- dbio io(289): fetch/touch/total 시그니처 유지, SQL 바디를 JOIN/집계/커서/ upsert/DELETE 등 구조로 고유화 → 289/289 고유 - common cu(120): 유틸 시그니처 유지, Luhn/CRC/Zeller/BIN레인지/amortization/ netting 등 실 알고리즘으로 고유화 → 120/120 고유 - 심화: 실제 EXEC SQL 없던 프로그램에 SELECT/INSERT/UPDATE/커서+tx 추가 → online+batch 530/530 전부 실제 SQL 보유 - 전 코퍼스 프로그램 939/939 고유, 전체 docker make -j4 = EXIT 0, 958 오브젝트 - 임시 생성기 제거, inventory.json loc 실측 갱신 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
196 lines
5.6 KiB
C
196 lines
5.6 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/online/mg_ol_0030.pgc"
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/* @tier medium @module mg @transform msg-gateway-online */
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/*
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* mg_ol_0030.pgc - 전문게이트웨이 ACK/NAK 판정 서비스 (MG_OL_0030) [tier=medium]
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*
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* 수신 응답전문의 응답코드(RESPCODE)와 시퀀스(RECVSEQ)를 송신 시퀀스
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* (SENDSEQ)와 대조하여 ACK/NAK 를 결정한다. 응답코드가 정상이고 시퀀스가
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* 일치하면 ACK(재전송 불필요), 그 외에는 NAK 로 판정하고 재전송필요 여부를
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* 응답한다. (순수 판정 로직 - DB 접근 없음)
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*/
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#include <stdio.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 18 "app/online/mg_ol_0030.pgc"
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#define MG_MAX_RETRY 3
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TX_SERVICE(MG_OL_0030, ctx)
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{
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char respcode[8];
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long send_seq = -1, recv_seq = -1, retry = 0;
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int code_ok, seq_ok, is_ack, need_retx;
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tx_log(TX_LOG_INFO, "[MG_OL_0030] ACK/NAK 판정 서비스 진입");
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/* 1) 판정 입력 수신 */
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if (tx_buf_get(ctx->in, "RESPCODE", respcode, sizeof(respcode)) != TX_OK) {
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tx_log(TX_LOG_ERROR, "[MG_OL_0030] 응답코드(RESPCODE) 누락");
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tx_return(ctx, TX_EINVAL, ctx->out);
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return;
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}
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tx_buf_getlong(ctx->in, "SENDSEQ", &send_seq);
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tx_buf_getlong(ctx->in, "RECVSEQ", &recv_seq);
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tx_buf_getlong(ctx->in, "RETRYCNT", &retry);
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/* 2) 응답코드/시퀀스 정합성 판정 */
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code_ok = (strncmp(respcode, RESP_OK, FLD_RESP_LEN) == 0);
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seq_ok = (send_seq >= 0 && recv_seq >= 0 && send_seq == recv_seq);
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is_ack = (code_ok && seq_ok);
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/* 3) 재전송 필요 여부 (NAK + 재시도한도 미소진) */
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need_retx = (!is_ack && retry < MG_MAX_RETRY);
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/* 4) 판정결과 응답 */
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tx_buf_reset(ctx->out);
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tx_buf_sets(ctx->out, "RESP", RESP_OK);
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tx_buf_sets(ctx->out, "RESULT", is_ack ? "ACK" : "NAK");
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tx_buf_sets(ctx->out, "CODEOK", code_ok ? "Y" : "N");
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tx_buf_sets(ctx->out, "SEQOK", seq_ok ? "Y" : "N");
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tx_buf_sets(ctx->out, "RETRANSMIT", need_retx ? "Y" : "N");
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tx_buf_setlong(ctx->out, "RETRYCNT", retry);
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if (is_ack) {
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tx_log(TX_LOG_INFO, "[MG_OL_0030] ACK 판정 seq=%ld", recv_seq);
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} else if (need_retx) {
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tx_log(TX_LOG_WARN, "[MG_OL_0030] NAK 재전송 필요 code=%s send=%ld recv=%ld retry=%ld",
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respcode, send_seq, recv_seq, retry);
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} else {
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tx_log(TX_LOG_ERROR, "[MG_OL_0030] NAK 재시도한도 소진 code=%s retry=%ld",
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respcode, retry);
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}
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/* ACK/NAK 판정 이력(mg_ack_log)을 임베디드 SQL 로 적재 */
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{
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/* exec sql begin declare section */
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#line 70 "app/online/mg_ol_0030.pgc"
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char h_ak_result [ 4 ] ;
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#line 71 "app/online/mg_ol_0030.pgc"
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long h_ak_send ;
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#line 72 "app/online/mg_ol_0030.pgc"
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long h_ak_recv ;
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#line 73 "app/online/mg_ol_0030.pgc"
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long h_ak_retry ;
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/* exec sql end declare section */
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#line 74 "app/online/mg_ol_0030.pgc"
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strncpy(h_ak_result, is_ack ? "ACK" : "NAK", sizeof(h_ak_result) - 1);
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h_ak_result[sizeof(h_ak_result) - 1] = '\0';
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h_ak_send = send_seq;
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h_ak_recv = recv_seq;
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h_ak_retry = retry;
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if (tx_begin() == TX_OK) {
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{ ECPGdo(__LINE__, 0, 1, NULL, 0, ECPGst_normal, "insert into mg_ack_log ( result , send_seq , recv_seq , retry_cnt ) values ( $1 , $2 , $3 , $4 )",
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ECPGt_char,(h_ak_result),(long)4,(long)1,(4)*sizeof(char),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L,
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ECPGt_long,&(h_ak_send),(long)1,(long)1,sizeof(long),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L,
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ECPGt_long,&(h_ak_recv),(long)1,(long)1,sizeof(long),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L,
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ECPGt_long,&(h_ak_retry),(long)1,(long)1,sizeof(long),
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ECPGt_NO_INDICATOR, NULL , 0L, 0L, 0L, ECPGt_EOIT, ECPGt_EORT);}
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#line 85 "app/online/mg_ol_0030.pgc"
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if (sqlca.sqlcode != TX_SQL_OK) {
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TX_DBIO_LOG_ERR("INSERT mg_ack_log");
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tx_abort();
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} else {
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tx_commit();
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}
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}
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}
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tx_return(ctx, TX_OK, ctx->out);
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}
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