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  • day39 表之间的关联关系、 补充 表操作总结 where 、group by、

    上节课遗漏 :

    完整性约束:

    约束条件与数据类型的宽度一样,都是可选参数

    作用:用于保证数据的完整性和一致性
    主要分为:

    PRIMARY KEY (PK)    标识该字段为该表的主键,可以唯一的标识记录
    FOREIGN KEY (FK)    标识该字段为该表的外键
    NOT NULL    标识该字段不能为空
    UNIQUE KEY (UK)    标识该字段的值是唯一的
    AUTO_INCREMENT    标识该字段的值自动增长(整数类型,而且为主键)
    DEFAULT    为该字段设置默认值
    
    UNSIGNED 无符号
    ZEROFILL 使用0填充

    说明:

    1. 是否允许为空,默认NULL,可设置NOT NULL,字段不允许为空,必须赋值
    2. 字段是否有默认值,缺省的默认值是NULL,如果插入记录时不给字段赋值,此字段使用默认值
    sex enum('male','female') not null default 'male'
    age int unsigned NOT NULL default 20 必须为正值(无符号) 不允许为空 默认是20
    3. 是否是key
    主键 primary key
    外键 foreign key
    索引 (index,unique...)

    1、 not null与default

    是否可空,null表示空,非字符串
    not null - 不可空
    null - 可空


    默认值,创建列时可以指定默认值,当插入数据时如果未主动设置,则自动添加默认值
    create table tb1(
    nid int not null defalut 2,
    num int not null
    )

    ==================not null====================
    mysql> create table t1(id int); #id字段默认可以插入空
    mysql> desc t1;
    +-------+---------+------+-----+---------+-------+
    | Field | Type    | Null | Key | Default | Extra |
    +-------+---------+------+-----+---------+-------+
    | id    | int(11) | YES  |     | NULL    |       |
    +-------+---------+------+-----+---------+-------+
    mysql> insert into t1 values(); #可以插入空
    
    
    mysql> create table t2(id int not null); #设置字段id不为空
    mysql> desc t2;
    +-------+---------+------+-----+---------+-------+
    | Field | Type    | Null | Key | Default | Extra |
    +-------+---------+------+-----+---------+-------+
    | id    | int(11) | NO   |     | NULL    |       |
    +-------+---------+------+-----+---------+-------+
    mysql> insert into t2 values(); #不能插入空
    ERROR 1364 (HY000): Field 'id' doesn't have a default value
    
    
    
    ==================default====================
    #设置id字段有默认值后,则无论id字段是null还是not null,都可以插入空,插入空默认填入default指定的默认值
    mysql> create table t3(id int default 1);
    mysql> alter table t3 modify id int not null default 1;
    
    
    
    ==================综合练习====================
    mysql> create table student(
        -> name varchar(20) not null,
        -> age int(3) unsigned not null default 18,
        -> sex enum('male','female') default 'male',
        -> hobby set('play','study','read','music') default 'play,music'
        -> );
    mysql> desc student;
    +-------+------------------------------------+------+-----+------------+-------+
    | Field | Type                               | Null | Key | Default    | Extra |
    +-------+------------------------------------+------+-----+------------+-------+
    | name  | varchar(20)                        | NO   |     | NULL       |       |
    | age   | int(3) unsigned                    | NO   |     | 18         |       |
    | sex   | enum('male','female')              | YES  |     | male       |       |
    | hobby | set('play','study','read','music') | YES  |     | play,music |       |
    +-------+------------------------------------+------+-----+------------+-------+
    mysql> insert into student(name) values('egon');
    mysql> select * from student;
    +------+-----+------+------------+
    | name | age | sex  | hobby      |
    +------+-----+------+------------+
    | egon |  18 | male | play,music |
    +------+-----+------+------------+
    验证

    2、unique

    ============设置唯一约束 UNIQUE===============
    方法一:
    create table department1(
    id int,
    name varchar(20) unique,
    comment varchar(100)
    );
    
    
    方法二:
    create table department2(
    id int,
    name varchar(20),
    comment varchar(100),
    constraint uk_name unique(name)
    );
    
    
    mysql> insert into department1 values(1,'IT','技术');
    Query OK, 1 row affected (0.00 sec)
    mysql> insert into department1 values(1,'IT','技术');
    ERROR 1062 (23000): Duplicate entry 'IT' for key 'name'
    设置唯一约束
    mysql> create table t1(id int not null unique);
    Query OK, 0 rows affected (0.02 sec)
    
    mysql> desc t1;
    +-------+---------+------+-----+---------+-------+
    | Field | Type    | Null | Key | Default | Extra |
    +-------+---------+------+-----+---------+-------+
    | id    | int(11) | NO   | PRI | NULL    |       |
    +-------+---------+------+-----+---------+-------+
    1 row in set (0.00 sec)
    unique 与not null的化学反应
    create table service(
    id int primary key auto_increment,
    name varchar(20),
    host varchar(15) not null,
    port int not null,
    unique(host,port) #联合唯一
    );
    
    mysql> insert into service values
        -> (1,'nginx','192.168.0.10',80),
        -> (2,'haproxy','192.168.0.20',80),
        -> (3,'mysql','192.168.0.30',3306)
        -> ;
    Query OK, 3 rows affected (0.01 sec)
    Records: 3  Duplicates: 0  Warnings: 0
    
    mysql> insert into service(name,host,port) values('nginx','192.168.0.10',80);
    ERROR 1062 (23000): Duplicate entry '192.168.0.10-80' for key 'host'
    联合唯一

    3、primary key

    primary key字段的值不为空且唯一

    一个表中可以:

    单列做主键
    多列做主键(复合主键)

