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对squid中refresh_pattern的一些理解和建议_PHP

Jun 01, 2016 pm 12:23 PM

squid

refresh_pattern的作用:
用于确定一个页面进入cache后,它在cache中停留的时间。refresh_pattern规则仅仅应用到没有明确过时期限的响应。原始服务器能使用Expires头部,或者Cache-Control:max-age指令来指定过时期限。
语法:refresh_pattern [-i] regexp min percent max [options]
min参数是分钟数量。它是过时响应的最低时间限制。如果某个响应驻留在cache里的时间没有超过这个最低限制,那么它不会过期。类似的,max参数是存活响应的最高时间限制。如果某个响应驻留在cache里的时间高于这个最高限制,那么它必须被刷新。
在最低和最高时间限制之间的响应,会面对squid的最后修改系数LM-factor算法LM-factor=(response age)/(resource age)。对这样的响应,squid计算响应的年龄和最后修改系数,然后将它作为百分比值进行比较。响应年龄简单的就是从原始服务器产生,或最后一次验证响应后,经历的时间数量。源年龄在Last-Modified和Date头部之间是不同的。LM-factor是响应年龄与源年龄的比率。
常用的几个参数的意思

override-expire
该选项导致squid在检查Expires头部之前,先检查min值。这样,一个非零的min时间让squid返回一个未确认的cache命中,即使该响应准备过期。

override-lastmod
改选项导致squid在检查LM-factor百分比之前先检查min值。

reload-into-ims
该选项让squid在确认请求里,以no-cache指令传送一个请求。换句话说,squid在转发请求之前,对该请求增加一个If-Modified- Since头部。注意这点仅仅在目标有Last-Modified时间戳时才能工作。外面进来的请求保留no-cache指令,以便它到达原始服务器。
一般情况可以使用 reload-into-ims。它其实是强行控制对象的超时时间,这违反了http协议的精神,但是在带宽较窄的场合,可以提高明显系统相应时间。
举例:
refresh_pattern -i \.css$ 1440 50% 129600 reload-into-ims
refresh_pattern -i \.xml$ 1440 50% 129600 reload-into-ims
refresh_pattern -i \.html$ 1440 90% 129600 reload-into-ims-
refresh_pattern -i \.shtml$ 1440 90% 129600 reload-into-ims
refresh_pattern -i \.hml$ 1440 90% 129600 reload-into-ims
refresh_pattern -i \.jpg$ 1440 90% 129600 reload-into-ims
refresh_pattern -i \.png$ 1440 90% 129600 reload-into-ims
refresh_pattern -i \.gif$ 1440 90% 129600 ignore-reload
refresh_pattern -i \.bmp$ 1440 90% 129600 reload-into-ims
refresh_pattern -i \.js$ 1440 90% 129600 reload-into-ims


ignore-reload
该选项导致squid忽略请求里的任何no-cache指令。
所以。如果希望内容一进入cache就不删除,直到被主动purge掉为止,可以加上ignore-reload选项,这个我们常用在mp3,wma,wmv,gif之类。
Examples:
refresh_pattern -i \.mp3$ 1440 50% 2880 ignore-reload
refresh_pattern -i \.wmv$ 1440 50% 2880 ignore-reload
refresh_pattern -i \.rm$ 1440 50% 2880 ignore-reload
refresh_pattern -i \.swf$ 1440 50% 2880 ignore-reload
refresh_pattern -i \.mpeg$ 1440 50% 2880 ignore-reload
refresh_pattern -i \.wma$ 1440 50% 2880 ignore-reload
resource age =对象进入cache的时间-对象的last_modified
response age =当前时间-对象进入cache的时间
LM-factor=(response age)/(resource age)
举个例子,这里只考虑percent, 不考虑min 和max
例如:refresh_pattern 20%
假设源服务器上www.aaa.com/index.htm -----lastmodified 是 2007-04-10 02:00:00
squid上 proxy.aaa.com/index.htm index.htm进入cache的时间 2007-04-10 03:00:00

1)如果当前时间 2007-04-10 03:00:00
resource age =3点-2点=60分钟
response age =0分钟
index.htm还可以在cache停留的时间(resource age)*20%=12分钟
也就是说,index.htm进入cache后,可以停留12分钟,才被重新确认。

2)如果当前时间 2007-04-10 03:05:00
resource age =3点-2点=60分钟
response age =5分钟
index.htm还可以在cache停留的时间(resource age)*20%=12分钟-5=7
LM-factor=5/60=8.3%
一直到2007-04-10 03:12:00 LM-factor=12/60=20% 之后,cache中的页面index.htm终于stale。
如果这时没有index.htm的请求,index.htm会一直在缓存中,如果有index.htm请求,squid收到该请求后,由于已经过期, squid会向源服务器发一个index.htm是否有改变的请求,源服务器收到后,如果index.htm没有更新,squid就不用更新缓存,直接把缓存的内容放回给客户端,同时,重置对象进入cache的时间为与源服务器确认的时间,比如2007-04-10 03:13:00,如果正好在这个后重新确认了页面。重置后,resource age变长,相应在cache中存活的时间也变长。

如果有改变则把最新的index.htm返回给squid,squid收到会更新缓存,然后把新的index.htm返回给客户端,同时根据新页面中的Last_Modified和取页面的时间,重新计算resource age,进一步计算出存活时间。

实际上,一个页面进入cache后,他的存活时间就确定了,即 (resource age) * 百分比,一直到被重新确认。
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