标签:ini 整型 实际应用 参考 for init types.h query 注册时间
存储引擎决定了表的类型,而表内存放的数据也要有不同的类型,每种数据类型都有自己的宽度,但宽度是可选的
详细参考:
mysql常用数据类型概览
#1. 数字: 整型:tinyinit int bigint 小数: float :在位数比较短的情况下不精准 double :在位数比较长的情况下不精准 0.000001230123123123 存成:0.000001230000 decimal:(如果用小数,则用推荐使用decimal) 精准 内部原理是以字符串形式去存 #2. 字符串: char(10):简单粗暴,浪费空间,存取速度快 root存成root000000 varchar:精准,节省空间,存取速度慢 sql优化:创建表时,定长的类型往前放,变长的往后放 比如性别 比如地址或描述信息 >255个字符,超了就把文件路径存放到数据库中。 比如图片,视频等找一个文件服务器,数据库中只存路径或url。 #3. 时间类型: 最常用:datetime #4. 枚举类型与集合类型
enum(‘male‘,‘female‘)
set(‘play‘,‘music‘,‘read‘,‘study‘)
整数类型:TINYINT SMALLINT MEDIUMINT INT BIGINT
作用:存储年龄,等级,id,各种号码等
规则: ======================================== tinyint[(m)] [unsigned] [zerofill] 小整数,数据类型用于保存一些范围的整数数值范围: 有符号: -128 ~ 127 无符号: 0 ~ 255 PS: MySQL中无布尔值,使用tinyint(1)构造。 ======================================== int[(m)][unsigned][zerofill] 整数,数据类型用于保存一些范围的整数数值范围: 有符号: -2147483648 ~ 2147483647 无符号: 0 ~ 4294967295 ======================================== bigint[(m)][unsigned][zerofill] 大整数,数据类型用于保存一些范围的整数数值范围: 有符号: -9223372036854775808 ~ 9223372036854775807 无符号: 0 ~ 18446744073709551615 ========================================
验证:
=========有符号和无符号tinyint========== #tinyint默认为有符号 MariaDB [db1]> create table t1(x tinyint); #默认为有符号,即数字前有正负号 MariaDB [db1]> desc t1; MariaDB [db1]> insert into t1 values -> (-129), -> (-128), -> (127), -> (128); MariaDB [db1]> select * from t1; +------+ | x | +------+ | -128 | #-129存成了-128 | -128 | #有符号,最小值为-128 | 127 | #有符号,最大值127 | 127 | #128存成了127 +------+ #设置无符号tinyint MariaDB [db1]> create table t2(x tinyint unsigned); MariaDB [db1]> insert into t2 values -> (-1), -> (0), -> (255), -> (256); MariaDB [db1]> select * from t2; +------+ | x | +------+ | 0 | -1存成了0 | 0 | #无符号,最小值为0 | 255 | #无符号,最大值为255 | 255 | #256存成了255 +------+ ============有符号和无符号int============= #int默认为有符号 MariaDB [db1]> create table t3(x int); #默认为有符号整数 MariaDB [db1]> insert into t3 values -> (-2147483649), -> (-2147483648), -> (2147483647), -> (2147483648); MariaDB [db1]> select * from t3; +-------------+ | x | +-------------+ | -2147483648 | #-2147483649存成了-2147483648 | -2147483648 | #有符号,最小值为-2147483648 | 2147483647 | #有符号,最大值为2147483647 | 2147483647 | #2147483648存成了2147483647 +-------------+ #设置无符号int MariaDB [db1]> create table t4(x int unsigned); MariaDB [db1]> insert into t4 values -> (-1), -> (0), -> (4294967295), -> (4294967296); MariaDB [db1]> select * from t4; +------------+ | x | +------------+ | 0 | #-1存成了0 | 0 | #无符号,最小值为0 | 4294967295 | #无符号,最大值为4294967295 | 4294967295 | #4294967296存成了4294967295 +------------+ ==============有符号和无符号bigint============= MariaDB [db1]> create table t6(x bigint); MariaDB [db1]> insert into t5 values -> (-9223372036854775809), -> (-9223372036854775808), -> (9223372036854775807), -> (9223372036854775808); MariaDB [db1]> select * from t5; +----------------------+ | x | +----------------------+ | -9223372036854775808 | | -9223372036854775808 | | 9223372036854775807 | | 9223372036854775807 | +----------------------+ MariaDB [db1]> create table t6(x bigint unsigned); MariaDB [db1]> insert into t6 values -> (-1), -> (0), -> (18446744073709551615), -> (18446744073709551616); MariaDB [db1]> select * from t6; +----------------------+ | x | +----------------------+ | 0 | | 0 | | 18446744073709551615 | | 18446744073709551615 | +----------------------+ ======用zerofill测试整数类型的显示宽度============= MariaDB [db1]> create table t7(x int(3) zerofill); MariaDB [db1]> insert into t7 values -> (1), -> (11), -> (111), -> (1111); MariaDB [db1]> select * from t7; +------+ | x | +------+ | 001 | | 011 | | 111 | | 1111 | #超过宽度限制仍然可以存 +------+
注意:int(3)表示的是显示宽度,不是存储宽度,自己没有必要指定,其他所有类型指定的宽度表示存储宽度!
