mirror of
https://github.com/MariaDB/server.git
synced 2025-01-16 12:02:42 +01:00
474fe6d9d9
and small collateral changes mysql-test/lib/My/Test.pm: somehow with "print" we get truncated writes sometimes mysql-test/suite/perfschema/r/digest_table_full.result: md5 hashes of statement digests differ, because yacc token codes are different in mariadb mysql-test/suite/perfschema/r/dml_handler.result: host table is not ported over yet mysql-test/suite/perfschema/r/information_schema.result: host table is not ported over yet mysql-test/suite/perfschema/r/nesting.result: this differs, because we don't rewrite general log queries, and multi-statement packets are logged as a one entry. this result file is identical to what mysql-5.6.5 produces with the --log-raw option. mysql-test/suite/perfschema/r/relaylog.result: MariaDB modifies the binlog index file directly, while MySQL 5.6 has a feature "crash-safe binlog index" and modifies a special "crash-safe" shadow copy of the index file and then moves it over. That's why this test shows "NONE" index file writes in MySQL and "MANY" in MariaDB. mysql-test/suite/perfschema/r/server_init.result: MariaDB initializes the "manager" resources from the "manager" thread, and starts this thread only when --flush-time is not 0. MySQL 5.6 initializes "manager" resources unconditionally on server startup. mysql-test/suite/perfschema/r/stage_mdl_global.result: this differs, because MariaDB disables query cache when query_cache_size=0. MySQL does not do that, and this causes useless mutex locks and waits. mysql-test/suite/perfschema/r/statement_digest.result: md5 hashes of statement digests differ, because yacc token codes are different in mariadb mysql-test/suite/perfschema/r/statement_digest_consumers.result: md5 hashes of statement digests differ, because yacc token codes are different in mariadb mysql-test/suite/perfschema/r/statement_digest_long_query.result: md5 hashes of statement digests differ, because yacc token codes are different in mariadb mysql-test/suite/rpl/r/rpl_mixed_drop_create_temp_table.result: will be updated to match 5.6 when alfranio.correia@oracle.com-20110512172919-c1b5kmum4h52g0ni and anders.song@greatopensource.com-20110105052107-zoab0bsf5a6xxk2y are merged mysql-test/suite/rpl/r/rpl_non_direct_mixed_mixing_engines.result: will be updated to match 5.6 when anders.song@greatopensource.com-20110105052107-zoab0bsf5a6xxk2y is merged
524 lines
14 KiB
C
524 lines
14 KiB
C
/* Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; version 2 of the License.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software Foundation,
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51 Franklin Street, Suite 500, Boston, MA 02110-1335 USA */
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#ifndef REPLICATION_H
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#define REPLICATION_H
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#include <mysql.h>
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typedef struct st_mysql MYSQL;
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#ifdef __cplusplus
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extern "C" {
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#endif
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/**
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Transaction observer flags.
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*/
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enum Trans_flags {
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/** Transaction is a real transaction */
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TRANS_IS_REAL_TRANS = 1
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};
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/**
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Transaction observer parameter
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*/
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typedef struct Trans_param {
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uint32 server_id;
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uint32 flags;
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/*
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The latest binary log file name and position written by current
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transaction, if binary log is disabled or no log event has been
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written into binary log file by current transaction (events
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written into transaction log cache are not counted), these two
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member will be zero.
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*/
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const char *log_file;
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my_off_t log_pos;
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} Trans_param;
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/**
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Observes and extends transaction execution
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*/
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typedef struct Trans_observer {
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uint32 len;
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/**
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This callback is called after transaction commit
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This callback is called right after commit to storage engines for
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transactional tables.
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For non-transactional tables, this is called at the end of the
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statement, before sending statement status, if the statement
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succeeded.
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@note The return value is currently ignored by the server.
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@param param The parameter for transaction observers
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_commit)(Trans_param *param);
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/**
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This callback is called after transaction rollback
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This callback is called right after rollback to storage engines
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for transactional tables.
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For non-transactional tables, this is called at the end of the
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statement, before sending statement status, if the statement
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failed.
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@note The return value is currently ignored by the server.
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@param param The parameter for transaction observers
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_rollback)(Trans_param *param);
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} Trans_observer;
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/**
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Binlog storage flags
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*/
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enum Binlog_storage_flags {
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/** Binary log was sync:ed */
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BINLOG_STORAGE_IS_SYNCED = 1
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};
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/**
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Binlog storage observer parameters
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*/
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typedef struct Binlog_storage_param {
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uint32 server_id;
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} Binlog_storage_param;
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/**
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Observe binlog logging storage
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*/
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typedef struct Binlog_storage_observer {
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uint32 len;
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/**
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This callback is called after binlog has been flushed
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This callback is called after cached events have been flushed to
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binary log file. Whether the binary log file is synchronized to
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disk is indicated by the bit BINLOG_STORAGE_IS_SYNCED in @a flags.
