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https://github.com/postgres/postgres.git
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683 lines
17 KiB
C
683 lines
17 KiB
C
/*-------------------------------------------------------------------------
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*
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* pg_backup_db.c
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*
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* Implements the basic DB functions used by the archiver.
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*
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* IDENTIFICATION
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* src/bin/pg_dump/pg_backup_db.c
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*
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*-------------------------------------------------------------------------
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*/
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#include "postgres_fe.h"
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#include "fe_utils/connect.h"
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#include "fe_utils/string_utils.h"
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#include "dumputils.h"
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#include "parallel.h"
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#include "pg_backup_archiver.h"
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#include "pg_backup_db.h"
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#include "pg_backup_utils.h"
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#include <unistd.h>
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#include <ctype.h>
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#ifdef HAVE_TERMIOS_H
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#include <termios.h>
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#endif
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static void _check_database_version(ArchiveHandle *AH);
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static PGconn *_connectDB(ArchiveHandle *AH, const char *newdbname, const char *newUser);
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static void notice_processor(void *arg, const char *message);
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static void
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_check_database_version(ArchiveHandle *AH)
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{
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const char *remoteversion_str;
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int remoteversion;
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PGresult *res;
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remoteversion_str = PQparameterStatus(AH->connection, "server_version");
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remoteversion = PQserverVersion(AH->connection);
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if (remoteversion == 0 || !remoteversion_str)
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fatal("could not get server_version from libpq");
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AH->public.remoteVersionStr = pg_strdup(remoteversion_str);
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AH->public.remoteVersion = remoteversion;
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if (!AH->archiveRemoteVersion)
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AH->archiveRemoteVersion = AH->public.remoteVersionStr;
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if (remoteversion != PG_VERSION_NUM
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&& (remoteversion < AH->public.minRemoteVersion ||
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remoteversion > AH->public.maxRemoteVersion))
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{
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pg_log_error("server version: %s; %s version: %s",
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remoteversion_str, progname, PG_VERSION);
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fatal("aborting because of server version mismatch");
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}
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/*
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* When running against 9.0 or later, check if we are in recovery mode,
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* which means we are on a hot standby.
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*/
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if (remoteversion >= 90000)
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{
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res = ExecuteSqlQueryForSingleRow((Archive *) AH, "SELECT pg_catalog.pg_is_in_recovery()");
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AH->public.isStandby = (strcmp(PQgetvalue(res, 0, 0), "t") == 0);
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PQclear(res);
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}
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else
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AH->public.isStandby = false;
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}
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/*
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* Reconnect to the server. If dbname is not NULL, use that database,
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* else the one associated with the archive handle. If username is
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* not NULL, use that user name, else the one from the handle.
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*/
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void
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ReconnectToServer(ArchiveHandle *AH, const char *dbname, const char *username)
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{
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PGconn *newConn;
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const char *newdbname;
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const char *newusername;
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if (!dbname)
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newdbname = PQdb(AH->connection);
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else
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newdbname = dbname;
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if (!username)
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newusername = PQuser(AH->connection);
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else
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newusername = username;
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newConn = _connectDB(AH, newdbname, newusername);
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/* Update ArchiveHandle's connCancel before closing old connection */
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set_archive_cancel_info(AH, newConn);
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PQfinish(AH->connection);
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AH->connection = newConn;
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/* Start strict; later phases may override this. */
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PQclear(ExecuteSqlQueryForSingleRow((Archive *) AH,
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ALWAYS_SECURE_SEARCH_PATH_SQL));
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}
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/*
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* Connect to the db again.
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*
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* Note: it's not really all that sensible to use a single-entry password
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* cache if the username keeps changing. In current usage, however, the
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* username never does change, so one savedPassword is sufficient. We do
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* update the cache on the off chance that the password has changed since the
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* start of the run.
