This section describes the server options and system variables
that you can use on replication source servers. You can specify
the options either on the
command line or in an
option file. You can specify
system variable values using
SET.
On the source and each replica, you must set the
server_id system variable to
establish a unique replication ID. For each server, you should
pick a unique positive integer in the range from 1 to
232 − 1, and each ID must be
different from every other ID in use by any other source or
replica in the replication topology. Example:
server-id=3.
For options used on the source for controlling binary logging, see Section 19.1.6.4, “Binary Logging Options and Variables”.
The following list describes startup options for controlling replication source servers. Replication-related system variables are discussed later in this section.
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Command-Line Format --show-replica-auth-info[={OFF|ON}]Type Boolean Default Value OFFUse
--show-replica-auth-info, which displays replication user names and passwords in the output ofSHOW REPLICASon the source for replicas started with the--report-userand--report-passwordoptions. -
Command-Line Format --show-slave-auth-info[={OFF|ON}]Deprecated Yes Type Boolean Default Value OFFDeprecated alias for
--show-replica-auth-info.
The following system variables are used for or by replication source servers:
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Command-Line Format --auto-increment-increment=#System Variable auto_increment_incrementScope Global, Session Dynamic Yes SET_VARHint AppliesYes Type Integer Default Value 1Minimum Value 1Maximum Value 65535auto_increment_incrementandauto_increment_offsetare intended for use with circular (source-to-source) replication, and can be used to control the operation ofAUTO_INCREMENTcolumns. Both variables have global and session values, and each can assume an integer value between 1 and 65,535 inclusive. Setting the value of either of these two variables to 0 causes its value to be set to 1 instead. Attempting to set the value of either of these two variables to an integer greater than 65,535 or less than 0 causes its value to be set to 65,535 instead. Attempting to set the value ofauto_increment_incrementorauto_increment_offsetto a noninteger value produces an error, and the actual value of the variable remains unchanged.Noteauto_increment_incrementis also supported for use withNDBtables.When Group Replication is started on a server, the value of
auto_increment_incrementis changed to the value ofgroup_replication_auto_increment_increment, which defaults to 7, and the value ofauto_increment_offsetis changed to the server ID. The changes are reverted when Group Replication is stopped. These changes are only made and reverted ifauto_increment_incrementandauto_increment_offseteach have their default value of 1. If their values have already been modified from the default, Group Replication does not alter them. These system variables are also not modified when Group Replication is in single-primary mode, where only one server writes.auto_increment_incrementandauto_increment_offsetaffectAUTO_INCREMENTcolumn behavior as follows:auto_increment_incrementcontrols the interval between successive column values. For example:mysql> SHOW VARIABLES LIKE 'auto_inc%'; +--------------------------+-------+ | Variable_name | Value | +--------------------------+-------+ | auto_increment_increment | 1 | | auto_increment_offset | 1 | +--------------------------+-------+ 2 rows in set (0.00 sec) mysql> CREATE TABLE autoinc1 -> (col INT NOT NULL AUTO_INCREMENT PRIMARY KEY); Query OK, 0 rows affected (0.04 sec) mysql> SET @@auto_increment_increment=10; Query OK, 0 rows affected (0.00 sec) mysql> SHOW VARIABLES LIKE 'auto_inc%'; +--------------------------+-------+ | Variable_name | Value | +--------------------------+-------+ | auto_increment_increment | 10 | | auto_increment_offset | 1 | +--------------------------+-------+ 2 rows in set (0.01 sec) mysql> INSERT INTO autoinc1 VALUES (NULL), (NULL), (NULL), (NULL); Query OK, 4 rows affected (0.00 sec) Records: 4 Duplicates: 0 Warnings: 0 mysql> SELECT col FROM autoinc1; +-----+ | col | +-----+ | 1 | | 11 | | 21 | | 31 | +-----+ 4 rows in set (0.00 sec)auto_increment_offsetdetermines the starting point for theAUTO_INCREMENTcolumn value. Consider the following, assuming that these statements are executed during the same session as the example given in the description forauto_increment_increment:mysql> SET @@auto_increment_offset=5; Query OK, 0 rows affected (0.00 sec) mysql> SHOW VARIABLES LIKE 'auto_inc%'; +--------------------------+-------+ | Variable_name | Value | +--------------------------+-------+ | auto_increment_increment | 10 | | auto_increment_offset | 5 | +--------------------------+-------+ 2 rows in set (0.00 sec) mysql> CREATE TABLE autoinc2 -> (col INT NOT NULL AUTO_INCREMENT PRIMARY KEY); Query OK, 0 rows affected (0.06 sec) mysql> INSERT INTO autoinc2 VALUES (NULL), (NULL), (NULL), (NULL); Query OK, 4 rows affected (0.00 sec) Records: 4 Duplicates: 0 Warnings: 0 mysql> SELECT col FROM autoinc2; +-----+ | col | +-----+ | 5 | | 15 | | 25 | | 35 | +-----+ 4 rows in set (0.02 sec)When the value of
auto_increment_offsetis greater than that ofauto_increment_increment, the value ofauto_increment_offsetis ignored.
