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OMS Documentation Overview of OMS Terms OMS HA Principles of Store Principles of Full-Import and Incr-Sync Data verification principles Overview Hierarchical functional system Basic components OMS Oracle full migration design and impact Limitations Data migration process Data synchronization process Deployment types System and network requirements Memory and disk requirements Environment preparations Deploy OMS on a single node Deploy OMS on multiple nodes in a single region Deploy OMS on multiple nodes in multiple regions Scale out Scale down deployment Check the deployment Deploy a time-series database (Optional) Log in to the OMS console Overview Configure user information Change your login password Log out Overview Migrate data from a MySQL database to a MySQL-compatible tenant of OceanBase Database Migrate data from a MySQL-compatible tenant of OceanBase Database to a MySQL database Migrate data from an Oracle database to the MySQL compatible mode of OceanBase Database Migrate data from the Oracle compatible mode of OceanBase Database to an Oracle database Migrate data from an Oracle database to the Oracle compatible mode of OceanBase Database Migrate data from a DB2 LUW database to an Oracle-compatible tenant of OceanBase Database Migrate data from an Oracle-compatible tenant of OceanBase Database to a DB2 LUW database Migrate data from a DB2 LUW database to a MySQL-compatible tenant of OceanBase Database Migrate data from a MySQL-compatible tenant of OceanBase Database to a DB2 LUW database Migrate data between OceanBase databases of the same tenant type Configure a bidirectional synchronization task Migrate data from a TiDB database to a MySQL-compatible tenant of OceanBase Database Migrate data from a PostgreSQL database to the Oracle compatible mode of OceanBase Database Migrate data from a PostgreSQL database to the MySQL compatible mode of OceanBase Database Migrate data from a PolarDB-X 1.0 database to a MySQL-compatible tenant of OceanBase Database Migrate incremental data from an Oracle-compatible tenant of OceanBase Database to a MySQL database View details of a data migration task Rename a data migration task View and modify migration objects Use tags to Manage data migration tasks Perform batch operations on data migration tasks Download and import settings of migration objects View and modify migration parameters Download a conflict log file Start and pause a data migration task End and delete a data migration task Synchronize DDL operations from the MySQL compatible mode of OceanBase Database to a MySQL database Synchronize DDL operations from the Oracle compatible mode of OceanBase Database to an Oracle database Synchronize DDL operations from a DB2 LUW database to an Oracle-compatible tenant of OceanBase Database Synchronize DDL operations from the Oracle compatible mode of OceanBase Database to a DB2 LUW database Synchronize DDL operations from a DB2 LUW database to a MySQL-compatible tenant of OceanBase Database Synchronize DDL operations from the MySQL compatible mode of OceanBase Database to a DB2 LUW database Synchronize DDL operations between MySQL-compatible tenants of OceanBase Database DDL synchronization between Oracle-compatible tenants of OceanBase Database DDL operations for synchronizing data from a PostgreSQL database to the MySQL compatible mode of OceanBase Database DDL synchronization from PostgreSQL to OceanBase Database in Oracle compatible mode Overview Synchronize data from OceanBase Database to a Kafka instance Synchronize data from OceanBase Database to a RocketMQ instance Synchronize data from OceanBase Database to a DataHub instance Synchronize data from an ODP logical table to a physical table in a MySQL-compatible tenant of OceanBase Database Synchronize data from an ODP logical table to a DataHub instance Synchronize data from an IDB logical table to a MySQL-compatible tenant of OceanBase Database Synchronize data from an IDB logical table to a DataHub instance Synchronize data from a MySQL database to a DataHub instance Synchronize data from an Oracle database to a DataHub instance View details of a data synchronization task Change the name of a data synchronization task View and modify synchronization objects Use tags to Manage data synchronization tasks Perform batch operations on data synchronization tasks Download and import the settings of synchronization objects View and modify the parameter configurations of a data synchronization task Start and pause a data synchronization task End and delete a data synchronization task Overview Create a data validation task View details of a data validation task Change the name of a data validation task View and modify validation objects View and modify validation parameters Manage data validation tasks by using tags Import validation objects Start, stop, and resume a data validation task Clone a data validation task Delete a data validation task Create a MySQL data source Create an Oracle data source Create a TiDB data source
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Migrate data from a MySQL-compatible tenant of OceanBase Database to a DB2 LUW database

Last Updated:2025-12-26 06:16:14  Updated
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This topic describes how to use OceanBase Migration Service (OMS) to migrate data from a MySQL-compatible tenant of OceanBase Database, which can be a physical data source, a public cloud OceanBase data source, or a standalone data source, to a DB2 LUW database.