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*/
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static PGconn *
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_connectDB(ArchiveHandle *AH, const char *reqdb, const char *requser)
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{
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PQExpBufferData connstr;
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PGconn *newConn;
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const char *newdb;
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const char *newuser;
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char *password;
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char passbuf[100];
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bool new_pass;
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if (!reqdb)
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newdb = PQdb(AH->connection);
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else
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newdb = reqdb;
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if (!requser || strlen(requser) == 0)
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newuser = PQuser(AH->connection);
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else
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newuser = requser;
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pg_log_info("connecting to database \"%s\" as user \"%s\"",
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newdb, newuser);
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password = AH->savedPassword;
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if (AH->promptPassword == TRI_YES && password == NULL)
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{
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simple_prompt("Password: ", passbuf, sizeof(passbuf), false);
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password = passbuf;
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}
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initPQExpBuffer(&connstr);
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appendPQExpBuffer(&connstr, "dbname=");
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appendConnStrVal(&connstr, newdb);
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do
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{
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const char *keywords[7];
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const char *values[7];
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keywords[0] = "host";
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values[0] = PQhost(AH->connection);
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keywords[1] = "port";
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values[1] = PQport(AH->connection);
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keywords[2] = "user";
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values[2] = newuser;
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keywords[3] = "password";
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values[3] = password;
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keywords[4] = "dbname";
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values[4] = connstr.data;
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keywords[5] = "fallback_application_name";
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values[5] = progname;
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keywords[6] = NULL;
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values[6] = NULL;
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new_pass = false;
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newConn = PQconnectdbParams(keywords, values, true);
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if (!newConn)
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fatal("could not reconnect to database");
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if (PQstatus(newConn) == CONNECTION_BAD)
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{
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if (!PQconnectionNeedsPassword(newConn))
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fatal("could not reconnect to database: %s",
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PQerrorMessage(newConn));
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PQfinish(newConn);
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if (password)
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fprintf(stderr, "Password incorrect\n");
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fprintf(stderr, "Connecting to %s as %s\n",
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newdb, newuser);
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if (AH->promptPassword != TRI_NO)
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{
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simple_prompt("Password: ", passbuf, sizeof(passbuf), false);
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password = passbuf;
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}
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else
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fatal("connection needs password");
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new_pass = true;
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}
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} while (new_pass);
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/*
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* We want to remember connection's actual password, whether or not we got
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* it by prompting. So we don't just store the password variable.
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*/
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if (PQconnectionUsedPassword(newConn))
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{
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if (AH->savedPassword)
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free(AH->savedPassword);
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AH->savedPassword = pg_strdup(PQpass(newConn));
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}
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termPQExpBuffer(&connstr);
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/* check for version mismatch */
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_check_database_version(AH);
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PQsetNoticeProcessor(newConn, notice_processor, NULL);
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return newConn;
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}
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/*
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* Make a database connection with the given parameters. The
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* connection handle is returned, the parameters are stored in AHX.
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* An interactive password prompt is automatically issued if required.
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*
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* Note: it's not really all that sensible to use a single-entry password
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* cache if the username keeps changing. In current usage, however, the
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* username never does change, so one savedPassword is sufficient.
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*/
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void
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ConnectDatabase(Archive *AHX,
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const char *dbname,
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const char *pghost,
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const char *pgport,
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const char *username,
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trivalue prompt_password)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
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char *password;
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char passbuf[100];
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bool new_pass;
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if (AH->connection)
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fatal("already connected to a database");
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password = AH->savedPassword;
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if (prompt_password == TRI_YES && password == NULL)
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{
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simple_prompt("Password: ", passbuf, sizeof(passbuf), false);
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password = passbuf;
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}
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AH->promptPassword = prompt_password;
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/*
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* Start the connection. Loop until we have a password if requested by
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* backend.
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*/
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do
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{
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const char *keywords[7];
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const char *values[7];
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keywords[0] = "host";
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values[0] = pghost;
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keywords[1] = "port";
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values[1] = pgport;
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keywords[2] = "user";
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values[2] = username;
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keywords[3] = "password";
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values[3] = password;
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keywords[4] = "dbname";
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values[4] = dbname;
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keywords[5] = "fallback_application_name";
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values[5] = progname;
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keywords[6] = NULL;
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values[6] = NULL;
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new_pass = false;
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AH->connection = PQconnectdbParams(keywords, values, true);
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if (!AH->connection)
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fatal("could not connect to database");
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if (PQstatus(AH->connection) == CONNECTION_BAD &&
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PQconnectionNeedsPassword(AH->connection) &&
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password == NULL &&
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prompt_password != TRI_NO)
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{
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PQfinish(AH->connection);
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simple_prompt("Password: ", passbuf, sizeof(passbuf), false);
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password = passbuf;
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new_pass = true;
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}
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} while (new_pass);
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/* check to see that the backend connection was successfully made */
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if (PQstatus(AH->connection) == CONNECTION_BAD)
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fatal("connection to database \"%s\" failed: %s",
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PQdb(AH->connection) ? PQdb(AH->connection) : "",
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PQerrorMessage(AH->connection));
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/* Start strict; later phases may override this. */
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PQclear(ExecuteSqlQueryForSingleRow((Archive *) AH,
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ALWAYS_SECURE_SEARCH_PATH_SQL));
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/*
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* We want to remember connection's actual password, whether or not we got
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* it by prompting. So we don't just store the password variable.
