Android中的ANR

一:什么是ANR

ANR:Application Not Responding,即应用无响应

二:ANR的类型

ANR一般有三种类型:

1:KeyDispatchTimeout(5 seconds) –主要类型

按键或触摸事件在特定时间内无响应

2:BroadcastTimeout(10 seconds)

BroadcastReceiver在特定时间内无法处理完成

3:ServiceTimeout(20 seconds) –小概率类型

Service在特定的时间内无法处理完成

三:KeyDispatchTimeout

Akey or touch event was not dispatched within the specified time(按键或触摸事件在特定时间内无响应)

具体的超时时间的定义在framework下的

ActivityManagerService.java

//How long we wait until we timeout on key dispatching.

staticfinal int KEY_DISPATCHING_TIMEOUT = 5*1000

四:为什么会超时呢?

超时时间的计数一般是从按键分发给app开始。超时的原因一般有两种:

(1)当前的事件没有机会得到处理(即UI线程正在处理前一个事件,没有及时的完成或者looper被某种原因阻塞住了)

(2)当前的事件正在处理,但没有及时完成

五:如何避免KeyDispatchTimeout

1:UI线程尽量只做跟UI相关的工作

2:耗时的工作(比如数据库操作,I/O,连接网络或者别的有可能阻碍UI线程的操作)把它放入单独的线程处理

3:尽量用Handler来处理UIthread和别的thread之间的交互

六:UI线程

说了那么多的UI线程,那么哪些属于UI线程呢?

UI线程主要包括如下:

Activity:onCreate(), onResume(), onDestroy(), onKeyDown(), onClick(),etc

AsyncTask: onPreExecute(), onProgressUpdate(), onPostExecute(), onCancel,etc

Mainthread handler: handleMessage(), post*(runnable r), etc

other

七:如何去分析ANR

先看个LOG:

04-01 13:12:11.572 I/InputDispatcher( 220): Application is not responding:Window{2b263310com.android.email/com.android.email.activity.SplitScreenActivitypaused=false}. 5009.8ms since event, 5009.5ms since waitstarted

04-0113:12:11.572 I/WindowManager( 220): Input event dispatching timedout sending tocom.android.email/com.android.email.activity.SplitScreenActivity

04-01 13:12:14.123 I/Process( 220): Sending signal. PID: 21404 SIG: 3—发生ANR的时间和生成trace.txt的时间

04-01 13:12:14.123 I/dalvikvm(21404):threadid=4: reacting to signal 3

……

04-0113:12:15.872 E/ActivityManager( 220): ANR in com.android.email(com.android.email/.activity.SplitScreenActivity)

04-0113:12:15.872 E/ActivityManager( 220): Reason:keyDispatchingTimedOut

04-0113:12:15.872 E/ActivityManager( 220): Load: 8.68 / 8.37 / 8.53

04-0113:12:15.872 E/ActivityManager( 220): CPUusage from 4361ms to 699ms ago —-CPU在ANR发生前的使用情况

04-0113:12:15.872 E/ActivityManager( 220): 5.5%21404/com.android.email: 1.3% user + 4.1% kernel / faults: 10 minor

04-0113:12:15.872 E/ActivityManager( 220): 4.3%220/system_server: 2.7% user + 1.5% kernel / faults: 11 minor 2 major

04-0113:12:15.872 E/ActivityManager( 220): 0.9%52/spi_qsd.0: 0% user + 0.9% kernel

04-0113:12:15.872 E/ActivityManager( 220): 0.5%65/irq/170-cyttsp-: 0% user + 0.5% kernel

04-0113:12:15.872 E/ActivityManager( 220): 0.5%296/com.android.systemui: 0.5% user + 0% kernel

04-0113:12:15.872 E/ActivityManager( 220): 100%TOTAL: 4.8% user + 7.6% kernel + 87% iowait

04-0113:12:15.872 E/ActivityManager( 220): CPUusage from 3697ms to 4223ms later:– ANR后CPU的使用量

