如果爱请深爱logeA +2logey=3logey+D 请证明y= Ae的副D次方

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>>>如图,已知⊙O是△ABC的外接圆,AB是⊙O的直径,D是AB延长线上的一点..
如图,已知⊙O是△ABC的外接圆,AB是⊙O的直径,D是AB延长线上的一点,AE⊥CD交DC的延长线于E,CF⊥AB于F,且CE=CF。
(l)求证:DE是⊙O的切线;(2)若AB=6,BD=3,求AE和BC的长。
题型:解答题难度:偏难来源:北京模拟题
解:(1)证明:连接OC,∵AE⊥CD,CF⊥AB,又∵CF=CF,∴∠1=∠2,∵OA=OC,∴∠2=∠3,∴∠1=∠3,∴OC∥AE,∴OC⊥CD,∴DE是⊙O的切线;
(2)∵AB=6,∴OB=OC=1/2AB=3,在Rt△OCD中,OC=3,OD=OB+BD=6,∴∠D=30°,∠COD=60°,在Rt△ADE中,AD=AB+BD=9,∴AE=1/2AD=9/2,在△OBC中,∵∠COD=60°,OB=OC,∴BC=OB=3。
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据魔方格专家权威分析,试题“如图,已知⊙O是△ABC的外接圆,AB是⊙O的直径,D是AB延长线上的一点..”主要考查你对&&直线与圆的位置关系(直线与圆的相交,直线与圆的相切,直线与圆的相离),直角三角形的性质及判定&&等考点的理解。关于这些考点的“档案”如下:
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因为篇幅有限,只列出部分考点,详细请访问。
直线与圆的位置关系(直线与圆的相交,直线与圆的相切,直线与圆的相离)直角三角形的性质及判定
直线与圆的位置关系:直线与圆的位置关系有三种:直线与圆相交,直线与圆相切,直线与圆相离。 (1)相交:直线和圆有两个公共点时,叫做直线和圆相交,这时直线叫做圆的割线,公共点叫做交点AB与⊙O相交,d&r; (2)相切:直线和圆有唯一公共点时,叫做直线和圆相切,这时直线叫做圆的切线,这个唯一的公共点叫做切点。AB与⊙O相切,d=r。(3)相离:直线和圆没有公共点时,叫做直线和圆相离,AB与圆O相离,d&r。(d为圆心到直线的距离)直线与圆的三种位置关系的判定与性质: (1)数量法:通过比较圆心O到直线距离d与圆半径的大小关系来判定, 如果⊙O的半径为r,圆心O到直线l的距离为d,则有: 直线l与⊙O相交d&r; 直线l与⊙O相切d=r; 直线l与⊙O相离d&r; (2)公共点法:通过确定直线与圆的公共点个数来判定。 直线l与⊙O相交d&r2个公共点; 直线l与⊙O相切d=r有唯一公共点; 直线l与⊙O相离d&r无公共点 。圆的切线的判定和性质&&& (1)切线的判定定理:经过半径的外端并且垂直于这条半径的直线是圆的切线。 (2)切线的性质定理:圆的切线垂直于经过切点的半径。 切线长:在经过圆外一点的圆的切线上,这点和切点之间的线段的长叫做这点到圆的切线长。 切线长定理:从圆外一点引圆的两条切线,它们的切线长相等,圆心和这一点的连线平分两条切线的夹角。 直线与圆的位置关系判定方法:平面内,直线Ax+By+C=0与圆x2+y2+Dx+Ey+F=0的位置关系判断一般方法是:1.由Ax+By+C=0,可得y=(-C-Ax)/B,(其中B不等于0),代入x2+y2+Dx+Ey+F=0,即成为一个关于x的方程如果b2-4ac&0,则圆与直线有2交点,即圆与直线相交。