1/*
2 * Copyright (C) 2010 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17package com.android.server.wifi;
18
19import static android.net.wifi.WifiManager.WIFI_AP_STATE_DISABLED;
20import static android.net.wifi.WifiManager.WIFI_AP_STATE_DISABLING;
21import static android.net.wifi.WifiManager.WIFI_AP_STATE_ENABLED;
22import static android.net.wifi.WifiManager.WIFI_AP_STATE_ENABLING;
23import static android.net.wifi.WifiManager.WIFI_AP_STATE_FAILED;
24import static android.net.wifi.WifiManager.WIFI_STATE_DISABLED;
25import static android.net.wifi.WifiManager.WIFI_STATE_DISABLING;
26import static android.net.wifi.WifiManager.WIFI_STATE_ENABLED;
27import static android.net.wifi.WifiManager.WIFI_STATE_ENABLING;
28import static android.net.wifi.WifiManager.WIFI_STATE_UNKNOWN;
29
30import android.Manifest;
31import android.app.ActivityManager;
32import android.app.PendingIntent;
33import android.bluetooth.BluetoothAdapter;
34import android.content.BroadcastReceiver;
35import android.content.Context;
36import android.content.Intent;
37import android.content.IntentFilter;
38import android.content.pm.ApplicationInfo;
39import android.content.pm.IPackageManager;
40import android.content.pm.PackageManager;
41import android.database.ContentObserver;
42import android.net.ConnectivityManager;
43import android.net.DhcpResults;
44import android.net.IpConfiguration;
45import android.net.LinkProperties;
46import android.net.Network;
47import android.net.NetworkAgent;
48import android.net.NetworkCapabilities;
49import android.net.NetworkFactory;
50import android.net.NetworkInfo;
51import android.net.NetworkInfo.DetailedState;
52import android.net.NetworkMisc;
53import android.net.NetworkRequest;
54import android.net.NetworkUtils;
55import android.net.RouteInfo;
56import android.net.StaticIpConfiguration;
57import android.net.TrafficStats;
58import android.net.dhcp.DhcpClient;
59import android.net.ip.IpManager;
60import android.net.wifi.IApInterface;
61import android.net.wifi.IClientInterface;
62import android.net.wifi.RssiPacketCountInfo;
63import android.net.wifi.ScanResult;
64import android.net.wifi.ScanSettings;
65import android.net.wifi.SupplicantState;
66import android.net.wifi.WifiChannel;
67import android.net.wifi.WifiConfiguration;
68import android.net.wifi.WifiConnectionStatistics;
69import android.net.wifi.WifiEnterpriseConfig;
70import android.net.wifi.WifiInfo;
71import android.net.wifi.WifiLinkLayerStats;
72import android.net.wifi.WifiManager;
73import android.net.wifi.WifiScanner;
74import android.net.wifi.WifiSsid;
75import android.net.wifi.WpsInfo;
76import android.net.wifi.WpsResult;
77import android.net.wifi.WpsResult.Status;
78import android.net.wifi.hotspot2.PasspointConfiguration;
79import android.net.wifi.p2p.IWifiP2pManager;
80import android.os.BatteryStats;
81import android.os.Binder;
82import android.os.Bundle;
83import android.os.IBinder;
84import android.os.INetworkManagementService;
85import android.os.Looper;
86import android.os.Message;
87import android.os.Messenger;
88import android.os.PowerManager;
89import android.os.Process;
90import android.os.RemoteException;
91import android.os.UserHandle;
92import android.os.UserManager;
93import android.os.WorkSource;
94import android.provider.Settings;
95import android.telephony.TelephonyManager;
96import android.text.TextUtils;
97import android.util.Log;
98import android.util.SparseArray;
99
100import com.android.internal.R;
101import com.android.internal.annotations.GuardedBy;
102import com.android.internal.annotations.VisibleForTesting;
103import com.android.internal.app.IBatteryStats;
104import com.android.internal.util.AsyncChannel;
105import com.android.internal.util.MessageUtils;
106import com.android.internal.util.Protocol;
107import com.android.internal.util.State;
108import com.android.internal.util.StateMachine;
109import com.android.server.connectivity.KeepalivePacketData;
110import com.android.server.wifi.hotspot2.AnqpEvent;
111import com.android.server.wifi.hotspot2.IconEvent;
112import com.android.server.wifi.hotspot2.NetworkDetail;
113import com.android.server.wifi.hotspot2.PasspointManager;
114import com.android.server.wifi.hotspot2.Utils;
115import com.android.server.wifi.hotspot2.WnmData;
116import com.android.server.wifi.nano.WifiMetricsProto;
117import com.android.server.wifi.nano.WifiMetricsProto.StaEvent;
118import com.android.server.wifi.p2p.WifiP2pServiceImpl;
119import com.android.server.wifi.util.NativeUtil;
120import com.android.server.wifi.util.TelephonyUtil;
121import com.android.server.wifi.util.TelephonyUtil.SimAuthRequestData;
122import com.android.server.wifi.util.TelephonyUtil.SimAuthResponseData;
123import com.android.server.wifi.util.WifiPermissionsUtil;
124
125import java.io.BufferedReader;
126import java.io.FileDescriptor;
127import java.io.FileNotFoundException;
128import java.io.FileReader;
129import java.io.IOException;
130import java.io.PrintWriter;
131import java.net.Inet4Address;
132import java.net.InetAddress;
133import java.util.ArrayList;
134import java.util.Arrays;
135import java.util.HashMap;
136import java.util.HashSet;
137import java.util.LinkedList;
138import java.util.List;
139import java.util.Map;
140import java.util.Queue;
141import java.util.Set;
142import java.util.concurrent.atomic.AtomicBoolean;
143import java.util.concurrent.atomic.AtomicInteger;
144
145/**
146 * TODO:
147 * Deprecate WIFI_STATE_UNKNOWN
148 */
149
150/**
151 * Track the state of Wifi connectivity. All event handling is done here,
152 * and all changes in connectivity state are initiated here.
153 *
154 * Wi-Fi now supports three modes of operation: Client, SoftAp and p2p
155 * In the current implementation, we support concurrent wifi p2p and wifi operation.
156 * The WifiStateMachine handles SoftAp and Client operations while WifiP2pService
157 * handles p2p operation.
158 *
159 * @hide
160 */
161public class WifiStateMachine extends StateMachine implements WifiNative.WifiRssiEventHandler,
162        WifiMulticastLockManager.FilterController {
163
164    private static final String NETWORKTYPE = "WIFI";
165    private static final String NETWORKTYPE_UNTRUSTED = "WIFI_UT";
166    @VisibleForTesting public static final short NUM_LOG_RECS_NORMAL = 100;
167    @VisibleForTesting public static final short NUM_LOG_RECS_VERBOSE_LOW_MEMORY = 200;
168    @VisibleForTesting public static final short NUM_LOG_RECS_VERBOSE = 3000;
169    private static final String TAG = "WifiStateMachine";
170
171    private static final int ONE_HOUR_MILLI = 1000 * 60 * 60;
172
173    private static final String GOOGLE_OUI = "DA-A1-19";
174
175    private static final String EXTRA_OSU_ICON_QUERY_BSSID = "BSSID";
176    private static final String EXTRA_OSU_ICON_QUERY_FILENAME = "FILENAME";
177
178    private boolean mVerboseLoggingEnabled = false;
179
180    /* debug flag, indicating if handling of ASSOCIATION_REJECT ended up blacklisting
181     * the corresponding BSSID.
182     */
183    private boolean didBlackListBSSID = false;
184
185    /**
186     * Log with error attribute
187     *
188     * @param s is string log
189     */
190    @Override
191    protected void loge(String s) {
192        Log.e(getName(), s);
193    }
194    @Override
195    protected void logd(String s) {
196        Log.d(getName(), s);
197    }
198    @Override
199    protected void log(String s) {
200        Log.d(getName(), s);
201    }
202    private WifiMetrics mWifiMetrics;
203    private WifiInjector mWifiInjector;
204    private WifiMonitor mWifiMonitor;
205    private WifiNative mWifiNative;
206    private WifiPermissionsUtil mWifiPermissionsUtil;
207    private WifiConfigManager mWifiConfigManager;
208    private WifiConnectivityManager mWifiConnectivityManager;
209    private INetworkManagementService mNwService;
210    private IClientInterface mClientInterface;
211    private ConnectivityManager mCm;
212    private BaseWifiDiagnostics mWifiDiagnostics;
213    private WifiApConfigStore mWifiApConfigStore;
214    private final boolean mP2pSupported;
215    private final AtomicBoolean mP2pConnected = new AtomicBoolean(false);
216    private boolean mTemporarilyDisconnectWifi = false;
217    private final String mPrimaryDeviceType;
218    private final Clock mClock;
219    private final PropertyService mPropertyService;
220    private final BuildProperties mBuildProperties;
221    private final WifiCountryCode mCountryCode;
222    // Object holding most recent wifi score report and bad Linkspeed count
223    private final WifiScoreReport mWifiScoreReport;
224    private final PasspointManager mPasspointManager;
225
226    /* Scan results handling */
227    private List<ScanDetail> mScanResults = new ArrayList<>();
228    private final Object mScanResultsLock = new Object();
229
230    // For debug, number of known scan results that were found as part of last scan result event,
231    // as well the number of scans results returned by the supplicant with that message
232    private int mNumScanResultsKnown;
233    private int mNumScanResultsReturned;
234
235    private boolean mScreenOn = false;
236
237    private final String mInterfaceName;
238
239    private int mLastSignalLevel = -1;
240    private String mLastBssid;
241    private int mLastNetworkId; // The network Id we successfully joined
242    private boolean mIsLinkDebouncing = false;
243    private final StateMachineDeathRecipient mDeathRecipient =
244            new StateMachineDeathRecipient(this, CMD_CLIENT_INTERFACE_BINDER_DEATH);
245    private final WifiNative.VendorHalDeathEventHandler mVendorHalDeathRecipient = () -> {
246        sendMessage(CMD_VENDOR_HAL_HWBINDER_DEATH);
247    };
248    private boolean mIpReachabilityDisconnectEnabled = true;
249
250    @Override
251    public void onRssiThresholdBreached(byte curRssi) {
252        if (mVerboseLoggingEnabled) {
253            Log.e(TAG, "onRssiThresholdBreach event. Cur Rssi = " + curRssi);
254        }
255        sendMessage(CMD_RSSI_THRESHOLD_BREACH, curRssi);
256    }
257
258    public void processRssiThreshold(byte curRssi, int reason) {
259        if (curRssi == Byte.MAX_VALUE || curRssi == Byte.MIN_VALUE) {
260            Log.wtf(TAG, "processRssiThreshold: Invalid rssi " + curRssi);
261            return;
262        }
263        for (int i = 0; i < mRssiRanges.length; i++) {
264            if (curRssi < mRssiRanges[i]) {
265                // Assume sorted values(ascending order) for rssi,
266                // bounded by high(127) and low(-128) at extremeties
267                byte maxRssi = mRssiRanges[i];
268                byte minRssi = mRssiRanges[i-1];
269                // This value of hw has to be believed as this value is averaged and has breached
270                // the rssi thresholds and raised event to host. This would be eggregious if this
271                // value is invalid
272                mWifiInfo.setRssi(curRssi);
273                updateCapabilities(getCurrentWifiConfiguration());
274                int ret = startRssiMonitoringOffload(maxRssi, minRssi);
275                Log.d(TAG, "Re-program RSSI thresholds for " + smToString(reason) +
276                        ": [" + minRssi + ", " + maxRssi + "], curRssi=" + curRssi + " ret=" + ret);
277                break;
278            }
279        }
280    }
281
282    // Testing various network disconnect cases by sending lots of spurious
283    // disconnect to supplicant
284    private boolean testNetworkDisconnect = false;
285
286    private boolean mEnableRssiPolling = false;
287    private int mRssiPollToken = 0;
288    /* 3 operational states for STA operation: CONNECT_MODE, SCAN_ONLY_MODE, SCAN_ONLY_WIFI_OFF_MODE
289    * In CONNECT_MODE, the STA can scan and connect to an access point
290    * In SCAN_ONLY_MODE, the STA can only scan for access points
291    * In SCAN_ONLY_WIFI_OFF_MODE, the STA can only scan for access points with wifi toggle being off
292    */
293    private int mOperationalMode = CONNECT_MODE;
294    private boolean mIsScanOngoing = false;
295    private boolean mIsFullScanOngoing = false;
296
297    private final Queue<Message> mBufferedScanMsg = new LinkedList<>();
298    private static final int UNKNOWN_SCAN_SOURCE = -1;
299    private static final int ADD_OR_UPDATE_SOURCE = -3;
300
301    private static final int SCAN_REQUEST_BUFFER_MAX_SIZE = 10;
302    private static final String CUSTOMIZED_SCAN_SETTING = "customized_scan_settings";
303    private static final String CUSTOMIZED_SCAN_WORKSOURCE = "customized_scan_worksource";
304    private static final String SCAN_REQUEST_TIME = "scan_request_time";
305
306    private boolean mBluetoothConnectionActive = false;
307
308    private PowerManager.WakeLock mSuspendWakeLock;
309
310    /**
311     * Interval in milliseconds between polling for RSSI
312     * and linkspeed information
313     */
314    private static final int POLL_RSSI_INTERVAL_MSECS = 3000;
315
316    /**
317     * Interval in milliseconds between receiving a disconnect event
318     * while connected to a good AP, and handling the disconnect proper
319     */
320    private static final int LINK_FLAPPING_DEBOUNCE_MSEC = 4000;
321
322    /**
323     * Delay between supplicant restarts upon failure to establish connection
324     */
325    private static final int SUPPLICANT_RESTART_INTERVAL_MSECS = 5000;
326
327    /**
328     * Number of times we attempt to restart supplicant
329     */
330    private static final int SUPPLICANT_RESTART_TRIES = 5;
331
332    /**
333     * Value to set in wpa_supplicant "bssid" field when we don't want to restrict connection to
334     * a specific AP.
