ERROR 1045 (28000): Access denied for user 'root'@'localhost' (using password: NO) Red Hat Enterprise Linux 5服务器上mysql启动报错:ERROR 1045 (28000): Access denied for user 'root'@'localhost' (using password: NO)
原因1-启动命令错误:
我开始的时候直接输入命令:mysql start
正确的启动命令是: /etc/rc.d/init.d/mysql start
原因2-配置文件错误:
检查etc下面的my.cnf如下内容:
[client]
#password = your_password
port = 3306
socket = /usr/mysql-data/mysql.sock
# Here follows entries for some specific programs
# The MySQL server
[mysqld]
port = 3306
socket = /usr/mysql-data/mysql.sock
原因3-启动文件错误:
需要修改MySQL启动脚本/etc/rc.d/init.d/mysql,
其中datadir= ? 一行检查下!
原因4-前提是你在使用php连接时候报错!
在/etc/php.ini修改mysql.default_socket的值设置为:
mysql.default_socket=/var/lib/mysql/mysql.sock
回到终点设置个连接:ln -s /var/lib/mysql/mysql.sock /tmp/mysql.sock
(在/etc/php.ini中mysql.default_socket这个文件中,关于mysql.default_socket的值的说明是这样的,
;Default socket name for local MySQL connects. If empty, uses the built-in MySQL defaults.
这个值一开始是空的,也就是说,如果我们不主动去修改的话,php将会使用内建在mysql中的默认值) 另一篇文章:Mysql ERROR 1045 (28000): Access denied for user 'root'@'localhost'问题的解决
这种问题需要强行重新修改密码,方法如下:
/etc/init.d/mysql stop (service mysqld stop )
/usr/bin/mysqld_safe --skip-grant-tables
另外开个SSH连接
[root@localhost ~]# mysql
mysql>use mysql
mysql>update user set password=password("123456") where user="root";
mysql>flush privileges;
mysql>exit
pkill -KILL -t pts/0 可将pts为0的**用户(之前运行mysqld_safe的用户窗口)强制踢出
正常启动 MySQL:/etc/init.d/mysql start (service mysqld start)
注意:另外还遇到需要service mysql star才能启动service mysql stop才能停止。
还有直接使用mysql不能找到命令,错误为“bash: mysql: command not found”可以直接**mysql的安装目录中的bin文件夹跟绝对路径运行命令,还有的需要加./mysql 才能执行。 本文来自:http://sundful.javaeye.com/blog/704337 另一篇关于清除密码、重置用户的文章: Quote:
First things first. Log in as root and stop the mysql daemon. sudo /etc/init.d/mysql stop Now lets start up the mysql daemon and skip the grant tables which store the passwords. sudo mysqld_safe --skip-grant-tables& (press Ctrl+C now to disown the process and start typing commands again) You should see mysqld start up successfully. If not, well you have bigger issues. Now you should be able to connect to mysql without a password. sudo mysql --user=root mysql update user set Password=PASSWORD('new-password'); flush privileges; exit; Now kill your running mysqld then restart it normally. sudo killall mysqld_safe& (press Ctrl+C now to disown the process and start typing commands again) /etc/init.d/mysql start You should be good to go. Try not to forget your password again. |
MySQL Authentication Denial
3/29/2005, 12:05 amIt seems to me that a lot of people have auth denial when trying to make connections to MySQL. They seem to ignore the text of the error message. ‘Access Denied’ means access denied, nothing else.
Remember three things have to match. The host as MySQL sees it, the username, and the password. When MySQL returns access denied it’s not broken. One or more of those three things does not match. I don’t really need to reiterate what’s in the manual. Chang the lock or change the key to make it fit.
其中连接到mysql的文档内容为:http://dev.mysql.com/doc/refman/5.5/en/access-denied.html
InnoDB uses redologs and undologs to ensure data consistency and reliability. 1.redologs record data page modification to ensure crash recovery and transaction persistence. 2.undologs records the original data value and supports transaction rollback and MVCC.

Key metrics for EXPLAIN commands include type, key, rows, and Extra. 1) The type reflects the access type of the query. The higher the value, the higher the efficiency, such as const is better than ALL. 2) The key displays the index used, and NULL indicates no index. 3) rows estimates the number of scanned rows, affecting query performance. 4) Extra provides additional information, such as Usingfilesort prompts that it needs to be optimized.

Usingtemporary indicates that the need to create temporary tables in MySQL queries, which are commonly found in ORDERBY using DISTINCT, GROUPBY, or non-indexed columns. You can avoid the occurrence of indexes and rewrite queries and improve query performance. Specifically, when Usingtemporary appears in EXPLAIN output, it means that MySQL needs to create temporary tables to handle queries. This usually occurs when: 1) deduplication or grouping when using DISTINCT or GROUPBY; 2) sort when ORDERBY contains non-index columns; 3) use complex subquery or join operations. Optimization methods include: 1) ORDERBY and GROUPB

MySQL/InnoDB supports four transaction isolation levels: ReadUncommitted, ReadCommitted, RepeatableRead and Serializable. 1.ReadUncommitted allows reading of uncommitted data, which may cause dirty reading. 2. ReadCommitted avoids dirty reading, but non-repeatable reading may occur. 3.RepeatableRead is the default level, avoiding dirty reading and non-repeatable reading, but phantom reading may occur. 4. Serializable avoids all concurrency problems but reduces concurrency. Choosing the appropriate isolation level requires balancing data consistency and performance requirements.

MySQL is suitable for web applications and content management systems and is popular for its open source, high performance and ease of use. 1) Compared with PostgreSQL, MySQL performs better in simple queries and high concurrent read operations. 2) Compared with Oracle, MySQL is more popular among small and medium-sized enterprises because of its open source and low cost. 3) Compared with Microsoft SQL Server, MySQL is more suitable for cross-platform applications. 4) Unlike MongoDB, MySQL is more suitable for structured data and transaction processing.

MySQL index cardinality has a significant impact on query performance: 1. High cardinality index can more effectively narrow the data range and improve query efficiency; 2. Low cardinality index may lead to full table scanning and reduce query performance; 3. In joint index, high cardinality sequences should be placed in front to optimize query.

The MySQL learning path includes basic knowledge, core concepts, usage examples, and optimization techniques. 1) Understand basic concepts such as tables, rows, columns, and SQL queries. 2) Learn the definition, working principles and advantages of MySQL. 3) Master basic CRUD operations and advanced usage, such as indexes and stored procedures. 4) Familiar with common error debugging and performance optimization suggestions, such as rational use of indexes and optimization queries. Through these steps, you will have a full grasp of the use and optimization of MySQL.

MySQL's real-world applications include basic database design and complex query optimization. 1) Basic usage: used to store and manage user data, such as inserting, querying, updating and deleting user information. 2) Advanced usage: Handle complex business logic, such as order and inventory management of e-commerce platforms. 3) Performance optimization: Improve performance by rationally using indexes, partition tables and query caches.


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