If either of these variables is changed, and then new rows inserted into a table containing an
AUTO_INCREMENTcolumn, the results may seem counterintuitive because the series ofAUTO_INCREMENTvalues is calculated without regard to any values already present in the column, and the next value inserted is the least value in the series that is greater than the maximum existing value in theAUTO_INCREMENTcolumn. The series is calculated like this:auto_increment_offset+N×auto_increment_incrementwhere
Nis a positive integer value in the series [1, 2, 3, ...]. For example:mysql> SHOW VARIABLES LIKE 'auto_inc%'; +--------------------------+-------+ | Variable_name | Value | +--------------------------+-------+ | auto_increment_increment | 10 | | auto_increment_offset | 5 | +--------------------------+-------+ 2 rows in set (0.00 sec) mysql> SELECT col FROM autoinc1; +-----+ | col | +-----+ | 1 | | 11 | | 21 | | 31 | +-----+ 4 rows in set (0.00 sec) mysql> INSERT INTO autoinc1 VALUES (NULL), (NULL), (NULL), (NULL); Query OK, 4 rows affected (0.00 sec) Records: 4 Duplicates: 0 Warnings: 0 mysql> SELECT col FROM autoinc1; +-----+ | col | +-----+ | 1 | | 11 | | 21 | | 31 | | 35 | | 45 | | 55 | | 65 | +-----+ 8 rows in set (0.00 sec)The values shown for
auto_increment_incrementandauto_increment_offsetgenerate the series 5 +N× 10, that is, [5, 15, 25, 35, 45, ...]. The highest value present in thecolcolumn prior to theINSERTis 31, and the next available value in theAUTO_INCREMENTseries is 35, so the inserted values forcolbegin at that point and the results are as shown for theSELECTquery.It is not possible to restrict the effects of these two variables to a single table; these variables control the behavior of all
AUTO_INCREMENTcolumns in all tables on the MySQL server. If the global value of either variable is set, its effects persist until the global value is changed or overridden by setting the session value, or until mysqld is restarted. If the local value is set, the new value affectsAUTO_INCREMENTcolumns for all tables into which new rows are inserted by the current user for the duration of the session, unless the values are changed during that session.The default value of
auto_increment_incrementis 1. See Section 19.5.1.1, “Replication and AUTO_INCREMENT”. -
Command-Line Format --auto-increment-offset=#System Variable auto_increment_offsetScope Global, Session Dynamic Yes SET_VARHint AppliesYes Type Integer Default Value 1Minimum Value 1Maximum Value 65535This variable has a default value of 1. If it is left with its default value, and Group Replication is started on the server in multi-primary mode, it is changed to the server ID. For more information, see the description for
auto_increment_increment.Noteauto_increment_offsetis also supported for use withNDBtables. -
System Variable immediate_server_versionScope Session Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 999999Minimum Value 0Maximum Value 999999For internal use by replication. This session system variable holds the MySQL Server release number of the server that is the immediate source in a replication topology (for example,
80406for a MySQL 8.4.6 server instance). If this immediate server is at a release that does not support the session system variable, the value of the variable is set to 0 (UNKNOWN_SERVER_VERSION).The value of the variable is replicated from a source to a replica. With this information the replica can correctly process data originating from a source at an older release, by recognizing where syntax changes or semantic changes have occurred between the releases involved and handling these appropriately. The information can also be used in a Group Replication environment where one or more members of the replication group is at a newer release than the others. The value of the variable can be viewed in the binary log for each transaction (as part of the
Gtid_log_event, orAnonymous_gtid_log_eventif GTIDs are not in use on the server), and could be helpful in debugging cross-version replication issues.Setting the session value of this system variable is a restricted operation. The session user must have either the
REPLICATION_APPLIERprivilege (see Section 19.3.3, “Replication Privilege Checks”), or privileges sufficient to set restricted session variables (see Section 7.1.9.1, “System Variable Privileges”). However, note that the variable is not intended for users to set; it is set automatically by the replication infrastructure. -
System Variable original_server_versionScope Session Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 999999Minimum Value 0Maximum Value 999999For internal use by replication. This session system variable holds the MySQL Server release number of the server where a transaction was originally committed (for example,
80406for a MySQL 8.4.6 server instance). If this original server is at a release that does not support the session system variable, the value of the variable is set to 0 (UNKNOWN_SERVER_VERSION). Note that when a release number is set by the original server, the value of the variable is reset to 0 if the immediate server or any other intervening server in the replication topology does not support the session system variable, and so does not replicate its value.The value of the variable is set and used in the same ways as for the
immediate_server_versionsystem variable. If the value of the variable is the same as that for theimmediate_server_versionsystem variable, only the latter is recorded in the binary log, with an indicator that the original server version is the same.In a Group Replication environment, view change log events, which are special transactions queued by each group member when a new member joins the group, are tagged with the server version of the group member queuing the transaction. This ensures that the server version of the original donor is known to the joining member. Because the view change log events queued for a particular view change have the same GTID on all members, for this case only, instances of the same GTID might have a different original server version.
