📄 test.c
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/* Result Sets Interface */
#ifndef SQL_CRSR
# define SQL_CRSR
struct sql_cursor
{
unsigned int curocn;
void *ptr1;
void *ptr2;
unsigned long magic;
};
typedef struct sql_cursor sql_cursor;
typedef struct sql_cursor SQL_CURSOR;
#endif /* SQL_CRSR */
/* Thread Safety */
typedef void * sql_context;
typedef void * SQL_CONTEXT;
/* Object support */
struct sqltvn
{
unsigned char *tvnvsn;
unsigned short tvnvsnl;
unsigned char *tvnnm;
unsigned short tvnnml;
unsigned char *tvnsnm;
unsigned short tvnsnml;
};
typedef struct sqltvn sqltvn;
struct sqladts
{
unsigned int adtvsn;
unsigned short adtmode;
unsigned short adtnum;
sqltvn adttvn[1];
};
typedef struct sqladts sqladts;
static struct sqladts sqladt = {
1,1,0,
};
/* Binding to PL/SQL Records */
struct sqltdss
{
unsigned int tdsvsn;
unsigned short tdsnum;
unsigned char *tdsval[1];
};
typedef struct sqltdss sqltdss;
static struct sqltdss sqltds =
{
1,
0,
};
/* File name & Package Name */
struct sqlcxp
{
unsigned short fillen;
char filnam[9];
};
static const struct sqlcxp sqlfpn =
{
8,
"test.cpp"
};
static unsigned long sqlctx = 20044;
static struct sqlexd {
unsigned int sqlvsn;
unsigned int arrsiz;
unsigned int iters;
unsigned int offset;
unsigned short selerr;
unsigned short sqlety;
unsigned int occurs;
const short *cud;
unsigned char *sqlest;
const char *stmt;
sqladts *sqladtp;
sqltdss *sqltdsp;
void **sqphsv;
unsigned int *sqphsl;
int *sqphss;
void **sqpind;
int *sqpins;
unsigned int *sqparm;
unsigned int **sqparc;
unsigned short *sqpadto;
unsigned short *sqptdso;
void *sqhstv[1];
unsigned int sqhstl[1];
int sqhsts[1];
void *sqindv[1];
int sqinds[1];
unsigned int sqharm[1];
unsigned int *sqharc[1];
unsigned short sqadto[1];
unsigned short sqtdso[1];
} sqlstm = {10,1};
/* SQLLIB Prototypes */
extern void sqlcxt (void **, unsigned long *,
struct sqlexd *, const struct sqlcxp *);
extern void sqlcx2t(void **, unsigned long *,
struct sqlexd *, const struct sqlcxp *);
extern void sqlbuft(void **, char *);
extern void sqlgs2t(void **, char *);
extern void sqlorat(void **, unsigned long *, void *);
/* Forms Interface */
static const int IAPSUCC = 0;
static const int IAPFAIL = 1403;
static const int IAPFTL = 535;
extern void sqliem(char *, int *);
typedef struct { unsigned short len; unsigned char arr[1]; } VARCHAR;
typedef struct { unsigned short len; unsigned char arr[1]; } varchar;
/* cud (compilation unit data) array */
static const short sqlcud0[] =
{10,4130,0,0,0,
5,0,0,1,49,0,515,96,0,0,0,0,0,1,0,
};
#include <stdio.h>
#include <atmi.h>
#include <userlog.h>
#include <fml32.h>
#include "tbl_fml.h"
/* EXEC SQL INCLUDE sqlca;
*/
/*
* $Header: sqlca.h,v 1.3 1994/12/12 19:27:27 jbasu Exp $ sqlca.h
*/
/* Copyright (c) 1985,1986, 1998 by Oracle Corporation. */
/*
NAME
SQLCA : SQL Communications Area.
FUNCTION
Contains no code. Oracle fills in the SQLCA with status info
during the execution of a SQL stmt.
NOTES
**************************************************************
*** ***
*** This file is SOSD. Porters must change the data types ***
*** appropriately on their platform. See notes/pcport.doc ***
*** for more information. ***
*** ***
**************************************************************
If the symbol SQLCA_STORAGE_CLASS is defined, then the SQLCA
will be defined to have this storage class. For example:
#define SQLCA_STORAGE_CLASS extern
will define the SQLCA as an extern.
If the symbol SQLCA_INIT is defined, then the SQLCA will be
statically initialized. Although this is not necessary in order
to use the SQLCA, it is a good pgming practice not to have
unitialized variables. However, some C compilers/OS's don't
allow automatic variables to be init'd in this manner. Therefore,
if you are INCLUDE'ing the SQLCA in a place where it would be
an automatic AND your C compiler/OS doesn't allow this style
of initialization, then SQLCA_INIT should be left undefined --
all others can define SQLCA_INIT if they wish.
If the symbol SQLCA_NONE is defined, then the SQLCA variable will
not be defined at all. The symbol SQLCA_NONE should not be defined
in source modules that have embedded SQL. However, source modules
that have no embedded SQL, but need to manipulate a sqlca struct
passed in as a parameter, can set the SQLCA_NONE symbol to avoid
creation of an extraneous sqlca variable.
MODIFIED
lvbcheng 07/31/98 - long to int
jbasu 12/12/94 - Bug 217878: note this is an SOSD file
losborne 08/11/92 - No sqlca var if SQLCA_NONE macro set
Clare 12/06/84 - Ch SQLCA to not be an extern.
Clare 10/21/85 - Add initialization.
Bradbury 01/05/86 - Only initialize when SQLCA_INIT set
Clare 06/12/86 - Add SQLCA_STORAGE_CLASS option.