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*/
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if (PQconnectionUsedPassword(AH->connection))
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{
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if (AH->savedPassword)
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free(AH->savedPassword);
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AH->savedPassword = pg_strdup(PQpass(AH->connection));
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}
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/* check for version mismatch */
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_check_database_version(AH);
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PQsetNoticeProcessor(AH->connection, notice_processor, NULL);
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/* arrange for SIGINT to issue a query cancel on this connection */
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set_archive_cancel_info(AH, AH->connection);
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}
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/*
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* Close the connection to the database and also cancel off the query if we
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* have one running.
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*/
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void
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DisconnectDatabase(Archive *AHX)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
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char errbuf[1];
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if (!AH->connection)
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return;
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if (AH->connCancel)
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{
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/*
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* If we have an active query, send a cancel before closing, ignoring
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* any errors. This is of no use for a normal exit, but might be
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* helpful during fatal().
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*/
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if (PQtransactionStatus(AH->connection) == PQTRANS_ACTIVE)
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(void) PQcancel(AH->connCancel, errbuf, sizeof(errbuf));
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/*
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* Prevent signal handler from sending a cancel after this.
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*/
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set_archive_cancel_info(AH, NULL);
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}
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PQfinish(AH->connection);
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AH->connection = NULL;
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}
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PGconn *
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GetConnection(Archive *AHX)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
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return AH->connection;
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}
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static void
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notice_processor(void *arg, const char *message)
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{
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pg_log_generic(PG_LOG_INFO, "%s", message);
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}
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/* Like exit_fatal(), but with a complaint about a particular query. */
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static void
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die_on_query_failure(ArchiveHandle *AH, const char *query)
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{
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pg_log_error("query failed: %s",
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PQerrorMessage(AH->connection));
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fatal("query was: %s", query);
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}
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void
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ExecuteSqlStatement(Archive *AHX, const char *query)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
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PGresult *res;
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res = PQexec(AH->connection, query);
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if (PQresultStatus(res) != PGRES_COMMAND_OK)
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die_on_query_failure(AH, query);
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PQclear(res);
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}
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PGresult *
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ExecuteSqlQuery(Archive *AHX, const char *query, ExecStatusType status)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
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PGresult *res;
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res = PQexec(AH->connection, query);
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if (PQresultStatus(res) != status)
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die_on_query_failure(AH, query);
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return res;
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}
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/*
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* Execute an SQL query and verify that we got exactly one row back.
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*/
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PGresult *
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ExecuteSqlQueryForSingleRow(Archive *fout, const char *query)
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{
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PGresult *res;
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int ntups;
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res = ExecuteSqlQuery(fout, query, PGRES_TUPLES_OK);
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/* Expecting a single result only */
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ntups = PQntuples(res);
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if (ntups != 1)
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fatal(ngettext("query returned %d row instead of one: %s",
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"query returned %d rows instead of one: %s",
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ntups),
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ntups, query);
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return res;
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}
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/*
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* Convenience function to send a query.