    但一个表内只能有一个主键primary key

    ============单列做主键===============
    #方法一:not null+unique
    create table department1(
    id int not null unique, #主键
    name varchar(20) not null unique,
    comment varchar(100)
    );
    
    mysql> desc department1;
    +---------+--------------+------+-----+---------+-------+
    | Field   | Type         | Null | Key | Default | Extra |
    +---------+--------------+------+-----+---------+-------+
    | id      | int(11)      | NO   | PRI | NULL    |       |
    | name    | varchar(20)  | NO   | UNI | NULL    |       |
    | comment | varchar(100) | YES  |     | NULL    |       |
    +---------+--------------+------+-----+---------+-------+
    rows in set (0.01 sec)
    
    #方法二:在某一个字段后用primary key
    create table department2(
    id int primary key, #主键
    name varchar(20),
    comment varchar(100)
    );
    
    mysql> desc department2;
    +---------+--------------+------+-----+---------+-------+
    | Field   | Type         | Null | Key | Default | Extra |
    +---------+--------------+------+-----+---------+-------+
    | id      | int(11)      | NO   | PRI | NULL    |       |
    | name    | varchar(20)  | YES  |     | NULL    |       |
    | comment | varchar(100) | YES  |     | NULL    |       |
    +---------+--------------+------+-----+---------+-------+
    rows in set (0.00 sec)
    
    #方法三:在所有字段后单独定义primary key
    create table department3(
    id int,
    name varchar(20),
    comment varchar(100),
    constraint pk_name primary key(id); #创建主键并为其命名pk_name
    
    mysql> desc department3;
    +---------+--------------+------+-----+---------+-------+
    | Field   | Type         | Null | Key | Default | Extra |
    +---------+--------------+------+-----+---------+-------+
    | id      | int(11)      | NO   | PRI | NULL    |       |
    | name    | varchar(20)  | YES  |     | NULL    |       |
    | comment | varchar(100) | YES  |     | NULL    |       |
    +---------+--------------+------+-----+---------+-------+
    rows in set (0.01 sec)
    单列做主键
    ==================多列做主键================
    create table service(
    ip varchar(15),
    port char(5),
    service_name varchar(10) not null,
    primary key(ip,port)
    );
    
    
    mysql> desc service;
    +--------------+-------------+------+-----+---------+-------+
    | Field        | Type        | Null | Key | Default | Extra |
    +--------------+-------------+------+-----+---------+-------+
    | ip           | varchar(15) | NO   | PRI | NULL    |       |
    | port         | char(5)     | NO   | PRI | NULL    |       |
    | service_name | varchar(10) | NO   |     | NULL    |       |
    +--------------+-------------+------+-----+---------+-------+
    3 rows in set (0.00 sec)
    
    mysql> insert into service values
        -> ('172.16.45.10','3306','mysqld'),
        -> ('172.16.45.11','3306','mariadb')
        -> ;
    Query OK, 2 rows affected (0.00 sec)
    Records: 2  Duplicates: 0  Warnings: 0
    
    mysql> insert into service values ('172.16.45.10','3306','nginx');
    ERROR 1062 (23000): Duplicate entry '172.16.45.10-3306' for key 'PRIMARY'
    多列做主键

    4、auto_increment

    约束字段为自动增长,被约束的字段必须同时被key约束

    #不指定id,则自动增长
    create table student(
    id int primary key auto_increment,
    name varchar(20),
    sex enum('male','female') default 'male'
    );
    
    mysql> desc student;
    +-------+-----------------------+------+-----+---------+----------------+
    | Field | Type                  | Null | Key | Default | Extra          |
    +-------+-----------------------+------+-----+---------+----------------+
    | id    | int(11)               | NO   | PRI | NULL    | auto_increment |
    | name  | varchar(20)           | YES  |     | NULL    |                |
    | sex   | enum('male','female') | YES  |     | male    |                |
    +-------+-----------------------+------+-----+---------+----------------+
    mysql> insert into student(name) values
        -> ('egon'),
        -> ('alex')
        -> ;
    
    mysql> select * from student;
    +----+------+------+
    | id | name | sex  |
    +----+------+------+
    |  1 | egon | male |
    |  2 | alex | male |
    +----+------+------+
    
    
    #也可以指定id
    mysql> insert into student values(4,'asb','female');
    Query OK, 1 row affected (0.00 sec)
    
    mysql> insert into student values(7,'wsb','female');
    Query OK, 1 row affected (0.00 sec)
    
    mysql> select * from student;
    +----+------+--------+
    | id | name | sex    |
    +----+------+--------+
    |  1 | egon | male   |
    |  2 | alex | male   |
    |  4 | asb  | female |
    |  7 | wsb  | female |
    +----+------+--------+
    
    
    #对于自增的字段,在用delete删除后,再插入值,该字段仍按照删除前的位置继续增长
    mysql> delete from student;
    Query OK, 4 rows affected (0.00 sec)
    
    mysql> select * from student;
    Empty set (0.00 sec)
    
    mysql> insert into student(name) values('ysb');
    mysql> select * from student;
    +----+------+------+
    | id | name | sex  |
    +----+------+------+
    |  8 | ysb  | male |
    +----+------+------+
    
    #应该用truncate清空表,比起delete一条一条地删除记录,truncate是直接清空表,在删除大表时用它
    mysql> truncate student;
    Query OK, 0 rows affected (0.01 sec)
    
    mysql> insert into student(name) values('egon');
    Query OK, 1 row affected (0.01 sec)
    
    mysql> select * from student;
    +----+------+------+
    | id | name | sex  |
    +----+------+------+
    |  1 | egon | male |
    +----+------+------+
    1 row in set (0.00 sec)
    自增长
    #在创建完表后,修改自增字段的起始值
    mysql> create table student(
        -> id int primary key auto_increment,
        -> name varchar(20),
        -> sex enum('male','female') default 'male'
        -> );
    
    mysql> alter table student auto_increment=3;
    
    mysql> show create table student;
    .......
    ENGINE=InnoDB AUTO_INCREMENT=3 DEFAULT CHARSET=utf8
    
    mysql> insert into student(name) values('egon');
    Query OK, 1 row affected (0.01 sec)
    
    mysql> select * from student;
    +----+------+------+
    | id | name | sex  |
    +----+------+------+
    |  3 | egon | male |
    +----+------+------+
    row in set (0.00 sec)
    
    mysql> show create table student;
    .......
    ENGINE=InnoDB AUTO_INCREMENT=4 DEFAULT CHARSET=utf8
    
