zookeeper主要存放了两类文件,一个是snapshot和log,前者是内存数的快照,后者类似mysql的binlog,将所有与修改数据相关的操作记录在log中,
两类文件的目录可在配置文件中指定
下面通过几个典型的场景来分析两种文件的存储格式
snapshot文件格式
详见ZooKeeperServer.takeSnapshot,
列举1个简单的场景说明问题
场景 刚刚装了zookeeper,服务启动后会产生snapshot文件
000000005a4b534e00000002ffffffffffffffff|ZKSN............|
00000010 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| 00000020 ff ff ff ff ff ff ff ff 00 00 00 00 00 00 00 00 |................| 00000030 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 00000060 00 00 00 00 00 00 00 0a 2f 7a 6f 6f 6b 65 65 70 |......../zookeep| 00000070 65 72 00 00 00 00 ff ff ff ff ff ff ff ff 00 00 |er..............| 00000080 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 000000b0 00 00 00 00 00 00 00 00 00 00 00 00 00 10 2f 7a |............../z| 000000c0 6f 6f 6b 65 65 70 65 72 2f 71 75 6f 74 61 00 00 |ookeeper/quota..| 000000d0 00 00 ff ff ff ff ff ff ff ff 00 00 00 00 00 00 |................| 000000e0 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 00000110 00 00 00 00 00 00 00 00 00 01 2f 00 00 00 00 ab |........../.....| 00000120 10 2b d2 00 00 00 01 2f |.+...../| 00000128分成4个部分
a)header
magic:4个字节,“ZKSN”的int值对应0x5a4b534e【对应偏移地址0x00000000---0x00000003】
version:4个字节,默认为2对应0x00000002【对应偏移地址0x00000004---0x00000007】
dbid:8个字节,默认为-1对应0xffffffffffffffff【对应偏移地址0x00000008---0x0000000f】
b)data
count:session个数,4个字节此时为0,如果不为0,会存放session的id和timeout,对应0x00000000【对应偏移地址0x00000010---0x00000013】
内存树:
map:acl映射的个数4个字节,此时为0对应0x00000000【对应偏移地址0x00000013---0x00000017】
开始递归写node
第一个node路径为""也即根节点
path
len:4个字节,此时为0对应0x00000000【对应偏移地址0x00000017---0x0000001b】
node
data
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len:4个字节,此时为0,对应0x00000000【对应偏移地址0x0000001c---0x0000001f】
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acl:8个字节,此时-1,对应0xffffffffffffffff【对应偏移地址0x00000020---0x00000027】
statpersisted:状态存储
czxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000028---0x0000002f】
mzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000030---0x00000037】
ctime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000038---0x0000003f】
mtime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000040---0x00000047】
version:4个字节,此时为0,对应0x000000【对应偏移地址0x00000048---0x0000004b】
cversion:4个字节,此时为0,对应0x000000【对应偏移地址0x0000004c---0x0000004f】
aversion:4个字节,此时为0,对应0x000000【对应偏移地址0x00000050---0x00000053】
ephemeralOwner:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000054---0x0000005b】
pzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x0000005c---0x00000063】
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开始序列化第2个节点,即根节点的子节点(/zookeeper)
path
len:4个字节,此时为/zookeeper的长度10对应0x0000000a【对应偏移地址0x00000064---0x00000067】
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内容:10个字节此时为“/zookeeper”的ascii表示0x2f7a6f6f6b6565706572【对应偏移地址0x00000068---0x00000071】
node:此时和根节点一样,下面的字节和根节点一样
data
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len:4个字节,此时为0,对应0x00000000【对应偏移地址0x00000072---0x00000075】
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acl:8个字节,此时-1,对应0xffffffffffffffff【对应偏移地址0x00000076---0x0000007d】
statpersisted:状态存储
czxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x0000007e---0x00000085】
mzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000086---0x0000008d】
