blob: f98ab3d069212c2ffcb8784ca11626c2642ea6af [file] [log] [blame]
/*
* Copyright (C) 2016, 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.connectivity;
import static android.net.metrics.INetdEventListener.EVENT_GETADDRINFO;
import static android.net.metrics.INetdEventListener.EVENT_GETHOSTBYNAME;
import static org.junit.Assert.assertEquals;
import static org.junit.Assert.fail;
import static org.mockito.Mockito.any;
import static org.mockito.Mockito.mock;
import static org.mockito.Mockito.anyInt;
import static org.mockito.Mockito.eq;
import static org.mockito.Mockito.timeout;
import static org.mockito.Mockito.times;
import static org.mockito.Mockito.verify;
import static org.mockito.Mockito.when;
import android.content.Context;
import android.net.ConnectivityManager;
import android.net.Network;
import android.net.NetworkCapabilities;
import android.support.test.runner.AndroidJUnit4;
import android.system.OsConstants;
import android.test.suitebuilder.annotation.SmallTest;
import android.util.Base64;
import com.android.server.connectivity.metrics.nano.IpConnectivityLogClass.DNSLookupBatch;
import com.android.server.connectivity.metrics.nano.IpConnectivityLogClass.IpConnectivityEvent;
import com.android.server.connectivity.metrics.nano.IpConnectivityLogClass.IpConnectivityLog;
import java.io.FileOutputStream;
import java.io.PrintWriter;
import java.io.StringWriter;
import java.util.ArrayList;
import java.util.Arrays;
import java.util.Comparator;
import java.util.List;
import org.junit.Before;
import org.junit.Test;
import org.junit.runner.RunWith;
@RunWith(AndroidJUnit4.class)
@SmallTest
public class NetdEventListenerServiceTest {
private static final String EXAMPLE_IPV4 = "192.0.2.1";
private static final String EXAMPLE_IPV6 = "2001:db8:1200::2:1";
NetdEventListenerService mNetdEventListenerService;
ConnectivityManager mCm;
@Before
public void setUp() {
NetworkCapabilities ncWifi = new NetworkCapabilities();
NetworkCapabilities ncCell = new NetworkCapabilities();
ncWifi.addTransportType(NetworkCapabilities.TRANSPORT_WIFI);
ncCell.addTransportType(NetworkCapabilities.TRANSPORT_CELLULAR);
mCm = mock(ConnectivityManager.class);
when(mCm.getNetworkCapabilities(new Network(100))).thenReturn(ncWifi);
when(mCm.getNetworkCapabilities(new Network(101))).thenReturn(ncCell);
mNetdEventListenerService = new NetdEventListenerService(mCm);
}
@Test
public void testDnsLogging() throws Exception {
asyncDump(100);
dnsEvent(100, EVENT_GETADDRINFO, 0, 3456);
dnsEvent(100, EVENT_GETADDRINFO, 0, 267);
dnsEvent(100, EVENT_GETHOSTBYNAME, 22, 1230);
dnsEvent(100, EVENT_GETADDRINFO, 3, 45);
dnsEvent(100, EVENT_GETADDRINFO, 1, 2111);
dnsEvent(100, EVENT_GETADDRINFO, 0, 450);
dnsEvent(100, EVENT_GETHOSTBYNAME, 200, 638);
dnsEvent(100, EVENT_GETHOSTBYNAME, 178, 1300);
dnsEvent(101, EVENT_GETADDRINFO, 0, 56);
dnsEvent(101, EVENT_GETADDRINFO, 0, 78);
dnsEvent(101, EVENT_GETADDRINFO, 0, 14);
dnsEvent(101, EVENT_GETHOSTBYNAME, 0, 56);
dnsEvent(101, EVENT_GETADDRINFO, 0, 78);
dnsEvent(101, EVENT_GETADDRINFO, 0, 14);
String got = flushStatistics();
String want = String.join("\n",
"dropped_events: 0",
"events <",
" if_name: \"\"",
" link_layer: 4",
" network_id: 100",
" time_ms: 0",
" transports: 2",
" dns_lookup_batch <",
" event_types: 1",
" event_types: 1",
" event_types: 2",
" event_types: 1",
" event_types: 1",
" event_types: 1",
" event_types: 2",
" event_types: 2",
" latencies_ms: 3456",
" latencies_ms: 267",
" latencies_ms: 1230",
" latencies_ms: 45",
" latencies_ms: 2111",
" latencies_ms: 450",
" latencies_ms: 638",
" latencies_ms: 1300",
" return_codes: 0",
" return_codes: 0",
" return_codes: 22",
" return_codes: 3",
" return_codes: 1",
" return_codes: 0",
" return_codes: 200",
" return_codes: 178",
" >",
">",
"events <",
" if_name: \"\"",
" link_layer: 2",
" network_id: 101",
" time_ms: 0",
" transports: 1",
" dns_lookup_batch <",
" event_types: 1",
" event_types: 1",
" event_types: 1",
" event_types: 2",
" event_types: 1",
" event_types: 1",
" latencies_ms: 56",
" latencies_ms: 78",
" latencies_ms: 14",
" latencies_ms: 56",
" latencies_ms: 78",
" latencies_ms: 14",
" return_codes: 0",
" return_codes: 0",
" return_codes: 0",
" return_codes: 0",
" return_codes: 0",
" return_codes: 0",
" >",
">",
"version: 2\n");
assertEquals(want, got);
}
@Test
public void testConnectLogging() throws Exception {