    
    #也可以创建表时指定auto_increment的初始值,注意初始值的设置为表选项,应该放到括号外
    create table student(
    id int primary key auto_increment,
    name varchar(20),
    sex enum('male','female') default 'male'
    )auto_increment=3;
    
    
    
    
    #设置步长
    sqlserver:自增步长
        基于表级别
        create table t1(
            id int。。。
        )engine=innodb,auto_increment=2 步长=2 default charset=utf8
    
    mysql自增的步长:
        show session variables like 'auto_inc%';
        
        #基于会话级别
        set session auth_increment_increment=2 #修改会话级别的步长
    
        #基于全局级别的
        set global auth_increment_increment=2 #修改全局级别的步长(所有会话都生效)
    
    
    #!!!注意了注意了注意了!!!
    If the value of auto_increment_offset is greater than that of auto_increment_increment, the value of auto_increment_offset is ignored. 
    翻译:如果auto_increment_offset的值大于auto_increment_increment的值,则auto_increment_offset的值会被忽略 
    比如:设置auto_increment_offset=3,auto_increment_increment=2
    
    
    
    
    mysql> set global auto_increment_increment=5;
    Query OK, 0 rows affected (0.00 sec)
    
    mysql> set global auto_increment_offset=3;
    Query OK, 0 rows affected (0.00 sec)
    
    mysql> show variables like 'auto_incre%'; #需要退出重新登录
    +--------------------------+-------+
    | Variable_name            | Value |
    +--------------------------+-------+
    | auto_increment_increment | 1     |
    | auto_increment_offset    | 1     |
    +--------------------------+-------+
    
    
    
    create table student(
    id int primary key auto_increment,
    name varchar(20),
    sex enum('male','female') default 'male'
    );
    
    mysql> insert into student(name) values('egon1'),('egon2'),('egon3');
    mysql> select * from student;
    +----+-------+------+
    | id | name  | sex  |
    +----+-------+------+
    |  3 | egon1 | male |
    |  8 | egon2 | male |
    | 13 | egon3 | male |
    +----+-------+------+
    步长increment与起始偏移量

    5、foreign key

    一 快速理解foreign key

    员工信息表有三个字段:工号  姓名  部门

    公司有3个部门,但是有1个亿的员工,那意味着部门这个字段需要重复存储,部门名字越长,越浪费

    解决方法:

    我们完全可以定义一个部门表

    然后让员工信息表关联该表,如何关联,即foreign key

    (1、在导入数据前执行以下命令即可解决中文乱码问题:
    set SESSION sql_mode='';

    1、在导入数据前执行以下命令即可解决中文乱码问题:
    set SESSION sql_mode='';
    
    #表类型必须是innodb存储引擎,且被关联的字段,即references指定的另外一个表的字段,必须保证唯一
    create table department(
    id int primary key,
    name varchar(20) not null
    )engine=innodb;
    
    #dpt_id外键,关联父表(department主键id),同步更新,同步删除
    create table employee(
    id int primary key,
    name varchar(20) not null,
    dpt_id int,
    constraint fk_name foreign key(dpt_id)
    references department(id)
    on delete cascade
    on update cascade 
    )engine=innodb;
    
    
    #先往父表department中插入记录
    insert into department values
    (1,'欧德博爱技术有限事业部'),
    (2,'艾利克斯人力资源部'),
    (3,'销售部');
    
    
    #再往子表employee中插入记录
    insert into employee values
    (1,'egon',1),
    (2,'alex1',2),
    (3,'alex2',2),
    (4,'alex3',2),
    (5,'李坦克',3),
    (6,'刘飞机',3),
    (7,'张火箭',3),
    (8,'林子弹',3),
    (9,'加特林',3)
    ;
    
    
    #删父表department,子表employee中对应的记录跟着删
    mysql> delete from department where id=3;
    mysql> select * from employee;
    +----+-------+--------+
    | id | name  | dpt_id |
    +----+-------+--------+
    |  1 | egon  |      1 |
    |  2 | alex1 |      2 |
    |  3 | alex2 |      2 |
    |  4 | alex3 |      2 |
    +----+-------+--------+
    
    
    #更新父表department,子表employee中对应的记录跟着改
    mysql> update department set id=22222 where id=2;
    mysql> select * from employee;
    +----+-------+--------+
    | id | name  | dpt_id |
    +----+-------+--------+
    |  1 | egon  |      1 |
    |  3 | alex2 |  22222 |
    |  4 | alex3 |  22222 |
    |  5 | alex1 |  22222 |
    +----+-------+--------+
    示范

    二 如何找出两张表之间的关系

    分析步骤:
    #1、先站在左表的角度去找
    是否左表的多条记录可以对应右表的一条记录,如果是,则证明左表的一个字段foreign key 右表一个字段(通常是id)
    
    #2、再站在右表的角度去找
    是否右表的多条记录可以对应左表的一条记录,如果是,则证明右表的一个字段foreign key 左表一个字段(通常是id)
    