Prerequisites

  • You have created dedicated database users in the source MySQL-compatible tenant of OceanBase Database and the target DB2 LUW database for data migration and granted the required privileges to the users. For more information, see Create a database user.

  • You have configured log retention of OceanBase Database for at least one day to prepare for a possible pullback in case of exceptions.

Limitations

  • Limitations on the source database

    Do not perform DDL operations that modify database or table schemas during schema migration or full migration. Otherwise, the data migration task may be interrupted.

  • DB2 LUW 9.7, 10.1, 10.5, 11.1, and 11.5 for Linux and AIX are supported.

  • In an ARM CPU architecture, OMS does not support reverse increment from a MySQL-compatible tenant of OceanBase Database to a DB2 LUW database.

  • OMS does not support triggers in the target database. If triggers exist in the target database, the data migration may fail.

  • If the UTF-8 character set is used in the source database, we recommend that you use a compatible character set, such as UTF-8 or UTF-16, in the target database to avoid garbled characters.

  • Data source identifiers and user accounts must be globally unique in OMS.

  • If temporary tables exist in the MySQL-compatible tenant of OceanBase Database of a version earlier than V4.0.0, full migration fails.

  • OMS supports the migration of only objects whose database name, table name, and column name are ASCII-encoded and do not contain special characters. The special characters are line breaks, spaces, and the following characters: . | " ' ` ( ) = ; / & \.

  • OMS does not support a standby OceanBase database as the source.

  • Length limits

    • The data of the CHAR or BINARY type cannot exceed 255 bytes in length in a DB2 LUW database. If the data of the CHAR or BINARY type written to a MySQL-compatible tenant of OceanBase Database exceeds 255 bytes, OMS returns an error for the data migration task.

    • The data of the VARCHAR or BINARY type cannot exceed 32 KB in length in a DB2 LUW database. If the data of the VARCHAR or BINARY type written to a MySQL-compatible tenant of OceanBase Database exceeds 32 KB, OMS returns an error for the data migration task.

    • The Decimal(dp, ds) type in a DB2 LUW database is equivalent to the NUMBER type in a MySQL-compatible tenant of OceanBase Database. The length of dp cannot exceed 31 and must be greater than or equal to that of ds.

      The number written to a MySQL-compatible tenant of OceanBase Database cannot exceed the maximum allowed number. By default, the data of the NUMBER, INT, SMALLINT, and NUMBER(*, s) types is 38 bytes in length in a MySQL-compatible tenant of OceanBase Database. You need to explicitly define NUMBER(p,s) to a length that is compatible with the business application and the source and target databases.

    • The data of the NCHAR type cannot exceed 63 bytes in length in a DB2 LUW database or 2,000 bytes in a MySQL-compatible tenant of OceanBase Database. Therefore, if a field contains data of the NCHAR type exceeding 63 bytes in a MySQL-compatible tenant of OceanBase Database, the field is truncated when it is migrated to a DB2 LUW database. This causes data loss.

  • Data type limitations

    • The data of the TIME type in a DB2 LUW database cannot be migrated as the partition key.

    • The data of the XML type is not supported.

    • We recommend that you do not use CODEUNITS16 or CODEUNITS32 to define or store multi-byte data of the NCHAR, GRAPHIC, or other types.

    • The default value of the BLOB-type data cannot be modified.

    • OMS does not support primary keys that contain data of the FLOAT or DOUBLE type.

    • Spaces on the right side of data of the VARCHAR and VARGRAPHIC types are not compared in a DB2 LUW database. If the primary key lacks a space during incremental data synchronization, the data can become inconsistent. This causes data loss in the target database.

    • When a data type in a DB2 LUW database is converted to a LOB type in a MySQL-compatible tenant of OceanBase Database, the LOB-type data cannot exceed 48 MB in size.

