) OutPut *
* Report : None *
* Screens : None *
* Messages Files : None *
* Change Log : *
* Change No. Date Author Reason For Change *
* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
*/
#include "/usr/bkfx/include/Pcs_Rcv_GH/Pcs_Rcv_GH.h"
EXEC SQL BEGIN DECLARE SECTION;
VARCHAR ghnr[ LEN_GHNR+1 ];
EXEC SQL END DECLARE SECTION;
void Free_Mem()
{
ProcessError(LOG_NORMAL, "Pcs_Rcv_GH.x Is Terminated By User!\n",END);
if ( tmp != NULL ) free( tmp );
if ( data_type != NULL) free( data_type );
if ( buf_hz != NULL) free( buf_hz );
MQBKClear();
EXEC SQL RollBack RELEASE;
exit(0);
}
int ReadGHMsg()
{
while(1)
{
if ( (( buf = (char *)malloc( LEN_GH_BUF ))==NULL) || \
(( data_type = (char *)malloc( LEN_DATA_TYPE ))==NULL) )
{
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Malloc GH Buffer Error!",END);
sleep(InitInterval);
}
else
break;
}
tmp = buf;
rtn_code = MQBKReceiveSyn_Wait( &buf_length, buf, data_type );
if ( rtn_code < 0 )
{
free( data_type );
free( tmp );
return(-2);
}
else
{
if ( ( data_type[0] == 'G' ) && ( data_type[1]=='H' ) )
{
strncpy( c_fsxh,buf,10);
c_fsxh[10]='\0';
fsxh = atoi( c_fsxh);
buf = buf+10;
strncpy( fssjbh,buf,2);
fssjbh[2]='\0';
buf = buf+2;
strncpy( jssjbh,buf,2);
jssjbh[2]='\0';
buf = buf+2;
strncpy( ghbh,buf,3);
ghbh[3]='\0';
buf = buf+3;
strncpy( ghxl,buf,2);
ghxl[2]='\0';
buf = buf+2;
strcpy( ghnr.arr, buf);
ghnr.len = strlen( ghnr.arr);
#ifdef DEBUG
printf("Pcs_Rcv_GH.x : recv a GH msg,jsxh is %d \n",fsxh);
printf("Pcs_Rcv_GH.x : jssjbh, fssjbh, ghbh, ghxl is : %s,%s,%s,%s \n", \
jssjbh,fssjbh,ghbh,ghxl);
#endif
free( tmp );
}
else if ( ( data_type[0] == 'C' ) && ( data_type[1]=='A' ) && \
( data_type[2] == 'N') )
{
strncpy( c_fsxh, buf, 10);
c_fsxh[10]='\0';
fsxh = atoi( c_fsxh);
buf = buf+10;
strncpy( fssjbh, buf, 2);
fssjbh[2]='\0';
buf = buf+2;
strncpy( jssjbh,buf,2);
jssjbh[2]='\0';
buf = buf+2;
#ifdef DEBUG
printf("Pcs_Rcv_GH.x : recv a Cancel msg,jsxh is %d \n",fsxh);
printf("the fssjbh jssjbh is %s,%s\n",fssjbh,jssjbh);
#endif
/* *tmp will be used in funntion Cancel_UpdateJSRZAndZFRZ(), \
so it can't be free now */
}
else
{
free( tmp );
free( data_type );
return(-3);
}
}
return(1);
}
int CreateRcvLogStatus()
{
EXEC SQL WHENEVER SQLERROR GOTO sqlerror;
EXEC SQL INSERT INTO T_JSRZ VALUES( :fsxh, '5', '1', :fssjbh, sysdate );
return(1);
sqlerror:
EXEC SQL WHENEVER SQLERROR CONTINUE;
ProcessError(LOG_ERROR, "DataBase Error:%s!", sqlca.sqlerrm.sqlerrmc );
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Running Function CreateRcvLogStatus() \
SQL Error!",END);
EXEC SQL RollBack;
return (-1);
}
int InsertRcvGHRec()
{
EXEC SQL WHENEVER SQLERROR GOTO sqlerror;
EXEC SQL INSERT INTO T_JSGH
VALUES( :ghbh, :ghxl, :ghnr, :fssjbh, :fsxh);
return(1);
sqlerror:
EXEC SQL WHENEVER SQLERROR CONTINUE;
ProcessError(LOG_ERROR, "DataBase Error:%s!", sqlca.sqlerrm.sqlerrmc );
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Running Function \
InsertRcvGHRec() SQL Error!",END);
EXEC SQL RollBack;
return (-1);
}
int Snd_HZ_MQ()
{
if ( (buf_hz = (char *) malloc (LEN_HZ)) == NULL )
{
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Malloc HZ Buffer Error!",END);
return(-1);
}
memset( buf_hz, '\0', LEN_HZ);
strncat( buf_hz, c_fsxh, LEN_FSXH+1 );
strncat( buf_hz, fssjbh, 3);
strncat( buf_hz, jssjbh, 3);
#ifdef DEBUG
printf("the hz msg is %s\n",buf_hz);
#endif
rtn_code = MQBKSend_Syn( strlen(buf_hz), buf_hz, atoi(fssjbh), "HZ");
free(buf_hz);
if ( rtn_code <0 )
{
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Sendding HZ Message Error!",END);
free(buf_hz);
return(-1);
}
rtn_code = MQBKCmit();
if ( rtn_code < 0 )
{
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Commit HZ Message Error!",END);