    #3、总结:
    #多对一:
    如果只有步骤1成立,则是左表多对一右表
    如果只有步骤2成立,则是右表多对一左表
    
    #多对多
    如果步骤1和2同时成立,则证明这两张表时一个双向的多对一,即多对多,需要定义一个这两张表的关系表来专门存放二者的关系
    
    #一对一:
    如果1和2都不成立,而是左表的一条记录唯一对应右表的一条记录,反之亦然。这种情况很简单,就是在左表foreign key右表的基础上,将左表的外键字段设置成unique即可
    分析步骤

    三 建立表之间的关系

    #一对多或称为多对一
    三张表:出版社,作者信息,书
    
    一对多(或多对一):一个出版社可以出版多本书
    
    关联方式:foreign key
    =====================多对一=====================
    create table press(
    id int primary key auto_increment,
    name varchar(20)
    );
    
    create table book(
    id int primary key auto_increment,
    name varchar(20),
    press_id int not null,
    foreign key(press_id) references press(id)
    on delete cascade
    on update cascade
    );
    
    
    insert into press(name) values
    ('北京工业地雷出版社'),
    ('人民音乐不好听出版社'),
    ('知识产权没有用出版社')
    ;
    
    insert into book(name,press_id) values
    ('九阳神功',1),
    ('九阴真经',2),
    ('九阴白骨爪',2),
    ('独孤九剑',3),
    ('降龙十巴掌',2),
    ('葵花宝典',3)
    ;
    示例
    一夫多妻制
    
    #妻子表的丈夫id外键到丈夫表的id
    #多对多
    三张表:出版社,作者信息,书
    
    多对多:一个作者可以写多本书,一本书也可以有多个作者,双向的一对多,即多对多
      
    关联方式:foreign key+一张新的表
    =====================多对多=====================
    create table author(
    id int primary key auto_increment,
    name varchar(20)
    );
    
    
    #这张表就存放作者表与书表的关系,即查询二者的关系查这表就可以了
    create table author2book(
    id int not null unique auto_increment,
    author_id int not null,
    book_id int not null,
    constraint fk_author foreign key(author_id) references author(id)
    on delete cascade
    on update cascade,
    constraint fk_book foreign key(book_id) references book(id)
    on delete cascade
    on update cascade,
    primary key(author_id,book_id)
    );
    
    
    #插入四个作者,id依次排开
    insert into author(name) values('egon'),('alex'),('yuanhao'),('wpq');
    
    #每个作者与自己的代表作如下
    1 egon: 
          1 九阳神功
          2 九阴真经
          3 九阴白骨爪
          4 独孤九剑
          5 降龙十巴掌
          6 葵花宝典
    
    
    2 alex: 
          1 九阳神功
          6 葵花宝典
    
    3 yuanhao:
          4 独孤九剑
          5 降龙十巴掌
          6 葵花宝典
    
    4 wpq:
          1 九阳神功
    
    
    insert into author2book(author_id,book_id) values
    (1,1),
    (1,2),
    (1,3),
    (1,4),
    (1,5),
    (1,6),
    (2,1),
    (2,6),
    (3,4),
    (3,5),
    (3,6),
    (4,1)
    ;
    多对多实例
    单张表:用户表+相亲关系表,相当于:用户表+相亲关系表+用户表
    多张表:用户表+用户与主机关系表+主机表
    
    中间那一张存放关系的表,对外关联的字段可以联合唯一

      

    #一对一
    两张表:学生表和客户表
    
    一对一:一个学生是一个客户,一个客户有可能变成一个学校,即一对一的关系
    
    关联方式:foreign key+unique
    #一定是student来foreign key表customer,这样就保证了:
    #1 学生一定是一个客户,
    #2 客户不一定是学生,但有可能成为一个学生
    
    
    create table customer(
    id int primary key auto_increment,
    name varchar(20) not null,
    qq varchar(10) not null,
    phone char(16) not null
    );
    
    
    create table student(
    id int primary key auto_increment,
    class_name varchar(20) not null,
    customer_id int unique, #该字段一定要是唯一的
    foreign key(customer_id) references customer(id) #外键的字段一定要保证unique
    on delete cascade
    on update cascade
    );
    
    
    #增加客户
    insert into customer(name,qq,phone) values
    ('李飞机','31811231',13811341220),
    ('王大炮','123123123',15213146809),
    ('守榴弹','283818181',1867141331),
    ('吴坦克','283818181',1851143312),
    ('赢火箭','888818181',1861243314),
    ('战地雷','112312312',18811431230)
    ;
    
    
    #增加学生
    insert into student(class_name,customer_id) values
    ('脱产3班',3),
    ('周末19期',4),
    ('周末19期',5)
    ;
    一对一实例
    例一:一个用户只有一个博客
    
        用户表:
        id  name
        1    egon
        2    alex
        3    wupeiqi
    
    
        博客表   
               fk+unique
        id url name_id
        1  xxxx   1
        2  yyyy   3
        3  zzz    2
    
    
    
    例二:一个管理员唯一对应一个用户
        用户表:
        id user  password
        1  egon    xxxx
        2  alex    yyyy
    
        管理员表:
           fk+unique
        id user_id password
        1   1      xxxxx
        2   2      yyyyy
    其他例子

    练习

    练习:账号信息表,用户组,主机表,主机组

    #用户表
    create table user(
    id int not null unique auto_increment,
    username varchar(20) not null,
    password varchar(50) not null,
    primary key(username,password)
    );
    
    insert into user(username,password) values
    ('root','123'),
    ('egon','456'),
    ('alex','alex3714')
    ;
    
    
    #用户组表
    create table usergroup(
    id int primary key auto_increment,
    groupname varchar(20) not null unique
    );
    
    insert into usergroup(groupname) values
    ('IT'),
    ('Sale'),
    ('Finance'),
    ('boss')
    ;
    