  • Case sensitivity limitations

    • If the data in the source MySQL-compatible tenant of OceanBase Database is case-sensitive, OMS does not support the migration of the data to a DB2 LUW database.

    • If the data in the source MySQL-compatible tenant of OceanBase Database is case-insensitive and the database names and table names are in lowercase, the database names and table names of the target DB2 LUW database during schema migration or DDL migration are also in lowercase by default.

  • In a task for migrating data from a MySQL-compatible tenant of OceanBase Database of a version earlier than V3.2.x to a DB2 LUW database, if the source table is a multi-partition table with a global unique index and you update the values of the partition key of the table, data may be lost during migration.

Considerations

  • If you use OceanBase Database V4.x, we recommend that you enable log archiving. If you enable log archiving, OMS implements incremental synchronization by consuming archive logs after clogs are recycled. For more information about how to enable log archiving, see Preparations.

  • When DDL synchronization is disabled, if you change the unique index in the target database, you must restart the Incr-Sync component. Otherwise, the data in the source and target databases may be inconsistent.

  • If the clocks between nodes or between the client and the server are out of synchronization, the latency may be inaccurate during incremental synchronization or reverse increment.

    For example, if the clock is earlier than the standard time, the latency can be negative. If the clock is later than the standard time, the latency can be positive.

  • In multi-table aggregation scenarios:

    • We recommend that you configure the mappings between the source and target databases by specifying matching rules.

    • We recommend that you manually create schemas in the target database. If you use OMS to create schemas, skip failed objects in the schema migration step.

  • In a data migration task where the source is OceanBase Database and DDL synchronization is enabled, if a RENAME operation is performed on a table in the source database, we recommend that you restart the task to avoid data loss during incremental synchronization.

  • If you select only Incremental Synchronization when you create the data migration task, OMS requires that the archive logs in the source database be retained for more than 48 hours.

    ​If you select Full Migration and Incremental Synchronization when you create the data migration task, OMS requires that the archive logs in the source database be retained for at least seven days. Otherwise, the data migration task may fail or the data in the source and target databases may be inconsistent because OMS cannot obtain incremental logs.

  • If the source and target table objects differ only in capitalization of their names, the data migration result may not be as expected because the object names in the source or target database are case-insensitive.

  • At present, the data migration task does not support tables without a non-null unique key. To avoid duplicate data in case of task restart and other exceptions, we recommend that you configure a non-null unique key for each table.

Data type mappings

MySQL-compatible tenant of OceanBase Database DB2 LUW database
INTEGER INTEGER. The value range is -2147483648 to 2147483647.
TINYINT SMALLINT. The value range is -128 to 127.
SMALLINT SMALLINT. The value range is -32768 to 32767.
MEDIUMINT INTEGER. The value range is -8388608 to 8388607.
BIGINT BIGINT. The value range is -9223372036854775808 to 9223372036854775807.
FLOAT FLOAT
DOUBLE DOUBLE
REAL DOUBLE
DECIMAL DECIMAL
NUMERIC NUMERIC
BOOLEAN BOOLEAN
DATE DATE
DATETIME TIMESTAMP
TIMESTAMP(n) TIMESTAMP(n)
The maximum precision for a MySQL-compatible tenant of OceanBase Database is 6, and that for a DB2 LUW database is 12.
TIME TIME
YEAR INTEGER
CHAR
  • 10.1: CHAR (<255 bytes) and VARCHAR (>=255 bytes)
  • 10.5 and later: CHAR(n CODEUNITS32)
    Notice
    Only DB2 LUW 10.5 and later support the CODEUNITS32 encoding unit.
VARCHAR
  • 10.1: VARCHAR (<32673 bytes) and CLOB (>= 32673 bytes)
  • 10.5 and later: VARCHAR(n CODEUNITS32)
    Notice
    Only DB2 LUW 10.5 and later support the CODEUNITS32 encoding unit.
TINYBLOB BLOB(255)
BLOB BLOB(65K)
MEDIUMBLOB BLOB(16M)
LONGBLOB BLOB(2G)
TINYTEXT CLOB(255)
TEXT CLOB(65K)
MEDIUMTEXT CLOB(16M)
LONGTEXT CLOB(2G)
BINARY
  • Versions earlier than 11.1: CHAR(n) FOR BIT DATA
  • 11.1 and later: BINARY
VARBINARY
  • Versions earlier than 11.1: VARCHAR(n) FOR BIT DATA
  • 11.1 and later: VARBINARY
BIT(n)
  • Versions earlier than 11.1: CHAR(n/8) FOR BIT DATA
  • 11.1 and later: BINARY(n/8). The value is rounded up.

