Garbage-First,面向服务端的垃圾收集器。
- 并行与并发:充分利用多核环境减少停顿时间,
- 分代收集:不需要配合其它收集器
- 空间整合:整体上看属于标记整理算法,局部(region之间)数据复制算法,运作期间不会产生空间碎片
- 停顿可预测,建立可以预测的停顿时间模型。
内存管理:
- 将整个java堆划分为多个大小形同的区域region,新生代和老年代都是region的集合。可以有计划的避免在全区域内进行垃圾收集。
- 回收方式:跟踪每一个region里面的垃圾堆积的价值大小(回收所得的空间大小以及所需耗费时间的经验值),维护一个优先列表,每次根据允许的回收时间,优先回收价值最大的region(GI名字由来),
- region之间的引用,新生代和老年带之间的引用根据remebered set来避免全盘扫描,每一个region都维护一个remebered set,
- 初始标记-》并发标记-》最终标记-》筛选回收,类CMS
Phase
|
Description
|
(1) Initial Mark (Stop the World Event)
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This is a stop the world event. With G1, it is piggybacked on a normal young GC. Mark survivor regions (root regions) which may have references to objects in old generation.
|
(2) Root Region Scanning
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Scan survivor regions for references into the old generation. This happens while the application continues to run. The phase must be completed before a young GC can occur.
|
(3) Concurrent Marking
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Find live objects over the entire heap. This happens while the application is running. This phase can be interrupted by young generation garbage collections.
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(4) Remark (Stop the World Event)
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Completes the marking of live object in the heap. Uses an algorithm called snapshot-at-the-beginning (SATB) which is much faster than what was used in the CMS collector.
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(5) Cleanup (Stop the World Event and Concurrent)
|
|
(*) Copying (Stop the World Event)
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These are the stop the world pauses to evacuate or copy live objects to new unused regions. This can be done with young generation regions which are logged as [GC pause (young)]. Or both young and old generation regions which are logged as [GC Pause (mixed)].
|
Option and Default Value
|
Description
|
-XX:+UseG1GC
|
Use the Garbage First (G1) Collector:启用G1收集器
|
-XX:MaxGCPauseMillis=n
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Sets a target for the maximum GC pause time. This is a soft goal, and the JVM will make its best effort to achieve it.:目标GC暂停时间,尽可能目标
|
-XX:InitiatingHeapOccupancyPercent=n
|
Percentage of the (entire) heap occupancy to start a concurrent GC cycle. It is used by GCs that trigger a concurrent GC cycle based on the occupancy of the entire heap, not just one of the generations (e.g., G1). A value of 0 denotes 'do constant GC cycles'. The default value is 45.:触发GC 堆使用比例,整个堆的占用比例,而不是某个分代区域,0意味着频繁收集,默认为45
|
-XX:NewRatio=n
|
Ratio of new/old generation sizes. The default value is 2.:年轻代/老年代比例 默认为2
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-XX:SurvivorRatio=n
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Ratio of eden/survivor space size. The default value is 8.:eden/survivor比例,默认为8,即 8 1 1
|
-XX:MaxTenuringThreshold=n
|
Maximum value for tenuring threshold. The default value is 15.:对象晋升老年代年龄阈值,默认15
|
-XX:ParallelGCThreads=n
|
Sets the number of threads used during parallel phases of the garbage collectors. The default value varies with the platform on which the JVM is running.:并行收集线程数
|
-XX:ConcGCThreads=n
|
Number of threads concurrent garbage collectors will use. The default value varies with the platform on which the JVM is running.:并发收集线程数
|
-XX:G1ReservePercent=n
|
Sets the amount of heap that is reserved as a false ceiling to reduce the possibility of promotion failure. The default value is 10.:预留座位假的堆上限百分比,默认10
|
-XX:G1HeapRegionSize=n
|
With G1 the Java heap is subdivided into uniformly sized regions. This sets the size of the individual sub-divisions. The default value of this parameter is determined ergonomically based upon heap size. The minimum value is 1Mb and the maximum value is 32Mb.:G1分割堆为等大小的region,region大小默认由jvm根据效能设置,1~32M
|
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