    
    #主机表
    create table host(
    id int primary key auto_increment,
    ip char(15) not null unique default '127.0.0.1'
    );
    
    insert into host(ip) values
    ('172.16.45.2'),
    ('172.16.31.10'),
    ('172.16.45.3'),
    ('172.16.31.11'),
    ('172.10.45.3'),
    ('172.10.45.4'),
    ('172.10.45.5'),
    ('192.168.1.20'),
    ('192.168.1.21'),
    ('192.168.1.22'),
    ('192.168.2.23'),
    ('192.168.2.223'),
    ('192.168.2.24'),
    ('192.168.3.22'),
    ('192.168.3.23'),
    ('192.168.3.24')
    ;
    
    
    #业务线表
    create table business(
    id int primary key auto_increment,
    business varchar(20) not null unique
    );
    insert into business(business) values
    ('轻松贷'),
    ('随便花'),
    ('大富翁'),
    ('穷一生')
    ;
    
    
    #建关系:user与usergroup
    
    create table user2usergroup(
    id int not null unique auto_increment,
    user_id int not null,
    group_id int not null,
    primary key(user_id,group_id),
    foreign key(user_id) references user(id),
    foreign key(group_id) references usergroup(id)
    );
    
    insert into user2usergroup(user_id,group_id) values
    (1,1),
    (1,2),
    (1,3),
    (1,4),
    (2,3),
    (2,4),
    (3,4)
    ;
    
    
    
    #建关系:host与business
    
    create table host2business(
    id int not null unique auto_increment,
    host_id int not null,
    business_id int not null,
    primary key(host_id,business_id),
    foreign key(host_id) references host(id),
    foreign key(business_id) references business(id)
    );
    
    insert into host2business(host_id,business_id) values
    (1,1),
    (1,2),
    (1,3),
    (2,2),
    (2,3),
    (3,4)
    ;
    
    #建关系:user与host
    
    create table user2host(
    id int not null unique auto_increment,
    user_id int not null,
    host_id int not null,
    primary key(user_id,host_id),
    foreign key(user_id) references user(id),
    foreign key(host_id) references host(id)
    );
    
    insert into user2host(user_id,host_id) values
    (1,1),
    (1,2),
    (1,3),
    (1,4),
    (1,5),
    (1,6),
    (1,7),
    (1,8),
    (1,9),
    (1,10),
    (1,11),
    (1,12),
    (1,13),
    (1,14),
    (1,15),
    (1,16),
    (2,2),
    (2,3),
    (2,4),
    (2,5),
    (3,10),
    (3,11),
    (3,12)
    ;
    练习实例

    今日内容:

     多对一

    一对一

    多对多

     单表查询

     select * from t1 where 条件

    一、多对一

    1 多对一:左边表的多条记录对应右面表的唯一一条记录
    create table dep(
    id int primary key auto_increment, #被关联的字段必须保证是唯一的
    name varchar(20),
    comment varchar(50)
    );
    
    
    create table emp(
    id int primary key auto_increment,
    name varchar(20),
    dep_id int, #关联的字段,一定要保证是可以重复的
    constraint fk_depid_id foreign key(dep_id)  references dep(id)
    on update cascade
    on delete cascade
    );
    
    建立多对一的关系需要注意
    1 先建立被关联的表,被关联的字段必须保证是唯一的
    2 再创建关联的表,关联的字段,一定要保证是可以重复的
    ps:关联的字段一定是来自于表关联的表对应字段的值
    
    
    2 一对一的关系:
    create table user(
    uid int primary key auto_increment,
    name varchar(15)
    );
    insert into user(name) values
    ('egon1'),
    ('egon2'),
    ('egon3'),
    ('egon4'),
    ('egon5'),
    ('egon6');
    
    
    
    create table admin(
    id int primary key auto_increment,
    user_id int unique,
    password varchar(20),
    foreign key(user_id) references user(uid)
    on update cascade
    on delete cascade
    );
    
    
    insert into admin(user_id,password) values
    (3,'alex3714'),
    (5,'alex371asdf4')
    多对一
    建立多对一的关系需要注意
    1 先建立被关联的表,被关联的字段必须保证是唯一的
    2 再创建关联的表,关联的字段,一定要保证是可以重复的
    ps:关联的字段一定是来自于表关联的表对应字段的值


    mysql四:数据操作

    一 介绍

    MySQL数据操作: DML

    ========================================================

    在MySQL管理软件中,可以通过SQL语句中的DML语言来实现数据的操作,包括

    1. 使用INSERT实现数据的插入
    2. UPDATE实现数据的更新
    3. 使用DELETE实现数据的删除
    4. 使用SELECT查询数据以及。

    ========================================================

    本节内容包括:

    插入数据
    更新数据
    删除数据
    查询数据

    二 插入数据INSERT

    1. 插入完整数据(顺序插入)
        语法一:
        INSERT INTO 表名(字段1,字段2,字段3…字段n) VALUES(值1,值2,值3…值n);
    
        语法二:
        INSERT INTO 表名 VALUES (值1,值2,值3…值n);
    
    2. 指定字段插入数据
        语法:
        INSERT INTO 表名(字段1,字段2,字段3…) VALUES (值1,值2,值3…);
    
    3. 插入多条记录
        语法:
        INSERT INTO 表名 VALUES
            (值1,值2,值3…值n),
            (值1,值2,值3…值n),
            (值1,值2,值3…值n);
            
    4. 插入查询结果
        语法:
        INSERT INTO 表名(字段1,字段2,字段3…字段n) 
                        SELECT (字段1,字段2,字段3…字段n) FROM 表2
                        WHERE …;
    插入的方法

    三 更新数据UPDATE

    语法:
        UPDATE 表名 SET
            字段1=值1,
            字段2=值2,
            WHERE CONDITION;
    
    示例:
        UPDATE mysql.user SET password=password(‘123’) 
            where user=’root’ and host=’localhost’;
    更新的语法和示例

    四 删除数据DELETE

    语法:
        DELETE FROM 表名 
            WHERE CONITION;
    
