Files
frameworks_base/services/java/com/android/server/am/TransferPipe.java
Dianne Hackborn e17aeb3103 Improve activity manager debug dumps.
Activity manager now does all dump requests into apps
asynchronously, so it can nicely timeout if there is an
app problem.  Also lots of general cleanup of the am
dump output.

Change-Id: Id0dbccffb217315aeb85c964e379833e6aa3f5af
2011-04-07 18:26:15 -07:00

243 lines
7.3 KiB
Java

/*
* Copyright (C) 2011 The Android Open Source Project
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.android.server.am;
import java.io.FileDescriptor;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.IOException;
import android.os.Binder;
import android.os.IBinder;
import android.os.IInterface;
import android.os.ParcelFileDescriptor;
import android.os.RemoteException;
import android.os.SystemClock;
import android.util.Slog;
/**
* Helper for transferring data through a pipe from a client app.
*/
class TransferPipe implements Runnable {
static final String TAG = "TransferPipe";
static final boolean DEBUG = false;
static final long DEFAULT_TIMEOUT = 5000; // 5 seconds
final Thread mThread;;
final ParcelFileDescriptor[] mFds;
FileDescriptor mOutFd;
long mEndTime;
String mFailure;
boolean mComplete;
String mBufferPrefix;
interface Caller {
void go(IInterface iface, FileDescriptor fd, String prefix,
String[] args) throws RemoteException;
}
TransferPipe() throws IOException {
mThread = new Thread(this, "TransferPipe");
mFds = ParcelFileDescriptor.createPipe();
}
ParcelFileDescriptor getReadFd() {
return mFds[0];
}
ParcelFileDescriptor getWriteFd() {
return mFds[1];
}
void setBufferPrefix(String prefix) {
mBufferPrefix = prefix;
}
static void go(Caller caller, IInterface iface, FileDescriptor out,
String prefix, String[] args) throws IOException, RemoteException {
go(caller, iface, out, prefix, args, DEFAULT_TIMEOUT);
}
static void go(Caller caller, IInterface iface, FileDescriptor out,
String prefix, String[] args, long timeout) throws IOException, RemoteException {
if ((iface.asBinder()) instanceof Binder) {
// This is a local object... just call it directly.
try {
caller.go(iface, out, prefix, args);
} catch (RemoteException e) {
}
return;
}
TransferPipe tp = new TransferPipe();
try {
caller.go(iface, tp.getWriteFd().getFileDescriptor(), prefix, args);
tp.go(out, timeout);
} finally {
tp.kill();
}
}
static void goDump(IBinder binder, FileDescriptor out,
String[] args) throws IOException, RemoteException {
goDump(binder, out, args, DEFAULT_TIMEOUT);
}
static void goDump(IBinder binder, FileDescriptor out,
String[] args, long timeout) throws IOException, RemoteException {
if (binder instanceof Binder) {
// This is a local object... just call it directly.
try {
binder.dump(out, args);
} catch (RemoteException e) {
}
return;
}
TransferPipe tp = new TransferPipe();
try {
binder.dumpAsync(tp.getWriteFd().getFileDescriptor(), args);
tp.go(out, timeout);
} finally {
tp.kill();
}
}
void go(FileDescriptor out) throws IOException {
go(out, DEFAULT_TIMEOUT);
}
void go(FileDescriptor out, long timeout) throws IOException {
try {
synchronized (this) {
mOutFd = out;
mEndTime = SystemClock.uptimeMillis() + timeout;
if (DEBUG) Slog.i(TAG, "read=" + getReadFd() + " write=" + getWriteFd()
+ " out=" + out);
// Close the write fd, so we know when the other side is done.
closeFd(1);
mThread.start();
while (mFailure == null && !mComplete) {
long waitTime = mEndTime - SystemClock.uptimeMillis();
if (waitTime <= 0) {
if (DEBUG) Slog.i(TAG, "TIMEOUT!");
mThread.interrupt();
throw new IOException("Timeout");
}
try {
wait(waitTime);
} catch (InterruptedException e) {
}
}
if (DEBUG) Slog.i(TAG, "Finished: " + mFailure);
if (mFailure != null) {
throw new IOException(mFailure);
}
}
} finally {
kill();
}
}
void closeFd(int num) {
if (mFds[num] != null) {
if (DEBUG) Slog.i(TAG, "Closing: " + mFds[num]);
try {
mFds[num].close();
} catch (IOException e) {
}
mFds[num] = null;
}
}
void kill() {
closeFd(0);
closeFd(1);
}
@Override
public void run() {
final byte[] buffer = new byte[1024];
final FileInputStream fis = new FileInputStream(getReadFd().getFileDescriptor());
final FileOutputStream fos = new FileOutputStream(mOutFd);
if (DEBUG) Slog.i(TAG, "Ready to read pipe...");
byte[] bufferPrefix = null;
boolean needPrefix = true;
if (mBufferPrefix != null) {
bufferPrefix = mBufferPrefix.getBytes();
}
int size;
try {
while ((size=fis.read(buffer)) > 0) {
if (DEBUG) Slog.i(TAG, "Got " + size + " bytes");
if (bufferPrefix == null) {
fos.write(buffer, 0, size);
} else {
int start = 0;
for (int i=0; i<size; i++) {
if (buffer[i] != '\n') {
if (i > start) {
fos.write(buffer, start, i-start);
}
start = i;
if (needPrefix) {
fos.write(bufferPrefix);
needPrefix = false;
}
do {
i++;
} while (i<size && buffer[i] != '\n');
if (i < size) {
needPrefix = true;
}
}
}
if (size > start) {
fos.write(buffer, start, size-start);
}
}
}
if (DEBUG) Slog.i(TAG, "End of pipe: size=" + size);
if (mThread.isInterrupted()) {
if (DEBUG) Slog.i(TAG, "Interrupted!");
}
} catch (IOException e) {
synchronized (this) {
mFailure = e.toString();
notifyAll();
return;
}
}
synchronized (this) {
mComplete = true;
notifyAll();
}
}
}