335     */
336    public static final String SUPPLICANT_BSSID_ANY = "any";
337
338    private int mSupplicantRestartCount = 0;
339
340    /**
341     * The link properties of the wifi interface.
342     * Do not modify this directly; use updateLinkProperties instead.
343     */
344    private LinkProperties mLinkProperties;
345
346    /* Tracks sequence number on a periodic scan message */
347    private int mPeriodicScanToken = 0;
348
349    // Wakelock held during wifi start/stop and driver load/unload
350    private PowerManager.WakeLock mWakeLock;
351
352    private Context mContext;
353
354    private final Object mDhcpResultsLock = new Object();
355    private DhcpResults mDhcpResults;
356
357    // NOTE: Do not return to clients - use #getWiFiInfoForUid(int)
358    private final WifiInfo mWifiInfo;
359    private NetworkInfo mNetworkInfo;
360    private final NetworkCapabilities mDfltNetworkCapabilities;
361    private SupplicantStateTracker mSupplicantStateTracker;
362
363    private int mWifiLinkLayerStatsSupported = 4; // Temporary disable
364
365    // Indicates that framework is attempting to roam, set true on CMD_START_ROAM, set false when
366    // wifi connects or fails to connect
367    private boolean mIsAutoRoaming = false;
368
369    // Roaming failure count
370    private int mRoamFailCount = 0;
371
372    // This is the BSSID we are trying to associate to, it can be set to SUPPLICANT_BSSID_ANY
373    // if we havent selected a BSSID for joining.
374    private String mTargetRoamBSSID = SUPPLICANT_BSSID_ANY;
375    // This one is used to track whta is the current target network ID. This is used for error
376    // handling during connection setup since many error message from supplicant does not report
377    // SSID Once connected, it will be set to invalid
378    private int mTargetNetworkId = WifiConfiguration.INVALID_NETWORK_ID;
379    private long mLastDriverRoamAttempt = 0;
380    private WifiConfiguration targetWificonfiguration = null;
381
382    /**
383     * Method to clear {@link #mTargetRoamBSSID} and reset the the current connected network's
384     * bssid in wpa_supplicant after a roam/connect attempt.
385     */
386    public boolean clearTargetBssid(String dbg) {
387        WifiConfiguration config = mWifiConfigManager.getConfiguredNetwork(mTargetNetworkId);
388        if (config == null) {
389            return false;
390        }
391        String bssid = SUPPLICANT_BSSID_ANY;
392        if (config.BSSID != null) {
393            bssid = config.BSSID;
394            if (mVerboseLoggingEnabled) {
395                Log.d(TAG, "force BSSID to " + bssid + "due to config");
396            }
397        }
398        if (mVerboseLoggingEnabled) {
399            logd(dbg + " clearTargetBssid " + bssid + " key=" + config.configKey());
400        }
401        mTargetRoamBSSID = bssid;
402        return mWifiNative.setConfiguredNetworkBSSID(bssid);
403    }
404
405    /**
406     * Set Config's default BSSID (for association purpose) and {@link #mTargetRoamBSSID}
407     * @param config config need set BSSID
408     * @param bssid  default BSSID to assocaite with when connect to this network
409     * @return false -- does not change the current default BSSID of the configure
410     *         true -- change the  current default BSSID of the configur
411     */
412    private boolean setTargetBssid(WifiConfiguration config, String bssid) {
413        if (config == null || bssid == null) {
414            return false;
415        }
416        if (config.BSSID != null) {
417            bssid = config.BSSID;
418            if (mVerboseLoggingEnabled) {
419                Log.d(TAG, "force BSSID to " + bssid + "due to config");
420            }
421        }
422        if (mVerboseLoggingEnabled) {
423            Log.d(TAG, "setTargetBssid set to " + bssid + " key=" + config.configKey());
424        }
425        mTargetRoamBSSID = bssid;
426        config.getNetworkSelectionStatus().setNetworkSelectionBSSID(bssid);
427        return true;
428    }
429
430    private final IpManager mIpManager;
431
432    // Channel for sending replies.
433    private AsyncChannel mReplyChannel = new AsyncChannel();
434
435    // Used to initiate a connection with WifiP2pService
436    private AsyncChannel mWifiP2pChannel;
437
438    private WifiScanner mWifiScanner;
439
440    @GuardedBy("mWifiReqCountLock")
441    private int mConnectionReqCount = 0;
442    private WifiNetworkFactory mNetworkFactory;
443    @GuardedBy("mWifiReqCountLock")
444    private int mUntrustedReqCount = 0;
445    private UntrustedWifiNetworkFactory mUntrustedNetworkFactory;
446    private WifiNetworkAgent mNetworkAgent;
447    private final Object mWifiReqCountLock = new Object();
448
449    private byte[] mRssiRanges;
450
451    // Keep track of various statistics, for retrieval by System Apps, i.e. under @SystemApi
452    // We should really persist that into the networkHistory.txt file, and read it back when
453    // WifiStateMachine starts up
454    private WifiConnectionStatistics mWifiConnectionStatistics = new WifiConnectionStatistics();
455
456    // Used to filter out requests we couldn't possibly satisfy.
457    private final NetworkCapabilities mNetworkCapabilitiesFilter = new NetworkCapabilities();
458
459    // Provide packet filter capabilities to ConnectivityService.
460    private final NetworkMisc mNetworkMisc = new NetworkMisc();
461
462    /* The base for wifi message types */
463    static final int BASE = Protocol.BASE_WIFI;
464    /* Start the supplicant */
465    static final int CMD_START_SUPPLICANT                               = BASE + 11;
466    /* Stop the supplicant */
467    static final int CMD_STOP_SUPPLICANT                                = BASE + 12;
468    /* Indicates Static IP succeeded */
469    static final int CMD_STATIC_IP_SUCCESS                              = BASE + 15;
470    /* Indicates Static IP failed */
471    static final int CMD_STATIC_IP_FAILURE                              = BASE + 16;
472    /* A delayed message sent to start driver when it fail to come up */
473    static final int CMD_DRIVER_START_TIMED_OUT                         = BASE + 19;
474
475    /* Start the soft access point */
476    static final int CMD_START_AP                                       = BASE + 21;
477    /* Indicates soft ap start failed */
478    static final int CMD_START_AP_FAILURE                               = BASE + 22;
479    /* Stop the soft access point */
480    static final int CMD_STOP_AP                                        = BASE + 23;
481    /* Soft access point teardown is completed. */
482    static final int CMD_AP_STOPPED                                     = BASE + 24;
483
484    static final int CMD_BLUETOOTH_ADAPTER_STATE_CHANGE                 = BASE + 31;
485
486    /* Supplicant commands */
487    /* Add/update a network configuration */
488    static final int CMD_ADD_OR_UPDATE_NETWORK                          = BASE + 52;
489    /* Delete a network */
490    static final int CMD_REMOVE_NETWORK                                 = BASE + 53;
491    /* Enable a network. The device will attempt a connection to the given network. */
492    static final int CMD_ENABLE_NETWORK                                 = BASE + 54;
493    /* Save configuration */
494    static final int CMD_SAVE_CONFIG                                    = BASE + 58;
495    /* Get configured networks */
496    static final int CMD_GET_CONFIGURED_NETWORKS                        = BASE + 59;
497    /* Get adaptors */
498    static final int CMD_GET_SUPPORTED_FEATURES                         = BASE + 61;
499    /* Get configured networks with real preSharedKey */
500    static final int CMD_GET_PRIVILEGED_CONFIGURED_NETWORKS             = BASE + 62;
501    /* Get Link Layer Stats thru HAL */
502    static final int CMD_GET_LINK_LAYER_STATS                           = BASE + 63;
503    /* Supplicant commands after driver start*/
504    /* Initiate a scan */
505    static final int CMD_START_SCAN                                     = BASE + 71;
506    /* Set operational mode. CONNECT, SCAN ONLY, SCAN_ONLY with Wi-Fi off mode */
507    static final int CMD_SET_OPERATIONAL_MODE                           = BASE + 72;
508    /* Disconnect from a network */
509    static final int CMD_DISCONNECT                                     = BASE + 73;
510    /* Reconnect to a network */
511    static final int CMD_RECONNECT                                      = BASE + 74;
512    /* Reassociate to a network */
513    static final int CMD_REASSOCIATE                                    = BASE + 75;
514    /* Get Connection Statistis */
515    static final int CMD_GET_CONNECTION_STATISTICS                      = BASE + 76;
516
517    /* Controls suspend mode optimizations
518     *
519     * When high perf mode is enabled, suspend mode optimizations are disabled
520     *
521     * When high perf mode is disabled, suspend mode optimizations are enabled
522     *
523     * Suspend mode optimizations include:
524     * - packet filtering
525     * - turn off roaming
526     * - DTIM wake up settings
527     */
528    static final int CMD_SET_HIGH_PERF_MODE                             = BASE + 77;
529    /* Enables RSSI poll */
530    static final int CMD_ENABLE_RSSI_POLL                               = BASE + 82;
531    /* RSSI poll */
532    static final int CMD_RSSI_POLL                                      = BASE + 83;
533    /* Enable suspend mode optimizations in the driver */
534    static final int CMD_SET_SUSPEND_OPT_ENABLED                        = BASE + 86;
535    /* Delayed NETWORK_DISCONNECT */
536    static final int CMD_DELAYED_NETWORK_DISCONNECT                     = BASE + 87;
537    /* When there are no saved networks, we do a periodic scan to notify user of
538     * an open network */
539    static final int CMD_NO_NETWORKS_PERIODIC_SCAN                      = BASE + 88;
540    /* Test network Disconnection NETWORK_DISCONNECT */
541    static final int CMD_TEST_NETWORK_DISCONNECT                        = BASE + 89;
542
543    private int testNetworkDisconnectCounter = 0;
544
545    /* Enable TDLS on a specific MAC address */
546    static final int CMD_ENABLE_TDLS                                    = BASE + 92;
547
548    /**
549     * Watchdog for protecting against b/16823537
550     * Leave time for 4-way handshake to succeed
551     */
552    static final int ROAM_GUARD_TIMER_MSEC = 15000;
553
554    int roamWatchdogCount = 0;
555    /* Roam state watchdog */
556    static final int CMD_ROAM_WATCHDOG_TIMER                            = BASE + 94;
557    /* Screen change intent handling */
558    static final int CMD_SCREEN_STATE_CHANGED                           = BASE + 95;
559
560    /* Disconnecting state watchdog */
561    static final int CMD_DISCONNECTING_WATCHDOG_TIMER                   = BASE + 96;
562
563    /* Remove a packages associated configrations */
564    static final int CMD_REMOVE_APP_CONFIGURATIONS                      = BASE + 97;
565
566    /* Disable an ephemeral network */
567    static final int CMD_DISABLE_EPHEMERAL_NETWORK                      = BASE + 98;
568
569    /* Get matching network */
570    static final int CMD_GET_MATCHING_CONFIG                            = BASE + 99;
571
572    /* alert from firmware */
573    static final int CMD_FIRMWARE_ALERT                                 = BASE + 100;
574
575    /* SIM is removed; reset any cached data for it */
576    static final int CMD_RESET_SIM_NETWORKS                             = BASE + 101;
577
578    /* OSU APIs */
579    static final int CMD_QUERY_OSU_ICON                                 = BASE + 104;
580
581    /* try to match a provider with current network */
582    static final int CMD_MATCH_PROVIDER_NETWORK                         = BASE + 105;
583
584    // Add or update a Passpoint configuration.