    示例:
        DELETE FROM mysql.user 
            WHERE password=’’;
    
    练习:
        更新MySQL root用户密码为mysql123
        删除除从本地登录的root用户以外的所有用户
    删除的语法和示例

    五 查询数据SELECT

    1、单表查询

    一、单表查询语法

    SELECT 字段1,字段2... FROM 表名
                      WHERE 条件
                      GROUP BY field
                      HAVING 筛选
                      ORDER BY field
                      LIMIT 限制条数

    二 关键字的执行优先级(重点)

    重点中的重点:关键字的执行优先级
    from
    where
    group by
    having
    select
    distinct
    order by
    limit
    1.找到表:from
    
    2.拿着where指定的约束条件,去文件/表中取出一条条记录
    
    3.将取出的一条条记录进行分组group by,如果没有group by,则整体作为一组
    
    4.将分组的结果进行having过滤
    
    5.执行select
    
    6.去重
    
    7.将结果按条件排序:order by
    
    8.限制结果的显示条数
    
    详细见:http://www.cnblogs.com/linhaifeng/articles/7372774.html
    执行步骤

    三 简单查询

    company.employee
        员工id      id                  int             
        姓名        emp_name            varchar
        性别        sex                 enum
        年龄        age                 int
        入职日期     hire_date           date
        岗位        post                varchar
        职位描述     post_comment        varchar
        薪水        salary              double
        办公室       office              int
        部门编号     depart_id           int
    准备表和记录
    #简单查询
        SELECT id,name,sex,age,hire_date,post,post_comment,salary,office,depart_id 
        FROM employee;
    
        SELECT * FROM employee;
    
        SELECT name,salary FROM employee;
    
    #避免重复DISTINCT
        SELECT DISTINCT post FROM employee;    
    
    #通过四则运算查询
        SELECT name, salary*12 FROM employee;
        SELECT name, salary*12 AS Annual_salary FROM employee;
        SELECT name, salary*12 Annual_salary FROM employee;
    
    #定义显示格式
       CONCAT() 函数用于连接字符串
       SELECT CONCAT('姓名: ',name,'  年薪: ', salary*12)  AS Annual_salary 
       FROM employee;
       
       CONCAT_WS() 第一个参数为分隔符
       SELECT CONCAT_WS(':',name,salary*12)  AS Annual_salary 
       FROM employee;
    简单查询
    1 查出所有员工的名字,薪资,格式为
        <名字:egon>    <薪资:3000>
    2 查出所有的岗位(去掉重复)
    3 查出所有员工名字,以及他们的年薪,年薪的字段名为annua
    小练习
    select concat('<名字:',name,'>    ','<薪资:',salary,'>') from employee;
    select distinct depart_id from employee;
    select name,salary*12 annual_salary from employee;
    View Code

    四 WHERE约束

    where字句中可以使用:

    1. 比较运算符:> < >= <= <> !=
    2. between 80 and 100 值在10到20之间
    3. in(80,90,100) 值是10或20或30
    4. like 'egon%'
        pattern可以是%或_,
        %表示任意多字符
        _表示一个字符 
    5. 逻辑运算符:在多个条件直接可以使用逻辑运算符 and or not

    #1:单条件查询
        SELECT name FROM employee
            WHERE post='sale';
            
    #2:多条件查询
        SELECT name,salary FROM employee
            WHERE post='teacher' AND salary>10000;
    
    #3:关键字BETWEEN AND
        SELECT name,salary FROM employee 
            WHERE salary BETWEEN 10000 AND 20000;
    
        SELECT name,salary FROM employee 
            WHERE salary NOT BETWEEN 10000 AND 20000;
        
    #4:关键字IS NULL(判断某个字段是否为NULL不能用等号,需要用IS)
        SELECT name,post_comment FROM employee 
            WHERE post_comment IS NULL;
    
        SELECT name,post_comment FROM employee 
            WHERE post_comment IS NOT NULL;
            
        SELECT name,post_comment FROM employee 
            WHERE post_comment=''; 注意''是空字符串,不是null
        ps:
            执行
            update employee set post_comment='' where id=2;
            再用上条查看,就会有结果了
    
    #5:关键字IN集合查询
        SELECT name,salary FROM employee 
            WHERE salary=3000 OR salary=3500 OR salary=4000 OR salary=9000 ;
        
        SELECT name,salary FROM employee 
            WHERE salary IN (3000,3500,4000,9000) ;
    
        SELECT name,salary FROM employee 
            WHERE salary NOT IN (3000,3500,4000,9000) ;
    
    #6:关键字LIKE模糊查询
        通配符’%’
        SELECT * FROM employee 
                WHERE name LIKE 'eg%';
    
        通配符’_’
        SELECT * FROM employee 
                WHERE name LIKE 'al__';
    查询方法
    1. 查看岗位是teacher的员工姓名、年龄
    2. 查看岗位是teacher且年龄大于30岁的员工姓名、年龄
    3. 查看岗位是teacher且薪资在9000-1000范围内的员工姓名、年龄、薪资
    4. 查看岗位描述不为NULL的员工信息
    5. 查看岗位是teacher且薪资是10000或9000或30000的员工姓名、年龄、薪资
    6. 查看岗位是teacher且薪资不是10000或9000或30000的员工姓名、年龄、薪资
    7. 查看岗位是teacher且名字是jin开头的员工姓名、年薪
    练习
    select name,age from employee where post = 'teacher';
    select name,age from employee where post='teacher' and age > 30; 
    select name,age,salary from employee where post='teacher' and salary between 9000 and 10000;
    select * from employee where post_comment is not null;
    select name,age,salary from employee where post='teacher' and salary in (10000,9000,30000);
    select name,age,salary from employee where post='teacher' and salary not in (10000,9000,30000);
    select name,salary*12 from employee where post='teacher' and name like 'jin%';
    View Code

    五 分组查询:GROUP BY

    一 什么是分组?为什么要分组?

