使用ASSM的一个巨大优势是,位图freelist肯定能够减轻缓冲区忙等待(buffer busy wait)的负担,这个问题在Oracle9i以前的版本里
一. 官网说明
Logical Storage Structures
Oracle.com/docs/cd/E11882_01/server.112/e16508/logical.htm#CNCPT7668
其中有关ASSM 的内容如下:
Logical Space Management
Oracle Database must use logical space management to track and allocate the extents in a tablespace. When a database object requires an extent, the database must have a method of finding and providing it. Similarly, when an object no longer requires an extent, the database must have a method of making the free extent available.
· Locally managed tablespaces (default)
.
· Dictionary-managed tablespaces
shows the alternatives for logical space management in a tablespace.
Description of "Figure 12-3 Logical Space Management"
The following graphic is a conceptual representation of bitmap-managed storage. A 1 in the header refers to used space, whereas a 0 refers to free space.
A locally managed tablespace has the following advantages:
· Avoids using the data dictionary to manage extents
Recursive operations can occur in dictionary-managed tablespaces if consuming or releasing space in an extent results in another operation that consumes or releases space in a data dictionary table or undo segment.
· Tracks adjacent free space automatically
In this way, the database eliminates the need to coalesce free extents.
· Determines the size of locally managed extents automatically
Alternatively, all extents can have the same size in a locally managed tablespace and override object storage options.
Note:
Oracle strongly recommends the use of locally managed tablespaces with Automatic Segment Space Management.
Segment space management is an attribute inherited from the tablespace that contains the segment. Within a locally managed tablespace, the database can manage segments automatically or manually. For example, segments in tablespace users can be managed automatically while segments in tablespace tools are managed manually.
The ASSM method uses bitmaps to manage space. Bitmaps provide the following advantages:
· Simplified administration
).
· Increased concurrency
· Dynamic affinity of space to instances in an Oracle Real Application Clusters (Oracle RAC) environment
ASSM is more efficient and is the default for permanent, locally managed tablespaces.
Note:
This chapter assumes the use of ASSM in all of its discussions of logical storage space.
(HWM), which is the dividing line between segment space that is used and not yet used. As blocks are used, the database puts blocks on or removes blocks from the free list as needed.
In addition to PCTFREE, MSSM requires you to control space allocation with SQL parameters such as PCTUSED, FREELISTS, and FREELIST GROUPS. PCTUSED sets the percentage of free space that must exist in a currently used block for the database to put it on the free list. For example, if you set PCTUSED to 40 in a CREATE TABLE statement, then you cannot insert rows into a block in the segment until less than 40% of the block space is used.
As an illustration, suppose you insert a row into a table. The database checks a free list of the table for the first available block. If the row cannot fit in the block, and if the used space in the block is greater than or equal to PCTUSED, then the database takes the block off the list and searches for another block. If you delete rows from the block, then the database checks whether used space in the block is now less than PCTUSED. If so, then the database places the block at the beginning of the free list.
An object may have multiple free lists. In this way, multiple sessions performing DML on a table can use different lists, which can reduce contention. Each database session uses only one free list for the duration of its session.
, which are collections of free lists. Each group has a master free list that manages the individual process free lists in the group. Space overhead for free lists, especially for free list groups, can be significant.
Description of "Figure 12-4 Free List Groups"
PCTUSED is 40, then the database does not permit inserts into any of these blocks. Because of the difficulty of fine-tuning space allocation parameters, Oracle strongly recommends ASSM. In ASSM, PCTFREE determines whether a new row can be inserted into a block, but it does not use free lists and ignores PCTUSED.

MySQL是一种开源的关系型数据库管理系统,主要用于快速、可靠地存储和检索数据。其工作原理包括客户端请求、查询解析、执行查询和返回结果。使用示例包括创建表、插入和查询数据,以及高级功能如JOIN操作。常见错误涉及SQL语法、数据类型和权限问题,优化建议包括使用索引、优化查询和分表分区。

MySQL是一个开源的关系型数据库管理系统,适用于数据存储、管理、查询和安全。1.它支持多种操作系统,广泛应用于Web应用等领域。2.通过客户端-服务器架构和不同存储引擎,MySQL高效处理数据。3.基本用法包括创建数据库和表,插入、查询和更新数据。4.高级用法涉及复杂查询和存储过程。5.常见错误可通过EXPLAIN语句调试。6.性能优化包括合理使用索引和优化查询语句。

选择MySQL的原因是其性能、可靠性、易用性和社区支持。1.MySQL提供高效的数据存储和检索功能,支持多种数据类型和高级查询操作。2.采用客户端-服务器架构和多种存储引擎,支持事务和查询优化。3.易于使用,支持多种操作系统和编程语言。4.拥有强大的社区支持,提供丰富的资源和解决方案。

InnoDB的锁机制包括共享锁、排他锁、意向锁、记录锁、间隙锁和下一个键锁。1.共享锁允许事务读取数据而不阻止其他事务读取。2.排他锁阻止其他事务读取和修改数据。3.意向锁优化锁效率。4.记录锁锁定索引记录。5.间隙锁锁定索引记录间隙。6.下一个键锁是记录锁和间隙锁的组合,确保数据一致性。

MySQL查询性能不佳的原因主要包括没有使用索引、查询优化器选择错误的执行计划、表设计不合理、数据量过大和锁竞争。 1.没有索引导致查询缓慢,添加索引后可显着提升性能。 2.使用EXPLAIN命令可以分析查询计划,找出优化器错误。 3.重构表结构和优化JOIN条件可改善表设计问题。 4.数据量大时,采用分区和分表策略。 5.高并发环境下,优化事务和锁策略可减少锁竞争。

在数据库优化中,应根据查询需求选择索引策略:1.当查询涉及多个列且条件顺序固定时,使用复合索引;2.当查询涉及多个列但条件顺序不固定时,使用多个单列索引。复合索引适用于优化多列查询,单列索引则适合单列查询。

要优化MySQL慢查询,需使用slowquerylog和performance_schema:1.启用slowquerylog并设置阈值,记录慢查询;2.利用performance_schema分析查询执行细节,找出性能瓶颈并优化。

MySQL和SQL是开发者必备技能。1.MySQL是开源的关系型数据库管理系统,SQL是用于管理和操作数据库的标准语言。2.MySQL通过高效的数据存储和检索功能支持多种存储引擎,SQL通过简单语句完成复杂数据操作。3.使用示例包括基本查询和高级查询,如按条件过滤和排序。4.常见错误包括语法错误和性能问题,可通过检查SQL语句和使用EXPLAIN命令优化。5.性能优化技巧包括使用索引、避免全表扫描、优化JOIN操作和提升代码可读性。


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