如果b2-4ac=0,则圆与直线有1交点,即圆与直线相切。如果b2-4ac&0,则圆与直线有0交点,即圆与直线相离。2.如果B=0即直线为Ax+C=0,即x=-C/A,它平行于y轴(或垂直于x轴),将x2+y2+Dx+Ey+F=0化为(x-a)2+(y-b)2=r2。令y=b,求出此时的两个x值x1、x2,并且规定x1&x2,那么:& 当x=-C/A&x1或x=-C/A&x2时,直线与圆相离;当x1&x=-C/A&x2时,直线与圆相交。&直角三角形定义:有一个角为90°的三角形,叫做直角三角形。直角三角形可用Rt△表示,如直角三角形ABC写作Rt△ABC。 直角三角形性质:直角三角形是一种特殊的三角形,它除了具有一般三角形的性质外,具有一些特殊的性质:性质1:直角三角形两直角边a,b的平方和等于斜边c的平方。即。如图,∠BAC=90°,则AB2+AC2=BC2(勾股定理)性质2:在直角三角形中,两个锐角互余。如图,若∠BAC=90°,则∠B+∠C=90°性质3:在直角三角形中,斜边上的中线等于斜边的一半(即直角三角形的外心位于斜边的中点,外接圆半径R=C/2)。性质4:直角三角形的两直角边的乘积等于斜边与斜边上高的乘积。性质5:如图,Rt△ABC中,∠BAC=90°,AD是斜边BC上的高,则有射影定理如下:(1)(AD)2=BD·DC。(2)(AB)2=BD·BC。(3)(AC)2=CD·BC。性质6:在直角三角形中,如果有一个锐角等于30°,那么它所对的直角边等于斜边的一半。在直角三角形中,如果有一条直角边等于斜边的一半,那么这条直角边所对的锐角等于30°。性质7:如图,1/AB2+1/AC2=1/AD2性质8:直角三角形被斜边上的高分成的两个直角三角形和原三角形相似。性质9:直角三角形直角上的角平分线与斜边的交点D 则&&& BD:DC=AB:AC直角三角形的判定方法:判定1:定义,有一个角为90°的三角形是直角三角形。判定2:判定定理:以a、b、c为边的三角形是以c为斜边的直角三角形。如果三角形的三边a,b,c满足,那么这个三角形就是直角三角形。(勾股定理的逆定理)。判定3:若一个三角形30°内角所对的边是某一边的一半,则这个三角形是以这条长边为斜边的直角三角形。判定4:两个锐角互为余角(两角相加等于90°)的三角形是直角三角形。判定5:若两直线相交且它们的斜率之积互为负倒数,则两直线互相垂直。那么判定6:若在一个三角形中一边上的中线等于其所在边的一半,那么这个三角形为直角三角形。判定7:一个三角形30°角所对的边等于这个三角形斜边的一半,则这个三角形为直角三角形。(与判定3不同,此定理用于已知斜边的三角形。)
发现相似题
与“如图,已知⊙O是△ABC的外接圆,AB是⊙O的直径,D是AB延长线上的一点..”考查相似的试题有:
928436238919924706113844392361144790Javascript 已禁用
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CV: {{ getCv() }}已知EX=1.EX²=3.EY=0.EY²=2.EXY=1,求D(X+Y)_百度知道
已知EX=1.EX²=3.EY=0.EY²=2.EXY=1,求D(X+Y)
我有更好的答案
D(X+Y)=D(X)+D(Y)+2[E(XY)-E(X)E(Y)]=E(X²)-E(X)²+E(Y²)-E(Y)²+2[E(XY)-E(X)E(Y)]=3-1+2-0+2(1-0×1)=6
采纳率:100%
前面都是E,你确定最后变成D了?