585    static final int CMD_ADD_OR_UPDATE_PASSPOINT_CONFIG                 = BASE + 106;
586
587    // Remove a Passpoint configuration.
588    static final int CMD_REMOVE_PASSPOINT_CONFIG                        = BASE + 107;
589
590    // Get the list of installed Passpoint configurations.
591    static final int CMD_GET_PASSPOINT_CONFIGS                          = BASE + 108;
592
593    /* Commands from/to the SupplicantStateTracker */
594    /* Reset the supplicant state tracker */
595    static final int CMD_RESET_SUPPLICANT_STATE                         = BASE + 111;
596
597    int disconnectingWatchdogCount = 0;
598    static final int DISCONNECTING_GUARD_TIMER_MSEC = 5000;
599
600    /* Disable p2p watchdog */
601    static final int CMD_DISABLE_P2P_WATCHDOG_TIMER                   = BASE + 112;
602
603    int mDisableP2pWatchdogCount = 0;
604    static final int DISABLE_P2P_GUARD_TIMER_MSEC = 2000;
605
606    /* P2p commands */
607    /* We are ok with no response here since we wont do much with it anyway */
608    public static final int CMD_ENABLE_P2P                              = BASE + 131;
609    /* In order to shut down supplicant cleanly, we wait till p2p has
610     * been disabled */
611    public static final int CMD_DISABLE_P2P_REQ                         = BASE + 132;
612    public static final int CMD_DISABLE_P2P_RSP                         = BASE + 133;
613
614    /**
615     * Indicates the end of boot process, should be used to trigger load from config store,
616     * initiate connection attempt, etc.
617     * */
618    static final int CMD_BOOT_COMPLETED                                 = BASE + 134;
619    /**
620     * Initialize the WifiStateMachine. This is currently used to initialize the
621     * {@link HalDeviceManager} module.
622     */
623    static final int CMD_INITIALIZE                                     = BASE + 135;
624
625    /* We now have a valid IP configuration. */
626    static final int CMD_IP_CONFIGURATION_SUCCESSFUL                    = BASE + 138;
627    /* We no longer have a valid IP configuration. */
628    static final int CMD_IP_CONFIGURATION_LOST                          = BASE + 139;
629    /* Link configuration (IP address, DNS, ...) changes notified via netlink */
630    static final int CMD_UPDATE_LINKPROPERTIES                          = BASE + 140;
631
632    /* Supplicant is trying to associate to a given BSSID */
633    static final int CMD_TARGET_BSSID                                   = BASE + 141;
634
635    /* Reload all networks and reconnect */
636    static final int CMD_RELOAD_TLS_AND_RECONNECT                       = BASE + 142;
637
638    static final int CMD_START_CONNECT                                  = BASE + 143;
639
640    private static final int NETWORK_STATUS_UNWANTED_DISCONNECT         = 0;
641    private static final int NETWORK_STATUS_UNWANTED_VALIDATION_FAILED  = 1;
642    private static final int NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN   = 2;
643
644    static final int CMD_UNWANTED_NETWORK                               = BASE + 144;
645
646    static final int CMD_START_ROAM                                     = BASE + 145;
647
648    static final int CMD_ASSOCIATED_BSSID                               = BASE + 147;
649
650    static final int CMD_NETWORK_STATUS                                 = BASE + 148;
651
652    /* A layer 3 neighbor on the Wi-Fi link became unreachable. */
653    static final int CMD_IP_REACHABILITY_LOST                           = BASE + 149;
654
655    /* Remove a packages associated configrations */
656    static final int CMD_REMOVE_USER_CONFIGURATIONS                     = BASE + 152;
657
658    static final int CMD_ACCEPT_UNVALIDATED                             = BASE + 153;
659
660    /* used to offload sending IP packet */
661    static final int CMD_START_IP_PACKET_OFFLOAD                        = BASE + 160;
662
663    /* used to stop offload sending IP packet */
664    static final int CMD_STOP_IP_PACKET_OFFLOAD                         = BASE + 161;
665
666    /* used to start rssi monitoring in hw */
667    static final int CMD_START_RSSI_MONITORING_OFFLOAD                  = BASE + 162;
668
669    /* used to stop rssi moniroting in hw */
670    static final int CMD_STOP_RSSI_MONITORING_OFFLOAD                   = BASE + 163;
671
672    /* used to indicated RSSI threshold breach in hw */
673    static final int CMD_RSSI_THRESHOLD_BREACH                          = BASE + 164;
674
675    /* Enable/Disable WifiConnectivityManager */
676    static final int CMD_ENABLE_WIFI_CONNECTIVITY_MANAGER               = BASE + 166;
677
678    /* Enable/Disable AutoJoin when associated */
679    static final int CMD_ENABLE_AUTOJOIN_WHEN_ASSOCIATED                = BASE + 167;
680
681    /**
682     * Used to handle messages bounced between WifiStateMachine and IpManager.
683     */
684    static final int CMD_IPV4_PROVISIONING_SUCCESS                      = BASE + 200;
685    static final int CMD_IPV4_PROVISIONING_FAILURE                      = BASE + 201;
686
687    /* Push a new APF program to the HAL */
688    static final int CMD_INSTALL_PACKET_FILTER                          = BASE + 202;
689
690    /* Enable/disable fallback packet filtering */
691    static final int CMD_SET_FALLBACK_PACKET_FILTERING                  = BASE + 203;
692
693    /* Enable/disable Neighbor Discovery offload functionality. */
694    static final int CMD_CONFIG_ND_OFFLOAD                              = BASE + 204;
695
696    /* used to indicate that the foreground user was switched */
697    static final int CMD_USER_SWITCH                                    = BASE + 205;
698
699    /* used to indicate that the foreground user was switched */
700    static final int CMD_USER_UNLOCK                                    = BASE + 206;
701
702    /* used to indicate that the foreground user was switched */
703    static final int CMD_USER_STOP                                      = BASE + 207;
704
705    /* Signals that IClientInterface instance underpinning our state is dead. */
706    private static final int CMD_CLIENT_INTERFACE_BINDER_DEATH          = BASE + 250;
707
708    /* Signals that the Vendor HAL instance underpinning our state is dead. */
709    private static final int CMD_VENDOR_HAL_HWBINDER_DEATH              = BASE + 251;
710
711    /* Indicates that diagnostics should time out a connection start event. */
712    private static final int CMD_DIAGS_CONNECT_TIMEOUT                  = BASE + 252;
713
714    // For message logging.
715    private static final Class[] sMessageClasses = {
716            AsyncChannel.class, WifiStateMachine.class, DhcpClient.class };
717    private static final SparseArray<String> sSmToString =
718            MessageUtils.findMessageNames(sMessageClasses);
719
720
721    /* Wifi state machine modes of operation */
722    /* CONNECT_MODE - connect to any 'known' AP when it becomes available */
723    public static final int CONNECT_MODE = 1;
724    /* SCAN_ONLY_MODE - don't connect to any APs; scan, but only while apps hold lock */
725    public static final int SCAN_ONLY_MODE = 2;
726    /* SCAN_ONLY_WITH_WIFI_OFF - scan, but don't connect to any APs */
727    public static final int SCAN_ONLY_WITH_WIFI_OFF_MODE = 3;
728    /* DISABLED_MODE - Don't connect, don't scan, don't be an AP */
729    public static final int DISABLED_MODE = 4;
730
731    private static final int SUCCESS = 1;
732    private static final int FAILURE = -1;
733
734    /* Tracks if suspend optimizations need to be disabled by DHCP,
735     * screen or due to high perf mode.
736     * When any of them needs to disable it, we keep the suspend optimizations
737     * disabled
738     */
739    private int mSuspendOptNeedsDisabled = 0;
740
741    private static final int SUSPEND_DUE_TO_DHCP = 1;
742    private static final int SUSPEND_DUE_TO_HIGH_PERF = 1 << 1;
743    private static final int SUSPEND_DUE_TO_SCREEN = 1 << 2;
744
745    /* Tracks if user has enabled suspend optimizations through settings */
746    private AtomicBoolean mUserWantsSuspendOpt = new AtomicBoolean(true);
747
748    /**
749     * Scan period for the NO_NETWORKS_PERIIDOC_SCAN_FEATURE
750     */
751    private final int mNoNetworksPeriodicScan;
752
753    /**
754     * Supplicant scan interval in milliseconds.
755     * Comes from {@link Settings.Global#WIFI_SUPPLICANT_SCAN_INTERVAL_MS} or
756     * from the default config if the setting is not set
757     */
758    private long mSupplicantScanIntervalMs;
759
760    private boolean mEnableAutoJoinWhenAssociated;
761    private int mAlwaysEnableScansWhileAssociated;
762    private final int mThresholdQualifiedRssi24;
763    private final int mThresholdQualifiedRssi5;
764    private final int mThresholdSaturatedRssi24;
765    private final int mThresholdSaturatedRssi5;
766    private final int mThresholdMinimumRssi5;
767    private final int mThresholdMinimumRssi24;
768    private final boolean mEnableLinkDebouncing;
769    private final boolean mEnableChipWakeUpWhenAssociated;
770    private final boolean mEnableRssiPollWhenAssociated;
771
772    int mRunningBeaconCount = 0;
773
774    /* Default parent state */
775    private State mDefaultState = new DefaultState();
776    /* Temporary initial state */
777    private State mInitialState = new InitialState();
778    /* Driver loaded, waiting for supplicant to start */
779    private State mSupplicantStartingState = new SupplicantStartingState();
780    /* Driver loaded and supplicant ready */
781    private State mSupplicantStartedState = new SupplicantStartedState();
782    /* Waiting for supplicant to stop and monitor to exit */
783    private State mSupplicantStoppingState = new SupplicantStoppingState();
784    /* Wait until p2p is disabled
785     * This is a special state which is entered right after we exit out of DriverStartedState
786     * before transitioning to another state.
787     */
788    private State mWaitForP2pDisableState = new WaitForP2pDisableState();
789    /* Scan for networks, no connection will be established */
790    private State mScanModeState = new ScanModeState();
791    /* Connecting to an access point */
792    private State mConnectModeState = new ConnectModeState();
793    /* Connected at 802.11 (L2) level */
794    private State mL2ConnectedState = new L2ConnectedState();
795    /* fetching IP after connection to access point (assoc+auth complete) */
796    private State mObtainingIpState = new ObtainingIpState();
797    /* Connected with IP addr */
798    private State mConnectedState = new ConnectedState();
799    /* Roaming */
800    private State mRoamingState = new RoamingState();
801    /* disconnect issued, waiting for network disconnect confirmation */
802    private State mDisconnectingState = new DisconnectingState();
803    /* Network is not connected, supplicant assoc+auth is not complete */
804    private State mDisconnectedState = new DisconnectedState();
805    /* Waiting for WPS to be completed*/
806    private State mWpsRunningState = new WpsRunningState();
807    /* Soft ap state */
808    private State mSoftApState = new SoftApState();
809
810    /**
811     * One of  {@link WifiManager#WIFI_STATE_DISABLED},
812     * {@link WifiManager#WIFI_STATE_DISABLING},
813     * {@link WifiManager#WIFI_STATE_ENABLED},
814     * {@link WifiManager#WIFI_STATE_ENABLING},
815     * {@link WifiManager#WIFI_STATE_UNKNOWN}
816     */
817    private final AtomicInteger mWifiState = new AtomicInteger(WIFI_STATE_DISABLED);
818
819    /**
820     * One of  {@link WifiManager#WIFI_AP_STATE_DISABLED},
821     * {@link WifiManager#WIFI_AP_STATE_DISABLING},
822     * {@link WifiManager#WIFI_AP_STATE_ENABLED},
823     * {@link WifiManager#WIFI_AP_STATE_ENABLING},
824     * {@link WifiManager#WIFI_AP_STATE_FAILED}
825     */
826    private final AtomicInteger mWifiApState = new AtomicInteger(WIFI_AP_STATE_DISABLED);
827
828    /**
829     * Work source to use to blame usage on the WiFi service
830     */
831    public static final WorkSource WIFI_WORK_SOURCE = new WorkSource(Process.WIFI_UID);
832
833    /**
834     * Keep track of whether WIFI is running.