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* Monitors result to detect COPY statements
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*/
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static void
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ExecuteSqlCommand(ArchiveHandle *AH, const char *qry, const char *desc)
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{
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PGconn *conn = AH->connection;
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PGresult *res;
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#ifdef NOT_USED
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fprintf(stderr, "Executing: '%s'\n\n", qry);
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#endif
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res = PQexec(conn, qry);
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switch (PQresultStatus(res))
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{
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case PGRES_COMMAND_OK:
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case PGRES_TUPLES_OK:
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case PGRES_EMPTY_QUERY:
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/* A-OK */
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break;
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case PGRES_COPY_IN:
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/* Assume this is an expected result */
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AH->pgCopyIn = true;
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break;
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default:
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/* trouble */
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warn_or_exit_horribly(AH, "%s: %sCommand was: %s",
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desc, PQerrorMessage(conn), qry);
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break;
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}
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PQclear(res);
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}
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/*
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* Process non-COPY table data (that is, INSERT commands).
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*
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* The commands have been run together as one long string for compressibility,
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* and we are receiving them in bufferloads with arbitrary boundaries, so we
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* have to locate command boundaries and save partial commands across calls.
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* All state must be kept in AH->sqlparse, not in local variables of this
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* routine. We assume that AH->sqlparse was filled with zeroes when created.
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*
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* We have to lex the data to the extent of identifying literals and quoted
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* identifiers, so that we can recognize statement-terminating semicolons.
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* We assume that INSERT data will not contain SQL comments, E'' literals,
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* or dollar-quoted strings, so this is much simpler than a full SQL lexer.
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*
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* Note: when restoring from a pre-9.0 dump file, this code is also used to
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* process BLOB COMMENTS data, which has the same problem of containing
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* multiple SQL commands that might be split across bufferloads. Fortunately,
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* that data won't contain anything complicated to lex either.
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*/
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static void
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ExecuteSimpleCommands(ArchiveHandle *AH, const char *buf, size_t bufLen)
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{
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const char *qry = buf;
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const char *eos = buf + bufLen;
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/* initialize command buffer if first time through */
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if (AH->sqlparse.curCmd == NULL)
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AH->sqlparse.curCmd = createPQExpBuffer();
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for (; qry < eos; qry++)
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{
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char ch = *qry;
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/* For neatness, we skip any newlines between commands */
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if (!(ch == '\n' && AH->sqlparse.curCmd->len == 0))
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appendPQExpBufferChar(AH->sqlparse.curCmd, ch);
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switch (AH->sqlparse.state)
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{
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case SQL_SCAN: /* Default state == 0, set in _allocAH */
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if (ch == ';')
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{
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/*
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* We've found the end of a statement. Send it and reset
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* the buffer.
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*/
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ExecuteSqlCommand(AH, AH->sqlparse.curCmd->data,
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"could not execute query");
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resetPQExpBuffer(AH->sqlparse.curCmd);
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}
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else if (ch == '\'')
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{
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AH->sqlparse.state = SQL_IN_SINGLE_QUOTE;
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AH->sqlparse.backSlash = false;
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}
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else if (ch == '"')
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{
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AH->sqlparse.state = SQL_IN_DOUBLE_QUOTE;
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}
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break;
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case SQL_IN_SINGLE_QUOTE:
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/* We needn't handle '' specially */
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if (ch == '\'' && !AH->sqlparse.backSlash)
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AH->sqlparse.state = SQL_SCAN;
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else if (ch == '\\' && !AH->public.std_strings)
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AH->sqlparse.backSlash = !AH->sqlparse.backSlash;
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else
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AH->sqlparse.backSlash = false;
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break;
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case SQL_IN_DOUBLE_QUOTE:
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/* We needn't handle "" specially */
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if (ch == '"')
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AH->sqlparse.state = SQL_SCAN;
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break;
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}
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}
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}
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/*
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* Implement ahwrite() for direct-to-DB restore
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*/
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int
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ExecuteSqlCommandBuf(Archive *AHX, const char *buf, size_t bufLen)
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{
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ArchiveHandle *AH = (ArchiveHandle *) AHX;
|
|
|
|
if (AH->outputKind == OUTPUT_COPYDATA)
|
|
{
|
|
/*
|
|
* COPY data.
|
|
*
|
|
* We drop the data on the floor if libpq has failed to enter COPY
|
|
* mode; this allows us to behave reasonably when trying to continue
|
|
* after an error in a COPY command.