ctime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x0000008e---0x00000095】
mtime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000096---0x0000009d】
version:4个字节,此时为0,对应0x000000【对应偏移地址0x0000009e---0x000000a1】
cversion:4个字节,此时为0,对应0x000000【对应偏移地址0x000000a2---0x000000a5】
aversion:4个字节,此时为0,对应0x000000【对应偏移地址0x000000a6---0x000000a9】
ephemeralOwner:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000aa---0x000000b1】
pzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000b2---0x000000b9】
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开始序列化第3个节点(/zookeeper的子节点/zookeeper/quota)
path
len:16个字节,此时为”/zookeeper/quota“的长度16,对应0x00000010【对应偏移地址0x000000ba---0x000000bd】
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内容:10个字节此时为”/zookeeper/quota“的ascii表示0x2f7a6f6f6b65657065722f71756f7461
【对应偏移地址0x000000be---0x000000cd】
node:此时和根节点一样,下面的字节和根节点一样
data
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len:4个字节,此时为0,对应0x00000000【对应偏移地址0x000000ce---0x000000d1】
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acl:8个字节,此时-1,对应0xffffffffffffffff【对应偏移地址0x000000d2---0x000000d9】
statpersisted:状态存储
czxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000da---0x000000e1】
mzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000e2---0x000000e9】
ctime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000ea---0x000000f1】
mtime:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x000000f2---0x000000f9】
version:4个字节,此时为0,对应0x000000【对应偏移地址0x000000fa---0x000000fd】
cversion:4个字节,此时为0,对应0x000000【对应偏移地址0x000000fe---0x00000101】
aversion:4个字节,此时为0,对应0x000000【对应偏移地址0x00000102---0x00000105】
ephemeralOwner:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x00000106---0x0000010d】
pzxid:8个字节,此时为0,对应0x0000000000000000【对应偏移地址0x0000010e---0x00000115】
树的结尾以"/"结束
共5个字节,前4个表示长度为1,后面是"/"的ascii码0x2f,总共是0x000000012f【对应偏移地址0x00000116---0x0000011a】
c)校验码
通过Adler32校验算法,对前面的字节得出的一个校验码,占8个字节
0x00000000ab102bd2【对应偏移地址0x0000011b---0x00000122】
d)结束符
和内存树一样以"/"为结束符
共5个字节,前4个表示长度为1,后面是"/"的ascii码0x2f,总共是0x000000012f【对应偏移地址0x00000123---0x00000127】
log文件格式
详见FileTxnLog.append
场景1)启动一个客户端
此时会跟据当前事务的id,此时为1,产生log.1的文件
1)fileheader
magic:4个字节,“ZKLG”的int值对应0x5a4b4c47【对应偏移地址0x00000000---0x00000003】
version:4个字节,默认为2对应0x00000002【对应偏移地址0x00000004---0x00000007】
dbid:8个字节,默认为0对应0x0000000000000000【对应偏移地址0x00000008---0x0000000f】
2)请求内容
txnEntryCRC(校验码,对于下面的txEntry)
采用和snapshot同样的算法Adler32得到的长整数8个字节0x0000000059270806【对应偏移地址0x00000010---0x00000017】
txEntry
内容长度:4个字节0x00000024【对应偏移地址0x00000018---0x000001b】
hdr
clientId:长整数8个字节0x013a694e191a0000【对应偏移地址0x0000001c---0x00000023】
cxid:此时为整数0,4个字节0x00000000【对应偏移地址0x00000024---0x00000027】
zxid:此时为长整数1,8个字节0x0000000000000001【对应偏移地址0x00000028---0x0000002f】
time:长整数8个字节,0000013a694eabaf【对应偏移地址0x00000030---0x00000037】
type:操作码(码表见org.apache.zookeeper.ZooDefs.OpCode)此时为整数-10,4个字节0xfffffff6【对应偏移地址0x00000038---0x0000003b】
txn
timeOut:此时整数400000,4个字节0x00061a80【对应偏移地址0x0000003c---0x0000003f】
EOR
写入一个固定的字节作为结尾:0x42【对应偏移地址0x00000040】
此时为