定点数类型 DEC等同于DECIMAL
浮点类型:FLOAT DOUBLE
作用:存储薪资、身高、体重、体质参数等
====================================== #FLOAT[(M,D)] [UNSIGNED] [ZEROFILL] 定义: 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。m最大值为255,d最大值为30 有符号: -3.402823466E+38 to -1.175494351E-38, 1.175494351E-38 to 3.402823466E+38 无符号: 1.175494351E-38 to 3.402823466E+38 精确度: **** 随着小数的增多,精度变得不准确 **** ====================================== #DOUBLE[(M,D)] [UNSIGNED] [ZEROFILL] 定义: 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。m最大值为255,d最大值为30 有符号: -1.7976931348623157E+308 to -2.2250738585072014E-308 2.2250738585072014E-308 to 1.7976931348623157E+308 无符号: 2.2250738585072014E-308 to 1.7976931348623157E+308 精确度: ****随着小数的增多,精度比float要高,但也会变得不准确 **** ====================================== decimal[(m[,d])] [unsigned] [zerofill] 定义: 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。 精确度: **** 随着小数的增多,精度始终准确 **** 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。
验证:
mysql> create table t1(x float(256,31)); ERROR 1425 (42000): Too big scale 31 specified for column ‘x‘. Maximum is 30. mysql> create table t1(x float(256,30)); ERROR 1439 (42000): Display width out of range for column ‘x‘ (max = 255) mysql> create table t1(x float(255,30)); #建表成功 Query OK, 0 rows affected (0.02 sec) mysql> create table t2(x double(255,30)); #建表成功 Query OK, 0 rows affected (0.02 sec) mysql> create table t3(x decimal(66,31)); ERROR 1425 (42000): Too big scale 31 specified for column ‘x‘. Maximum is 30. mysql> create table t3(x decimal(66,30)); ERROR 1426 (42000): Too-big precision 66 specified for ‘x‘. Maximum is 65. mysql> create table t3(x decimal(65,30)); #建表成功 Query OK, 0 rows affected (0.02 sec) mysql> show tables; +---------------+ | Tables_in_db1 | +---------------+ | t1 | | t2 | | t3 | +---------------+ rows in set (0.00 sec) mysql> insert into t1 values(1.1111111111111111111111111111111); #小数点后31个1 Query OK, 1 row affected (0.01 sec) mysql> insert into t2 values(1.1111111111111111111111111111111); Query OK, 1 row affected (0.00 sec) mysql> insert into t3 values(1.1111111111111111111111111111111); Query OK, 1 row affected, 1 warning (0.01 sec) mysql> select * from t1; #随着小数的增多,精度开始不准确 +----------------------------------+ | x | +----------------------------------+ | 1.111111164093017600000000000000 | +----------------------------------+ row in set (0.00 sec) mysql> select * from t2; #精度比float要准确点,但随着小数的增多,同样变得不准确 +----------------------------------+ | x | +----------------------------------+ | 1.111111111111111200000000000000 | +----------------------------------+ row in set (0.00 sec) mysql> select * from t3; #精度始终准确,d为30,于是只留了30位小数 +----------------------------------+ | x | +----------------------------------+ | 1.111111111111111111111111111111 | +----------------------------------+ row in set (0.00 sec)
create table student( id int, name char(6), born_year year, birth_date date, class_time time, reg_time datetime ); insert into student values (1,‘egon‘,now(),now(),now(),now()); insert into student values (2,‘alex‘,"1997","1997-12-12","12:12:12","2017-12-12 12:12:12");
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)# 范围 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)
验证:
============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 | +------+------+-----------+------------+------------+---------------------+
datetime与timestamp的区别
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。
标签:ini 整型 实际应用 参考 for init types.h query 注册时间
原文地址:https://www.cnblogs.com/foremostxl/p/9751889.html