Procedure

  1. Create a data migration task.

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    1. Log in to the OMS console.

    2. In the left-side navigation pane, click Data Migration.

    3. On the Data Migration page, click Create Task in the upper-right corner.

  2. On the Create Task page, specify the name of the migration task.

    We recommend that you set it to a combination of digits and letters. It must not contain any spaces and cannot exceed 64 characters in length.

    Notice

    The task name must be a unique identifier in the OMS system.

  3. In the Select Source and Target step, configure the parameters.

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    Parameter Description
    Source If you have created a data source for the MySQL compatible mode of OceanBase Database, which can be a physical data source, a public cloud OceanBase data source, or a standalone data source, select it from the drop-down list. If not, click New Data Source in the drop-down list and create one in the dialog box that appears on the right. For more information about the parameters, see Create a physical OceanBase data source, Create a public cloud OceanBase data source, or Create a standalone OceanBase data source.
    Target If you have created a DB2 LUW data source, select it from the drop-down list. If not, click New Data Source in the drop-down list and create one in the dialog box that appears on the right. For more information, see Create a DB2 LUW data source.
    Notice
    The column specified as the unique key in a DB2 LUW database must have the NOT NULL constraint.
    Tag (Optional) Click the text box and select a tag from the drop-down list. You can also click Manage Tags to create, modify, and delete tags. For more information, see Use tags to manage data migration tasks.
  4. Click Next. In the Select Migration Type step, specify the migration types for the migration task.

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    Options for Migration Type are Schema Migration, Full Migration, Incremental Synchronization, and Reverse Increment.

    Migration type Description
    Schema migration The definitions of data objects, such as tables, indexes, constraints, comments, and views, are migrated from the source database to the target database. Temporary tables are automatically filtered out.
    Full Migration After the full migration task starts, OMS will migrate the stock data of the source library table to the corresponding table in the target database. If you choose Full Migration, it is recommended that you collect the statistical information of the OceanBase database's MySQL compatible mode before migrating the data. For more details, see Manually Collect Statistical Information.
    Incremental synchronization After the incremental synchronization task starts, OMS will synchronize the changed data (newly added, modified, or deleted) in the source database to the corresponding tables in the target database.
    Incremental Synchronization includes DML synchronization and DDL synchronization, which you can customize according to your needs. For details, see Custom configuration of DDL/DML.
    In the incremental synchronization from OceanBase Database MySQL compatible mode to DB2 LUW, the system will automatically filter out Comments. The usage restrictions for Incremental Synchronization are as follows:
    • If you select DDL synchronization, there is a risk of data migration interruption when an unsupported DDL operation occurs in the source database.
    • If the DDL operation involves adding a column, it is recommended to set the column's attribute to Null to avoid potential data migration interruptions.
    Reverse increment When a reverse increment task starts, OMS migrates the data changed in the target database after the business switchover back to the source database in real time.
    Generally, incremental synchronization configurations are reused for reverse increment. You can also customize the configurations for reverse increment as needed. You cannot select Reverse Increment in the following cases:
    • Multi-table aggregation is involved.
    • Multiple source schemas map to the same target schema.
  5. (Optional) Click Next.

    If you select Schema Migration or Incremental Synchronization, but the source OceanBase database MySQL compatible mode data source is not configured with the corresponding parameters, a dialog box titled Supplementary Data Source Information will pop up, reminding you to configure it. For details on the parameters, please refer to Create a physical OceanBase Data Source, Create an OceanBase Public Cloud Data Source, or Create an OceanBase Single-Machine Data Source.

    After you configure the parameters, click Test connectivity. After the test succeeds, click Save.

  6. Click Next. In the Select Migration Objects step, specify the migration objects for the migration task.

    You can select Specify Objects or Match by Rule to specify the migration objects. The following procedure describes how to specify migration objects by using the Specify Objects option. For information about the procedure for specifying migration objects by using the Match by Rule option, see Configure matching rules.