Setting the session value of this system variable is a restricted operation. The session user must have either the
REPLICATION_APPLIERprivilege (see Section 19.3.3, “Replication Privilege Checks”), or privileges sufficient to set restricted session variables (see Section 7.1.9.1, “System Variable Privileges”). However, note that the variable is not intended for users to set; it is set automatically by the replication infrastructure. -
Command-Line Format --rpl-semi-sync-master-enabled[={OFF|ON}]Deprecated Yes System Variable rpl_semi_sync_master_enabledScope Global Dynamic Yes SET_VARHint AppliesNo Type Boolean Default Value OFFDeprecated synonym for
rpl_semi_sync_source_enabled. -
Command-Line Format --rpl-semi-sync-master-timeout=#Deprecated Yes System Variable rpl_semi_sync_master_timeoutScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 10000Minimum Value 0Maximum Value 4294967295Unit milliseconds Deprecated synonym for
rpl_semi_sync_source_timeout. rpl_semi_sync_master_trace_levelCommand-Line Format --rpl-semi-sync-master-trace-level=#Deprecated Yes System Variable rpl_semi_sync_master_trace_levelScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 32Minimum Value 0Maximum Value 4294967295Deprecated synonym for
rpl_semi_sync_source_trace_level.rpl_semi_sync_master_wait_for_slave_countCommand-Line Format --rpl-semi-sync-master-wait-for-slave-count=#Deprecated Yes System Variable rpl_semi_sync_master_wait_for_slave_countScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 1Minimum Value 1Maximum Value 65535Deprecated synonym for
rpl_semi_sync_source_wait_for_replica_count.rpl_semi_sync_master_wait_no_slaveCommand-Line Format --rpl-semi-sync-master-wait-no-slave[={OFF|ON}]System Variable rpl_semi_sync_master_wait_no_slaveScope Global Dynamic Yes SET_VARHint AppliesNo Type Boolean Default Value ONDeprecated synonym for
rpl_semi_sync_source_wait_no_replica.rpl_semi_sync_master_wait_pointCommand-Line Format --rpl-semi-sync-master-wait-point=valueDeprecated Yes System Variable rpl_semi_sync_master_wait_pointScope Global Dynamic Yes SET_VARHint AppliesNo Type Enumeration Default Value AFTER_SYNCValid Values AFTER_SYNCAFTER_COMMITDeprecated synonym for
rpl_semi_sync_source_wait_point.-
Command-Line Format --rpl-semi-sync-source-enabled[={OFF|ON}]System Variable rpl_semi_sync_source_enabledScope Global Dynamic Yes SET_VARHint AppliesNo Type Boolean Default Value OFFrpl_semi_sync_source_enabledis available when therpl_semi_sync_source(semisync_source.solibrary) plugin was installed on the replica to set up semisynchronous replication.rpl_semi_sync_source_enabledcontrols whether semisynchronous replication is enabled on the source server. To enable or disable the plugin, set this variable toONorOFF(or 1 or 0), respectively. The default isOFF. -
Command-Line Format --rpl-semi-sync-source-timeout=#System Variable rpl_semi_sync_source_timeoutScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 10000Minimum Value 0Maximum Value 4294967295Unit milliseconds rpl_semi_sync_source_timeoutis available when therpl_semi_sync_source(semisync_source.solibrary) plugin is installed on the replica.rpl_semi_sync_source_timeoutcontrols how long the source waits on a commit for acknowledgment from a replica before timing out and reverting to asynchronous replication. The value is specified in milliseconds, and the default value is 10000 (10 seconds). rpl_semi_sync_source_trace_levelCommand-Line Format --rpl-semi-sync-source-trace-level=#System Variable rpl_semi_sync_source_trace_levelScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 32Minimum Value 0Maximum Value 4294967295rpl_semi_sync_source_trace_levelis available when therpl_semi_sync_source(semisync_source.solibrary) plugin is installed on the replica.rpl_semi_sync_source_trace_levelspecifies the semisynchronous replication debug trace level on the source server. Four levels are defined:1 = general level (for example, time function failures)
16 = detail level (more verbose information)
32 = net wait level (more information about network waits)
64 = function level (information about function entry and exit)
rpl_semi_sync_source_wait_for_replica_countCommand-Line Format --rpl-semi-sync-source-wait-for-replica-count=#System Variable rpl_semi_sync_source_wait_for_replica_countScope Global Dynamic Yes SET_VARHint AppliesNo Type Integer Default Value 1Minimum Value 1Maximum Value 65535rpl_semi_sync_source_wait_for_replica_countis available when therpl_semi_sync_source(semisync_source.solibrary) plugin is installed on the replica to set up semisynchronous replication.rpl_semi_sync_source_wait_for_replica_countspecifies the number of replica acknowledgments the source must receive per transaction before proceeding. By defaultrpl_semi_sync_source_wait_for_replica_countis1, meaning that semisynchronous replication proceeds after receiving a single replica acknowledgment. Performance is best for small values of this variable.For example, if
