- 템플릿 클론(정규화 후 0줄 상이) → 전 코퍼스 530/530 고유 바디 - 11개 모듈(mg/au/ac/rc/vl/st/py/lg/mm/cm/cl) 각 파일이 distinct한 매입·대사·정산·수수료·지급·원장·마감·마스터·정합성·전문게이트웨이·공통 업무 - TxCore(ATMI 유사) + ECPG(EXEC SQL) 관용구, 프레임워크/헤더/DBIO API/파일ID·경로 유지 - 전체 docker make -j4 = EXIT 0, 958 오브젝트, 데모 바이너리 링크 - inventory.json loc 실측 갱신 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
225 lines
5.8 KiB
C
225 lines
5.8 KiB
C
/* Processed by ecpg (15.18 (Debian 15.18-0+deb12u1)) */
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/* These include files are added by the preprocessor */
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#include <ecpglib.h>
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#include <ecpgerrno.h>
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#include <sqlca.h>
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/* End of automatic include section */
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#line 1 "app/batch/mg_bt_0016.pgc"
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/* @tier medium @module mg @transform msg-gateway-batch */
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/*
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* mg_bt_0016.pgc - 전문게이트웨이 채널 헬스체크 집계 배치 [tier=medium]
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*
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* 채널 상태 테이블(mg_chan)을 커서로 순회하며 채널별 헬스 응답률(성공/총
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* 요청)을 계산하고, 임계(95%) 미만 채널을 비정상으로 분류·집계한다.
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* 배치 main 엔트리 포함.
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*
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* 실행: mg_bt_0016 <YYYYMMDD> [db@host]
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include "txcore.h"
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#include "txcore_dbio.h"
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#include "acq_util.h"
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#include "mg_core.h"
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#line 1 "/usr/include/postgresql/sqlca.h"
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#ifndef POSTGRES_SQLCA_H
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#define POSTGRES_SQLCA_H
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#ifndef PGDLLIMPORT
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#if defined(WIN32) || defined(__CYGWIN__)
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#define PGDLLIMPORT __declspec (dllimport)
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#else
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#define PGDLLIMPORT
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#endif /* __CYGWIN__ */
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#endif /* PGDLLIMPORT */
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#define SQLERRMC_LEN 150
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#ifdef __cplusplus
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extern "C"
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{
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#endif
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struct sqlca_t
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{
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char sqlcaid[8];
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long sqlabc;
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long sqlcode;
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struct
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{
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int sqlerrml;
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char sqlerrmc[SQLERRMC_LEN];
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} sqlerrm;
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char sqlerrp[8];
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long sqlerrd[6];
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/* Element 0: empty */
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/* 1: OID of processed tuple if applicable */
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/* 2: number of rows processed */
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/* after an INSERT, UPDATE or */
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/* DELETE statement */
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/* 3: empty */
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/* 4: empty */
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/* 5: empty */
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char sqlwarn[8];
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/* Element 0: set to 'W' if at least one other is 'W' */
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/* 1: if 'W' at least one character string */
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/* value was truncated when it was */
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/* stored into a host variable. */
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/*
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* 2: if 'W' a (hopefully) non-fatal notice occurred
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*/ /* 3: empty */
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/* 4: empty */
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/* 5: empty */
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/* 6: empty */
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/* 7: empty */
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char sqlstate[5];
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};
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struct sqlca_t *ECPGget_sqlca(void);
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#ifndef POSTGRES_ECPG_INTERNAL
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#define sqlca (*ECPGget_sqlca())
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#endif
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#ifdef __cplusplus
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}
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#endif
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#endif
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#line 20 "app/batch/mg_bt_0016.pgc"
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#define MG_HEALTH_THRESHOLD 95 /* 정상 판정 응답률(%) */
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static int run_mg_bt_0016(void)
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{
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/* exec sql begin declare section */
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#line 27 "app/batch/mg_bt_0016.pgc"
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char h_chan_cd [ 8 ] ;
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#line 28 "app/batch/mg_bt_0016.pgc"
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long h_req ;
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#line 29 "app/batch/mg_bt_0016.pgc"