04-0113:12:15.872 E/ActivityManager( 220): 25%21404/com.android.email: 25% user + 0% kernel / faults: 191 minor

04-0113:12:15.872 E/ActivityManager( 220): 16% 21603/__eas(par.hakan: 16% user + 0% kernel

04-0113:12:15.872 E/ActivityManager( 220): 7.2% 21406/GC: 7.2% user + 0% kernel

04-0113:12:15.872 E/ActivityManager( 220): 1.8% 21409/Compiler: 1.8% user + 0% kernel

04-0113:12:15.872 E/ActivityManager( 220): 5.5%220/system_server: 0% user + 5.5% kernel / faults: 1 minor

04-0113:12:15.872 E/ActivityManager( 220): 5.5% 263/InputDispatcher: 0% user + 5.5% kernel

04-0113:12:15.872 E/ActivityManager( 220): 32%TOTAL: 28% user + 3.7% kernel

从LOG可以看出ANR的类型,CPU的使用情况,如果CPU使用量接近100%,说明当前设备很忙,有可能是CPU饥饿导致了ANR

如果CPU使用量很少,说明主线程被BLOCK了

如果IOwait很高,说明ANR有可能是主线程在进行I/O操作造成的

除了看LOG,解决ANR还得需要trace.txt文件,

如何获取呢?可以用如下命令获取

$chmod 777 /data/anr

$rm /data/anr/traces.txt

$ps

$kill -3 PID

adbpull data/anr/traces.txt ./mytraces.txt

从trace.txt文件,看到最多的是如下的信息:

—–pid 21404 at 2011-04-01 13:12:14 —–
Cmdline: com.android.email

DALVIK THREADS:
(mutexes: tll=0tsl=0 tscl=0 ghl=0 hwl=0 hwll=0)
“main” prio=5 tid=1NATIVE
| group=”main” sCount=1 dsCount=0obj=0x2aad2248 self=0xcf70
| sysTid=21404 nice=0 sched=0/0cgrp=[fopen-error:2] handle=1876218976
atandroid.os.MessageQueue.nativePollOnce(Native Method)
atandroid.os.MessageQueue.next(MessageQueue.java:119)
atandroid.os.Looper.loop(Looper.java:110)
at android.app.ActivityThread.main(ActivityThread.java:3688)
at java.lang.reflect.Method.invokeNative(Native Method)
atjava.lang.reflect.Method.invoke(Method.java:507)
atcom.android.internal.os.ZygoteInit$MethodAndArgsCaller.run(ZygoteInit.java:866)
at com.android.internal.os.ZygoteInit.main(ZygoteInit.java:624)
at dalvik.system.NativeStart.main(Native Method)

说明主线程在等待下条消息进入消息队列

八:Thread状态

ThreadState (defined at “dalvik/vm/thread.h “)  
THREAD_UNDEFINED = -1, /* makes enum compatible with int32_t */  
THREAD_ZOMBIE = 0, /* TERMINATED */  
THREAD_RUNNING = 1, /* RUNNABLE or running now */  
THREAD_TIMED_WAIT = 2, /* TIMED_WAITING in Object.wait() */  
THREAD_MONITOR = 3, /* BLOCKED on a monitor */  
THREAD_WAIT = 4, /* WAITING in Object.wait() */  
THREAD_INITIALIZING= 5, /* allocated, not yet running */  
THREAD_STARTING = 6, /* started, not yet on thread list */  
THREAD_NATIVE = 7, /* off in a JNI native method */  
THREAD_VMWAIT = 8, /* waiting on a VM resource */  
THREAD_SUSPENDED = 9, /* suspended, usually by GC or debugger */  

九:如何调查并解决ANR

1:首先分析log

2: 从trace.txt文件查看调用stack.

3: 看代码

4:仔细查看ANR的成因(iowait?block?memoryleak?)

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转载自blog.csdn.net/qq_42859231/article/details/81359921