    #1、首先明确一点:分组发生在where之后,即分组是基于where之后得到的记录而进行的
    
    #2、分组指的是:将所有记录按照某个相同字段进行归类,比如针对员工信息表的职位分组,或者按照性别进行分组等
    
    #3、为何要分组呢?
        取每个部门的最高工资
        取每个部门的员工数
        取男人数和女人数
    
    小窍门:‘每’这个字后面的字段,就是我们分组的依据
    
    
    #4、大前提:
        可以按照任意字段分组,但是分组完毕后,比如group by post,只能查看post字段,如果想查看组内信息,需要借助于聚合函数
    二 ONLY_FULL_GROUP_BY
    #查看MySQL 5.7默认的sql_mode如下:
    mysql> select @@global.sql_mode;
    ONLY_FULL_GROUP_BY,STRICT_TRANS_TABLES,NO_ZERO_IN_DATE,NO_ZERO_DATE,ERROR_FOR_DIVISION_BY_ZERO,NO_AUTO_CREATE_USER,NO_ENGINE_SUBSTITUTION
    
    #!!!注意
    ONLY_FULL_GROUP_BY的语义就是确定select target list中的所有列的值都是明确语义,简单的说来,在ONLY_FULL_GROUP_BY模式下,target list中的值要么是来自于聚集函数的结果,要么是来自于group by list中的表达式的值。
    
    
    #设置sql_mole如下操作(我们可以去掉ONLY_FULL_GROUP_BY模式):
    mysql> set global sql_mode='STRICT_TRANS_TABLES,NO_ZERO_IN_DATE,NO_ZERO_DATE,ERROR_FOR_DIVISION_BY_ZERO,NO_AUTO_CREATE_USER,NO_ENGINE_SUBSTITUTION';
    sql_mode 设置
    mysql> select @@global.sql_mode;
    +-------------------+
    | @@global.sql_mode |
    +-------------------+
    |                   |
    +-------------------+
    1 row in set (0.00 sec)
    
    mysql> select * from emp group by post; 
    +----+------+--------+-----+------------+----------------------------+--------------+------------+--------+-----------+
    | id | name | sex    | age | hire_date  | post                       | post_comment | salary     | office | depart_id |
    +----+------+--------+-----+------------+----------------------------+--------------+------------+--------+-----------+
    | 14 | 张野 | male   |  28 | 2016-03-11 | operation                  | NULL         |   10000.13 |    403 |         3 |
    |  9 | 歪歪 | female |  48 | 2015-03-11 | sale                       | NULL         |    3000.13 |    402 |         2 |
    |  2 | alex | male   |  78 | 2015-03-02 | teacher                    | NULL         | 1000000.31 |    401 |         1 |
    |  1 | egon | male   |  18 | 2017-03-01 | 老男孩驻沙河办事处外交大使 | NULL         |    7300.33 |    401 |         1 |
    +----+------+--------+-----+------------+----------------------------+--------------+------------+--------+-----------+
    4 rows in set (0.00 sec)
    
    
    #由于没有设置ONLY_FULL_GROUP_BY,于是也可以有结果,默认都是组内的第一条记录,但其实这是没有意义的
    
    mysql> set global sql_mode='ONLY_FULL_GROUP_BY';
    Query OK, 0 rows affected (0.00 sec)
    
    mysql> quit #设置成功后,一定要退出,然后重新登录方可生效
    Bye
    
    mysql> use db1;
    Database changed
    mysql> select * from emp group by post; #报错
    ERROR 1055 (42000): 'db1.emp.id' isn't in GROUP BY
    mysql> select post,count(id) from emp group by post; #只能查看分组依据和使用聚合函数
    +----------------------------+-----------+
    | post                       | count(id) |
    +----------------------------+-----------+
    | operation                  |         5 |
    | sale                       |         5 |
    | teacher                    |         7 |
    | 老男孩驻沙河办事处外交大使 |         1 |
    +----------------------------+-----------+
    4 rows in set (0.00 sec)

    三 GROUP BY

    单独使用GROUP BY关键字分组
        SELECT post FROM employee GROUP BY post;
        注意:我们按照post字段分组,那么select查询的字段只能是post,想要获取组内的其他相关信息,需要借助函数
    
    GROUP BY关键字和GROUP_CONCAT()函数一起使用
        SELECT post,GROUP_CONCAT(name) FROM employee GROUP BY post;#按照岗位分组,并查看组内成员名
        SELECT post,GROUP_CONCAT(name) as emp_members FROM employee GROUP BY post;
    
    GROUP BY与聚合函数一起使用
        select post,count(id) as count from employee group by post;#按照岗位分组,并查看每个组有多少人
    强调:
    如果我们用unique的字段作为分组的依据,则每一条记录自成一组,这种分组没有意义
    多条记录之间的某个字段值相同,该字段通常用来作为分组的依据

    四 聚合函数

    #强调:聚合函数聚合的是组的内容,若是没有分组,则默认一组
    
    示例:
        SELECT COUNT(*) FROM employee;
        SELECT COUNT(*) FROM employee WHERE depart_id=1;
        SELECT MAX(salary) FROM employee;
        SELECT MIN(salary) FROM employee;
        SELECT AVG(salary) FROM employee;
        SELECT SUM(salary) FROM employee;
        SELECT SUM(salary) FROM employee WHERE depart_id=3;

    七 查询排序:ORDER BY

    按单列排序
        SELECT * FROM employee ORDER BY salary;
        SELECT * FROM employee ORDER BY salary ASC;
        SELECT * FROM employee ORDER BY salary DESC;
    