确定,书上原题
平方都是在括号里面,括号没有打出
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我们会通过消息、邮箱等方式尽快将举报结果通知您。MySQL Binlog解析
MySQL的安装可以参考:
MySQL关于Binlog的官方文档:
基于Binlog的主备复制:
什么是 Binlog
MySQL Server 有四种类型的日志——Error Log、General Query Log、Binary Log 和 Slow Query Log。
第一个是错误日志,记录 mysqld 的一些错误。第二个是一般查询日志,记录 mysqld 正在做的事情,比如客户端的连接和断开、来自客户端每条 Sql Statement 记录信息;如果你想准确知道客户端到底传了什么瞎 [哔哔] 玩意儿给服务端,这个日志就非常管用了,不过它非常影响性能。第四个是慢查询日志,记录一些查询比较慢的 SQL 语句——这种日志非常常用,主要是给开发者调优用的。
剩下的第三种就是 Binlog 了,包含了一些事件,这些事件描述了数据库的改动,如建表、数据改动等,也包括一些潜在改动,比如 DELETE FROM ran WHERE bing = luan,然而一条数据都没被删掉的这种情况。除非使用 Row-based logging,否则会包含所有改动数据的 SQL Statement。
那么 Binlog 就有了两个重要的用途——复制和恢复。比如主从表的复制,和备份恢复什么的。
显然,我们执行SELECT等不设计数据变更的语句是不会记录Binlog的,而涉及到数据更新则会记录。要注意的是,对支持事务的引擎如InnoDB而言,必须要提交了事务才会记录Binlog。Binlog是在事务最终commit前写入的,binlog什么时候刷新到磁盘跟参数sync_binlog相关。如果设置为0,则表示MySQL不控制binlog的刷新,由文件系统去控制它缓存的刷新,而如果设置为不为0的值则表示每sync_binlog次事务,MySQL调用文件系统的刷新操作刷新binlog到磁盘中。设为1是最安全的,在系统故障时最多丢失一个事务的更新,但是会对性能有所影响,一般情况下会设置为100或者0,牺牲一定的一致性来获取更好的性能。
开启和停用Binlog
通过配置/etc/my.cnf配置文件的log-bin选项:
log-bin=mysql-bin
这个需要重启MySQL服务。
可以使用SET SQL_LOG_BIN=0命令停止使用日志文件,然后可以通过SET SQL_LOG_BIN=1命令来启用。
Binlog的删除
mysql& show variables like 'expire_log_days';
set global expire_log_days=3;
mysql& purge master logs before ' 16:25:00';
mysql& purge master logs to 'binlog.000002';
除了以上方法之外,也可以采用操作系统的本地命令删除文件。
Binlog文件的扩展
当遇到以下3种情况时会重新生成一个新的日志文件,文件序号递增:
MySQL服务器停止或重启时,MySQL会在重启时生成一个新的日志文件;
使用flush logs命令;
当binlog文件大小超过max_binlog_size系统变量配置的上限时;
binlog文件的最大值和默认值是1GB,该设置并不能严格控制binlog的大小,尤其是binlog比较靠近最大值而又遇到一个比较大事务时,为了保证事务的完整性,不可能做切换日志的动作,只能将该事务的所有SQL都记录到当前日志,直到事务结束。
Binlog的日志格式
binlog有三种格式:Statement, Row和Mixed.
基于SQL语句的复制(statement-based replication, SBR)
基于行的复制(row-based replication, RBR)
混合模式复制(mixed-based replication, MBR)
每一条会修改数据的sql都会记录在binlog中。
优点:不需要记录每一行的变化,减少了binlog日志量,节约了IO, 提高了性能。
缺点:由于记录的只是执行语句,为了这些语句能在slave上正确运行,因此还必须记录每条语句在执行的时候的一些相关信息,以保证所有语句能在slave得到和在master端执行的时候相同的结果。另外mysql的复制,像一些特定函数的功能,slave可与master上要保持一致会有很多相关问题。
相比row能节约多少性能与日志量,这个取决于应用的SQL情况,正常同一条记录修改或者插入row格式所产生的日志量还小鱼statement产生的日志量,但是考虑到如果带条件的update操作,以及整表删除,alter表等操作,row格式会产生大量日志,因此在考虑是否使用row格式日志时应该根据应用的实际情况,其所产生的日志量会增加多少,以及带来的IO性能问题。
5.1.5版本的MySQL才开始支持row level的复制,它不记录sql语句上下文相关信息,仅保存哪条记录被修改。
优点: binlog中可以不记录执行的sql语句的上下文相关的信息,仅需要记录那一条记录被修改成什么了。所以row的日志内容会非常清楚的记录下每一行数据修改的细节。而且不会出现某些特定情况下的存储过程,或function,以及trigger的调用和触发无法被正确复制的问题.
