正则表达式
bitsCN.comSQL模式匹配允许你使用“_”匹配任何单个字符,而“%”匹配任意数目字符(包括零字符)。在 MySQL中,SQL的模式默认是忽略大小写的。下面给出一些例子。注意使用SQL模式时,不能使用=或!=;而应使用LIKE或NOT LIKE比较操作符。
要想找出以“b”开头的名字:
mysql> <strong>SELECT * FROM pet WHERE name LIKE 'b%';</strong>
+--------+--------+---------+------+------------+------------+
| name | owner | species | sex | birth | death |
+--------+--------+---------+------+------------+------------+
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
| Bowser | Diane | dog | m | 1989-08-31 | 1995-07-29 |
+--------+--------+---------+------+------------+------------+
要想找出以“fy”结尾的名字:
mysql> <strong>SELECT * FROM pet WHERE name LIKE '%fy';</strong>
+--------+--------+---------+------+------------+-------+
| name | owner | species | sex | birth | death |
+--------+--------+---------+------+------------+-------+
| Fluffy | Harold | cat | f | 1993-02-04 | NULL |
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
+--------+--------+---------+------+------------+-------+
要想找出包含“w”的名字:
mysql> <strong>SELECT * FROM pet WHERE name LIKE '%w%';</strong>
+----------+-------+---------+------+------------+------------+
| name | owner | species | sex | birth | death |
+----------+-------+---------+------+------------+------------+
| Claws | Gwen | cat | m | 1994-03-17 | NULL |
| Bowser | Diane | dog | m | 1989-08-31 | 1995-07-29 |
| Whistler | Gwen | bird | NULL | 1997-12-09 | NULL |
+----------+-------+---------+------+------------+------------+
要想找出正好包含5个字符的名字,使用“_”模式字符:
mysql> <strong>SELECT * FROM pet WHERE name LIKE '_____';</strong>
+-------+--------+---------+------+------------+-------+
| name | owner | species | sex | birth | death |
+-------+--------+---------+------+------------+-------+
| Claws | Gwen | cat | m | 1994-03-17 | NULL |
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
+-------+--------+---------+------+------------+-------+
由MySQL提供的模式匹配的其它类型是使用扩展正则表达式。当你对这类模式进行匹配测试时,使用REGEXP和NOT REGEXP操作符(或RLIKE和NOT RLIKE,它们是同义词)。
扩展正则表达式的一些字符是:
‘.'匹配任何单个的字符。
字符类“[...]”匹配在方括号内的任何字符。例如,“[abc]”匹配“a”、“b”或“c”。为了命名字符的范围,使用一个“-”。“[a-z]”匹配任何字母,而“[0-9]”匹配任何数字。
“ * ”匹配零个或多个在它前面的字符。例如,“x*”匹配任何数量的“x”字符,“[0-9]*”匹配任何数量的数字,而“.*”匹配任何数量的任何字符。
- 如果REGEXP模式与被测试值的任何地方匹配,模式就匹配(这不同于LIKE模式匹配,只有与整个值匹配,模式才匹配)。
- 为了定位一个模式以便它必须匹配被测试值的开始或结尾,在模式开始处使用“^”或在模式的结尾用“$”。
为了说明扩展正则表达式如何工作,下面使用REGEXP重写上面所示的LIKE查询:
为了找出以“b”开头的名字,使用“^”匹配名字的开始:
mysql> <strong>SELECT * FROM pet WHERE name REGEXP '^b';</strong>
+--------+--------+---------+------+------------+------------+
| name | owner | species | sex | birth | death |
+--------+--------+---------+------+------------+------------+
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
| Bowser | Diane | dog | m | 1989-08-31 | 1995-07-29 |
+--------+--------+---------+------+------------+------------+
如果你想强制使REGEXP比较区分大小写,使用BINARY关键字使其中一个字符串变为二进制字符串。该查询只匹配名称首字母的小写‘b'。
mysql> <strong>SELECT * FROM pet WHERE name REGEXP BINARY '^b';</strong>
<strong> </strong>
为了找出以“fy”结尾的名字,使用“$”匹配名字的结尾:
mysql> <strong>SELECT * FROM pet WHERE name REGEXP 'fy$';</strong>
+--------+--------+---------+------+------------+-------+
| name | owner | species | sex | birth | death |
+--------+--------+---------+------+------------+-------+
| Fluffy | Harold | cat | f | 1993-02-04 | NULL |
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
+--------+--------+---------+------+------------+-------+
为了找出包含一个“w”的名字,使用以下查询:
mysql> <strong>SELECT * FROM pet WHERE name REGEXP 'w';</strong>
+----------+-------+---------+------+------------+------------+
| name | owner | species | sex | birth | death |
+----------+-------+---------+------+------------+------------+
| Claws | Gwen | cat | m | 1994-03-17 | NULL |
| Bowser | Diane | dog | m | 1989-08-31 | 1995-07-29 |
| Whistler | Gwen | bird | NULL | 1997-12-09 | NULL |
+----------+-------+---------+------+------------+------------+
既然如果一个正则表达式出现在值的任何地方,其模式匹配了,就不必在先前的查询中在模式的两侧放置一个通配符以使得它匹配整个值,就像你使用了一个SQL模式那样。
为了找出包含正好5个字符的名字,使用“^”和“$”匹配名字的开始和结尾,和5个“.”实例在两者之间:
mysql> <strong>SELECT * FROM pet WHERE name REGEXP '^.....$';</strong>
+-------+--------+---------+------+------------+-------+
| name | owner | species | sex | birth | death |
+-------+--------+---------+------+------------+-------+
| Claws | Gwen | cat | m | 1994-03-17 | NULL |
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
+-------+--------+---------+------+------------+-------+
你也可以使用“{n}”“重复n次”操作符重写前面的查询:
mysql> <strong>SELECT * FROM pet WHERE name REGEXP '^.{5}$';</strong>
+-------+--------+---------+------+------------+-------+
| name | owner | species | sex | birth | death |
+-------+--------+---------+------+------------+-------+
| Claws | Gwen | cat | m | 1994-03-17 | NULL |
| Buffy | Harold | dog | f | 1989-05-13 | NULL |
+-------+--------+---------+------+------------+-------+bitsCN.com

