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表介绍

表相当于文件,表中的一条记录就相当于文件的一行内容,不同的是,表中的一条记录有对应的标题,称为表的字段

id,name,qq,age称为字段,其余的,一行内容称为一条记录

本节重点:

1 创建表

2 查看表结构

3 数据类型

4 表完整性约束

5 修改表

6 复制表

7 删除表

一 创建表

复制代码
语法:
create table 表名(
字段名1 类型[(宽度) 约束条件],
字段名2 类型[(宽度) 约束条件],
字段名3 类型[(宽度) 约束条件]
);

注意:
1. 在同一张表中,字段名是不能相同
2. 宽度和约束条件可选
3. 字段名和类型是必须的
复制代码
MariaDB [(none)]> create database db1 charset utf8;

MariaDB [(none)]> use db1;

MariaDB [db1]> create table t1(  
    -> id int, 
    -> name varchar(50),
    -> sex enum('male','female'),
    -> age int(3)
    -> );

MariaDB [db1]> show tables; #查看db1库下所有表名

MariaDB [db1]> desc t1;
+-------+-----------------------+------+-----+---------+-------+
| Field | Type                  | Null | Key | Default | Extra |
+-------+-----------------------+------+-----+---------+-------+
| id    | int(11)               | YES  |     | NULL    |       |
| name  | varchar(50)           | YES  |     | NULL    |       |
| sex   | enum('male','female') | YES  |     | NULL    |       |
| age   | int(3)                | YES  |     | NULL    |       |
+-------+-----------------------+------+-----+---------+-------+

MariaDB [db1]> select id,name,sex,age from t1;
Empty set (0.00 sec)

MariaDB [db1]> select * from t1;
Empty set (0.00 sec)

MariaDB [db1]> select id,name from t1;
Empty set (0.00 sec)
View Code
MariaDB [db1]> insert into t1 values
    -> (1,'egon',18,'male'),
    -> (2,'alex',81,'female')
    -> ;
MariaDB [db1]> select * from t1;
+------+------+------+--------+
| id   | name | age  | sex    |
+------+------+------+--------+
|    1 | egon |   18 | male   |
|    2 | alex |   81 | female |
+------+------+------+--------+



MariaDB [db1]> insert into t1(id) values 
    -> (3),
    -> (4);
MariaDB [db1]> select * from t1;
+------+------+------+--------+
| id   | name | age  | sex    |
+------+------+------+--------+
|    1 | egon |   18 | male   |
|    2 | alex |   81 | female |
|    3 | NULL | NULL | NULL   |
|    4 | NULL | NULL | NULL   |
+------+------+------+--------+
插入数据
mysql> create database db1 charset latin1;
mysql> use db1;
mysql> create table t1(name varchar(20));
mysql> show create table t1; #查看表,发现表默认与数据db1的字符编码一致
mysql> insert into t1 values(''); #插入中文出错,因为latin1不支持中文
ERROR 1366 (HY000): 
mysql> 

#解决方法一:删除库db1,重建db1,字符编码指定为utf8

#解决方法二:修改
mysql> alter table t1 charset utf8; #修改表t1的编码
mysql> insert into t1 values(''); #虽然t1的编码改了,但是t1的字段name仍然是按照latin1编码创建的
ERROR 1366 (HY000): 
mysql> alter table t1 modify name varchar(20); #需要重新定义下字段name
mysql> insert into t1 values('');
mysql> select * from t1;
+------+
| name |
+------+
| 林   |
+------+

ps:不要忘记将数据库编码也改成utf8,这样以后在该数据库下创建表时,都默认utf8编码了
编码问题

二 查看表结构

复制代码
MariaDB [db1]> describe t1; #查看表结构,可简写为desc 表名
+-------+-----------------------+------+-----+---------+-------+
| Field | Type                  | Null | Key | Default | Extra |
+-------+-----------------------+------+-----+---------+-------+
| id    | int(11)               | YES  |     | NULL    |       |
| name  | varchar(50)           | YES  |     | NULL    |       |
| sex   | enum('male','female') | YES  |     | NULL    |       |
| age   | int(3)                | YES  |     | NULL    |       |
+-------+-----------------------+------+-----+---------+-------+


