3)shared pool reserved size一般是shared pool size的10%,不能超过50%。V$shared_pool_reserved中的request misses=0或没有持续增长,或者free_memory大于shared pool reserved size的50%,表明shared pool reserved size过大,可以压缩。
6)保留大的对象在shared pool中。大的对象是造成内存碎片的主要原因,为了腾出空间许多小对象需要移出内存,从而影响了用户的性能。因此需要将一些常用的大的对象保留在shared pool中,下列对象需要保留在shared pool中:
a. 经常使用的存储过程;
b. 经常操作的表上的已编译的触发器
c. Sequence,因为Sequence移出shared pool后可能产生号码丢失。
查找没有保存在library cache中的大对象:
Select * from v$db_object_cache where sharable_mem>10000 and type in (''PACKAGE'',''PROCEDURE'',''FUNCTION'',''PACKAGE BODY'') and kept=''NO'';
将这些对象保存在library cache中:
Execute dbms_shared_pool.keep(‘package_name’);
对应脚本:dbmspool.sql
7)查找是否存在过大的匿名pl/sql代码块。两种解决方案:
A.转换成小的匿名块调用存储过程
B.将其保留在shared pool中
查找是否存在过大的匿名pl/sql块:
Select sql_text from v$sqlarea where command_type=47 and length(sql_text)>500;
2) 根据v$db_cache_advice调整buffer cache的大小
SELECT size_for_estimate,buffers_for_estimate,estd_physical_read_factor,estd_physical_reads FROM v$db_cache_advice WHERE NAME=''DEFAULT'' AND advice_status=''ON'' AND block_size=(SELECT Value FROM v$parameter WHERE NAME=''db_block_size'');
estd_physical_read_factor<=1
3) 统计buffer cache的cache hit ratio>90%,如果低于90%,可以用下列方案解决:
SELECT NAME,value FROM v$sysstat WHERE NAME IN (''session logical reads'',''physical reads'',''physical reads direct'',''physical reads direct(lob)'');
Cache hit ratio=1-(physical reads-physical reads direct-physical reads direct (lob))/session logical reads;
Select 1-(phy.value-dir.value-lob.value)/log.value from v$sysstat log, v$sysstat phy, v$sysstat dir, v$sysstat LOB where log.name=''session logical reads'' and phy.name=''physical reads'' and dir.name=''physical reads direct'' and lob.name=''physical reads direct (lob)'';
影响cache hit ratio的因素:
全表扫描;应用设计;大表的随机访问;cache hits的不均衡分布
A、检查是否存在log buffer wait:
Select * from v$session_wait where event=’log buffer wait’ ;
如果出现等待,一是可以增加log buffer的大小,也可以通过将log 文件移到访问速度更快的磁盘来解决。
B、Select name,value from v$sysstat where name in (‘redo buffer allocation retries’,’redo entries’)
Redo buffer allocation retries接近0,小于redo entries 的1%,如果一直在增长,表明进程已经不得不等待redo buffer的空间。如果Redo buffer allocation retries过大,增加log_buffer的值。
C、检查日志文件上是否存在磁盘IO竞争现象
Select event,total_waits,time_waited,average_wait from v$system_event where event like ‘log file switch completion%’;
如果存在竞争,可以考虑将log文件转移到独立的、更快的存储设备上或增大log文件。
D、检查点的设置是否合理
检查alert.log文件中,是否存在‘checkpoint not complete’;
Select event,total_waits,time_waited,average_wait from v$system_event where event like ‘log file switch (check%’;
2)java pool
对于大的应用,java_pool_size应>=50M,对于一般的java存储过程,缺省的20M已经够用了。
3)检查是否需要调整DBWn
Select total_waits from v$system_event where event=’free buffer waits’;