835     */
836    private boolean mIsRunning = false;
837
838    /**
839     * Keep track of whether we last told the battery stats we had started.
840     */
841    private boolean mReportedRunning = false;
842
843    /**
844     * Most recently set source of starting WIFI.
845     */
846    private final WorkSource mRunningWifiUids = new WorkSource();
847
848    /**
849     * The last reported UIDs that were responsible for starting WIFI.
850     */
851    private final WorkSource mLastRunningWifiUids = new WorkSource();
852
853    private TelephonyManager mTelephonyManager;
854    private TelephonyManager getTelephonyManager() {
855        if (mTelephonyManager == null) {
856            mTelephonyManager = mWifiInjector.makeTelephonyManager();
857        }
858        return mTelephonyManager;
859    }
860
861    private final IBatteryStats mBatteryStats;
862
863    private final String mTcpBufferSizes;
864
865    // Used for debug and stats gathering
866    private static int sScanAlarmIntentCount = 0;
867
868    private FrameworkFacade mFacade;
869    private WifiStateTracker mWifiStateTracker;
870    private final BackupManagerProxy mBackupManagerProxy;
871
872    public WifiStateMachine(Context context, FrameworkFacade facade, Looper looper,
873                            UserManager userManager, WifiInjector wifiInjector,
874                            BackupManagerProxy backupManagerProxy, WifiCountryCode countryCode,
875                            WifiNative wifiNative) {
876        super("WifiStateMachine", looper);
877        mWifiInjector = wifiInjector;
878        mWifiMetrics = mWifiInjector.getWifiMetrics();
879        mClock = wifiInjector.getClock();
880        mPropertyService = wifiInjector.getPropertyService();
881        mBuildProperties = wifiInjector.getBuildProperties();
882        mContext = context;
883        mFacade = facade;
884        mWifiNative = wifiNative;
885        mBackupManagerProxy = backupManagerProxy;
886
887        // TODO refactor WifiNative use of context out into it's own class
888        mInterfaceName = mWifiNative.getInterfaceName();
889        mNetworkInfo = new NetworkInfo(ConnectivityManager.TYPE_WIFI, 0, NETWORKTYPE, "");
890        mBatteryStats = IBatteryStats.Stub.asInterface(mFacade.getService(
891                BatteryStats.SERVICE_NAME));
892        mWifiStateTracker = wifiInjector.getWifiStateTracker();
893        IBinder b = mFacade.getService(Context.NETWORKMANAGEMENT_SERVICE);
894        mNwService = INetworkManagementService.Stub.asInterface(b);
895
896        mP2pSupported = mContext.getPackageManager().hasSystemFeature(
897                PackageManager.FEATURE_WIFI_DIRECT);
898
899        mWifiPermissionsUtil = mWifiInjector.getWifiPermissionsUtil();
900        mWifiConfigManager = mWifiInjector.getWifiConfigManager();
901        mWifiApConfigStore = mWifiInjector.getWifiApConfigStore();
902
903        mPasspointManager = mWifiInjector.getPasspointManager();
904
905        mWifiMonitor = mWifiInjector.getWifiMonitor();
906        mWifiDiagnostics = mWifiInjector.makeWifiDiagnostics(mWifiNative);
907
908        mWifiInfo = new WifiInfo();
909        mSupplicantStateTracker =
910                mFacade.makeSupplicantStateTracker(context, mWifiConfigManager, getHandler());
911
912        mLinkProperties = new LinkProperties();
913
914        mNetworkInfo.setIsAvailable(false);
915        mLastBssid = null;
916        mLastNetworkId = WifiConfiguration.INVALID_NETWORK_ID;
917        mLastSignalLevel = -1;
918
919        mIpManager = mFacade.makeIpManager(mContext, mInterfaceName, new IpManagerCallback());
920        mIpManager.setMulticastFilter(true);
921
922        mNoNetworksPeriodicScan = mContext.getResources().getInteger(
923                R.integer.config_wifi_no_network_periodic_scan_interval);
924
925        // TODO: remove these settings from the config file since we no longer obey them
926        // mContext.getResources().getInteger(R.integer.config_wifi_framework_scan_interval);
927        // mContext.getResources().getBoolean(R.bool.config_wifi_background_scan_support);
928
929        mPrimaryDeviceType = mContext.getResources().getString(
930                R.string.config_wifi_p2p_device_type);
931
932        mCountryCode = countryCode;
933
934        mWifiScoreReport = new WifiScoreReport(mContext, mWifiConfigManager);
935
936        mUserWantsSuspendOpt.set(mFacade.getIntegerSetting(mContext,
937                Settings.Global.WIFI_SUSPEND_OPTIMIZATIONS_ENABLED, 1) == 1);
938
939        mNetworkCapabilitiesFilter.addTransportType(NetworkCapabilities.TRANSPORT_WIFI);
940        mNetworkCapabilitiesFilter.addCapability(NetworkCapabilities.NET_CAPABILITY_INTERNET);
941        mNetworkCapabilitiesFilter.addCapability(NetworkCapabilities.NET_CAPABILITY_NOT_METERED);
942        mNetworkCapabilitiesFilter.addCapability(NetworkCapabilities.NET_CAPABILITY_NOT_RESTRICTED);
943        mNetworkCapabilitiesFilter.setLinkUpstreamBandwidthKbps(1024 * 1024);
944        mNetworkCapabilitiesFilter.setLinkDownstreamBandwidthKbps(1024 * 1024);
945        // TODO - needs to be a bit more dynamic
946        mDfltNetworkCapabilities = new NetworkCapabilities(mNetworkCapabilitiesFilter);
947
948        IntentFilter filter = new IntentFilter();
949        filter.addAction(Intent.ACTION_SCREEN_ON);
950        filter.addAction(Intent.ACTION_SCREEN_OFF);
951        mContext.registerReceiver(
952                new BroadcastReceiver() {
953                    @Override
954                    public void onReceive(Context context, Intent intent) {
955                        String action = intent.getAction();
956
957                        if (action.equals(Intent.ACTION_SCREEN_ON)) {
958                            sendMessage(CMD_SCREEN_STATE_CHANGED, 1);
959                        } else if (action.equals(Intent.ACTION_SCREEN_OFF)) {
960                            sendMessage(CMD_SCREEN_STATE_CHANGED, 0);
961                        }
962                    }
963                }, filter);
964
965        mContext.getContentResolver().registerContentObserver(Settings.Global.getUriFor(
966                        Settings.Global.WIFI_SUSPEND_OPTIMIZATIONS_ENABLED), false,
967                new ContentObserver(getHandler()) {
968                    @Override
969                    public void onChange(boolean selfChange) {
970                        mUserWantsSuspendOpt.set(mFacade.getIntegerSetting(mContext,
971                                Settings.Global.WIFI_SUSPEND_OPTIMIZATIONS_ENABLED, 1) == 1);
972                    }
973                });
974
975        mContext.registerReceiver(
976                new BroadcastReceiver() {
977                    @Override
978                    public void onReceive(Context context, Intent intent) {
979                        sendMessage(CMD_BOOT_COMPLETED);
980                    }
981                },
982                new IntentFilter(Intent.ACTION_LOCKED_BOOT_COMPLETED));
983
984        PowerManager powerManager = (PowerManager) mContext.getSystemService(Context.POWER_SERVICE);
985        mWakeLock = powerManager.newWakeLock(PowerManager.PARTIAL_WAKE_LOCK, getName());
986
987        mSuspendWakeLock = powerManager.newWakeLock(PowerManager.PARTIAL_WAKE_LOCK, "WifiSuspend");
988        mSuspendWakeLock.setReferenceCounted(false);
989
990        mTcpBufferSizes = mContext.getResources().getString(
991                com.android.internal.R.string.config_wifi_tcp_buffers);
992
993        // Load Device configs
994        mEnableAutoJoinWhenAssociated = context.getResources().getBoolean(
995                R.bool.config_wifi_framework_enable_associated_network_selection);
996        mThresholdQualifiedRssi24 = context.getResources().getInteger(
997                R.integer.config_wifi_framework_wifi_score_low_rssi_threshold_24GHz);
998        mThresholdQualifiedRssi5 = context.getResources().getInteger(
999                R.integer.config_wifi_framework_wifi_score_low_rssi_threshold_5GHz);
1000        mThresholdSaturatedRssi24 = context.getResources().getInteger(
1001                R.integer.config_wifi_framework_wifi_score_good_rssi_threshold_24GHz);
1002        mThresholdSaturatedRssi5 = context.getResources().getInteger(
1003                R.integer.config_wifi_framework_wifi_score_good_rssi_threshold_5GHz);
1004        mThresholdMinimumRssi5 = context.getResources().getInteger(
1005                R.integer.config_wifi_framework_wifi_score_bad_rssi_threshold_5GHz);
1006        mThresholdMinimumRssi24 = context.getResources().getInteger(
1007                R.integer.config_wifi_framework_wifi_score_bad_rssi_threshold_24GHz);
1008        mEnableLinkDebouncing = mContext.getResources().getBoolean(
1009                R.bool.config_wifi_enable_disconnection_debounce);
1010        mEnableChipWakeUpWhenAssociated = true;
1011        mEnableRssiPollWhenAssociated = true;
1012
1013        // CHECKSTYLE:OFF IndentationCheck
1014        addState(mDefaultState);
1015            addState(mInitialState, mDefaultState);
1016            addState(mSupplicantStartingState, mDefaultState);
1017            addState(mSupplicantStartedState, mDefaultState);
1018                    addState(mScanModeState, mSupplicantStartedState);
1019                    addState(mConnectModeState, mSupplicantStartedState);
1020                        addState(mL2ConnectedState, mConnectModeState);
1021                            addState(mObtainingIpState, mL2ConnectedState);
1022                            addState(mConnectedState, mL2ConnectedState);
1023                            addState(mRoamingState, mL2ConnectedState);
1024                        addState(mDisconnectingState, mConnectModeState);
1025                        addState(mDisconnectedState, mConnectModeState);
1026                        addState(mWpsRunningState, mConnectModeState);
1027                addState(mWaitForP2pDisableState, mSupplicantStartedState);
1028            addState(mSupplicantStoppingState, mDefaultState);
1029            addState(mSoftApState, mDefaultState);
1030        // CHECKSTYLE:ON IndentationCheck
1031
1032        setInitialState(mInitialState);
1033
1034        setLogRecSize(NUM_LOG_RECS_NORMAL);
1035        setLogOnlyTransitions(false);
1036
1037        //start the state machine
1038        start();
1039
1040        // Learn the initial state of whether the screen is on.
1041        // We update this field when we receive broadcasts from the system.
