<rt id="bn8ez"></rt>
<label id="bn8ez"></label>

  • <span id="bn8ez"></span>

    <label id="bn8ez"><meter id="bn8ez"></meter></label>

    隨筆 - 41  文章 - 29  trackbacks - 0
    <2015年9月>
    303112345
    6789101112
    13141516171819
    20212223242526
    27282930123
    45678910

    常用鏈接

    留言簿(5)

    隨筆分類(28)

    隨筆檔案(23)

    收藏夾(6)

    Inside JVM

    Java

    java performance

    Solr

    搜索

    •  

    最新評論

    閱讀排行榜

    評論排行榜

    This article is trying to summarize what' the JVM GC log and how can we use it to analyse memory issues.

    1. How To Generate Sun JVM GC Log

    Generally, -Xloggc:d:\gc.log -XX:+PrintGCDetails is enough. Please see following details. And for the full list, please see from http://www.tagtraum.com/gcviewer-vmflags.html#sun.verbose
    -verbose:gc
    Prints out information about garbage collections to standard out. To print the same information to a file, use -Xloggc:<file>
    Example:
    [GC 325407K->83000K(776768K), 0.2300771 secs]
    [GC 325816K->83372K(776768K), 0.2454258 secs]
    [Full GC 267628K->83769K(776768K), 1.8479984 secs]

    See -Xloggc
    Supported by: 1.3, 1.4, 1.5

    -Xloggc:<file>
    Prints information about garbage collections to the specified file.
    In conjunction with -XX:+PrintGCDetails this is the best setting for the free GCViewer.
    Supported by: 1.4, 1.5

    -XX:+PrintGCDetails
    Instructs the VM to be more verbose when printing out garbage collecion data. Specifically it does not only tell you that there was a collection, but also what impact it had on the different generations.
    This flag is very useful when tuning generation sizes.
    In conjunction with -Xloggc this is the best setting for the free GCViewer.
    Example:
    2.459: [GC 2.459: [DefNew: 3967K->0K(4032K), 0.0141600 secs] 8559K->7454K(16320K), 0.0143588 secs]
    Supported by: 1.4, 1.5

    2. How To Read GC Log


    -verbose:gc prints information at every collection
      [GC 325407K                      -> 83000K                     (776768K),                                            0.2300771 secs]   
       [ GC  the combined size of live objects before GC  ->  the combined size of live objects after GC  (the total available space, not counting the space in the permanent generation),  pause time]          
      [GC 325816K->83372K(776768K), 0.2454258 secs]
      [Full GC 267628K->83769K(776768K), 1.8479984 secs]

    -XX:+PrintGCDetails for the J2SE Platform version 1.5 
    [GC [DefNew:                  64575K
        ->   959K              (64576K),                                    0.0457646 secs]  196016K                         ->                133633K            (261184K),       0.0459067 secs]]
    [GC [
    young generation:before GC -> after GC (available young generation heap),  pause time ]   entrie heap before GC -> entire heap after GC, (available heap),     pause time                 ]]

    [GC [<collector>: <starting occupancy1> -> <ending occupancy1>, <pause time1> secs] <starting occupancy3> -> <ending occupancy3>, <pause time3> secs]

    where

    <collector> is an internal name for the collector used in the minor collection

    <starting occupancy1> is the occupancy of the young generation before the collection

    <ending occupancy1> is the occupancy of the young generation after the collection

    <pause time1> is the pause time in seconds for the minor collection.

    <starting occupancy3> is the occupancy of the entire heap before the collection

    <ending occupancy3> is the occupancy of the entire heap after the collection

    <pause time3> is the pause time for the entire garbage collection. This would include the time for a major collection is one was done.




    Another way is to use GCViewer
    GCViewer is a free open source tool to visualize data produced by the Java VM options 
    -verbose:gc and -Xloggc<file>. It also calculates garbage collection related performance metrics
    (throughput, accumulated pauses, longest pause, etc.). This can be very useful when tuning the garbage collection of a particular application by changing generation sizes or setting the initial heap size.
    See here 
    for a useful summary of garbage collection related JVM parameters.

    3. How To Use GC Log

     Generally, you can see three signals
    (1)  the memory collected by young generation == the memory collected by entire heap? such as 64575K-959K=63616K, and 196016K - 133633K = 62383K, which means 63616K - 62383K =1233K memory moved from yougn generation to tenured section. If every GC will cause this operation, the memory is slowly leaking.
    (2) the trace of memory collected by GC? does it become smaller and smaller, which mean more and more memory cannot be collected. It is a very obvious sign of memory leak.
    (3) does the pause time is longer and longer? >1s is a obvious sign.

    From another side, the GC View provides a very good trace which is easier to be analysed.

    posted on 2009-03-19 22:27 Justin Chen 閱讀(8504) 評論(2)  編輯  收藏 所屬分類: Inside JVM

    FeedBack:
    # re: Inside JVM - GC(Garbage collection) Log and Analysis[未登錄] 2009-02-13 08:12 duduli
    GC 有三種機制。
    怎樣優化GC呢?


    ps:my english is so poor.  回復  更多評論
      
    # re: GC(Garbage collection) Log and Analysis - 2 of Series "Inside JVM"  2015-09-04 17:59 Performance Expert
    For free gc log analysis, send the log file to performancetestexpert@gmail.com  回復  更多評論
      
    主站蜘蛛池模板: 日韩色视频一区二区三区亚洲 | 亚洲国产成人资源在线软件 | 和老外3p爽粗大免费视频| 18禁在线无遮挡免费观看网站| 欧洲精品99毛片免费高清观看| 日韩精品无码区免费专区| 亚洲经典在线观看| 亚洲精品在线免费看| 免费a在线观看播放| 亚洲av日韩综合一区二区三区| 国内自产少妇自拍区免费| 亚洲AV无码专区亚洲AV伊甸园| 99精品视频在线观看免费| 国产成人亚洲综合色影视| 欧洲 亚洲 国产图片综合| 免费无码A片一区二三区| 亚洲成a∨人片在无码2023| 国产gav成人免费播放视频| 色爽黄1000部免费软件下载| 18国产精品白浆在线观看免费| 亚洲乱码在线播放| 免费羞羞视频网站| 有码人妻在线免费看片| 亚洲gv白嫩小受在线观看| 四虎在线成人免费网站| 亚洲国产精品无码av| 100部毛片免费全部播放完整| 亚洲制服丝袜在线播放| 国产成人涩涩涩视频在线观看免费| 亚洲精品中文字幕乱码| 91视频国产免费| 黄网站在线播放视频免费观看 | 一级毛片a免费播放王色电影| 亚洲愉拍99热成人精品热久久| 免费无遮挡无码永久视频 | 亚洲情a成黄在线观看| 亚洲欧洲无码AV不卡在线| 免费国产不卡午夜福在线| 国产麻豆成人传媒免费观看| 亚洲丰满熟女一区二区v| 免费乱码中文字幕网站|