    按多列排序:先按照age排序,如果年纪相同,则按照薪资排序
        SELECT * from employee
            ORDER BY age,
            salary DESC;

    小练习

    1. 查询所有员工信息,先按照age升序排序,如果age相同则按照hire_date降序排序
    2. 查询各岗位平均薪资大于10000的岗位名、平均工资,结果按平均薪资升序排列
    3. 查询各岗位平均薪资大于10000的岗位名、平均工资,结果按平均薪资降序排列
    #题目1
    mysql> select * from employee ORDER BY age asc,hire_date desc;
    
    #题目2
    mysql> select post,avg(salary) from employee group by post having avg(salary) > 10000 order by avg(salary) asc;
    +-----------+---------------+
    | post      | avg(salary)   |
    +-----------+---------------+
    | operation |  16800.026000 |
    | teacher   | 151842.901429 |
    +-----------+---------------+
    
    #题目3
    mysql> select post,avg(salary) from employee group by post having avg(salary) > 10000 order by avg(salary) desc;
    +-----------+---------------+
    | post      | avg(salary)   |
    +-----------+---------------+
    | teacher   | 151842.901429 |
    | operation |  16800.026000 |
    +-----------+---------------+
    View Code

    八 限制查询的记录数:LIMIT

    示例:
        SELECT * FROM employee ORDER BY salary DESC 
            LIMIT 3;                    #默认初始位置为0 
        
        SELECT * FROM employee ORDER BY salary DESC
            LIMIT 0,5; #从第0开始,即先查询出第一条,然后包含这一条在内往后查5条
    
        SELECT * FROM employee ORDER BY salary DESC
            LIMIT 5,5; #从第5开始,即先查询出第6条,然后包含这一条在内往后查5条

    小练习:

    1. 分页显示,每页5条
    mysql> select * from  employee limit 0,5;
    +----+-----------+------+-----+------------+-----------------------------------------+--------------+------------+--------+-----------+
    | id | name      | sex  | age | hire_date  | post                                    | post_comment | salary     | office | depart_id |
    +----+-----------+------+-----+------------+-----------------------------------------+--------------+------------+--------+-----------+
    |  1 | egon      | male |  18 | 2017-03-01 | 老男孩驻沙河办事处外交大使              | NULL         |    7300.33 |    401 |         1 |
    |  2 | alex      | male |  78 | 2015-03-02 | teacher                                 |              | 1000000.31 |    401 |         1 |
    |  3 | wupeiqi   | male |  81 | 2013-03-05 | teacher                                 | NULL         |    8300.00 |    401 |         1 |
    |  4 | yuanhao   | male |  73 | 2014-07-01 | teacher                                 | NULL         |    3500.00 |    401 |         1 |
    |  5 | liwenzhou | male |  28 | 2012-11-01 | teacher                                 | NULL         |    2100.00 |    401 |         1 |
    +----+-----------+------+-----+------------+-----------------------------------------+--------------+------------+--------+-----------+
    5 rows in set (0.00 sec)
    
    mysql> select * from  employee limit 5,5;
    +----+------------+--------+-----+------------+---------+--------------+----------+--------+-----------+
    | id | name       | sex    | age | hire_date  | post    | post_comment | salary   | office | depart_id |
    +----+------------+--------+-----+------------+---------+--------------+----------+--------+-----------+
    |  6 | jingliyang | female |  18 | 2011-02-11 | teacher | NULL         |  9000.00 |    401 |         1 |
    |  7 | jinxin     | male   |  18 | 1900-03-01 | teacher | NULL         | 30000.00 |    401 |         1 |
    |  8 | 成龙       | male   |  48 | 2010-11-11 | teacher | NULL         | 10000.00 |    401 |         1 |
    |  9 | 歪歪       | female |  48 | 2015-03-11 | sale    | NULL         |  3000.13 |    402 |         2 |
    | 10 | 丫丫       | female |  38 | 2010-11-01 | sale    | NULL         |  2000.35 |    402 |         2 |
    +----+------------+--------+-----+------------+---------+--------------+----------+--------+-----------+
    5 rows in set (0.00 sec)
    
    mysql> select * from  employee limit 10,5;
    +----+-----------+--------+-----+------------+-----------+--------------+----------+--------+-----------+
    | id | name      | sex    | age | hire_date  | post      | post_comment | salary   | office | depart_id |
    +----+-----------+--------+-----+------------+-----------+--------------+----------+--------+-----------+
    | 11 | 丁丁      | female |  18 | 2011-03-12 | sale      | NULL         |  1000.37 |    402 |         2 |
    | 12 | 星星      | female |  18 | 2016-05-13 | sale      | NULL         |  3000.29 |    402 |         2 |
    | 13 | 格格      | female |  28 | 2017-01-27 | sale      | NULL         |  4000.33 |    402 |         2 |
    | 14 | 张野      | male   |  28 | 2016-03-11 | operation | NULL         | 10000.13 |    403 |         3 |
    | 15 | 程咬金    | male   |  18 | 1997-03-12 | operation | NULL         | 20000.00 |    403 |         3 |
    +----+-----------+--------+-----+------------+-----------+--------------+----------+--------+-----------+
    5 rows in set (0.00 sec)
    View Code

    九 使用正则表达式查询

    SELECT * FROM employee WHERE name REGEXP '^ale';
    
    SELECT * FROM employee WHERE name REGEXP 'on$';
    
    SELECT * FROM employee WHERE name REGEXP 'm{2}';
    
    
    小结:对字符串匹配的方式
    WHERE name = 'egon';
    WHERE name LIKE 'yua%';
    WHERE name REGEXP 'on$';

    小练习:

    查看所有员工中名字是jin开头,n或者g结果的员工信息
    select * from employee where name regexp '^jin.*[gn]$';
    View Code














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  • 原文地址:https://www.cnblogs.com/number1994/p/8277200.html
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