select p.*,g.roleName,pg.srcType from t_gold_pay_add p left join gRole g on p.roleID=g.roleID left join gPay pg on pg.roleID=p.roleID 这上面那边语句,容易造成数据重复 select distinct p.id,p.*,g.roleName,pg.srcType from t_gold_pay_add p left join gRole g on p.roleID=
left join 基本用法 MySQL left join 语句格式 A LEFT JOIN B ON 条件表达式 left join 是以A表为基础,A表即左表,B表即右表. 左表(A)的记录会全部显示,而右表(B)只会显示符合条件表达式的记录,如果在右表(B)中没有符合条件的记录,则记录不足的地方为NULL. 使用left join, A表与B表所显示的记录数为 1:1 或 1:0,A表的所有记录都会显示,B表只显示符合条件的记录. 但如果B表符合条件的记录数大于1条,就会出现1:n的情况
delete from 表名 where id not in (select d.id from (SELECT id FROM 表名 GROUP BY c1,c2,c3,c4)as d) #去重复,把url重复,且区为空的中去掉.select * from TABLE where url in (select u.url from (select * from TABLE where id not in (select d.id from (SELECT id FROM TABLE GROUP
INSERT INTO hk_test(username, passwd) VALUES ('qmf1', 'qmf1'),('qmf2', 'qmf11') delete from hk_test where username='qmf1' and passwd='qmf1' MySQL里查询表里的重复数据记录: 先查看重复的原始数据: 场景一:列出username字段有重读的数据 select username,count(*) as count from hk_test group by
MySQL在多表之间执行join时,利用一种nested-loop algorithm 或者其变种:(嵌套循环) Nested-Loop Join Algorithm 一个简单的嵌套循环连接(NLJ)算法 从第一个表读取一行,然后传递给Join中的其他表依次读取,过程一直重复剩余的表都被Join. 假设在三个表t1,t2,t3做连接时: Table Join Type t1 range t2 ref t3 ALL 如下: for each row in t1 matching ran
mysql left join 右表数据不唯一的情况解决方法 <pre>member 表id username1 fdipzone2 terry member_login_log 表id uid logindate1 1 2015-01-012 2 2015-01-013 1 2015-01-024 2 2015-01-025 2 2015-01-03 select a.id, a.username, b.logindate from member as a left join (select
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MySQL Full Join的实现 由于MySQL不支持FULL JOIN,以下是替代方法 left join + union(可去除反复数据)+ right join select * from A left join B on A.id = B.id (where 条件) union select * from A right join B on A.id = B.id (where条件);
JOIN的含义就如英文单词"join"一样,连接两张表,大致分为内连接,外连接,右连接,左连接,自然连接.这里描述先甩出一张用烂了的图,然后插入测试数据. CREATE TABLE t_blog( id INT PRIMARY KEY AUTO_INCREMENT, title ), typeId INT ); SELECT * FROM t_blog; +----+-------+--------+ | id | title | typeId | +----+-------+----
这篇博文讲述如何优化内循环的次数.内循环的次数受驱动表的记录数所影响,驱动表记录数越多,内循环就越多,连接效率就越低下,所以尽量用小表驱动大表.先插入测试数据. CREATE TABLE t1 ( id INT PRIMARY KEY AUTO_INCREMENT, type INT ); SELECT COUNT(*) FROM t1; +----------+ | COUNT(*) | +----------+ | +----------+ CREATE TABLE t2 ( id INT