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@param param Observer common parameter
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@param log_file Binlog file name been updated
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@param log_pos Binlog position after update
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@param flags flags for binlog storage
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_flush)(Binlog_storage_param *param,
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const char *log_file, my_off_t log_pos,
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uint32 flags);
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} Binlog_storage_observer;
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/**
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Replication binlog transmitter (binlog dump) observer parameter.
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*/
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typedef struct Binlog_transmit_param {
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uint32 server_id;
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uint32 flags;
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} Binlog_transmit_param;
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/**
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Observe and extends the binlog dumping thread.
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*/
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typedef struct Binlog_transmit_observer {
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uint32 len;
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/**
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This callback is called when binlog dumping starts
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@param param Observer common parameter
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@param log_file Binlog file name to transmit from
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@param log_pos Binlog position to transmit from
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*transmit_start)(Binlog_transmit_param *param,
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const char *log_file, my_off_t log_pos);
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/**
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This callback is called when binlog dumping stops
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@param param Observer common parameter
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*transmit_stop)(Binlog_transmit_param *param);
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/**
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This callback is called to reserve bytes in packet header for event transmission
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This callback is called when resetting transmit packet header to
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reserve bytes for this observer in packet header.
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The @a header buffer is allocated by the server code, and @a size
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is the size of the header buffer. Each observer can only reserve
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a maximum size of @a size in the header.
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@param param Observer common parameter
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@param header Pointer of the header buffer
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@param size Size of the header buffer
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@param len Header length reserved by this observer
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*reserve_header)(Binlog_transmit_param *param,
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unsigned char *header,
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unsigned long size,
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unsigned long *len);
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/**
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This callback is called before sending an event packet to slave
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@param param Observer common parameter
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@param packet Binlog event packet to send
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@param len Length of the event packet
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@param log_file Binlog file name of the event packet to send
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@param log_pos Binlog position of the event packet to send
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*before_send_event)(Binlog_transmit_param *param,
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unsigned char *packet, unsigned long len,
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const char *log_file, my_off_t log_pos );
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/**
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This callback is called after sending an event packet to slave
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@param param Observer common parameter
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@param event_buf Binlog event packet buffer sent
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@param len length of the event packet buffer
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_send_event)(Binlog_transmit_param *param,
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const char *event_buf, unsigned long len);
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/**
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This callback is called after resetting master status
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This is called when executing the command RESET MASTER, and is
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used to reset status variables added by observers.
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@param param Observer common parameter
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_reset_master)(Binlog_transmit_param *param);
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} Binlog_transmit_observer;
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/**
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Binlog relay IO flags
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*/
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enum Binlog_relay_IO_flags {
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/** Binary relay log was sync:ed */
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BINLOG_RELAY_IS_SYNCED = 1
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};
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/**
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Replication binlog relay IO observer parameter
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*/
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typedef struct Binlog_relay_IO_param {
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uint32 server_id;
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/* Master host, user and port */
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char *host;
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char *user;
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unsigned int port;
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char *master_log_name;
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my_off_t master_log_pos;
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MYSQL *mysql; /* the connection to master */
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} Binlog_relay_IO_param;
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/**
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Observes and extends the service of slave IO thread.
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*/
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typedef struct Binlog_relay_IO_observer {
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uint32 len;
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/**
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This callback is called when slave IO thread starts
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@param param Observer common parameter
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*thread_start)(Binlog_relay_IO_param *param);
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/**
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This callback is called when slave IO thread stops
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@param param Observer common parameter
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*thread_stop)(Binlog_relay_IO_param *param);
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/**
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This callback is called before slave requesting binlog transmission from master
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This is called before slave issuing BINLOG_DUMP command to master
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to request binlog.