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| 00000000 5a 4b 4c 47 00 00 00 02 00 00 00 00 00 00 00 00 |ZKLG............| 00000010 00 00 00 00 59 27 08 06 00 00 00 24 01 3a 69 4e |....Y'.....$.:iN| 00000020 19 1a 00 00 00 00 00 00 00 00 00 00 00 00 00 01 |................| 00000030 00 00 01 3a 69 4e ab af ff ff ff f6 00 06 1a 80 |...:iN..........| 00000040 42 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |B...............| 00000050 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 04000010 |
场景2)添加节点
zk.create("/root","mydata".getBytes(),Ids.OPEN_ACL_UNSAFE,
CreateMode.PERSISTENT);
开始添加txnEntry
txnEntryCRC(校验码)
采用和snapshot同样的算法Adler32得到的长整数8个字节,
0x00000000ba260c5e【对应偏移地址0x00000041---0x00000048】
txnEntry
内容长度:4个字节,0x00000053【对应偏移地址0x00000049---0x000004c】
hdr:entry头信息
clientId:此时为长整数,8个字节0x013a694e191a0000【对应偏移地址0x0000004d---0x00000054】
cxid:此时为整数2,4个字节,0x00000002【对应偏移地址0x00000055---0x00000058】
zxid:此时为长整数2,8个字节,0x0000000000000002【对应偏移地址0x00000059---0x00000060】
time:此时为长整数8个字节,0x0000013a694f3fa5【对应偏移地址0x00000061---0x00000068】
type:此时为整数1,4个字节,0x00000001【对应偏移地址0x00000069---0x0000006c】
txn:节点内容
path:此时为“/root”,占用9个字节,前4个表示长度5,后5个为"/root"5个字符的ascii码,0x000000052f726f6f74【对应偏移地址0x0000006d---0x00000075】
data:此时为"mydata"的字节数组,占用10个字节,前4个为长度6,后6个为"mydata"的字节数组,
0x000000066d7964617461【对应偏移地址0x00000076---0x0000007f】
开始写acl信息
acl:acl长度,占用4个字节,此时长度为1,0x00000001【对应偏移地址0x00000080---0x00000083】
e1:一条acl具体信息
perms:4个字节,此时为整数31,0x0000001f【对应偏移地址0x00000084---0x00000087】
id
scheme:此时为字符串“world”,占用9个字节,前4个为长度5,后5个“world”5个字符的ascii码,
0x00000005776f726c64【对应偏移地址0x00000088---0x00000090】
id:此时为字符串“anyone”,占用10个字节,前4个为长度6,后6个“anyone”6个字符的ascii码,
0x00000006616e796f6e65【对应偏移地址0x00000091---0x0000009a】
ephemeral:此时为“false”,占用1个字节,如果true,写1,false写0,0x00【对应偏移地址0x0000009b】
parentCVersion:此时为整数1,占用4个字节,0x00000001【对应偏移地址0x0000009c---0x0000009f】
EOR
写入一个固定的字节作为结尾:0x42【对应偏移地址0x000000a0】
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| 00000000 5a 4b 4c 47 00 00 00 02 00 00 00 00 00 00 00 00 |ZKLG............| 00000010 00 00 00 00 59 27 08 06 00 00 00 24 01 3a 69 4e |....Y'.....$.:iN| 00000020 19 1a 00 00 00 00 00 00 00 00 00 00 00 00 00 01 |................| 00000030 00 00 01 3a 69 4e ab af ff ff ff f6 00 06 1a 80 |...:iN..........| 00000040 42 00 00 00 00 ba 26 0c 5e 00 00 00 53 01 3a 69 |B.....&.^...S.:i| 00000050 4e 19 1a 00 00 00 00 00 02 00 00 00 00 00 00 00 |N...............| 00000060 02 00 00 01 3a 69 4f 3f a5 00 00 00 01 00 00 00 |....:iO?........| 00000070 05 2f 72 6f 6f 74 00 00 00 06 6d 79 64 61 74 61 |./root....mydata| 00000080 00 00 00 01 00 00 00 1f 00 00 00 05 77 6f 72 6c |............worl| 00000090 64 00 00 00 06 61 6e 79 6f 6e 65 00 00 00 00 01 |d....anyone.....| 000000a0 42 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |B...............| 000000b0 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 04000010 |
场景3)再添加一个节点
StringrealPath=zk.create("/root/childone",
"childone".getBytes(),Ids.OPEN_ACL_UNSAFE,
CreateMode.PERSISTENT);