free(buf_hz);
MQBKBack();
return(-1);
}
return(1);
}
int UpdateRcvLogStatus()
{
EXEC SQL WHENEVER SQLERROR GOTO sqlerror;
EXEC SQL UPDATE T_JSRZ SET sjzt='2' WHERE jsxh=:fsxh;
EXEC SQL COMMIT WORK ;
return(1);
sqlerror:
EXEC SQL WHENEVER SQLERROR CONTINUE;
ProcessError(LOG_ERROR, "DataBase Error:%s!", sqlca.sqlerrm.sqlerrmc );
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Running Function UpdateRcvLogStatus() \
SQL Failed!",END);
EXEC SQL RollBack;
return (-1);
}
int Cancel_UpdateJSRZ()
{
EXEC SQL WHENEVER SQLERROR GOTO sqlerror;
EXEC SQL UPDATE T_JSRZ SET sjzt='5' , jssj = sysdate
WHERE jsxh=:fsxh AND sjbh=:fssjbh;
EXEC SQL COMMIT WORK ;
return(1);
sqlerror:
EXEC SQL WHENEVER SQLERROR CONTINUE;
ProcessError(LOG_ERROR, "DataBase Error:%s!", sqlca.sqlerrm.sqlerrmc );
ProcessError(LOG_ERROR,"Pcs_Rcv_GH.x: Running Function Cancel_UpdateJSRZ() \
SQL Error!",END);
free( tmp );
EXEC SQL RollBack;
return(-1);
}
/*Get the Time_Interval specified in the file and return it */
int GetTimeInterval(char* cType)
{
FILE *hTimeInterval;
char cLine[MAX_LINE_LEN+1], cCaption[100], cValue[21];
int iInterval, i;
char* pLine;
hTimeInterval = fopen( CONFIG_FILE_FOR_TIMEINTERVAL, "r" );
if( hTimeInterval == NULL )
{
ProcessError(LOG_ERROR, "GetTimeInterval: this is %s message:Cannot open file: %s,The file may not exist!",END);
return(DEFAULT_TIMEINTERVAL);
}
while( myapi_ReadALine( cLine, hTimeInterval ) )
{
if( cLine[0] == '#' ) continue;
if( cLine[0] == NULL ) continue;
pLine = cLine;
while( (*pLine == ' ') || (*pLine == '\t') ) pLine++;
i=0;
while( (*pLine != ' ') && (*pLine != '\t') && (*pLine != '\0') )
{
cCaption[i] = *pLine;
i++;
pLine++;
}
cCaption[i] = '\0';
if( strcmp( cCaption, cType ) == 0 ) /*Match*/
{
while( (*pLine == ' ') || (*pLine == '\t') ) pLine++;
if( *pLine == '\0' )
{ fclose( hTimeInterval );
return(DEFAULT_TIMEINTERVAL);
}
i=0;
while( (*pLine != ' ') && (*pLine != '\t') && (*pLine != '\0') )
{
cValue[i] = *pLine;
i++;
pLine++;
}
cValue[i] = '\0';
iInterval = atoi(cValue);
if(iInterval <= 0)
{
fclose( hTimeInterval );
return(DEFAULT_TIMEINTERVAL);
}
else
fclose( hTimeInterval );
return(iInterval);
}
else
continue;
}
fclose( hTimeInterval );
return(DEFAULT_TIMEINTERVAL);
}
/*Read a line to a string from a file, \n is excluded.
return 1 if sucessful, 0 otherwise
Do not close the file.*/
int myapi_ReadALine( char* cLine, FILE* hTable )
{
char cChar;
int i=0;
cLine[0] = '\0';
while( (cChar = fgetc( hTable )) != '\n' )
{
if( cChar == EOF ) return(0);
cLine[i++] = cChar;
if( i >= MAX_LINE_LEN ) i=0;
cLine[i] = '\0';
}
return(1);
}
void ProcessError( char *LOG, char *sErrorMessage1, char *sErrorMessage2 )
{
FILE* hErrorFile;
char cDateTime[100],tempstr[100];
int i,j,len,n;
tempstr[0]='\0';
len=strlen(sErrorMessage1);
for(i=0;i<=len;i++)
{
if(sErrorMessage1[i]=='%')
{
n=i;
if(len!=i+1)
{
for(j=0;j<200&&sErrorMessage1[i+2]!='\0';j++,i++)
tempstr[j]=sErrorMessage1[i+2];
tempstr[j]='\0';
}
break;
}
if(sErrorMessage1[i]=='\0')
{
n=i;
tempstr[0] = '\0';
break;
}
}
sErrorMessage1[n]='\0';
hErrorFile = fopen( ERROR_LOG_FILE, "a" );
if( hErrorFile == NULL )
{
printf( "Critical! Cannot open ERROR_LOG_FILE for append or cannot create!\n");
return;
}
fseek( hErrorFile, 0 ,SEEK_END );
fputs( "\n",hErrorFile);
fputs( LOG ,hErrorFile);
printf("\n%s",LOG);
fputs( sErrorMessage1,hErrorFile );
printf("%s",sErrorMessage1);
fputs( sErrorMessage2,hErrorFile );
printf("%s",sErrorMessage2);
fputs( tempstr,hErrorFile );
printf("%s\n",tempstr);
fputs( "\n",hErrorFile);
fclose( hErrorFile );
sprintf( cDateTime, "date >> %s\n", ERROR_LOG_FILE );
system( cDateTime );
}
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