1042        handleScreenStateChanged(powerManager.isInteractive());
1043
1044        mWifiMonitor.registerHandler(mInterfaceName, CMD_TARGET_BSSID, getHandler());
1045        mWifiMonitor.registerHandler(mInterfaceName, CMD_ASSOCIATED_BSSID, getHandler());
1046        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.ANQP_DONE_EVENT, getHandler());
1047        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.ASSOCIATION_REJECTION_EVENT,
1048                getHandler());
1049        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.AUTHENTICATION_FAILURE_EVENT,
1050                getHandler());
1051        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.GAS_QUERY_DONE_EVENT, getHandler());
1052        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.GAS_QUERY_START_EVENT,
1053                getHandler());
1054        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.HS20_REMEDIATION_EVENT,
1055                getHandler());
1056        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.NETWORK_CONNECTION_EVENT,
1057                getHandler());
1058        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.NETWORK_DISCONNECTION_EVENT,
1059                getHandler());
1060        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.RX_HS20_ANQP_ICON_EVENT,
1061                getHandler());
1062        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SCAN_FAILED_EVENT, getHandler());
1063        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SCAN_RESULTS_EVENT, getHandler());
1064        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUP_CONNECTION_EVENT, getHandler());
1065        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUP_DISCONNECTION_EVENT,
1066                getHandler());
1067        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT,
1068                getHandler());
1069        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUP_REQUEST_IDENTITY, getHandler());
1070        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUP_REQUEST_SIM_AUTH, getHandler());
1071        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.WPS_FAIL_EVENT, getHandler());
1072        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.WPS_OVERLAP_EVENT, getHandler());
1073        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.WPS_SUCCESS_EVENT, getHandler());
1074        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.WPS_TIMEOUT_EVENT, getHandler());
1075
1076        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.ASSOCIATION_REJECTION_EVENT,
1077                mWifiMetrics.getHandler());
1078        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.AUTHENTICATION_FAILURE_EVENT,
1079                mWifiMetrics.getHandler());
1080        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.NETWORK_CONNECTION_EVENT,
1081                mWifiMetrics.getHandler());
1082        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.NETWORK_DISCONNECTION_EVENT,
1083                mWifiMetrics.getHandler());
1084        mWifiMonitor.registerHandler(mInterfaceName, WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT,
1085                mWifiMetrics.getHandler());
1086        mWifiMonitor.registerHandler(mInterfaceName, CMD_ASSOCIATED_BSSID,
1087                mWifiMetrics.getHandler());
1088        mWifiMonitor.registerHandler(mInterfaceName, CMD_TARGET_BSSID,
1089                mWifiMetrics.getHandler());
1090
1091        final Intent intent = new Intent(WifiManager.WIFI_SCAN_AVAILABLE);
1092        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
1093        intent.putExtra(WifiManager.EXTRA_SCAN_AVAILABLE, WIFI_STATE_DISABLED);
1094        mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
1095    }
1096
1097    class IpManagerCallback extends IpManager.Callback {
1098        @Override
1099        public void onPreDhcpAction() {
1100            sendMessage(DhcpClient.CMD_PRE_DHCP_ACTION);
1101        }
1102
1103        @Override
1104        public void onPostDhcpAction() {
1105            sendMessage(DhcpClient.CMD_POST_DHCP_ACTION);
1106        }
1107
1108        @Override
1109        public void onNewDhcpResults(DhcpResults dhcpResults) {
1110            if (dhcpResults != null) {
1111                sendMessage(CMD_IPV4_PROVISIONING_SUCCESS, dhcpResults);
1112            } else {
1113                sendMessage(CMD_IPV4_PROVISIONING_FAILURE);
1114                mWifiInjector.getWifiLastResortWatchdog().noteConnectionFailureAndTriggerIfNeeded(
1115                        getTargetSsid(), mTargetRoamBSSID,
1116                        WifiLastResortWatchdog.FAILURE_CODE_DHCP);
1117            }
1118        }
1119
1120        @Override
1121        public void onProvisioningSuccess(LinkProperties newLp) {
1122            mWifiMetrics.logStaEvent(StaEvent.TYPE_CMD_IP_CONFIGURATION_SUCCESSFUL);
1123            sendMessage(CMD_UPDATE_LINKPROPERTIES, newLp);
1124            sendMessage(CMD_IP_CONFIGURATION_SUCCESSFUL);
1125        }
1126
1127        @Override
1128        public void onProvisioningFailure(LinkProperties newLp) {
1129            mWifiMetrics.logStaEvent(StaEvent.TYPE_CMD_IP_CONFIGURATION_LOST);
1130            sendMessage(CMD_IP_CONFIGURATION_LOST);
1131        }
1132
1133        @Override
1134        public void onLinkPropertiesChange(LinkProperties newLp) {
1135            sendMessage(CMD_UPDATE_LINKPROPERTIES, newLp);
1136        }
1137
1138        @Override
1139        public void onReachabilityLost(String logMsg) {
1140            mWifiMetrics.logStaEvent(StaEvent.TYPE_CMD_IP_REACHABILITY_LOST);
1141            sendMessage(CMD_IP_REACHABILITY_LOST, logMsg);
1142        }
1143
1144        @Override
1145        public void installPacketFilter(byte[] filter) {
1146            sendMessage(CMD_INSTALL_PACKET_FILTER, filter);
1147        }
1148
1149        @Override
1150        public void setFallbackMulticastFilter(boolean enabled) {
1151            sendMessage(CMD_SET_FALLBACK_PACKET_FILTERING, enabled);
1152        }
1153
1154        @Override
1155        public void setNeighborDiscoveryOffload(boolean enabled) {
1156            sendMessage(CMD_CONFIG_ND_OFFLOAD, (enabled ? 1 : 0));
1157        }
1158    }
1159
1160    private void stopIpManager() {
1161        /* Restore power save and suspend optimizations */
1162        handlePostDhcpSetup();
1163        mIpManager.stop();
1164    }
1165
1166    PendingIntent getPrivateBroadcast(String action, int requestCode) {
1167        Intent intent = new Intent(action, null);
1168        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
1169        intent.setPackage("android");
1170        return mFacade.getBroadcast(mContext, requestCode, intent, 0);
1171    }
1172
1173    /**
1174     * Set wpa_supplicant log level using |mVerboseLoggingLevel| flag.
1175     */
1176    void setSupplicantLogLevel() {
1177        mWifiNative.setSupplicantLogLevel(mVerboseLoggingEnabled);
1178    }
1179
1180    /**
1181     * Method to update logging level in wifi service related classes.
1182     *
1183     * @param verbose int logging level to use
1184     */
1185    public void enableVerboseLogging(int verbose) {
1186        if (verbose > 0) {
1187            mVerboseLoggingEnabled = true;
1188            setLogRecSize(ActivityManager.isLowRamDeviceStatic()
1189                    ? NUM_LOG_RECS_VERBOSE_LOW_MEMORY : NUM_LOG_RECS_VERBOSE);
1190        } else {
1191            mVerboseLoggingEnabled = false;
1192            setLogRecSize(NUM_LOG_RECS_NORMAL);
1193        }
1194        configureVerboseHalLogging(mVerboseLoggingEnabled);
1195        setSupplicantLogLevel();
1196        mCountryCode.enableVerboseLogging(verbose);
1197        mWifiScoreReport.enableVerboseLogging(mVerboseLoggingEnabled);
1198        mWifiDiagnostics.startLogging(mVerboseLoggingEnabled);
1199        mWifiMonitor.enableVerboseLogging(verbose);
1200        mWifiNative.enableVerboseLogging(verbose);
1201        mWifiConfigManager.enableVerboseLogging(verbose);
1202        mSupplicantStateTracker.enableVerboseLogging(verbose);
1203    }
1204
1205    private static final String SYSTEM_PROPERTY_LOG_CONTROL_WIFIHAL = "log.tag.WifiHAL";
1206    private static final String LOGD_LEVEL_DEBUG = "D";
1207    private static final String LOGD_LEVEL_VERBOSE = "V";
1208    private void configureVerboseHalLogging(boolean enableVerbose) {
1209        if (mBuildProperties.isUserBuild()) {  // Verbose HAL logging not supported on user builds.
1210            return;
1211        }
1212        mPropertyService.set(SYSTEM_PROPERTY_LOG_CONTROL_WIFIHAL,
1213                enableVerbose ? LOGD_LEVEL_VERBOSE : LOGD_LEVEL_DEBUG);
1214    }
1215
1216    private int mAggressiveHandover = 0;
1217
1218    int getAggressiveHandover() {
1219        return mAggressiveHandover;
1220    }
1221
1222    void enableAggressiveHandover(int enabled) {
1223        mAggressiveHandover = enabled;
1224    }
1225
1226    public void clearANQPCache() {
1227        // TODO(b/31065385)
1228        // mWifiConfigManager.trimANQPCache(true);
1229    }
1230
1231    public void setAllowScansWithTraffic(int enabled) {
1232        mAlwaysEnableScansWhileAssociated = enabled;
1233    }
1234
1235    public int getAllowScansWithTraffic() {
1236        return mAlwaysEnableScansWhileAssociated;
1237    }
1238
1239    /*
1240     * Dynamically turn on/off if switching networks while connected is allowd.
1241     */
1242    public boolean setEnableAutoJoinWhenAssociated(boolean enabled) {
1243        sendMessage(CMD_ENABLE_AUTOJOIN_WHEN_ASSOCIATED, enabled ? 1 : 0);
1244        return true;
1245    }
1246
1247    public boolean getEnableAutoJoinWhenAssociated() {
1248        return mEnableAutoJoinWhenAssociated;
1249    }
1250
1251    private boolean setRandomMacOui() {
1252        String oui = mContext.getResources().getString(R.string.config_wifi_random_mac_oui);
1253        if (TextUtils.isEmpty(oui)) {
1254            oui = GOOGLE_OUI;
1255        }
1256        String[] ouiParts = oui.split("-");
1257        byte[] ouiBytes = new byte[3];
1258        ouiBytes[0] = (byte) (Integer.parseInt(ouiParts[0], 16) & 0xFF);
1259        ouiBytes[1] = (byte) (Integer.parseInt(ouiParts[1], 16) & 0xFF);
1260        ouiBytes[2] = (byte) (Integer.parseInt(ouiParts[2], 16) & 0xFF);
1261
1262        logd("Setting OUI to " + oui);
1263        return mWifiNative.setScanningMacOui(ouiBytes);
1264    }
1265
1266    /**
1267     * Helper method to lookup the framework network ID of the network currently configured in
1268     * wpa_supplicant using the provided supplicant network ID. This is needed for translating the
1269     * networkID received from all {@link WifiMonitor} events.
1270     *
1271     * @param supplicantNetworkId Network ID of network in wpa_supplicant.
1272     * @return Corresponding Internal configured network ID
1273     * TODO(b/31080843): This is ugly! We need to hide this translation of networkId's. This will
1274     * be handled once we move all of this connection logic to wificond.
1275     */
1276    private int lookupFrameworkNetworkId(int supplicantNetworkId) {
1277        return mWifiNative.getFrameworkNetworkId(supplicantNetworkId);
1278    }
1279
1280    /**
1281     * Initiates connection to a network specified by the user/app. This method checks if the
1282     * requesting app holds the WIFI_CONFIG_OVERRIDE permission.
1283     *
1284     * @param netId Id network to initiate connection.
1285     * @param uid UID of the app requesting the connection.
1286     * @param forceReconnect Whether to force a connection even if we're connected to the same
1287     *                       network currently.
1288     */
1289    private boolean connectToUserSelectNetwork(int netId, int uid, boolean forceReconnect) {
1290        logd("connectToUserSelectNetwork netId " + netId + ", uid " + uid
1291                + ", forceReconnect = " + forceReconnect);
1292        if (mWifiConfigManager.getConfiguredNetwork(netId) == null) {
1293            loge("connectToUserSelectNetwork Invalid network Id=" + netId);
1294            return false;
1295        }
1296        if (!mWifiConfigManager.enableNetwork(netId, true, uid)
1297                || !mWifiConfigManager.checkAndUpdateLastConnectUid(netId, uid)) {
1298            logi("connectToUserSelectNetwork Allowing uid " + uid
1299                    + " with insufficient permissions to connect=" + netId);
1300        } else {
1301            // Note user connect choice here, so that it will be considered in the next network
1302            // selection.
1303            mWifiConnectivityManager.setUserConnectChoice(netId);
1304        }
1305        if (!forceReconnect && mWifiInfo.getNetworkId() == netId) {
1306            // We're already connected to the user specified network, don't trigger a
1307            // reconnection unless it was forced.
1308            logi("connectToUserSelectNetwork already connecting/connected=" + netId);
1309        } else {
1310            mWifiConnectivityManager.prepareForForcedConnection(netId);
1311            startConnectToNetwork(netId, SUPPLICANT_BSSID_ANY);
1312        }
1313        return true;
1314    }
1315
1316    /**
1317     * ******************************************************
1318     * Methods exposed for public use
1319     * ******************************************************
1320     */
1321
1322    public Messenger getMessenger() {
1323        return new Messenger(getHandler());
1324    }
1325
1326    /**
1327     * Initiate a wifi scan. If workSource is not null, blame is given to it, otherwise blame is
1328     * given to callingUid.
1329     *
1330     * @param callingUid The uid initiating the wifi scan. Blame will be given here unless
1331     *                   workSource is specified.
1332     * @param workSource If not null, blame is given to workSource.
1333     * @param settings   Scan settings, see {@link ScanSettings}.