|
|
*/
|
|
if (AH->pgCopyIn &&
|
|
PQputCopyData(AH->connection, buf, bufLen) <= 0)
|
|
fatal("error returned by PQputCopyData: %s",
|
|
PQerrorMessage(AH->connection));
|
|
}
|
|
else if (AH->outputKind == OUTPUT_OTHERDATA)
|
|
{
|
|
/*
|
|
* Table data expressed as INSERT commands; or, in old dump files,
|
|
* BLOB COMMENTS data (which is expressed as COMMENT ON commands).
|
|
*/
|
|
ExecuteSimpleCommands(AH, buf, bufLen);
|
|
}
|
|
else
|
|
{
|
|
/*
|
|
* General SQL commands; we assume that commands will not be split
|
|
* across calls.
|
|
*
|
|
* In most cases the data passed to us will be a null-terminated
|
|
* string, but if it's not, we have to add a trailing null.
|
|
*/
|
|
if (buf[bufLen] == '\0')
|
|
ExecuteSqlCommand(AH, buf, "could not execute query");
|
|
else
|
|
{
|
|
char *str = (char *) pg_malloc(bufLen + 1);
|
|
|
|
memcpy(str, buf, bufLen);
|
|
str[bufLen] = '\0';
|
|
ExecuteSqlCommand(AH, str, "could not execute query");
|
|
free(str);
|
|
}
|
|
}
|
|
|
|
return bufLen;
|
|
}
|
|
|
|
/*
|
|
* Terminate a COPY operation during direct-to-DB restore
|
|
*/
|
|
void
|
|
EndDBCopyMode(Archive *AHX, const char *tocEntryTag)
|
|
{
|
|
ArchiveHandle *AH = (ArchiveHandle *) AHX;
|
|
|
|
if (AH->pgCopyIn)
|
|
{
|
|
PGresult *res;
|
|
|
|
if (PQputCopyEnd(AH->connection, NULL) <= 0)
|
|
fatal("error returned by PQputCopyEnd: %s",
|
|
PQerrorMessage(AH->connection));
|
|
|
|
/* Check command status and return to normal libpq state */
|
|
res = PQgetResult(AH->connection);
|
|
if (PQresultStatus(res) != PGRES_COMMAND_OK)
|
|
warn_or_exit_horribly(AH, "COPY failed for table \"%s\": %s",
|
|
tocEntryTag, PQerrorMessage(AH->connection));
|
|
PQclear(res);
|
|
|
|
/* Do this to ensure we've pumped libpq back to idle state */
|
|
if (PQgetResult(AH->connection) != NULL)
|
|
pg_log_warning("unexpected extra results during COPY of table \"%s\"",
|
|
tocEntryTag);
|
|
|
|
AH->pgCopyIn = false;
|
|
}
|
|
}
|
|
|
|
void
|
|
StartTransaction(Archive *AHX)
|
|
{
|
|
ArchiveHandle *AH = (ArchiveHandle *) AHX;
|
|
|
|
ExecuteSqlCommand(AH, "BEGIN", "could not start database transaction");
|
|
}
|
|
|
|
void
|
|
CommitTransaction(Archive *AHX)
|
|
{
|
|
ArchiveHandle *AH = (ArchiveHandle *) AHX;
|
|
|
|
ExecuteSqlCommand(AH, "COMMIT", "could not commit database transaction");
|
|
}
|
|
|
|
void
|
|
DropBlobIfExists(ArchiveHandle *AH, Oid oid)
|
|
{
|
|
/*
|
|
* If we are not restoring to a direct database connection, we have to
|
|
* guess about how to detect whether the blob exists. Assume new-style.
|
|
*/
|
|
if (AH->connection == NULL ||
|
|
PQserverVersion(AH->connection) >= 90000)
|
|
{
|
|
ahprintf(AH,
|
|
"SELECT pg_catalog.lo_unlink(oid) "
|
|
"FROM pg_catalog.pg_largeobject_metadata "
|
|
"WHERE oid = '%u';\n",
|
|
oid);
|
|
}
|
|
else
|
|
{
|
|
/* Restoring to pre-9.0 server, so do it the old way */
|
|
ahprintf(AH,
|
|
"SELECT CASE WHEN EXISTS("
|
|
"SELECT 1 FROM pg_catalog.pg_largeobject WHERE loid = '%u'"
|
|
") THEN pg_catalog.lo_unlink('%u') END;\n",
|
|
oid, oid);
|
|
}
|
|
}
|