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| 00000000 5a 4b 4c 47 00 00 00 02 00 00 00 00 00 00 00 00 |ZKLG............| 00000010 00 00 00 00 59 27 08 06 00 00 00 24 01 3a 69 4e |....Y'.....$.:iN| 00000020 19 1a 00 00 00 00 00 00 00 00 00 00 00 00 00 01 |................| 00000030 00 00 01 3a 69 4e ab af ff ff ff f6 00 06 1a 80 |...:iN..........| 00000040 42 00 00 00 00 ba 26 0c 5e 00 00 00 53 01 3a 69 |B.....&.^...S.:i| 00000050 4e 19 1a 00 00 00 00 00 02 00 00 00 00 00 00 00 |N...............| 00000060 02 00 00 01 3a 69 4f 3f a5 00 00 00 01 00 00 00 |....:iO?........| 00000070 05 2f 72 6f 6f 74 00 00 00 06 6d 79 64 61 74 61 |./root....mydata| 00000080 00 00 00 01 00 00 00 1f 00 00 00 05 77 6f 72 6c |............worl| 00000090 64 00 00 00 06 61 6e 79 6f 6e 65 00 00 00 00 01 |d....anyone.....| 000000a0 42 00 00 00 00 bc 21 10 aa 00 00 00 5e 01 3a 69 |B.....!.....^.:i| 000000b0 4e 19 1a 00 00 00 00 00 04 00 00 00 00 00 00 00 |N...............| 000000c0 03 00 00 01 3a 69 6a 30 9c 00 00 00 01 00 00 00 |....:ij0........| 000000d0 0e 2f 72 6f 6f 74 2f 63 68 69 6c 64 6f 6e 65 00 |./root/childone.| 000000e0 00 00 08 63 68 69 6c 64 6f 6e 65 00 00 00 01 00 |...childone.....| 000000f0 00 00 1f 00 00 00 05 77 6f 72 6c 64 00 00 00 06 |.......world....| 00000100 61 6e 79 6f 6e 65 00 00 00 00 01 42 00 00 00 00 |anyone.....B....| 00000110 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 04000010 |
这个也是产生节点,和上面类似,不再赘述,可以分析出来
字节范围从000000a1---0000010b
此次的cxid为4,zxid为3,type还是1
场景4)修改节点数据
zk.setData("/root/childone","childonemodify".getBytes(),-1);
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| 00000000 5a 4b 4c 47 00 00 00 02 00 00 00 00 00 00 00 00 |ZKLG............| 00000010 00 00 00 00 59 27 08 06 00 00 00 24 01 3a 69 4e |....Y'.....$.:iN| 00000020 19 1a 00 00 00 00 00 00 00 00 00 00 00 00 00 01 |................| 00000030 00 00 01 3a 69 4e ab af ff ff ff f6 00 06 1a 80 |...:iN..........| 00000040 42 00 00 00 00 ba 26 0c 5e 00 00 00 53 01 3a 69 |B.....&.^...S.:i| 00000050 4e 19 1a 00 00 00 00 00 02 00 00 00 00 00 00 00 |N...............| 00000060 02 00 00 01 3a 69 4f 3f a5 00 00 00 01 00 00 00 |....:iO?........| 00000070 05 2f 72 6f 6f 74 00 00 00 06 6d 79 64 61 74 61 |./root....mydata| 00000080 00 00 00 01 00 00 00 1f 00 00 00 05 77 6f 72 6c |............worl| 00000090 64 00 00 00 06 61 6e 79 6f 6e 65 00 00 00 00 01 |d....anyone.....| 000000a0 42 00 00 00 00 bc 21 10 aa 00 00 00 5e 01 3a 69 |B.....!.....^.:i| 000000b0 4e 19 1a 00 00 00 00 00 04 00 00 00 00 00 00 00 |N...............| 000000c0 03 00 00 01 3a 69 6a 30 9c 00 00 00 01 00 00 00 |....:ij0........| 000000d0 0e 2f 72 6f 6f 74 2f 63 68 69 6c 64 6f 6e 65 00 |./root/childone.| 000000e0 00 00 08 63 68 69 6c 64 6f 6e 65 00 00 00 01 00 |...childone.....| 000000f0 00 00 1f 00 00 00 05 77 6f 72 6c 64 00 00 00 06 |.......world....| 00000100 61 6e 79 6f 6e 65 00 00 00 00 01 42 00 00 00 00 |anyone.....B....| 00000110 af 4a 0f 23 00 00 00 48 01 3a 69 4e 19 1a 00 00 |.J.#...H.:iN....| 00000120 00 00 00 07 00 00 00 00 00 00 00 04 00 00 01 3a |...............:| 00000130 69 74 8f f3 00 00 00 05 00 00 00 0e 2f 72 6f 6f |it........../roo| 00000140 74 2f 63 68 69 6c 64 6f 6e 65 00 00 00 0e 63 68 |t/childone....ch| 00000150 69 6c 64 6f 6e 65 6d 6f 64 69 66 79 00 00 00 01 |ildonemodify....| 00000160 42 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |B...............| 00000170 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 |................| * 04000010 |
这个也是修改节点,和上面类似,不再赘述,可以分析出来
字节范围从0000010c---00000160
此次的cxid为7,zxid为4,type还是5(从org.apache.zookeeper.ZooDefs.OpCode看到5就是setData)