1334     */
1335    public void startScan(int callingUid, int scanCounter,
1336                          ScanSettings settings, WorkSource workSource) {
1337        Bundle bundle = new Bundle();
1338        bundle.putParcelable(CUSTOMIZED_SCAN_SETTING, settings);
1339        bundle.putParcelable(CUSTOMIZED_SCAN_WORKSOURCE, workSource);
1340        bundle.putLong(SCAN_REQUEST_TIME, mClock.getWallClockMillis());
1341        sendMessage(CMD_START_SCAN, callingUid, scanCounter, bundle);
1342    }
1343
1344    private long mDisconnectedTimeStamp = 0;
1345
1346    public long getDisconnectedTimeMilli() {
1347        if (getCurrentState() == mDisconnectedState
1348                && mDisconnectedTimeStamp != 0) {
1349            long now_ms = mClock.getWallClockMillis();
1350            return now_ms - mDisconnectedTimeStamp;
1351        }
1352        return 0;
1353    }
1354
1355    // Last connect attempt is used to prevent scan requests:
1356    //  - for a period of 10 seconds after attempting to connect
1357    private long lastConnectAttemptTimestamp = 0;
1358    private Set<Integer> lastScanFreqs = null;
1359
1360    // For debugging, keep track of last message status handling
1361    // TODO, find an equivalent mechanism as part of parent class
1362    private static final int MESSAGE_HANDLING_STATUS_PROCESSED = 2;
1363    private static final int MESSAGE_HANDLING_STATUS_OK = 1;
1364    private static final int MESSAGE_HANDLING_STATUS_UNKNOWN = 0;
1365    private static final int MESSAGE_HANDLING_STATUS_REFUSED = -1;
1366    private static final int MESSAGE_HANDLING_STATUS_FAIL = -2;
1367    private static final int MESSAGE_HANDLING_STATUS_OBSOLETE = -3;
1368    private static final int MESSAGE_HANDLING_STATUS_DEFERRED = -4;
1369    private static final int MESSAGE_HANDLING_STATUS_DISCARD = -5;
1370    private static final int MESSAGE_HANDLING_STATUS_LOOPED = -6;
1371    private static final int MESSAGE_HANDLING_STATUS_HANDLING_ERROR = -7;
1372
1373    private int messageHandlingStatus = 0;
1374
1375    //TODO: this is used only to track connection attempts, however the link state and packet per
1376    //TODO: second logic should be folded into that
1377    private boolean checkOrDeferScanAllowed(Message msg) {
1378        long now = mClock.getWallClockMillis();
1379        if (lastConnectAttemptTimestamp != 0 && (now - lastConnectAttemptTimestamp) < 10000) {
1380            Message dmsg = Message.obtain(msg);
1381            sendMessageDelayed(dmsg, 11000 - (now - lastConnectAttemptTimestamp));
1382            return false;
1383        }
1384        return true;
1385    }
1386
1387    private int mOnTime = 0;
1388    private int mTxTime = 0;
1389    private int mRxTime = 0;
1390
1391    private int mOnTimeScreenStateChange = 0;
1392    private long lastOntimeReportTimeStamp = 0;
1393    private long lastScreenStateChangeTimeStamp = 0;
1394    private int mOnTimeLastReport = 0;
1395    private int mTxTimeLastReport = 0;
1396    private int mRxTimeLastReport = 0;
1397
1398    private long lastLinkLayerStatsUpdate = 0;
1399
1400    String reportOnTime() {
1401        long now = mClock.getWallClockMillis();
1402        StringBuilder sb = new StringBuilder();
1403        // Report stats since last report
1404        int on = mOnTime - mOnTimeLastReport;
1405        mOnTimeLastReport = mOnTime;
1406        int tx = mTxTime - mTxTimeLastReport;
1407        mTxTimeLastReport = mTxTime;
1408        int rx = mRxTime - mRxTimeLastReport;
1409        mRxTimeLastReport = mRxTime;
1410        int period = (int) (now - lastOntimeReportTimeStamp);
1411        lastOntimeReportTimeStamp = now;
1412        sb.append(String.format("[on:%d tx:%d rx:%d period:%d]", on, tx, rx, period));
1413        // Report stats since Screen State Changed
1414        on = mOnTime - mOnTimeScreenStateChange;
1415        period = (int) (now - lastScreenStateChangeTimeStamp);
1416        sb.append(String.format(" from screen [on:%d period:%d]", on, period));
1417        return sb.toString();
1418    }
1419
1420    WifiLinkLayerStats getWifiLinkLayerStats() {
1421        WifiLinkLayerStats stats = null;
1422        if (mWifiLinkLayerStatsSupported > 0) {
1423            String name = "wlan0";
1424            stats = mWifiNative.getWifiLinkLayerStats(name);
1425            if (name != null && stats == null && mWifiLinkLayerStatsSupported > 0) {
1426                mWifiLinkLayerStatsSupported -= 1;
1427            } else if (stats != null) {
1428                lastLinkLayerStatsUpdate = mClock.getWallClockMillis();
1429                mOnTime = stats.on_time;
1430                mTxTime = stats.tx_time;
1431                mRxTime = stats.rx_time;
1432                mRunningBeaconCount = stats.beacon_rx;
1433            }
1434        }
1435        if (stats == null || mWifiLinkLayerStatsSupported <= 0) {
1436            long mTxPkts = mFacade.getTxPackets(mInterfaceName);
1437            long mRxPkts = mFacade.getRxPackets(mInterfaceName);
1438            mWifiInfo.updatePacketRates(mTxPkts, mRxPkts);
1439        } else {
1440            mWifiInfo.updatePacketRates(stats, lastLinkLayerStatsUpdate);
1441        }
1442        return stats;
1443    }
1444
1445    int startWifiIPPacketOffload(int slot, KeepalivePacketData packetData, int intervalSeconds) {
1446        int ret = mWifiNative.startSendingOffloadedPacket(slot, packetData, intervalSeconds * 1000);
1447        if (ret != 0) {
1448            loge("startWifiIPPacketOffload(" + slot + ", " + intervalSeconds +
1449                    "): hardware error " + ret);
1450            return ConnectivityManager.PacketKeepalive.ERROR_HARDWARE_ERROR;
1451        } else {
1452            return ConnectivityManager.PacketKeepalive.SUCCESS;
1453        }
1454    }
1455
1456    int stopWifiIPPacketOffload(int slot) {
1457        int ret = mWifiNative.stopSendingOffloadedPacket(slot);
1458        if (ret != 0) {
1459            loge("stopWifiIPPacketOffload(" + slot + "): hardware error " + ret);
1460            return ConnectivityManager.PacketKeepalive.ERROR_HARDWARE_ERROR;
1461        } else {
1462            return ConnectivityManager.PacketKeepalive.SUCCESS;
1463        }
1464    }
1465
1466    int startRssiMonitoringOffload(byte maxRssi, byte minRssi) {
1467        return mWifiNative.startRssiMonitoring(maxRssi, minRssi, WifiStateMachine.this);
1468    }
1469
1470    int stopRssiMonitoringOffload() {
1471        return mWifiNative.stopRssiMonitoring();
1472    }
1473
1474    private void handleScanRequest(Message message) {
1475        ScanSettings settings = null;
1476        WorkSource workSource = null;
1477
1478        // unbundle parameters
1479        Bundle bundle = (Bundle) message.obj;
1480
1481        if (bundle != null) {
1482            settings = bundle.getParcelable(CUSTOMIZED_SCAN_SETTING);
1483            workSource = bundle.getParcelable(CUSTOMIZED_SCAN_WORKSOURCE);
1484        }
1485
1486        Set<Integer> freqs = null;
1487        if (settings != null && settings.channelSet != null) {
1488            freqs = new HashSet<>();
1489            for (WifiChannel channel : settings.channelSet) {
1490                freqs.add(channel.freqMHz);
1491            }
1492        }
1493
1494        // Retrieve the list of hidden network SSIDs to scan for.
1495        List<WifiScanner.ScanSettings.HiddenNetwork> hiddenNetworks =
1496                mWifiConfigManager.retrieveHiddenNetworkList();
1497
1498        // call wifi native to start the scan
1499        if (startScanNative(freqs, hiddenNetworks, workSource)) {
1500            // a full scan covers everything, clearing scan request buffer
1501            if (freqs == null)
1502                mBufferedScanMsg.clear();
1503            messageHandlingStatus = MESSAGE_HANDLING_STATUS_OK;
1504            return;
1505        }
1506
1507        // if reach here, scan request is rejected
1508
1509        if (!mIsScanOngoing) {
1510            // if rejection is NOT due to ongoing scan (e.g. bad scan parameters),
1511
1512            // discard this request and pop up the next one
1513            if (mBufferedScanMsg.size() > 0) {
1514                sendMessage(mBufferedScanMsg.remove());
1515            }
1516            messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
1517        } else if (!mIsFullScanOngoing) {
1518            // if rejection is due to an ongoing scan, and the ongoing one is NOT a full scan,
1519            // buffer the scan request to make sure specified channels will be scanned eventually
1520            if (freqs == null)
1521                mBufferedScanMsg.clear();
1522            if (mBufferedScanMsg.size() < SCAN_REQUEST_BUFFER_MAX_SIZE) {
1523                Message msg = obtainMessage(CMD_START_SCAN,
1524                        message.arg1, message.arg2, bundle);
1525                mBufferedScanMsg.add(msg);
1526            } else {
1527                // if too many requests in buffer, combine them into a single full scan
1528                bundle = new Bundle();
1529                bundle.putParcelable(CUSTOMIZED_SCAN_SETTING, null);
1530                bundle.putParcelable(CUSTOMIZED_SCAN_WORKSOURCE, workSource);
1531                Message msg = obtainMessage(CMD_START_SCAN, message.arg1, message.arg2, bundle);
1532                mBufferedScanMsg.clear();
1533                mBufferedScanMsg.add(msg);
1534            }
1535            messageHandlingStatus = MESSAGE_HANDLING_STATUS_LOOPED;
1536        } else {
1537            // mIsScanOngoing and mIsFullScanOngoing
1538            messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
1539        }
1540    }
1541
1542
1543    // TODO this is a temporary measure to bridge between WifiScanner and WifiStateMachine until
1544    // scan functionality is refactored out of WifiStateMachine.
1545    /**
1546     * return true iff scan request is accepted
1547     */
1548    private boolean startScanNative(final Set<Integer> freqs,
1549            List<WifiScanner.ScanSettings.HiddenNetwork> hiddenNetworkList,
1550            WorkSource workSource) {
1551        WifiScanner.ScanSettings settings = new WifiScanner.ScanSettings();
1552        if (freqs == null) {
1553            settings.band = WifiScanner.WIFI_BAND_BOTH_WITH_DFS;
1554        } else {
1555            settings.band = WifiScanner.WIFI_BAND_UNSPECIFIED;
1556            int index = 0;
1557            settings.channels = new WifiScanner.ChannelSpec[freqs.size()];
1558            for (Integer freq : freqs) {
1559                settings.channels[index++] = new WifiScanner.ChannelSpec(freq);
1560            }
1561        }
1562        settings.reportEvents = WifiScanner.REPORT_EVENT_AFTER_EACH_SCAN
1563                | WifiScanner.REPORT_EVENT_FULL_SCAN_RESULT;
1564
1565        settings.hiddenNetworks =
1566                hiddenNetworkList.toArray(
1567                        new WifiScanner.ScanSettings.HiddenNetwork[hiddenNetworkList.size()]);
1568
1569        WifiScanner.ScanListener nativeScanListener = new WifiScanner.ScanListener() {
1570                // ignore all events since WifiStateMachine is registered for the supplicant events
1571                @Override
1572                public void onSuccess() {
1573                }
1574                @Override
1575                public void onFailure(int reason, String description) {
1576                    mIsScanOngoing = false;
1577                    mIsFullScanOngoing = false;
1578                }
1579                @Override
1580                public void onResults(WifiScanner.ScanData[] results) {
1581                }
1582                @Override
1583                public void onFullResult(ScanResult fullScanResult) {
1584                }
1585                @Override
1586                public void onPeriodChanged(int periodInMs) {
1587                }
1588            };
1589        mWifiScanner.startScan(settings, nativeScanListener, workSource);
1590        mIsScanOngoing = true;
1591        mIsFullScanOngoing = (freqs == null);
1592        lastScanFreqs = freqs;
1593        return true;
1594    }
1595
1596    /**
1597     * TODO: doc
1598     */
1599    public void setSupplicantRunning(boolean enable) {
1600        if (enable) {
1601            sendMessage(CMD_START_SUPPLICANT);
1602        } else {
1603            sendMessage(CMD_STOP_SUPPLICANT);
1604        }
1605    }
1606
1607    /**
1608     * TODO: doc
1609     */
1610    public void setHostApRunning(SoftApModeConfiguration wifiConfig, boolean enable) {
1611        if (enable) {
1612            sendMessage(CMD_START_AP, wifiConfig);
1613        } else {
1614            sendMessage(CMD_STOP_AP);
1615        }
1616    }
1617
1618    public void setWifiApConfiguration(WifiConfiguration config) {
1619        mWifiApConfigStore.setApConfiguration(config);
1620    }
1621
1622    public WifiConfiguration syncGetWifiApConfiguration() {
1623        return mWifiApConfigStore.getApConfiguration();
1624    }
1625
1626    /**
1627     * TODO: doc
1628     */
1629    public int syncGetWifiState() {
1630        return mWifiState.get();
1631    }
1632
1633    /**
1634     * TODO: doc
1635     */
1636    public String syncGetWifiStateByName() {
1637        switch (mWifiState.get()) {
1638            case WIFI_STATE_DISABLING:
1639                return "disabling";
1640            case WIFI_STATE_DISABLED:
1641                return "disabled";
1642            case WIFI_STATE_ENABLING:
1643                return "enabling";
1644            case WIFI_STATE_ENABLED:
1645                return "enabled";
1646            case WIFI_STATE_UNKNOWN:
1647                return "unknown state";
1648            default:
1649                return "[invalid state]";
1650        }
1651    }
1652
1653    /**
1654     * TODO: doc
1655     */
1656    public int syncGetWifiApState() {
1657        return mWifiApState.get();
1658    }
1659
1660    /**
1661     * TODO: doc
1662     */
1663    public String syncGetWifiApStateByName() {
1664        switch (mWifiApState.get()) {
1665            case WIFI_AP_STATE_DISABLING:
1666                return "disabling";
1667            case WIFI_AP_STATE_DISABLED:
1668                return "disabled";
1669            case WIFI_AP_STATE_ENABLING:
1670                return "enabling";
1671            case WIFI_AP_STATE_ENABLED:
1672                return "enabled";
1673            case WIFI_AP_STATE_FAILED:
1674                return "failed";
1675            default:
1676                return "[invalid state]";
1677        }
1678    }
1679
1680    public boolean isConnected() {
1681        return getCurrentState() == mConnectedState;
1682    }
1683
1684    public boolean isDisconnected() {
1685        return getCurrentState() == mDisconnectedState;
1686    }
1687
1688    public boolean isSupplicantTransientState() {
1689        SupplicantState supplicantState = mWifiInfo.getSupplicantState();
1690        if (supplicantState == SupplicantState.ASSOCIATING
1691                || supplicantState == SupplicantState.AUTHENTICATING
1692                || supplicantState == SupplicantState.FOUR_WAY_HANDSHAKE
1693                || supplicantState == SupplicantState.GROUP_HANDSHAKE) {
1694
1695            if (mVerboseLoggingEnabled) {
1696                Log.d(TAG, "Supplicant is under transient state: " + supplicantState);
1697            }
1698            return true;
1699        } else {
1700            if (mVerboseLoggingEnabled) {
1701                Log.d(TAG, "Supplicant is under steady state: " + supplicantState);
1702            }
1703        }
1704
1705        return false;
1706    }
1707
1708    public boolean isLinkDebouncing() {
1709        return mIsLinkDebouncing;
1710    }
1711
1712    /**
1713     * Get status information for the current connection, if any.