缺点:所有的执行的语句当记录到日志中的时候,都将以每行记录的修改来记录,这样可能会产生大量的日志内容。
新版本的MySQL中对row level模式也被做了优化,并不是所有的修改都会以row level来记录,像遇到表结构变更的时候就会以statement模式来记录,如果sql语句确实就是update或者delete等修改数据的语句,那么还是会记录所有行的变更。
从5.1.8版本开始,MySQL提供了Mixed格式,实际上就是Statement与Row的结合。
在Mixed模式下,一般的语句修改使用statment格式保存binlog,如一些函数,statement无法完成主从复制的操作,则采用row格式保存binlog,MySQL会根据执行的每一条具体的sql语句来区分对待记录的日志形式,也就是在Statement和Row之间选择一种。
查看Binlog文件
查看当前服务器使用的二进制文件及大小:
| mysql-bin.000001 |
| mysql-bin.000002 |
| mysql-bin.000003 |
| mysql-bin.000004 |
显示主服务器使用的二进制文件及大小:
| mysql-bin.000001 |
| mysql-bin.000002 |
| mysql-bin.000003 |
| mysql-bin.000004 |
显示当前使用的二进制文件及所处位置:
binlog_do_db:此参数表示只记录制定数据库的二进制日志
binlog_ignore_db:此参数标示不记录指定的数据库的二进制日志
需要查看某个具体binlog文件的内容时,以“mysql-bin.000005”为例。
在MySQL客户端输入:show binlog events in “mysql-bin.000005”;
效果如下所示:
mysql& show binlog events in 'mysql-bin.000005';
+------------------+-----+-------------+-----------+-------------+---------------------------------------+
| Log_name
| Pos | Event_type
| Server_id | End_log_pos | Info
+------------------+-----+-------------+-----------+-------------+---------------------------------------+
| mysql-bin.000005 |
4 | Format_desc |
107 | Server ver: 5.5.51-log, Binlog ver: 4 |
| mysql-bin.000005 | 107 | Query
181 | BEGIN
| mysql-bin.000005 | 181 | Table_map
239 | table_id: 44 (canal_test.company)
| mysql-bin.000005 | 239 | Write_rows
287 | table_id: 44 flags: STMT_END_F
| mysql-bin.000005 | 287 | Xid
314 | COMMIT
| mysql-bin.000005 | 314 | Query
388 | BEGIN
| mysql-bin.000005 | 388 | Table_map
449 | table_id: 35 (canal_test.person)
| mysql-bin.000005 | 449 | Update_rows |
526 | table_id: 35 flags: STMT_END_F
| mysql-bin.000005 | 526 | Xid
553 | COMMIT
| mysql-bin.000005 | 553 | Query
627 | BEGIN
| mysql-bin.000005 | 627 | Table_map
688 | table_id: 35 (canal_test.person)
| mysql-bin.000005 | 688 | Write_rows
741 | table_id: 35 flags: STMT_END_F
| mysql-bin.000005 | 741 | Xid
768 | COMMIT
| mysql-bin.000005 | 768 | Query
842 | BEGIN
| mysql-bin.000005 | 842 | Table_map
903 | table_id: 35 (canal_test.person)
| mysql-bin.000005 | 903 | Delete_rows |