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@param param Observer common parameter
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@param flags binlog dump flags
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*before_request_transmit)(Binlog_relay_IO_param *param, uint32 flags);
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/**
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This callback is called after read an event packet from master
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@param param Observer common parameter
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@param packet The event packet read from master
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@param len Length of the event packet read from master
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@param event_buf The event packet return after process
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@param event_len The length of event packet return after process
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_read_event)(Binlog_relay_IO_param *param,
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const char *packet, unsigned long len,
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const char **event_buf, unsigned long *event_len);
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/**
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This callback is called after written an event packet to relay log
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@param param Observer common parameter
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@param event_buf Event packet written to relay log
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@param event_len Length of the event packet written to relay log
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@param flags flags for relay log
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_queue_event)(Binlog_relay_IO_param *param,
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const char *event_buf, unsigned long event_len,
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uint32 flags);
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/**
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This callback is called after reset slave relay log IO status
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@param param Observer common parameter
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@retval 0 Sucess
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@retval 1 Failure
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*/
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int (*after_reset_slave)(Binlog_relay_IO_param *param);
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} Binlog_relay_IO_observer;
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/**
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Register a transaction observer
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@param observer The transaction observer to register
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer already exists
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*/
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int register_trans_observer(Trans_observer *observer, void *p);
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/**
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Unregister a transaction observer
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@param observer The transaction observer to unregister
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer not exists
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*/
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int unregister_trans_observer(Trans_observer *observer, void *p);
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/**
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Register a binlog storage observer
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@param observer The binlog storage observer to register
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer already exists
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*/
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int register_binlog_storage_observer(Binlog_storage_observer *observer, void *p);
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/**
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Unregister a binlog storage observer
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@param observer The binlog storage observer to unregister
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer not exists
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*/
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int unregister_binlog_storage_observer(Binlog_storage_observer *observer, void *p);
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/**
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Register a binlog transmit observer
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@param observer The binlog transmit observer to register
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer already exists
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*/
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int register_binlog_transmit_observer(Binlog_transmit_observer *observer, void *p);
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/**
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Unregister a binlog transmit observer
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@param observer The binlog transmit observer to unregister
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer not exists
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*/
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int unregister_binlog_transmit_observer(Binlog_transmit_observer *observer, void *p);
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/**
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Register a binlog relay IO (slave IO thread) observer
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@param observer The binlog relay IO observer to register
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer already exists
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*/
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int register_binlog_relay_io_observer(Binlog_relay_IO_observer *observer, void *p);
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/**
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Unregister a binlog relay IO (slave IO thread) observer
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@param observer The binlog relay IO observer to unregister
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@param p pointer to the internal plugin structure
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@retval 0 Sucess
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@retval 1 Observer not exists
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*/
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int unregister_binlog_relay_io_observer(Binlog_relay_IO_observer *observer, void *p);
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/**
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Connect to master
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This function can only used in the slave I/O thread context, and
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will use the same master information to do the connection.
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@code
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MYSQL *mysql = mysql_init(NULL);
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if (rpl_connect_master(mysql))
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{
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// do stuff with the connection
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}
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mysql_close(mysql); // close the connection
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@endcode
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@param mysql address of MYSQL structure to use, pass NULL will
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create a new one
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@return address of MYSQL structure on success, NULL on failure
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*/
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MYSQL *rpl_connect_master(MYSQL *mysql);
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/**
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Get the value of user variable as an integer.
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This function will return the value of variable @a name as an
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integer. If the original value of the variable is not an integer,
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the value will be converted into an integer.
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@param name user variable name
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@param value pointer to return the value
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@param null_value if not NULL, the function will set it to true if
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the value of variable is null, set to false if not
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@retval 0 Success
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@retval 1 Variable not found
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*/
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int get_user_var_int(const char *name,
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long long int *value, int *null_value);
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/**
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Get the value of user variable as a double precision float number.
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This function will return the value of variable @a name as real
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number. If the original value of the variable is not a real number,
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the value will be converted into a real number.
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@param name user variable name
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@param value pointer to return the value
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@param null_value if not NULL, the function will set it to true if
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the value of variable is null, set to false if not
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@retval 0 Success
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@retval 1 Variable not found
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*/
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int get_user_var_real(const char *name,
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double *value, int *null_value);
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/**
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Get the value of user variable as a string.
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This function will return the value of variable @a name as
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string. If the original value of the variable is not a string,
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the value will be converted into a string.
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@param name user variable name
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@param value pointer to the value buffer
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@param len length of the value buffer
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@param precision precision of the value if it is a float number
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@param null_value if not NULL, the function will set it to true if
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the value of variable is null, set to false if not
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@retval 0 Success
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@retval 1 Variable not found
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*/
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int get_user_var_str(const char *name,
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char *value, unsigned long len,
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unsigned int precision, int *null_value);
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#ifdef __cplusplus
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}
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#endif
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#endif /* REPLICATION_H */
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