asyncDump(100);
final int OK = 0;
Thread[] logActions = {
// ignored
connectEventAction(100, OsConstants.EALREADY, 0, EXAMPLE_IPV4),
connectEventAction(100, OsConstants.EALREADY, 0, EXAMPLE_IPV6),
connectEventAction(100, OsConstants.EINPROGRESS, 0, EXAMPLE_IPV4),
connectEventAction(101, OsConstants.EINPROGRESS, 0, EXAMPLE_IPV6),
connectEventAction(101, OsConstants.EINPROGRESS, 0, EXAMPLE_IPV6),
// valid latencies
connectEventAction(100, OK, 110, EXAMPLE_IPV4),
connectEventAction(100, OK, 23, EXAMPLE_IPV4),
connectEventAction(100, OK, 45, EXAMPLE_IPV4),
connectEventAction(101, OK, 56, EXAMPLE_IPV4),
connectEventAction(101, OK, 523, EXAMPLE_IPV6),
connectEventAction(101, OK, 214, EXAMPLE_IPV6),
connectEventAction(101, OK, 67, EXAMPLE_IPV6),
// errors
connectEventAction(100, OsConstants.EPERM, 0, EXAMPLE_IPV4),
connectEventAction(101, OsConstants.EPERM, 0, EXAMPLE_IPV4),
connectEventAction(100, OsConstants.EAGAIN, 0, EXAMPLE_IPV4),
connectEventAction(100, OsConstants.EACCES, 0, EXAMPLE_IPV4),
connectEventAction(101, OsConstants.EACCES, 0, EXAMPLE_IPV4),
connectEventAction(101, OsConstants.EACCES, 0, EXAMPLE_IPV6),
connectEventAction(100, OsConstants.EADDRINUSE, 0, EXAMPLE_IPV4),
connectEventAction(101, OsConstants.ETIMEDOUT, 0, EXAMPLE_IPV4),
connectEventAction(100, OsConstants.ETIMEDOUT, 0, EXAMPLE_IPV6),
connectEventAction(100, OsConstants.ETIMEDOUT, 0, EXAMPLE_IPV6),
connectEventAction(101, OsConstants.ECONNREFUSED, 0, EXAMPLE_IPV4),
};
for (Thread t : logActions) {
t.start();
}
for (Thread t : logActions) {
t.join();
}
String got = flushStatistics();
String want = String.join("\n",
"dropped_events: 0",
"events <",
" if_name: \"\"",
" link_layer: 4",
" network_id: 100",
" time_ms: 0",
" transports: 2",
" connect_statistics <",
" connect_blocking_count: 3",
" connect_count: 6",
" errnos_counters <",
" key: 1",
" value: 1",
" >",
" errnos_counters <",
" key: 11",
" value: 1",
" >",
" errnos_counters <",
" key: 13",
" value: 1",
" >",
" errnos_counters <",
" key: 98",
" value: 1",
" >",
" errnos_counters <",
" key: 110",
" value: 2",
" >",
" ipv6_addr_count: 1",
" latencies_ms: 23",
" latencies_ms: 45",
" latencies_ms: 110",
" >",
">",
"events <",
" if_name: \"\"",
" link_layer: 2",
" network_id: 101",
" time_ms: 0",
" transports: 1",
" connect_statistics <",
" connect_blocking_count: 4",
" connect_count: 6",
" errnos_counters <",
" key: 1",
" value: 1",
" >",
" errnos_counters <",
" key: 13",
" value: 2",
" >",
" errnos_counters <",
" key: 110",
" value: 1",
" >",
" errnos_counters <",
" key: 111",
" value: 1",
" >",
" ipv6_addr_count: 5",
" latencies_ms: 56",
" latencies_ms: 67",
" latencies_ms: 214",
" latencies_ms: 523",
" >",
">",
"version: 2\n");
assertEquals(want, got);
}
Thread connectEventAction(int netId, int error, int latencyMs, String ipAddr) {
return new Thread(() -> {
try {
mNetdEventListenerService.onConnectEvent(netId, error, latencyMs, ipAddr, 80, 1);
} catch (Exception e) {
fail(e.toString());
}
});
}
void dnsEvent(int netId, int type, int result, int latency) throws Exception {
mNetdEventListenerService.onDnsEvent(netId, type, result, latency, "", null, 0, 0);
}
void asyncDump(long durationMs) throws Exception {
final long stop = System.currentTimeMillis() + durationMs;
final PrintWriter pw = new PrintWriter(new FileOutputStream("/dev/null"));
new Thread(() -> {
while (System.currentTimeMillis() < stop) {
mNetdEventListenerService.dump(pw);
}
}).start();
}
// TODO: instead of comparing textpb to textpb, parse textpb and compare proto to proto.
String flushStatistics() throws Exception {
IpConnectivityMetrics metricsService =
new IpConnectivityMetrics(mock(Context.class), (ctx) -> 2000);
metricsService.mNetdListener = mNetdEventListenerService;
StringWriter buffer = new StringWriter();
PrintWriter writer = new PrintWriter(buffer);
metricsService.impl.dump(null, writer, new String[]{"flush"});
byte[] bytes = Base64.decode(buffer.toString(), Base64.DEFAULT);
IpConnectivityLog log = IpConnectivityLog.parseFrom(bytes);
for (IpConnectivityEvent ev : log.events) {
if (ev.getConnectStatistics() == null) {
continue;
}
// Sort repeated fields of connect() events arriving in non-deterministic order.
Arrays.sort(ev.getConnectStatistics().latenciesMs);
Arrays.sort(ev.getConnectStatistics().errnosCounters,
Comparator.comparingInt((p) -> p.key));
}
return log.toString();
}
}