956 | table_id: 35 flags: STMT_END_F
| mysql-bin.000005 | 956 | Xid
983 | COMMIT
+------------------+-----+-------------+-----------+-------------+---------------------------------------+
17 rows in set (0.00 sec)
或者使用mysqlbinlog命令,在shell终端输入(假设当前目录为 ../mysql/data): ../bin/mysqlbinlog mysql-bin.000005
[root@xxx data]
/usr/local/mysql/data
[root@xxx data]
/*!50530 SET @@SESSION.PSEUDO_SLAVE_MODE=1*/;
/*!40019 SET @@session.max_insert_delayed_threads=0*/;
/*!50003 SET @OLD_COMPLETION_TYPE=@@COMPLETION_TYPE,COMPLETION_TYPE=0*/;
DELIMITER /*!*/;
8TQIWA8CAAAAZwAAAGsAAAABAAQANS41LjUxLWxvZwAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA
AAAAAAAAAAAAAAAAAAAAAAAAEzgNAAgAEgAEBAQEEgAAVAAEGggAAAAICAgCAA==
SET TIMESTAMP=/*!*/;
SET @@session.pseudo_thread_id=162/*!*/;
SET @@session.foreign_key_checks=1, @@session.sql_auto_is_null=0, @@session.unique_checks=1, @@session.autocommit=1/*!*/;
SET @@session.sql_mode=0/*!*/;
SET @@session.auto_increment_increment=1, @@session.auto_increment_offset=1/*!*/;
/*!\C utf8 *//*!*/;
SET @@session.character_set_client=33,@@session.collation_connection=33,@@session.collation_server=8/*!*/;
SET @@session.lc_time_names=0/*!*/;
SET @@session.collation_database=DEFAULT/*!*/;
QjUIWBMCAAAAOgAAAO8AAAAAACwAAAAAAAEACmNhbmFsX3Rlc3QAB2NvbXBhbnkAAwMPDwQsASwB
QjUIWBcCAAAAMAAAAB8BAAAAACwAAAAAAAEAA//4AgAAAAIAZHAIAHNoYW5naGFp
COMMIT/*!*/;
SET TIMESTAMP=/*!*/;
JkIIWBMCAAAAPQAAAMEBAAAAACMAAAAAAAEACmNhbmFsX3Rlc3QABnBlcnNvbgAFAw8D/g8GLAH+
JkIIWBgCAAAATQAAAA4CAAAAACMAAAAAAAEABf//4AEAAAADAHp6aAIAAAABbQQAaGVyZeABAAAA
AwB6emgCAAAAAW0HAG5hbmppbmc=
COMMIT/*!*/;
SET TIMESTAMP=/*!*/;
pEIIWBMCAAAAPQAAALACAAAAACMAAAAAAAEACmNhbmFsX3Rlc3QABnBlcnNvbgAFAw8D/g8GLAH+
pEIIWBcCAAAANQAAAOUCAAAAACMAAAAAAAEABf/gBAAAAAQAenpoNBYAAAABbQUAd2hlcmU=
COMMIT/*!*/;
SET TIMESTAMP=/*!*/;
ykIIWBMCAAAAPQAAAIcDAAAAACMAAAAAAAEACmNhbmFsX3Rlc3QABnBlcnNvbgAFAw8D/g8GLAH+
ykIIWBkCAAAANQAAALwDAAAAACMAAAAAAAEABf/gBAAAAAQAenpoNBYAAAABbQUAd2hlcmU=
COMMIT/*!*/;
DELIMITER ;
ROLLBACK /* added by mysqlbinlog */;
/*!50003 SET COMPLETION_TYPE=@OLD_COMPLETION_TYPE*/;
/*!50530 SET @@SESSION.PSEUDO_SLAVE_MODE=0*/;
截取上面的一段进行分析:
