Files
packages_apps_Messaging/src/com/android/messaging/util/DebugUtils.java
Michael W e128bff457 Messaging: Language cleanup
No unnecessary boxing, enhanced for loops, redundant checks and throws,
imports (removal, reordering), possible void returns

Change-Id: I7a8e1b2007e3b0906e01b41785c518d02c2f3fab
2024-12-26 15:54:37 +01:00

129 lines
4.8 KiB
Java

/*
* Copyright (C) 2015 The Android Open Source Project
* Copyright (C) 2024 The LineageOS 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.messaging.util;
import android.os.Environment;
import com.google.common.io.ByteStreams;
import java.io.BufferedInputStream;
import java.io.File;
import java.io.FileInputStream;
import java.io.IOException;
public class DebugUtils {
private static final String TAG = "bugle.util.DebugUtils";
public static File getDebugFile(final String fileName, final boolean create) {
final File dir = getDebugFilesDir();
final File file = new File(dir, fileName);
if (create && file.exists()) {
file.delete();
}
return file;
}
public static File getDebugFilesDir() {
final File dir = Environment.getExternalStorageDirectory();
return dir;
}
/**
* Load MMS/SMS from the dump file
*/
public static byte[] receiveFromDumpFile(final String dumpFileName) {
byte[] data = null;
try {
final File inputFile = getDebugFile(dumpFileName, false);
final FileInputStream fis = new FileInputStream(inputFile);
try (BufferedInputStream bis = new BufferedInputStream(fis)) {
// dump file
data = ByteStreams.toByteArray(bis);
if (data == null || data.length < 1) {
LogUtil.e(LogUtil.BUGLE_TAG, "receiveFromDumpFile: empty data");
}
}
} catch (final IOException e) {
LogUtil.e(LogUtil.BUGLE_TAG, "receiveFromDumpFile: " + e, e);
}
return data;
}
public static void ensureReadable(final File file) {
if (file.exists()){
file.setReadable(true, false);
}
}
/**
* Logs the name of the method that is currently executing, e.g. "MyActivity.onCreate". This is
* useful for surgically adding logs for tracing execution while debugging.
* <p>
* NOTE: This method retrieves the current thread's stack trace, which adds runtime overhead.
* However, this method is only executed on eng builds if DEBUG logs are loggable.
*/
public static void logCurrentMethod(String tag) {
if (!LogUtil.isLoggable(tag, LogUtil.DEBUG)) {
return;
}
StackTraceElement caller = getCaller(1);
if (caller == null) {
return;
}
String className = caller.getClassName();
// Strip off the package name
int lastDot = className.lastIndexOf('.');
if (lastDot > -1) {
className = className.substring(lastDot + 1);
}
LogUtil.d(tag, className + "." + caller.getMethodName());
}
/**
* Returns info about the calling method. The {@code depth} parameter controls how far back to
* go. For example, if foo() calls bar(), and bar() calls getCaller(0), it returns info about
* bar(). If bar() instead called getCaller(1), it would return info about foo(). And so on.
* <p>
* NOTE: This method retrieves the current thread's stack trace, which adds runtime overhead.
* It should only be used in production where necessary to gather context about an error or
* unexpected event (e.g. the {@link Assert} class uses it).
*
* @return stack frame information for the caller (if found); otherwise {@code null}.
*/
public static StackTraceElement getCaller(int depth) {
// If the signature of this method is changed, proguard.flags must be updated!
if (depth < 0) {
throw new IllegalArgumentException("depth cannot be negative");
}
StackTraceElement[] trace = Thread.currentThread().getStackTrace();
if (trace == null || trace.length < (depth + 2)) {
return null;
}
// The stack trace includes some methods we don't care about (e.g. this method).
// Walk down until we find this method, and then back up to the caller we're looking for.
for (int i = 0; i < trace.length - 1; i++) {
String methodName = trace[i].getMethodName();
if ("getCaller".equals(methodName)) {
return trace[i + depth + 1];
}
}
// Never found ourself in the stack?!
return null;
}
}