    Notice

    • If a database or table name contains double dollar signs ("$$"), you cannot create the migration task.

    • If you have selected DDL Synchronization in the Select Migration Type step, we recommend that you select Match by Rule to specify migration objects. This way, all new objects that meet the specified rules will be synchronized. If you select Specify Objects to specify migration objects, new or renamed objects will not be synchronized.

    • OMS automatically filters out unsupported tables. For information about the SQL statements for querying table objects, see SQL statements for querying table objects.

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    1. In the Select Migration Objects section, select Specify Objects.

    2. In the Source Object(s) list, select the objects to be migrated. You can select tables and views of one or more databases as the migration objects.

    3. Click > to add the selected objects to the Target Object(s) list.

    OMS also allows you to import objects by using text, rename objects, configure row filters, select columns, and remove one or all objects to be migrated.

    Note

    When you select Match by Rule to specify migration objects, object renaming is implemented based on the syntax of the specified matching rules. In the operation area, you can only set filter conditions. For more information, see Configure matching rules.

    Operation Steps
    Import objects
    1. In the Target Object(s) list, click Import Objects in the upper-right corner.
    2. In the dialog box that appears, click OK.
      Notice
      This operation will overwrite previous selections. Proceed with caution.
    3. In the Import Objects dialog box, import the objects to be migrated.
      You can import CSV files to rename databases/tables and set row filtering conditions. For more information, see Download and import the settings of migration objects.
    4. Click Validate.
    5. After the validation succeeds, click OK.
    Rename objects OMS allows you to rename migration objects. For more information, see Rename a migration or synchronization object.
    Configure settings OMS allows you to configure row filters and specify columns to be migrated.
    1. Hover the pointer over the target object in the right-side list of the selection area.
    2. Click Settings that appears.
    3. In the Settings dialog box, you can perform the following operations:
        In the Row Filters section, configure row filters by entering WHERE clauses of standard SQL statements. For more information, see Use SQL conditions to filter data.
      • In the Select Columns section, select the columns to be migrated. For more information, see Column filtering.
    Remove one or all objects OMS allows you to remove one or all objects to be migrated to the target database during data mapping.
    • To remove one migration object:
      In the Target Object(s) list, move the pointer over the target object and click Remove.
    • To remove all migration objects:
      In the Target Object(s) list, click Remove All in the upper-right corner. In the dialog box that appears, click OK.
  7. Click Next. In the Migration Options step, configure the parameters.

    • Schema Migration

      The following parameters are displayed only if you have selected One-way Synchronization > Schema Migration in the Select Migration Type step.

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      Parameter Description
      Automatically Enter Next Stage upon Completion If you select schema migration and any other migration type, you can specify whether to automatically proceed to the next stage after schema migration is completed. The default value is Yes. You can also view and modify this value on the Schema Migration tab of the data migration task details page.
      Normal Index Migration Method The migration method for non-unique key indexes associated with the migrated table objects, including Do Not Migrate, Migrate with Schema, and Post-Full-Migration (displayed only when Full Migration is selected).
    • Full migration

      The following parameters are displayed only if you have selected Full Migration in the Select Migration Type step.

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      Parameter Description
      Full Migration Rate Limit You can choose whether to limit the full migration rate as needed. If you choose to limit it, you must specify the RPS and BPS. The RPS specifies the maximum rows of data migrated to the target database per second during full migration, and the BPS specifies the maximum amount of data in bytes migrated to the target database per second during full migration.

      Note

      The RPS and BPS values specified here are only for throttling. The actual full migration performance is subject to factors such as the settings of the source and target databases and the instance specifications.

      Full Migration Resource Configuration You can select Small, Medium, or Large to use the corresponding default values of Read Concurrency, Write Concurrency, and Memory. You can also customize the resource configurations for full migration. By setting the resource configuration for the Full-Import component, you can limit the resource consumption of a task in the full migration phase.

      Notice

      In the case of custom configurations, the minimum value is 1, and only integers are supported.