1714     *
1715     * @return a {@link WifiInfo} object containing information about the current connection
1716     */
1717    public WifiInfo syncRequestConnectionInfo() {
1718        return getWiFiInfoForUid(Binder.getCallingUid());
1719    }
1720
1721    public WifiInfo getWifiInfo() {
1722        return mWifiInfo;
1723    }
1724
1725    public DhcpResults syncGetDhcpResults() {
1726        synchronized (mDhcpResultsLock) {
1727            return new DhcpResults(mDhcpResults);
1728        }
1729    }
1730
1731    /**
1732     * TODO: doc
1733     */
1734    public void setOperationalMode(int mode) {
1735        if (mVerboseLoggingEnabled) log("setting operational mode to " + String.valueOf(mode));
1736        sendMessage(CMD_SET_OPERATIONAL_MODE, mode, 0);
1737    }
1738
1739    /**
1740     * Allow tests to confirm the operational mode for WSM.
1741     */
1742    @VisibleForTesting
1743    protected int getOperationalModeForTest() {
1744        return mOperationalMode;
1745    }
1746
1747    /**
1748     * TODO: doc
1749     */
1750    public List<ScanResult> syncGetScanResultsList() {
1751        synchronized (mScanResultsLock) {
1752            List<ScanResult> scanList = new ArrayList<>();
1753            for (ScanDetail result : mScanResults) {
1754                scanList.add(new ScanResult(result.getScanResult()));
1755            }
1756            return scanList;
1757        }
1758    }
1759
1760    public boolean syncQueryPasspointIcon(AsyncChannel channel, long bssid, String fileName) {
1761        Bundle bundle = new Bundle();
1762        bundle.putLong(EXTRA_OSU_ICON_QUERY_BSSID, bssid);
1763        bundle.putString(EXTRA_OSU_ICON_QUERY_FILENAME, fileName);
1764        Message resultMsg = channel.sendMessageSynchronously(CMD_QUERY_OSU_ICON, bundle);
1765        int result = resultMsg.arg1;
1766        resultMsg.recycle();
1767        return result == 1;
1768    }
1769
1770    public int matchProviderWithCurrentNetwork(AsyncChannel channel, String fqdn) {
1771        Message resultMsg = channel.sendMessageSynchronously(CMD_MATCH_PROVIDER_NETWORK, fqdn);
1772        int result = resultMsg.arg1;
1773        resultMsg.recycle();
1774        return result;
1775    }
1776
1777    /**
1778     * Deauthenticate and set the re-authentication hold off time for the current network
1779     * @param holdoff hold off time in milliseconds
1780     * @param ess set if the hold off pertains to an ESS rather than a BSS
1781     */
1782    public void deauthenticateNetwork(AsyncChannel channel, long holdoff, boolean ess) {
1783        // TODO: This needs an implementation
1784    }
1785
1786    public void disableEphemeralNetwork(String SSID) {
1787        if (SSID != null) {
1788            sendMessage(CMD_DISABLE_EPHEMERAL_NETWORK, SSID);
1789        }
1790    }
1791
1792    /**
1793     * Disconnect from Access Point
1794     */
1795    public void disconnectCommand() {
1796        sendMessage(CMD_DISCONNECT);
1797    }
1798
1799    public void disconnectCommand(int uid, int reason) {
1800        sendMessage(CMD_DISCONNECT, uid, reason);
1801    }
1802
1803    /**
1804     * Initiate a reconnection to AP
1805     */
1806    public void reconnectCommand() {
1807        sendMessage(CMD_RECONNECT);
1808    }
1809
1810    /**
1811     * Initiate a re-association to AP
1812     */
1813    public void reassociateCommand() {
1814        sendMessage(CMD_REASSOCIATE);
1815    }
1816
1817    /**
1818     * Reload networks and then reconnect; helps load correct data for TLS networks
1819     */
1820
1821    public void reloadTlsNetworksAndReconnect() {
1822        sendMessage(CMD_RELOAD_TLS_AND_RECONNECT);
1823    }
1824
1825    /**
1826     * Add a network synchronously
1827     *
1828     * @return network id of the new network
1829     */
1830    public int syncAddOrUpdateNetwork(AsyncChannel channel, WifiConfiguration config) {
1831        Message resultMsg = channel.sendMessageSynchronously(CMD_ADD_OR_UPDATE_NETWORK, config);
1832        int result = resultMsg.arg1;
1833        resultMsg.recycle();
1834        return result;
1835    }
1836
1837    /**
1838     * Get configured networks synchronously
1839     *
1840     * @param channel
1841     * @return
1842     */
1843
1844    public List<WifiConfiguration> syncGetConfiguredNetworks(int uuid, AsyncChannel channel) {
1845        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_CONFIGURED_NETWORKS, uuid);
1846        List<WifiConfiguration> result = (List<WifiConfiguration>) resultMsg.obj;
1847        resultMsg.recycle();
1848        return result;
1849    }
1850
1851    public List<WifiConfiguration> syncGetPrivilegedConfiguredNetwork(AsyncChannel channel) {
1852        Message resultMsg = channel.sendMessageSynchronously(
1853                CMD_GET_PRIVILEGED_CONFIGURED_NETWORKS);
1854        List<WifiConfiguration> result = (List<WifiConfiguration>) resultMsg.obj;
1855        resultMsg.recycle();
1856        return result;
1857    }
1858
1859    public WifiConfiguration syncGetMatchingWifiConfig(ScanResult scanResult, AsyncChannel channel) {
1860        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_MATCHING_CONFIG, scanResult);
1861        WifiConfiguration config = (WifiConfiguration) resultMsg.obj;
1862        resultMsg.recycle();
1863        return config;
1864    }
1865
1866    /**
1867     * Add or update a Passpoint configuration synchronously.
1868     *
1869     * @param channel Channel for communicating with the state machine
1870     * @param config The configuration to add or update
1871     * @return true on success
1872     */
1873    public boolean syncAddOrUpdatePasspointConfig(AsyncChannel channel,
1874            PasspointConfiguration config, int uid) {
1875        Message resultMsg = channel.sendMessageSynchronously(CMD_ADD_OR_UPDATE_PASSPOINT_CONFIG,
1876                uid, 0, config);
1877        boolean result = (resultMsg.arg1 == SUCCESS);
1878        resultMsg.recycle();
1879        return result;
1880    }
1881
1882    /**
1883     * Remove a Passpoint configuration synchronously.
1884     *
1885     * @param channel Channel for communicating with the state machine
1886     * @param fqdn The FQDN of the Passpoint configuration to remove
1887     * @return true on success
1888     */
1889    public boolean syncRemovePasspointConfig(AsyncChannel channel, String fqdn) {
1890        Message resultMsg = channel.sendMessageSynchronously(CMD_REMOVE_PASSPOINT_CONFIG,
1891                fqdn);
1892        boolean result = (resultMsg.arg1 == SUCCESS);
1893        resultMsg.recycle();
1894        return result;
1895    }
1896
1897    /**
1898     * Get the list of installed Passpoint configurations synchronously.
1899     *
1900     * @param channel Channel for communicating with the state machine
1901     * @return List of {@link PasspointConfiguration}
1902     */
1903    public List<PasspointConfiguration> syncGetPasspointConfigs(AsyncChannel channel) {
1904        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_PASSPOINT_CONFIGS);
1905        List<PasspointConfiguration> result = (List<PasspointConfiguration>) resultMsg.obj;
1906        resultMsg.recycle();
1907        return result;
1908    }
1909
1910    /**
1911     * Get connection statistics synchronously
1912     *
1913     * @param channel
1914     * @return
1915     */
1916
1917    public WifiConnectionStatistics syncGetConnectionStatistics(AsyncChannel channel) {
1918        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_CONNECTION_STATISTICS);
1919        WifiConnectionStatistics result = (WifiConnectionStatistics) resultMsg.obj;
1920        resultMsg.recycle();
1921        return result;
1922    }
1923
1924    /**
1925     * Get adaptors synchronously
1926     */
1927
1928    public int syncGetSupportedFeatures(AsyncChannel channel) {
1929        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_SUPPORTED_FEATURES);
1930        int supportedFeatureSet = resultMsg.arg1;
1931        resultMsg.recycle();
1932
1933        // Mask the feature set against system properties.