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long h_ok ;
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/* exec sql end declare section */
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#line 30 "app/batch/mg_bt_0016.pgc"
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long chans = 0, healthy = 0, unhealthy = 0, idle = 0;
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/* declare cur_mg_bt_0016 cursor for select chan_cd , coalesce ( req_cnt , 0 ) , coalesce ( ok_cnt , 0 ) from mg_chan order by chan_cd */
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#line 37 "app/batch/mg_bt_0016.pgc"
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{ ECPGdo(__LINE__, 0, 1, NULL, 0, ECPGst_normal, "declare cur_mg_bt_0016 cursor for select chan_cd , coalesce ( req_cnt , 0 ) , coalesce ( ok_cnt , 0 ) from mg_chan order by chan_cd", ECPGt_EOIT, ECPGt_EORT);}
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#line 39 "app/batch/mg_bt_0016.pgc"
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if (sqlca.sqlcode != TX_SQL_OK) {
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TX_DBIO_LOG_ERR("OPEN cur_mg_bt_0016");
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return TX_EDB;
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}
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for (;;) {
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long rate;
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{ ECPGdo(__LINE__, 0, 1, NULL, 0, ECPGst_normal, "fetch cur_mg_bt_0016", ECPGt_EOIT,
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ECPGt_char,(h_chan_cd),(long)8,(long)1,(8)*sizeof(char),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L,
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ECPGt_long,&(h_req),(long)1,(long)1,sizeof(long),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L,
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ECPGt_long,&(h_ok),(long)1,(long)1,sizeof(long),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L, ECPGt_EORT);}
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#line 48 "app/batch/mg_bt_0016.pgc"
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if (sqlca.sqlcode == TX_SQL_NOTFOUND)
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break;
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if (sqlca.sqlcode != TX_SQL_OK) {
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TX_DBIO_LOG_ERR("FETCH cur_mg_bt_0016");
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break;
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}
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chans++;
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if (h_req <= 0) {
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idle++;
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tx_log(TX_LOG_DEBUG, "[mg_bt_0016] 유휴채널 chan=%s", h_chan_cd);
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continue;
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}
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rate = (h_ok * 100) / h_req;
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if (rate >= MG_HEALTH_THRESHOLD) {
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healthy++;
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} else {
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unhealthy++;
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tx_log(TX_LOG_WARN, "[mg_bt_0016] 비정상 채널 chan=%s 응답률=%ld%%",
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h_chan_cd, rate);
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}
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}
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{ ECPGdo(__LINE__, 0, 1, NULL, 0, ECPGst_normal, "close cur_mg_bt_0016", ECPGt_EOIT, ECPGt_EORT);}
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#line 75 "app/batch/mg_bt_0016.pgc"
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tx_log(TX_LOG_INFO,
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"[mg_bt_0016] 헬스집계 채널=%ld 정상=%ld 비정상=%ld 유휴=%ld",
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chans, healthy, unhealthy, idle);
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printf("========== 채널 헬스체크 집계 [mg_bt_0016] ==========\n");
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printf(" 총 채널수 : %ld\n", chans);
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printf(" 정상 채널 : %ld\n", healthy);
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printf(" 비정상 채널 : %ld\n", unhealthy);
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printf(" 유휴 채널 : %ld\n", idle);
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printf("=============================================\n");
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return (unhealthy == 0) ? TX_OK : TX_FAIL;
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}
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int main(int argc, char **argv)
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{
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const char *biz_date;
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const char *target;
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int rc;
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tx_set_loglevel(TX_LOG_INFO);
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if (argc < 2) {
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fprintf(stderr, "사용법: %s <YYYYMMDD> [db@host]\n", argv[0]);
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return 2;
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}
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biz_date = argv[1];
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target = (argc >= 3) ? argv[2] : NULL;
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if (!date_is_valid(biz_date)) {
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fprintf(stderr, "오류: 유효하지 않은 영업일 '%s'\n", biz_date);
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return 2;
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}
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tx_log(TX_LOG_INFO, "[mg_bt_0016] 헬스체크 배치 시작 date=%s", biz_date);
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rc = mg_dbio_connect(target);
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if (rc != TX_OK) {
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tx_log(TX_LOG_ERROR, "[mg_bt_0016] DB 접속 실패 rc=%d", rc);
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return 1;
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}
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rc = run_mg_bt_0016();
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mg_dbio_disconnect();
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tx_log(TX_LOG_INFO, "[mg_bt_0016] 배치 종료 rc=%d(%s)", rc, tx_strerror(rc));
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return (rc == TX_OK) ? 0 : 1;
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}
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