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is executed, even if the transaction spans on >=2 relay logs (bug #53). New variable relay_log_purge =0|1 New test to verify bug #53 sql/log.cc: Now we purge a relay log only when we are sure we won't need it, i.e. we have executed the final query (if autocommit=1) or the COMMIT. sql/log_event.cc: Better tracking of the relay log's name and position lastly executed, even if we are in a transaction which spans on 2 or more relay logs. sql/mysql_priv.h: new option relay_log_purge (the user can now decide himself if he wants his relay logs to be automatically purged or not, we don't make unsafe guesses like before) sql/mysqld.cc: new option --innodb (replaces --skip-innodb). Useful for the test suite : we have skip-innodb in mysql-test-run, but we can ('-opt.info' file) choose to start the server with InnoDB for this test only. New option --bdb sql/repl_failsafe.cc: Better tracking of the relay log's name and position lastly executed, even if we are in a transaction which spans on 2 or more relay logs. sql/set_var.cc: new variable relay_log_purge sql/slave.cc: Better tracking of the relay log's name and position lastly executed, even if we are in a transaction which spans on 2 or more relay logs. Now we purge a relay log only when we are sure we won't need it, i.e. we have executed the final query (if autocommit=1) or the COMMIT sql/slave.h: Better tracking of the relay log's name and position lastly executed, even if we are in a transaction which spans on 2 or more relay logs. sql/sql_class.h: prototypes change sql/sql_parse.cc: removed thd argument (was not used in the function's body) sql/sql_repl.cc: Better tracking of the relay log's name and position lastly executed, even if we are in a transaction which spans on 2 or more relay logs. Turn relay_log_purge silently off when someone does CHANGE MASTER TO RELAY_LOG_*
61 lines
2.1 KiB
Text
61 lines
2.1 KiB
Text
# When the relay log gets rotated while the I/O thread
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# is reading a transaction, the transaction spans on two or more
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# relay logs. If STOP SLAVE occurs while the SQL thread is
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# executing a part of the transaction in the non-first relay logs,
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# we test if START SLAVE will resume in the beginning of the
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# transaction (i.e., step back to the first relay log)
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# The slave is started with max_binlog_size=16384 bytes,
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# to force many rotations (approximately 30 rotations)
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# If the master or slave does not support InnoDB, this test will pass
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source include/master-slave.inc;
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connection slave;
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stop slave;
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connection master;
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create table t1 (a int) type=innodb;
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let $1=8000;
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disable_query_log;
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begin;
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while ($1)
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{
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# eval means expand $ expressions
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eval insert into t1 values( $1 );
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dec $1;
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}
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commit;
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# This will generate a 500kB master's binlog,
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# which corresponds to 30 slave's relay logs.
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enable_query_log;
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save_master_pos;
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connection slave;
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reset slave;
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start slave;
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# We wait 1 sec for the SQL thread to be somewhere in
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# the middle of the transaction, hopefully not in
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# the first relay log, and hopefully before the COMMIT.
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# Usually it stops when the SQL thread is around the 15th relay log.
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# We cannot use MASTER_POS_WAIT() as master's position
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# increases only when the slave executes the COMMIT.
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system sleep 1;
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stop slave;
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# We suppose the SQL thread stopped before COMMIT.
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# If so the transaction was rolled back
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# and the table is now empty.
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# Now restart
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start slave;
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# And see if the table contains '8000'
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# which proves that the transaction restarted at
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# the right place.
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# We must wait for the transaction to commit before
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# reading, MASTER_POS_WAIT() will do it for sure
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# (the only statement with position>=3000 is COMMIT).
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# Older versions of MySQL would hang forever in MASTER_POS_WAIT
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# because COMMIT was said to be position 0 in the master's log (bug).
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# Detect this with timeout.
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select master_pos_wait('master-bin.001',3000,120)=-1;
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select * from t1 where a=8000;
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# Note that the simple fact to have less than around 30 slave's binlogs
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# (the slave is started with --log-slave-updates) is already
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# a proof that the transaction was not properly resumed.
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