当工作在非常大的表上时,你可能偶尔需要运行很多查询获得一个大量数据的小的子集,不是对整个表运行这些查询,而是让MySQL每次找出所需的少数记录,将记录选择到一个临时表可能更快些,然后多这些表运行查询。 创建临时表很容易,给正常的CREATE TABLE语句
当工作在非常大的表上时,你可能偶尔需要运行很多查询获得一个大量数据的小的子集,不是对整个表运行这些查询,而是让MySQL每次找出所需的少数记录,将记录选择到一个临时表可能更快些,然后多这些表运行查询。
创建临时表很容易,给正常的CREATE TABLE语句加上TEMPORARY关键字:
CREATE TEMPORARY TABLE tmp_table (
name VARCHAR(10) NOT NULL,
value INTEGER NOT NULL
)
临时表将在你连接MySQL期间存在。当你断开时,MySQL将自动删除表并释放所用的空间。当然你可以在仍然连接的时候删除表并释放空间。
DROP TABLE tmp_table
如果在你创建名为tmp_table临时表时名为tmp_table的表在数据库中已经存在,,临时表将有必要屏蔽(隐藏)非临时表tmp_table。
如果你声明临时表是一个HEAP表,MySQL也允许你指定在内存中创建它:
CREATE TEMPORARY TABLE tmp_table (
name VARCHAR(10) NOT NULL,
value INTEGER NOT NULL
) TYPE = HEAP
因为HEAP表存储在内存中,你对它运行的查询可能比磁盘上的临时表快些。然而,HEAP表与一般的表有些不同,且有自身的限制。详见MySQL参考手册。
正如前面的建议,你应该测试临时表看看它们是否真的比对大量数据库运行查询快。如果数据很好地索引,临时表可能一点不快。

Stored procedures are precompiled SQL statements in MySQL for improving performance and simplifying complex operations. 1. Improve performance: After the first compilation, subsequent calls do not need to be recompiled. 2. Improve security: Restrict data table access through permission control. 3. Simplify complex operations: combine multiple SQL statements to simplify application layer logic.

The working principle of MySQL query cache is to store the results of SELECT query, and when the same query is executed again, the cached results are directly returned. 1) Query cache improves database reading performance and finds cached results through hash values. 2) Simple configuration, set query_cache_type and query_cache_size in MySQL configuration file. 3) Use the SQL_NO_CACHE keyword to disable the cache of specific queries. 4) In high-frequency update environments, query cache may cause performance bottlenecks and needs to be optimized for use through monitoring and adjustment of parameters.

The reasons why MySQL is widely used in various projects include: 1. High performance and scalability, supporting multiple storage engines; 2. Easy to use and maintain, simple configuration and rich tools; 3. Rich ecosystem, attracting a large number of community and third-party tool support; 4. Cross-platform support, suitable for multiple operating systems.

The steps for upgrading MySQL database include: 1. Backup the database, 2. Stop the current MySQL service, 3. Install the new version of MySQL, 4. Start the new version of MySQL service, 5. Recover the database. Compatibility issues are required during the upgrade process, and advanced tools such as PerconaToolkit can be used for testing and optimization.

MySQL backup policies include logical backup, physical backup, incremental backup, replication-based backup, and cloud backup. 1. Logical backup uses mysqldump to export database structure and data, which is suitable for small databases and version migrations. 2. Physical backups are fast and comprehensive by copying data files, but require database consistency. 3. Incremental backup uses binary logging to record changes, which is suitable for large databases. 4. Replication-based backup reduces the impact on the production system by backing up from the server. 5. Cloud backups such as AmazonRDS provide automation solutions, but costs and control need to be considered. When selecting a policy, database size, downtime tolerance, recovery time, and recovery point goals should be considered.

MySQLclusteringenhancesdatabaserobustnessandscalabilitybydistributingdataacrossmultiplenodes.ItusestheNDBenginefordatareplicationandfaulttolerance,ensuringhighavailability.Setupinvolvesconfiguringmanagement,data,andSQLnodes,withcarefulmonitoringandpe

Optimizing database schema design in MySQL can improve performance through the following steps: 1. Index optimization: Create indexes on common query columns, balancing the overhead of query and inserting updates. 2. Table structure optimization: Reduce data redundancy through normalization or anti-normalization and improve access efficiency. 3. Data type selection: Use appropriate data types, such as INT instead of VARCHAR, to reduce storage space. 4. Partitioning and sub-table: For large data volumes, use partitioning and sub-table to disperse data to improve query and maintenance efficiency.

TooptimizeMySQLperformance,followthesesteps:1)Implementproperindexingtospeedupqueries,2)UseEXPLAINtoanalyzeandoptimizequeryperformance,3)Adjustserverconfigurationsettingslikeinnodb_buffer_pool_sizeandmax_connections,4)Usepartitioningforlargetablestoi


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