MariaDB [db1]> show create table t1\G; #查看表详细结构,可加\G
 decimal[(m[,d])] [unsigned] [zerofill]
            准确的小数值,m是数字总个数(负号不算),d是小数点后个数。 m最大值为65,d最大值为30。

            特别的:对于精确数值计算时需要用此类型
                   decaimal能够存储精确值的原因在于其内部按照字符串存储。



======================================
        FLOAT[(M,D)] [UNSIGNED] [ZEROFILL]
            单精度浮点数(非准确小数值),m是数字总个数,d是小数点后个数。
                有符号:
                    -3.402823466E+38 to -1.175494351E-38,
                    0
                    1.175494351E-38 to 3.402823466E+38
                无符号:
                    0
                    1.175494351E-38 to 3.402823466E+38

            **** 数值越大,越不准确 ****


======================================
        DOUBLE[(M,D)] [UNSIGNED] [ZEROFILL]
            双精度浮点数(非准确小数值),m是数字总个数,d是小数点后个数。

                有符号:
                    -1.7976931348623157E+308 to -2.2250738585072014E-308
                    0
                    2.2250738585072014E-308 to 1.7976931348623157E+308
                无符号:
                    0
                    2.2250738585072014E-308 to 1.7976931348623157E+308
            **** 数值越大,越不准确 ****
View Code
MariaDB [db1]> create table t8(salary float(5,2)); #总共5位,小数部分占2位,因而整数部分最多3位
MariaDB [db1]> insert into t8 values
    -> (3.3),
    -> (7.33),
    -> (9.335),
    -> (1000.1);
MariaDB [db1]> select * from t8;
+--------+
| salary |
+--------+
|   3.30 |
|   7.33 |
|   9.34 | #4舍5入
| 999.99 | #小数最多2位,整数最多3位
View Code

位类型:BIT

  BIT(M)可以用来存放多位二进制数,M范围从1~64,如果不写默认为1位。
  注意:对于位字段需要使用函数读取
      bin()显示为二进制
      hex()显示为十六进制

MariaDB [db1]> create table t9(id bit);
MariaDB [db1]> desc t9; #bit默认宽度为1
+-------+--------+------+-----+---------+-------+
| Field | Type   | Null | Key | Default | Extra |
+-------+--------+------+-----+---------+-------+
| id    | bit(1) | YES  |     | NULL    |       |
+-------+--------+------+-----+---------+-------+

MariaDB [db1]> insert into t9 values(8);
MariaDB [db1]> select * from t9; #直接查看是无法显示二进制位的
+------+
| id   |
+------+
|     |
+------+
MariaDB [db1]> select bin(id),hex(id) from t9; #需要转换才能看到
+---------+---------+
| bin(id) | hex(id) |
+---------+---------+
| 1       | 1       |
+---------+---------+

MariaDB [db1]> alter table t9 modify id bit(5);
MariaDB [db1]> insert into t9 values(8);
MariaDB [db1]> select bin(id),hex(id) from t9;
+---------+---------+
| bin(id) | hex(id) |
+---------+---------+
| 1       | 1       |
| 1000    | 8       |
+---------+---------+
View Code

 

三 数据类型

数值类型

      整数类型:TINYINT SMALLINT MEDIUMINT INT BIGINT

  作用:存储年龄,等级,id,各种号码等

 日期类型

DATE TIME DATETIME TIMESTAMP YEAR 

作用:存储用户注册时间,文章发布时间,员工入职时间,出生时间,过期时间等

YEAR
            YYYY(1901/2155)

        DATE
            YYYY-MM-DD(1000-01-01/9999-12-31)

        TIME
            HH:MM:SS('-838:59:59'/'838:59:59')

        DATETIME

            YYYY-MM-DD HH:MM:SS(1000-01-01 00:00:00/9999-12-31 23:59:59    Y)

        TIMESTAMP

            YYYYMMDD HHMMSS(1970-01-01 00:00:00/2037 年某时)
View Code
============year===========
MariaDB [db1]> create table t10(born_year year); #无论year指定何种宽度,最后都默认是year(4)
MariaDB [db1]> insert into t10 values  
    -> (1900),
    -> (1901),
    -> (2155),
    -> (2156);
MariaDB [db1]> select * from t10;
+-----------+
| born_year |
+-----------+
|      0000 |
|      1901 |
|      2155 |
|      0000 |
+-----------+