      Handle Non-empty Tables in Target Database Valid values: Ignore and Stop Migration.
      • If you select Ignore, when the data to be inserted conflicts with the existing data of a target table, OMS retains the existing data and records the conflict data.
      • If you select Stop Migration and a target table contains data, an error is returned during full migration, indicating that the migration is not allowed. In this case, you must clear the data in the target table before you can continue with the migration.

        Notice

        After an error is returned, if you click Resume in the dialog box, OMS ignores this error and continues to migrate data. Proceed with caution.

    • Incremental synchronization

      The following parameters are displayed only if you have selected Incremental Synchronization in the Select Migration Type step.

      oms18-en

      Parameter Description
      Incremental Synchronization Rate Limit You can choose whether to limit the incremental synchronization rate as needed. If you choose to limit it, you must specify the RPS and BPS. The RPS specifies the maximum rows of data synchronized to the target database per second during incremental synchronization, and the BPS specifies the maximum amount of data in bytes synchronized to the target database per second during incremental synchronization.

      Note

      The RPS and BPS values specified here are only for throttling. The actual incremental synchronization performance is subject to factors such as the settings of the source and target databases and the instance specifications.

      Incremental Log Pull Resource Configuration You can select Small, Medium, or Large to use the corresponding default value of Memory. You can also customize the resource configurations for incremental log pull. By setting the resource configuration for the Store component, you can limit the resource consumption of a task in log pull in the incremental synchronization stage.

      Notice

      In the case of custom configurations, the minimum value is 1, and only integers are supported.

      Incremental Data Write Resource Configuration You can select Small, Medium, or Large to use the corresponding default values of Write Concurrency and Memory. You can also customize the resource configurations for incremental data writes. By setting the resource configuration for the Incr-Sync component, you can limit the resource consumption of a task in data writes in the incremental synchronization stage.

      Notice

      In the case of custom configurations, the minimum value is 1, and only integers are supported.

      Incremental Record Retention Duration The duration that incremental parsed files are cached in OMS. A longer retention duration results in more disk space occupied by the Store component.
      Incremental Synchronization Start Timestamp
      • If you have selected Full Migration as the migration type, this parameter is not displayed.
      • If you have selected Incremental Synchronization but not Full Migration, specify a point in time after which the data is to be synchronized. The default value is the current system time. For more information, see Set an incremental synchronization timestamp.
    • Reverse increment

      The following parameters are displayed only if you have selected Reverse Increment in the Select Migration Type step. The parameters for reverse increment are consistent with those for incremental synchronization. You can select Reuse Incremental Synchronization Configuration in the upper-right corner.

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    • Advanced options

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      The following parameters are displayed only if the source is a MySQL-compatible tenant of OceanBase Database V4.3.0 or later and you have selected DDL synchronization for Reverse Increment in the Select Migration Type step.

      This parameter specifies the storage type for source table objects during reverse increment. The storage types supported for source table objects are Default, Row Storage, Column Storage, and Hybrid Row-Column Storage. For more information, see default_table_store_format.

      Note

      The value Default means that other parameters are automatically set based on the parameter configurations of the target database. New table objects created by reverse incremental DDL statements in reverse increment are written to corresponding schemas in reverse increment based on the specified storage type.

    If the parameter settings on the page cannot meet your requirements, you can click Parameter Configuration in the lower part of the page to configure more specific settings. You can also reference an existing task or component template.

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  8. Click Precheck to start a precheck on the data migration task.

    During the precheck, OMS checks the read and write privileges of the database users and the network connectivity of the databases. A data migration task can be started only after it passes all check items. If an error is returned during the precheck, you can perform the following operations:

    • Identify and troubleshoot the issue and then perform the precheck again.

    • Click Skip in the Actions column of a failed precheck item. In the dialog box that prompts the consequences of the operation, click OK.

  9. Click Start Task. If you do not need to start the task now, click Save to go to the details page of the task. You can start the task later as needed.

    You can click Configure Validation Task in the upper-right corner of the data migration details page to compare the data between the source database and the target database. For more information, see Create a data validation task.

    OMS allows you to modify the migration objects when the data migration task is running. For more information, see View and modify migration objects. After the data migration task is started, it is executed based on the selected migration types. For more information, see the View migration details section in View details of a data migration task.

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Prerequisites
Limitations
Considerations
Data type mappings
Procedure