*/
#ifndef SQLCA
#define SQLCA 1
struct sqlca
{
/* ub1 */ char sqlcaid[8];
/* b4 */ int sqlabc;
/* b4 */ int sqlcode;
struct
{
/* ub2 */ unsigned short sqlerrml;
/* ub1 */ char sqlerrmc[70];
} sqlerrm;
/* ub1 */ char sqlerrp[8];
/* b4 */ int sqlerrd[6];
/* ub1 */ char sqlwarn[8];
/* ub1 */ char sqlext[8];
};
#ifndef SQLCA_NONE
#ifdef SQLCA_STORAGE_CLASS
SQLCA_STORAGE_CLASS struct sqlca sqlca
#else
struct sqlca sqlca
#endif
#ifdef SQLCA_INIT
= {
{'S', 'Q', 'L', 'C', 'A', ' ', ' ', ' '},
sizeof(struct sqlca),
0,
{ 0, {0}},
{'N', 'O', 'T', ' ', 'S', 'E', 'T', ' '},
{0, 0, 0, 0, 0, 0},
{0, 0, 0, 0, 0, 0, 0, 0},
{0, 0, 0, 0, 0, 0, 0, 0}
}
#endif
;
#endif
#endif
/* end SQLCA */
/*RELEASE_CURSOR=YES 使PROC 在执行后释放与嵌入SQL有关资源*/
/* EXEC ORACLE OPTION (RELEASE_CURSOR = YES); */
#define SQLNOTFOUND 1403 /*SELECT没取到数据*/
#define SQLNULL -1405 /*当取出的值是null时,sqlca.sqlcode = -1405*/
#define _DEBUG_ 1 /*调试*/
/* EXEC SQL BEGIN DECLARE SECTION; */
/* varchar vc_user[20]; */
struct { unsigned short len; unsigned char arr[20]; } vc_user;
long al_empno=0;
long al_mgr=0;
long al_deptno=0;
char ac_ename[11]="";
char ac_job[10]="";
char ac_hiredate[20]="";
double af_sal=0;
double af_comm=0;
long l_errno=0;
long l_return=0;
char c_errtext[256]="";
/* EXEC SQL VAR ac_ename IS STRING(11); */
/* EXEC SQL VAR ac_job IS STRING(11); */
/* EXEC SQL VAR ac_hiredate IS STRING(11); */
/* EXEC SQL END DECLARE SECTION; */
/*出错返回*/
int tux_return(FBFR32 *sendbuf, char *szErr,long sqlcode,char *szSqlerr )
{
FLDLEN32 len=0;
len=sizeof(szErr);
(void)Fchg32(sendbuf, TUXERRTEXT, 0,szErr, len);
len = sizeof(sqlcode);
Fchg32( sendbuf, SQLERRCODE, 0, (char *)&sqlcode, len);
len=sizeof(szSqlerr);
(void)Fchg32(sendbuf, SQLERRTEXT, 0,szSqlerr, len);
userlog("err=%s,sqlcode=%ld, sqlerr=%s\n",szErr,sqlcode,szSqlerr);
tpreturn(TPFAIL, 0, (char *)sendbuf, 0L, 0);
return 0;
}
#if defined(__STDC__) || defined(__cplusplus)
tpsvrinit(int argc, char *argv[])
#else
tpsvrinit(argc, argv)
int argc;
char **argv;
#endif
{
/* Some compilers warn if argc and argv aren't used. */
argc = argc;
argv = argv;
userlog("*******************tpsvcinit()\n");
if(tpopen()==-1)
{
userlog("tpopen() failure:%s\n",tpstrerror(tperrno));
return -1;
}
return(0);
}
/* This function performs the actual service requested by the client.
Its argument is a structure containing among other things a pointer
to the data buffer, and the length of the data buffer.
*/
void tpdone()
{
if(tpclose()==-1)
userlog("tpdone() failure:%s\n",tpstrerror(tperrno));
}
TEST(TPSVCINFO *rqst)
{
if(tpbegin(60,0)==-1)
{
printf("tpbegin() fail\n");
exit(1);
}
userlog("*****************begin sleep\n");
sleep(150);
userlog("*****************end sleep\n");
/* EXEC SQL insert into emp(empno,ename) values(1000,'demo'); */
{
struct sqlexd sqlstm;
sqlstm.sqlvsn = 10;
sqlstm.arrsiz = 0;
sqlstm.sqladtp = &sqladt;
sqlstm.sqltdsp = &sqltds;
sqlstm.stmt = "insert into emp(empno,ename) values (1000,'demo')";
sqlstm.iters = (unsigned int )1;
sqlstm.offset = (unsigned int )5;
sqlstm.cud = sqlcud0;
sqlstm.sqlest = (unsigned char *)&sqlca;
sqlstm.sqlety = (unsigned short)256;
sqlstm.occurs = (unsigned int )0;
sqlcxt((void **)0, &sqlctx, &sqlstm, &sqlfpn);
}
if (sqlca.sqlcode != 0)
{
userlog("update emp fail,sqlcode=%ld,sqlerr=%s\n",sqlca.sqlcode,(char *)sqlca.sqlerrm.sqlerrmc);
tpreturn( TPFAIL, 0, NULL, 0, 0 );
}
if(tpcommit(0) == -1)
{
userlog("tpcommit() fail=%s\n",tpstrerror(tperrno));
tpreturn( TPFAIL, 0, NULL, 0, 0 );
}
tpreturn( TPSUCCESS, 0, NULL, 0, 0 );
}
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