#:03:50 server id 2
end_log_pos 388
thread_id=162
exec_time=0 error_code=0
SET TIMESTAMP=;
上面输出包括如下要素:
position: 位于文件中的位置,即第一行的(# at 314),说明该事件记录从文件第314个字节开始
timestamp: 事件发生的时间戳,即第二行的(#:07:29)
exec_time: 事件执行的花费时间
error_code: 错误码
server id: 服务器标识(2)
thread_id: 代理线程id (thread_id=162)
type:事件类型Query(参考下一章节)
使用mysqlbinlog命令还可以进行数据库恢复,使用日志进行恢复时,需要依次进行,即最早生成的日志文件要最先恢复:
mysqlbinlog mysql-bin.000001 | mysql -uroot -proot
mysqlbinlog mysql-bin.000002 | mysql -uroot -proot
Binlog事件
Binlog事件类型
binlog事件类型一共有三个版本:
v1: Used in MySQL 3.23
v3: Used in MySQL 4.0.2 though 4.1
v4: Used in MySQL 5.0 and up
v2出现了很短的时间,并且已经不被支持
现在所使用的MySQL一般都是5.5起了,所以下面陈述的都是v4版的binlog事件类型。
binlog的事件类型一共有以下几种:
enum Log_event_type {
UNKNOWN_EVENT= 0,
START_EVENT_V3= 1,
QUERY_EVENT= 2,
STOP_EVENT= 3,
ROTATE_EVENT= 4,
INTVAR_EVENT= 5,
LOAD_EVENT= 6,
SLAVE_EVENT= 7,
CREATE_FILE_EVENT= 8,
APPEND_BLOCK_EVENT= 9,
EXEC_LOAD_EVENT= 10,
DELETE_FILE_EVENT= 11,
NEW_LOAD_EVENT= 12,
RAND_EVENT= 13,
USER_VAR_EVENT= 14,
FORMAT_DESCRIPTION_EVENT= 15,
XID_EVENT= 16,
BEGIN_LOAD_QUERY_EVENT= 17,
EXECUTE_LOAD_QUERY_EVENT= 18,
TABLE_MAP_EVENT = 19,
PRE_GA_WRITE_ROWS_EVENT = 20,
PRE_GA_UPDATE_ROWS_EVENT = 21,
PRE_GA_DELETE_ROWS_EVENT = 22,
WRITE_ROWS_EVENT = 23,
UPDATE_ROWS_EVENT = 24,
DELETE_ROWS_EVENT = 25,
INCIDENT_EVENT= 26,
HEARTBEAT_LOG_EVENT= 27,
IGNORABLE_LOG_EVENT= 28,
ROWS_QUERY_LOG_EVENT= 29,
WRITE_ROWS_EVENT_V2 = 30,
UPDATE_ROWS_EVENT_V2 = 31,
DELETE_ROWS_EVENT_V2 = 32,
GTID_LOG_EVENT= 33,
ANONYMOUS_GTID_LOG_EVENT= 34,
PREVIOUS_GTIDS_LOG_EVENT= 35,
ENUM_END_EVENT
20-22三个类型现在已经被飞起,这三个类型只出现在MySQL的5.1.5-5.1.7版本中。现在(从5.1.7版本开始)使用的WRITE, UPDATE, DELETE三个事件类型分别采用23,24,25。
事件类型简述
QUERY_EVENT
记录一条query语句,在基于语句的复制和基于行的复制都会有。
ROTATE_EVENT
二进制日志更换一个新文件,可能因为文件大小达到限制,或者是mysql重启,亦或者是调用了flush logs命令。
Commit事件
WRITE_ROWS_EVENT, UPDATE_ROWS_EVENT, DELETE_ROWS_EVENT
统称为ROW EVENT, 只有在基于row的复制方式下才会产生。
WRITE_ROWS_EVENT:包含了要插入的数据
UPDATE_ROWS_EVENT:包含了修改前的值,也包含了修改后的值
DELETE_ROWS_EVENT:包含了需要删除行前的值
TABLE_MAP_EVENT
ROW EVENT之前产生,为的是对ROW EVENT解析提供依据。
FORMAT_DESCRIPTION_EVENT
MySQL根据其定义来解析其他事件
INTVAR_EVET
在statement时使用到,用于自增类型auto_increment.