MySQL is an open source relational database management system, mainly used to store and retrieve data quickly and reliably. Its working principle includes client requests, query resolution, execution of queries and return results. Examples of usage include creating tables, inserting and querying data, and advanced features such as JOIN operations. Common errors involve SQL syntax, data types, and permissions, and optimization suggestions include the use of indexes, optimized queries, and partitioning of tables.

MySQL is an open source relational database management system suitable for data storage, management, query and security. 1. It supports a variety of operating systems and is widely used in Web applications and other fields. 2. Through the client-server architecture and different storage engines, MySQL processes data efficiently. 3. Basic usage includes creating databases and tables, inserting, querying and updating data. 4. Advanced usage involves complex queries and stored procedures. 5. Common errors can be debugged through the EXPLAIN statement. 6. Performance optimization includes the rational use of indexes and optimized query statements.

MySQL is chosen for its performance, reliability, ease of use, and community support. 1.MySQL provides efficient data storage and retrieval functions, supporting multiple data types and advanced query operations. 2. Adopt client-server architecture and multiple storage engines to support transaction and query optimization. 3. Easy to use, supports a variety of operating systems and programming languages. 4. Have strong community support and provide rich resources and solutions.

InnoDB's lock mechanisms include shared locks, exclusive locks, intention locks, record locks, gap locks and next key locks. 1. Shared lock allows transactions to read data without preventing other transactions from reading. 2. Exclusive lock prevents other transactions from reading and modifying data. 3. Intention lock optimizes lock efficiency. 4. Record lock lock index record. 5. Gap lock locks index recording gap. 6. The next key lock is a combination of record lock and gap lock to ensure data consistency.

The main reasons for poor MySQL query performance include not using indexes, wrong execution plan selection by the query optimizer, unreasonable table design, excessive data volume and lock competition. 1. No index causes slow querying, and adding indexes can significantly improve performance. 2. Use the EXPLAIN command to analyze the query plan and find out the optimizer error. 3. Reconstructing the table structure and optimizing JOIN conditions can improve table design problems. 4. When the data volume is large, partitioning and table division strategies are adopted. 5. In a high concurrency environment, optimizing transactions and locking strategies can reduce lock competition.

In database optimization, indexing strategies should be selected according to query requirements: 1. When the query involves multiple columns and the order of conditions is fixed, use composite indexes; 2. When the query involves multiple columns but the order of conditions is not fixed, use multiple single-column indexes. Composite indexes are suitable for optimizing multi-column queries, while single-column indexes are suitable for single-column queries.

To optimize MySQL slow query, slowquerylog and performance_schema need to be used: 1. Enable slowquerylog and set thresholds to record slow query; 2. Use performance_schema to analyze query execution details, find out performance bottlenecks and optimize.

MySQL and SQL are essential skills for developers. 1.MySQL is an open source relational database management system, and SQL is the standard language used to manage and operate databases. 2.MySQL supports multiple storage engines through efficient data storage and retrieval functions, and SQL completes complex data operations through simple statements. 3. Examples of usage include basic queries and advanced queries, such as filtering and sorting by condition. 4. Common errors include syntax errors and performance issues, which can be optimized by checking SQL statements and using EXPLAIN commands. 5. Performance optimization techniques include using indexes, avoiding full table scanning, optimizing JOIN operations and improving code readability.


Hot AI Tools

Undresser.AI Undress
AI-powered app for creating realistic nude photos

AI Clothes Remover
Online AI tool for removing clothes from photos.

Undress AI Tool
Undress images for free

Clothoff.io
AI clothes remover

AI Hentai Generator
Generate AI Hentai for free.

Hot Article

Hot Tools

MantisBT
Mantis is an easy-to-deploy web-based defect tracking tool designed to aid in product defect tracking. It requires PHP, MySQL and a web server. Check out our demo and hosting services.

Dreamweaver Mac version
Visual web development tools

ZendStudio 13.5.1 Mac
Powerful PHP integrated development environment

MinGW - Minimalist GNU for Windows
This project is in the process of being migrated to osdn.net/projects/mingw, you can continue to follow us there. MinGW: A native Windows port of the GNU Compiler Collection (GCC), freely distributable import libraries and header files for building native Windows applications; includes extensions to the MSVC runtime to support C99 functionality. All MinGW software can run on 64-bit Windows platforms.

SublimeText3 Chinese version
Chinese version, very easy to use