rpl_semi_sync_source_wait_for_replica_countis2, then 2 replicas must acknowledge receipt of the transaction before the timeout period configured byrpl_semi_sync_source_timeoutfor semisynchronous replication to proceed. If fewer replicas acknowledge receipt of the transaction during the timeout period, the source reverts to normal replication.NoteThis behavior also depends on
rpl_semi_sync_source_wait_no_replica.rpl_semi_sync_source_wait_no_replicaCommand-Line Format --rpl-semi-sync-source-wait-no-replica[={OFF|ON}]System Variable rpl_semi_sync_source_wait_no_replicaScope Global Dynamic Yes SET_VARHint AppliesNo Type Boolean Default Value ONrpl_semi_sync_source_wait_no_replicais available when therpl_semi_sync_source(semisync_source.solibrary) plugin is installed on the replica.rpl_semi_sync_source_wait_no_replicacontrols whether the source waits for the timeout period configured byrpl_semi_sync_source_timeoutto expire, even if the replica count drops to less than the number of replicas configured byrpl_semi_sync_source_wait_for_replica_countduring the timeout period.When the value of
rpl_semi_sync_source_wait_no_replicaisON(the default), it is permissible for the replica count to drop to less thanrpl_semi_sync_source_wait_for_replica_countduring the timeout period. As long as enough replicas acknowledge the transaction before the timeout period expires, semisynchronous replication continues.When the value of
rpl_semi_sync_source_wait_no_replicaisOFF, if the replica count drops to less than the number configured inrpl_semi_sync_source_wait_for_replica_countat any time during the timeout period configured byrpl_semi_sync_source_timeout, the source reverts to normal replication.rpl_semi_sync_source_wait_pointCommand-Line Format --rpl-semi-sync-source-wait-point=valueSystem Variable rpl_semi_sync_source_wait_pointScope Global Dynamic Yes SET_VARHint AppliesNo Type Enumeration Default Value AFTER_SYNCValid Values AFTER_SYNCAFTER_COMMITrpl_semi_sync_source_wait_pointis available when therpl_semi_sync_source(semisync_source.solibrary) plugin is installed on the replica.rpl_semi_sync_source_wait_pointcontrols the point at which a semisynchronous replication source server waits for replica acknowledgment of transaction receipt before returning a status to the client that committed the transaction. These values are permitted:AFTER_SYNC(the default): The source writes each transaction to its binary log and the replica, and syncs the binary log to disk. The source waits for replica acknowledgment of transaction receipt after the sync. Upon receiving acknowledgment, the source commits the transaction to the storage engine and returns a result to the client, which then can proceed.AFTER_COMMIT: The source writes each transaction to its binary log and the replica, syncs the binary log, and commits the transaction to the storage engine. The source waits for replica acknowledgment of transaction receipt after the commit. Upon receiving acknowledgment, the source returns a result to the client, which then can proceed.
The replication characteristics of these settings differ as follows:
With
AFTER_SYNC, all clients see the committed transaction at the same time: After it has been acknowledged by the replica and committed to the storage engine on the source. Thus, all clients see the same data on the source.In the event of source failure, all transactions committed on the source have been replicated to the replica (saved to its relay log). An unexpected exit of the source server and failover to the replica is lossless because the replica is up to date. Note, however, that the source cannot be restarted in this scenario and must be discarded, because its binary log might contain uncommitted transactions that would cause a conflict with the replica when externalized after binary log recovery.
With
AFTER_COMMIT, the client issuing the transaction gets a return status only after the server commits to the storage engine and receives replica acknowledgment. After the commit and before replica acknowledgment, other clients can see the committed transaction before the committing client.If something goes wrong such that the replica does not process the transaction, then in the event of an unexpected source server exit and failover to the replica, it is possible for such clients to see a loss of data relative to what they saw on the source.