在Oracle 10g中的引入了ORA_ROWSCN伪列新特性。基于此种伪列所提供的信息,我们可以方便地找出某个数据块或某一个行最近被修改
的时间戳。在默认情况下,10g下表会以非行依赖性(NOROWDEPENDENCIES)的属性创建,这意味着我们可观察的ORA_ROWSCN信息是以块级跟踪的,无法分辨同一块内的多行间不同的修改时间。为了达到行级粒度的跟踪我们需要在建表时指定基于行依赖性的ROWDEPENDENCIES字句。如:
SQL> select * from global_name; GLOBAL_NAME
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www.oracledatabase12g.com SQL> select * from v$version; BANNER
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Oracle Database 10g Enterprise Edition Release 10.2.0.4.0 - 64bi
PL/SQL Release 10.2.0.4.0 - Production
CORE 10.2.0.4.0 Production
TNS for Linux: Version 10.2.0.4.0 - Production
NLSRTL Version 10.2.0.4.0 - Production SQL> drop table maclean;
Table dropped. SQL> create table maclean(t1 int,t2 timestamp) ;
Table created. SQL> insert into maclean values(1,systimestamp);
1 row created. SQL> commit;
Commit complete. SQL> insert into maclean values(2,systimestamp);
1 row created. SQL> commit;
Commit complete. SQL> alter session set nls_timestamp_format='hh24:mi:ss';
Session altered. SQL> col t2 for a35
SQL> col orscn for a35 SQL> select scn_to_timestamp(ora_rowscn) orscn,t2 from maclean; ORSCN T2
----------------------------------- -----------------------------------
20:30:11 20:29:56
20:30:11 20:30:10 /* 可以看到默认情况下创建的数据表使用块级依赖性追踪(Block-level Dependency Tracking)
故而其返回的ORA_ROWSCN伪列仅能代表某数据块最近被更新的SCN
*/ create table maclean_rd(t1 int,t2 timestamp) rowdependencies;
Table created. SQL> select table_name,dependencies from user_tables where dependencies!='DISABLED';
TABLE_NAME DEPENDEN
------------------------------ --------
MACLEAN_RD ENABLED /* 包括字典基表在内所有的表都会默认以NOROWDEPENDENCIES创建*/ SQL> insert into maclean_rd values(1,systimestamp); 1 row created. SQL> commit; Commit complete. SQL> insert into maclean_rd values(2,systimestamp); 1 row created. SQL> commit; Commit complete. SQL> select scn_to_timestamp(ora_rowscn) orscn,t2 from maclean_rd; ORSCN T2
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20:31:26 20:31:25
20:31:35 20:31:37 /* 可以看到在行依赖性跟踪情况下,ORA_ROWSCN反映的时间戳与插入的时间戳间仍会有误差;
显然这种误差部分源于scn_to_timestamp函数使用的smon_scn_time SCN记录表也仅是粗略记录SCN对应的时间戳。
*/ SQL> select dbms_rowid.rowid_relative_fno(rowid),dbms_rowid.rowid_block_number(rowid) from maclean_rd; DBMS_ROWID.ROWID_RELATIVE_FNO(ROWID) DBMS_ROWID.ROWID_BLOCK_NUMBER(ROWID)
------------------------------------ ------------------------------------
1 94122
1 94122 /* 以上通过rowid找到了插入的2行所在的数据块*/ SQL> alter system dump datafile '/s01/10gdb/oradata/CLINICA/datafile/o1_mf_system_6fp8d3f0_.dbf' block 94122;
System altered. SQL> oradebug setmypid;
Statement processed.
SQL> oradebug tracefile_name;
/s01/10gdb/admin/clinica/udump/clinica_ora_12934.trc block_row_dump:
tab 0, row 0, @0x1f88
tl: 24 fb: --H-FL-- lb: 0x0 cc: 2
dscn 0x0000.0351b8bd
col 0: [ 2] c1 02
col 1: [11] 78 6f 01 02 15 20 1a 21 d8 52 68
tab 0, row 1, @0x1f70
tl: 24 fb: --H-FL-- lb: 0x0 cc: 2
dscn 0x0000.0351b8c4
col 0: [ 2] c1 03
col 1: [11] 78 6f 01 02 15 20 26 02 ab c2 f8 /* 可以从block dump中看到每行都多出了dscn信息,这就是基于行追踪的行级ORA_ROWSCN信息的来源。
注意这里的dscn需要占用6个字节的空间,换而言之启用ROWDEPENDENCIES会为每一行多出6个字节的磁盘开销。
*/ /* 此外行级追踪仅能在创建表(create table)的同时指定,而无法使用ALTER TABLE来修改 */ SQL> alter table maclean move tablespace users ROWDEPENDENCIES;
alter table maclean move tablespace users ROWDEPENDENCIES
*
ERROR at line 1:
ORA-14133: ALTER TABLE MOVE cannot be combined with other operations