============date,time,datetime===========
MariaDB [db1]> create table t11(d date,t time,dt datetime);
MariaDB [db1]> desc t11;
+-------+----------+------+-----+---------+-------+
| Field | Type     | Null | Key | Default | Extra |
+-------+----------+------+-----+---------+-------+
| d     | date     | YES  |     | NULL    |       |
| t     | time     | YES  |     | NULL    |       |
| dt    | datetime | YES  |     | NULL    |       |
+-------+----------+------+-----+---------+-------+

MariaDB [db1]> insert into t11 values(now(),now(),now());
MariaDB [db1]> select * from t11;
+------------+----------+---------------------+
| d          | t        | dt                  |
+------------+----------+---------------------+
| 2017-07-25 | 16:26:54 | 2017-07-25 16:26:54 |
+------------+----------+---------------------+



============timestamp===========
MariaDB [db1]> create table t12(time timestamp);
MariaDB [db1]> insert into t12 values();
MariaDB [db1]> insert into t12 values(null);
MariaDB [db1]> select * from t12;
+---------------------+
| time                |
+---------------------+
| 2017-07-25 16:29:17 |
| 2017-07-25 16:30:01 |
+---------------------+



============注意啦,注意啦,注意啦===========
1. 单独插入时间时,需要以字符串的形式,按照对应的格式插入
2. 插入年份时,尽量使用4位值
3. 插入两位年份时,<=69,以20开头,比如50,  结果2050      
                >=70,以19开头,比如71,结果1971
MariaDB [db1]> create table t12(y year);
MariaDB [db1]> insert into t12 values  
    -> (50),
    -> (71);
MariaDB [db1]> select * from t12;
+------+
| y    |
+------+
| 2050 |
| 1971 |
+------+



============综合练习===========
MariaDB [db1]> create table student(
    -> id int,
    -> name varchar(20),
    -> born_year year,
    -> birth date,
    -> class_time time,
    -> reg_time datetime);

MariaDB [db1]> insert into student values
    -> (1,'alex',"1995","1995-11-11","11:11:11","2017-11-11 11:11:11"),
    -> (2,'egon',"1997","1997-12-12","12:12:12","2017-12-12 12:12:12"),
    -> (3,'wsb',"1998","1998-01-01","13:13:13","2017-01-01 13:13:13");

MariaDB [db1]> select * from student;
+------+------+-----------+------------+------------+---------------------+
| id   | name | born_year | birth      | class_time | reg_time            |
+------+------+-----------+------------+------------+---------------------+
|    1 | alex |      1995 | 1995-11-11 | 11:11:11   | 2017-11-11 11:11:11 |
|    2 | egon |      1997 | 1997-12-12 | 12:12:12   | 2017-12-12 12:12:12 |
|    3 | wsb  |      1998 | 1998-01-01 | 13:13:13   | 2017-01-01 13:13:13 |
View Code
在实际应用的很多场景中,MySQL的这两种日期类型都能够满足我们的需要,存储精度都为秒,但在某些情况下,会展现出他们各自的优劣。下面就来总结一下两种日期类型的区别。

1.DATETIME的日期范围是1001——9999年,TIMESTAMP的时间范围是1970——2038年。

2.DATETIME存储时间与时区无关,TIMESTAMP存储时间与时区有关,显示的值也依赖于时区。在mysql服务器,操作系统以及客户端连接都有时区的设置。

3.DATETIME使用8字节的存储空间,TIMESTAMP的存储空间为4字节。因此,TIMESTAMP比DATETIME的空间利用率更高。

4.DATETIME的默认值为null;TIMESTAMP的字段默认不为空(not null),默认值为当前时间(CURRENT_TIMESTAMP),如果不做特殊处理,并且update语句中没有指定该列的更新值,则默认更新为当前时间。
应用

 

字符串类型

CHAR系列 CHAR VARCHAR
TEXT系列 TINYTEXT TEXT MEDIUMTEXT LONGTEXT
BLOB 系列 TINYBLOB BLOB MEDIUMBLOB LONGBLOB 
BINARY系列 BINARY VARBINARY

char (m)
            CHAR列的长度固定为创建表时声明的长度: 0 ~ 255。其中m代表字符串的长度。
            PS: 即使数据小于m长度,也会占用m长度
        varchar(m)
            VARCHAR列中的值为可变长字符串,长度: 0 ~ 65535。其中m代表该数据类型所允许保存的字符串的最大长度,只要长度小于该最大值的字符串都可以被保存在该数据类型中。