STOP_EVENT
MySQL停止时,在文件尾加入STOP_EVENT
更多事件类型可以参考MySQL官方文档:
事件类型分析
每个event都有一个19个字节的Binlog Event Header(如下图), 包括四个字节的timestamep, 一个字节的Binlog Event type, 4个字节的server_id(该id表明binlog的源server是哪个,用来在循环复制中国龙event),四个字节的event包大小,四个字节的下一个event起始偏移,两个字节的Binlog Event Flag. extra_headers目前的event中没有涉及到,预留用。
V4 event structure:
一个新的binlog文件都是以FORMAT_DESCRIPTION_EVENT开始的(v4版)。这里就以FORMAT_DESCRIPTION_EVENT为例来解析下(mysql-bin.000005)。通过hexdump -C mysql-bin.000005来查看二进制文件。(下面只列出部分内容)
[root@xxx data]# hexdump -C mysql-bin.000005
fe 62 69 6e f1 34 08 58
0f 02 00 00 00 67 00 00
|.bin.4.X.....g..|
00 6b 00 00 00 01 00 04
00 35 2e 35 2e 35 31 2d
|.k.......5.5.51-|
6c 6f 67 00 00 00 00 00
00 00 00 00 00 00 00 00
|log.............|
00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 00
|................|
00 00 00 00 00 00 00 00
00 00 00 00 00 00 00 13
|................|
38 0d 00 08 00 12 00 04
04 04 04 12 00 00 54 00
|8.............T.|
04 1a 08 00 00 00 08 08
08 02 00 42 35 08 58 02
|...........B5.X.|
02 00 00 00 4a 00 00 00
b5 00 00 00 08 00 a2 00
|....J...........|
00 00 01 00 00 00 0a 00
00 1a 00 00 00 00 00 00
|................|
01 00 00 00 00 00 00 00
00 06 03 73 74 64 04 21
|...........std.!|
按照官方文档中的说明来看下FORMAT_DESCRIPTION_EVENT格式:
v4 format description event
binlog是小端字节序的。binlog前4个字节是魔数:0xFE 0x62 0x69 0x6E. 接着是一个FORMAT_DESCRIPTION_EVENT,先看下19个字节的event header.
f1 34 08 58即0x是指时间戳,占4个字节;第5个字节0x0f是type_code即event type(FORMAT_DESCRIPTION_EVENT=15);接着4个字节02 00 00 00 即0x是server_id;再接着4个字节67 00 00 00是event_length=0x;然后4个字节6b 00 00 00是下一个next_position=0x7;接着两个字节01 00是flag=0x为LOG_EVENT_BINLOG_IN_USE_F,标识binlog还没有关闭,binlog关闭后,flag会被设置为0。这样4+1+4+4+4+2=19个字节。
event data部分分为fixed data和variable data两部分,其中fixed data是event的固定长度和格式的数据,variable data则是长度变化的数据,比如FORMAT_DESCRIPTION_EVENT的fix data长度是0x54=84字节。下面看下这84=2+50+4+1+27个字节的分配:开始的2个字节0x0004是binlog的版本号;接着的50个字节为mysql-server版本5.5.51-log;接下来4个字节是binlog创建时间,这里是0;然后1个字节是0x13是指之后所有event的公共长度,这里都是19;接着27个字节中每个字节为mysql已知的event(共27个)的fixed data的长度;可以发现FORMAT_DESCRIPTION_EVENT自身的variable data部分为空。
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1024D/6CFFBE67
Mathieu Arnold <mat@FreeBSD.org>
Key fingerprint = 1A5F 2DBB 56F5 817E 8AFF
51B2 A986 29CC 6CFF BE67
Mathieu Arnold <>
Mathieu Arnold <arn-mat@micronet.fr>
Mathieu Arnold <mat@mat.cc>
Mathieu Arnold <arn_mat@club-internet.fr>
Mathieu Arnold <mat@cpan.org>
Mathieu Arnold <mathieu.arnold@t-online.fr>
[expires: ]
2048R/A04-01-22
-----BEGIN PGP PUBLIC KEY BLOCK-----
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-----END PGP PUBLIC KEY BLOCK-----
Satoshi Asami <asami@cs.berkeley.edu>
Key fingerprint = EB 3C 68 9E FB 6C EB 3F
DB 2E 0F 10 8F CE 79 CA
Satoshi Asami <asami@FreeBSD.ORG>
-----BEGIN PGP PUBLIC KEY BLOCK-----
Version: GnuPG v1.0.6 (FreeBSD)
Comment: For info see http://www.gnupg.org
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