            注:虽然varchar使用起来较为灵活,但是从整个系统的性能角度来说,char数据类型的处理速度更快,有时甚至可以超出varchar处理速度的50%。因此,用户在设计数据库时应当综合考虑各方面的因素,以求达到最佳的平衡

        text
            text数据类型用于保存变长的大字符串,可以组多到65535 (2**161)个字符。

        mediumtext
            A TEXT column with a maximum length of 16,777,215 (2**241) characters.

        longtext
            A TEXT column with a maximum length of 4,294,967,295 or 4GB (2**321) characters.
char
在检索的时候,CHAR列删除了尾部的空格,而VARCHAR则保留这些空格。
mysql> create table t1(x char(5),y varchar(5));
mysql> insert into t1 values('你瞅啥  ','瞅你妹                 ');
mysql> select x,length(x),y,length(y) from t1;
+--------+-----------+----------+-----------+
| x      | length(x) | y        | length(y) |
+--------+-----------+----------+-----------+
| 你瞅啥 |         9 | 瞅你妹   |        11 |
+--------+-----------+----------+-----------+
mysql> select concat(x,'='),concat(y,'=') from t1; #加=号可以明显地看到空格
+---------------+---------------+
| concat(x,'=') | concat(y,'=') |
+---------------+---------------+
| 你瞅啥=       | 瞅你妹  =     |
+---------------+---------------+
View Code

看图比较char与varcahr

ValueCHAR(4)Storage RequiredVARCHAR(4)Storage Required
'' '    ' 4 bytes '' 1 byte
'ab' 'ab  ' 4 bytes 'ab' 3 bytes
'abcd' 'abcd' 4 bytes 'abcd' 5 bytes
'abcdefgh' 'abcd' 4 bytes 'abcd' 5 bytes

 

枚举类型与集合类型

字段的值只能在给定范围中选择,如单选框,多选框
enum 单选 只能在给定的范围内选一个值,如性别 sex 男male/女female
set 多选 在给定的范围内可以选择一个或一个以上的值(爱好1,爱好2,爱好3...)

枚举类型(enum)
            An ENUM column can have a maximum of 65,535 distinct elements. (The practical limit is less than 3000.)
            示例:
                CREATE TABLE shirts (
                    name VARCHAR(40),
                    size ENUM('x-small', 'small', 'medium', 'large', 'x-large')
                );
                INSERT INTO shirts (name, size) VALUES ('dress shirt','large'), ('t-shirt','medium'),('polo shirt','small');

  

            集合类型(set)
            A SET column can have a maximum of 64 distinct members.
            示例:
                CREATE TABLE myset (col SET('a', 'b', 'c', 'd'));
                INSERT INTO myset (col) VALUES ('a,d'), ('d,a'), ('a,d,a'), ('a,d,d'), ('d,a,d');
View Code

mysql四-2:完整性约束

介绍

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:

复制代码
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:

复制代码
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...)

 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
)

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 |
+------+-----+------+------------+
View Code

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)
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

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'
多列主键

 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)
View Code
#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 |
+----+-------+------+
View Code

 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

#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,必须是主键
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 |
+----+-------+--------+
View Code
表1 foreign key 表2
则表1的多条记录对应表2的一条记录,即多对一

利用foreign key的原理我们可以制作两张表的多对多,一对一关系
多对多:
    表1的多条记录可以对应表2的一条记录
    表2的多条记录也可以对应表1的一条记录

一对一:
    表1的一条记录唯一对应表2的一条记录,反之亦然

分析时,我们先从按照上面的基本原理去套,然后再翻译成真实的意义,就很好理解了
辅助理解

 查询表字段以及字段别名/注释:

Select COLUMN_NAME 列名, DATA_TYPE 字段类型, COLUMN_COMMENT 字段注释  
from INFORMATION_SCHEMA.COLUMNS  
Where table_name = 'companies'  ##表名  
AND table_schema = 'testhuicard'##数据库名  
AND column_name LIKE 'c_name'   ##字段名
posted on 2017-09-04 18:17  —super—  阅读(272)  评论(0编辑  收藏  举报