1934        boolean disableRtt = mPropertyService.getBoolean("config.disable_rtt", false);
1935        if (disableRtt) {
1936            supportedFeatureSet &=
1937                    ~(WifiManager.WIFI_FEATURE_D2D_RTT | WifiManager.WIFI_FEATURE_D2AP_RTT);
1938        }
1939
1940        return supportedFeatureSet;
1941    }
1942
1943    /**
1944     * Get link layers stats for adapter synchronously
1945     */
1946    public WifiLinkLayerStats syncGetLinkLayerStats(AsyncChannel channel) {
1947        Message resultMsg = channel.sendMessageSynchronously(CMD_GET_LINK_LAYER_STATS);
1948        WifiLinkLayerStats result = (WifiLinkLayerStats) resultMsg.obj;
1949        resultMsg.recycle();
1950        return result;
1951    }
1952
1953    /**
1954     * Delete a network
1955     *
1956     * @param networkId id of the network to be removed
1957     */
1958    public boolean syncRemoveNetwork(AsyncChannel channel, int networkId) {
1959        Message resultMsg = channel.sendMessageSynchronously(CMD_REMOVE_NETWORK, networkId);
1960        boolean result = (resultMsg.arg1 != FAILURE);
1961        resultMsg.recycle();
1962        return result;
1963    }
1964
1965    /**
1966     * Enable a network
1967     *
1968     * @param netId         network id of the network
1969     * @param disableOthers true, if all other networks have to be disabled
1970     * @return {@code true} if the operation succeeds, {@code false} otherwise
1971     */
1972    public boolean syncEnableNetwork(AsyncChannel channel, int netId, boolean disableOthers) {
1973        Message resultMsg = channel.sendMessageSynchronously(CMD_ENABLE_NETWORK, netId,
1974                disableOthers ? 1 : 0);
1975        boolean result = (resultMsg.arg1 != FAILURE);
1976        resultMsg.recycle();
1977        return result;
1978    }
1979
1980    /**
1981     * Disable a network
1982     *
1983     * @param netId network id of the network
1984     * @return {@code true} if the operation succeeds, {@code false} otherwise
1985     */
1986    public boolean syncDisableNetwork(AsyncChannel channel, int netId) {
1987        Message resultMsg = channel.sendMessageSynchronously(WifiManager.DISABLE_NETWORK, netId);
1988        boolean result = (resultMsg.what != WifiManager.DISABLE_NETWORK_FAILED);
1989        resultMsg.recycle();
1990        return result;
1991    }
1992
1993    /**
1994     * Retrieves a WPS-NFC configuration token for the specified network
1995     *
1996     * @return a hex string representation of the WPS-NFC configuration token
1997     */
1998    public String syncGetCurrentNetworkWpsNfcConfigurationToken() {
1999        return mWifiNative.getCurrentNetworkWpsNfcConfigurationToken();
2000    }
2001
2002    public void enableRssiPolling(boolean enabled) {
2003        sendMessage(CMD_ENABLE_RSSI_POLL, enabled ? 1 : 0, 0);
2004    }
2005
2006    /**
2007     * Start filtering Multicast v4 packets
2008     */
2009    public void startFilteringMulticastPackets() {
2010        mIpManager.setMulticastFilter(true);
2011    }
2012
2013    /**
2014     * Stop filtering Multicast v4 packets
2015     */
2016    public void stopFilteringMulticastPackets() {
2017        mIpManager.setMulticastFilter(false);
2018    }
2019
2020    /**
2021     * Set high performance mode of operation.
2022     * Enabling would set active power mode and disable suspend optimizations;
2023     * disabling would set auto power mode and enable suspend optimizations
2024     *
2025     * @param enable true if enable, false otherwise
2026     */
2027    public void setHighPerfModeEnabled(boolean enable) {
2028        sendMessage(CMD_SET_HIGH_PERF_MODE, enable ? 1 : 0, 0);
2029    }
2030
2031
2032    /**
2033     * reset cached SIM credential data
2034     */
2035    public synchronized void resetSimAuthNetworks(boolean simPresent) {
2036        sendMessage(CMD_RESET_SIM_NETWORKS, simPresent ? 1 : 0);
2037    }
2038
2039    /**
2040     * Get Network object of current wifi network
2041     * @return Network object of current wifi network
2042     */
2043    public Network getCurrentNetwork() {
2044        if (mNetworkAgent != null) {
2045            return new Network(mNetworkAgent.netId);
2046        } else {
2047            return null;
2048        }
2049    }
2050
2051    /**
2052     * Enable TDLS for a specific MAC address
2053     */
2054    public void enableTdls(String remoteMacAddress, boolean enable) {
2055        int enabler = enable ? 1 : 0;
2056        sendMessage(CMD_ENABLE_TDLS, enabler, 0, remoteMacAddress);
2057    }
2058
2059    /**
2060     * Send a message indicating bluetooth adapter connection state changed
2061     */
2062    public void sendBluetoothAdapterStateChange(int state) {
2063        sendMessage(CMD_BLUETOOTH_ADAPTER_STATE_CHANGE, state, 0);
2064    }
2065
2066    /**
2067     * Send a message indicating a package has been uninstalled.
2068     */
2069    public void removeAppConfigs(String packageName, int uid) {
2070        // Build partial AppInfo manually - package may not exist in database any more
2071        ApplicationInfo ai = new ApplicationInfo();
2072        ai.packageName = packageName;
2073        ai.uid = uid;
2074        sendMessage(CMD_REMOVE_APP_CONFIGURATIONS, ai);
2075    }
2076
2077    /**
2078     * Send a message indicating a user has been removed.
2079     */
2080    public void removeUserConfigs(int userId) {
2081        sendMessage(CMD_REMOVE_USER_CONFIGURATIONS, userId);
2082    }
2083
2084    /**
2085     * Save configuration on supplicant
2086     *
2087     * @return {@code true} if the operation succeeds, {@code false} otherwise
2088     * <p/>
2089     * TODO: deprecate this
2090     */
2091    public boolean syncSaveConfig(AsyncChannel channel) {
2092        Message resultMsg = channel.sendMessageSynchronously(CMD_SAVE_CONFIG);
2093        boolean result = (resultMsg.arg1 != FAILURE);
2094        resultMsg.recycle();
2095        return result;
2096    }
2097
2098    public void updateBatteryWorkSource(WorkSource newSource) {
2099        synchronized (mRunningWifiUids) {
2100            try {
2101                if (newSource != null) {
2102                    mRunningWifiUids.set(newSource);
2103                }
2104                if (mIsRunning) {
2105                    if (mReportedRunning) {
2106                        // If the work source has changed since last time, need
2107                        // to remove old work from battery stats.
2108                        if (mLastRunningWifiUids.diff(mRunningWifiUids)) {
2109                            mBatteryStats.noteWifiRunningChanged(mLastRunningWifiUids,
2110                                    mRunningWifiUids);
2111                            mLastRunningWifiUids.set(mRunningWifiUids);
2112                        }
2113                    } else {
2114                        // Now being started, report it.
2115                        mBatteryStats.noteWifiRunning(mRunningWifiUids);
2116                        mLastRunningWifiUids.set(mRunningWifiUids);
2117                        mReportedRunning = true;
2118                    }
2119                } else {
2120                    if (mReportedRunning) {
2121                        // Last reported we were running, time to stop.
2122                        mBatteryStats.noteWifiStopped(mLastRunningWifiUids);
2123                        mLastRunningWifiUids.clear();
2124                        mReportedRunning = false;
2125                    }
2126                }
2127                mWakeLock.setWorkSource(newSource);
2128            } catch (RemoteException ignore) {
2129            }
2130        }
2131    }
2132
2133    public void dumpIpManager(FileDescriptor fd, PrintWriter pw, String[] args) {
2134        mIpManager.dump(fd, pw, args);
2135    }
2136
2137    @Override
2138    public void dump(FileDescriptor fd, PrintWriter pw, String[] args) {
2139        super.dump(fd, pw, args);
2140        mSupplicantStateTracker.dump(fd, pw, args);
2141        pw.println("mLinkProperties " + mLinkProperties);
2142        pw.println("mWifiInfo " + mWifiInfo);
2143        pw.println("mDhcpResults " + mDhcpResults);
2144        pw.println("mNetworkInfo " + mNetworkInfo);
2145        pw.println("mLastSignalLevel " + mLastSignalLevel);
2146        pw.println("mLastBssid " + mLastBssid);
2147        pw.println("mLastNetworkId " + mLastNetworkId);
2148        pw.println("mOperationalMode " + mOperationalMode);
2149        pw.println("mUserWantsSuspendOpt " + mUserWantsSuspendOpt);
2150        pw.println("mSuspendOptNeedsDisabled " + mSuspendOptNeedsDisabled);
2151        if (mCountryCode.getCountryCodeSentToDriver() != null) {
2152            pw.println("CountryCode sent to driver " + mCountryCode.getCountryCodeSentToDriver());
2153        } else {
2154            if (mCountryCode.getCountryCode() != null) {
2155                pw.println("CountryCode: " +
2156                        mCountryCode.getCountryCode() + " was not sent to driver");
2157            } else {
2158                pw.println("CountryCode was not initialized");
2159            }
2160        }
2161        if (mNetworkFactory != null) {
2162            mNetworkFactory.dump(fd, pw, args);
2163        } else {
2164            pw.println("mNetworkFactory is not initialized");
2165        }
2166
2167        if (mUntrustedNetworkFactory != null) {
2168            mUntrustedNetworkFactory.dump(fd, pw, args);
2169        } else {
2170            pw.println("mUntrustedNetworkFactory is not initialized");
2171        }
2172        pw.println("Wlan Wake Reasons:" + mWifiNative.getWlanWakeReasonCount());
2173        pw.println();
2174
2175        mWifiConfigManager.dump(fd, pw, args);
2176        pw.println();
2177        mPasspointManager.dump(pw);
2178        pw.println();
2179        mWifiDiagnostics.captureBugReportData(WifiDiagnostics.REPORT_REASON_USER_ACTION);
2180        mWifiDiagnostics.dump(fd, pw, args);
2181        dumpIpManager(fd, pw, args);
2182        if (mWifiConnectivityManager != null) {
2183            mWifiConnectivityManager.dump(fd, pw, args);
2184        } else {
2185            pw.println("mWifiConnectivityManager is not initialized");
2186        }
2187    }
2188
2189    public void handleUserSwitch(int userId) {
2190        sendMessage(CMD_USER_SWITCH, userId);
2191    }
2192
2193    public void handleUserUnlock(int userId) {
2194        sendMessage(CMD_USER_UNLOCK, userId);
2195    }
2196
2197    public void handleUserStop(int userId) {
2198        sendMessage(CMD_USER_STOP, userId);
2199    }
2200
2201    /**
2202     * ******************************************************
2203     * Internal private functions
2204     * ******************************************************
2205     */
2206
2207    private void logStateAndMessage(Message message, State state) {
2208        messageHandlingStatus = 0;
2209        if (mVerboseLoggingEnabled) {
2210            logd(" " + state.getClass().getSimpleName() + " " + getLogRecString(message));
2211        }
2212    }
2213
2214    @Override
2215    protected boolean recordLogRec(Message msg) {
2216        switch (msg.what) {
2217            case CMD_RSSI_POLL:
2218                return mVerboseLoggingEnabled;
2219            default:
2220                return true;
2221        }
2222    }
2223
2224    /**
2225     * Return the additional string to be logged by LogRec, default
2226     *
2227     * @param msg that was processed
2228     * @return information to be logged as a String
2229     */
2230    @Override
2231    protected String getLogRecString(Message msg) {
2232        WifiConfiguration config;
2233        Long now;
2234        String report;
2235        String key;
2236        StringBuilder sb = new StringBuilder();
2237        if (mScreenOn) {
2238            sb.append("!");
2239        }
2240        if (messageHandlingStatus != MESSAGE_HANDLING_STATUS_UNKNOWN) {
2241            sb.append("(").append(messageHandlingStatus).append(")");
2242        }
2243        sb.append(smToString(msg));
2244        if (msg.sendingUid > 0 && msg.sendingUid != Process.WIFI_UID) {
2245            sb.append(" uid=" + msg.sendingUid);
2246        }
2247        sb.append(" rt=").append(mClock.getUptimeSinceBootMillis());
2248        sb.append("/").append(mClock.getElapsedSinceBootMillis());
2249        switch (msg.what) {
2250            case CMD_START_SCAN:
2251                now = mClock.getWallClockMillis();
2252                sb.append(" ");
2253                sb.append(Integer.toString(msg.arg1));
2254                sb.append(" ");
2255                sb.append(Integer.toString(msg.arg2));
2256                sb.append(" ic=");
2257                sb.append(Integer.toString(sScanAlarmIntentCount));
2258                if (msg.obj != null) {
2259                    Bundle bundle = (Bundle) msg.obj;
2260                    Long request = bundle.getLong(SCAN_REQUEST_TIME, 0);
2261                    if (request != 0) {
2262                        sb.append(" proc(ms):").append(now - request);
2263                    }
2264                }
2265                if (mIsScanOngoing) sb.append(" onGoing");
2266                if (mIsFullScanOngoing) sb.append(" full");
2267                sb.append(" rssi=").append(mWifiInfo.getRssi());
2268                sb.append(" f=").append(mWifiInfo.getFrequency());
2269                sb.append(" sc=").append(mWifiInfo.score);
2270                sb.append(" link=").append(mWifiInfo.getLinkSpeed());
2271                sb.append(String.format(" tx=%.1f,", mWifiInfo.txSuccessRate));
2272                sb.append(String.format(" %.1f,", mWifiInfo.txRetriesRate));
2273                sb.append(String.format(" %.1f ", mWifiInfo.txBadRate));
2274                sb.append(String.format(" rx=%.1f", mWifiInfo.rxSuccessRate));
2275                if (lastScanFreqs != null) {
2276                    sb.append(" list=");
2277                    for(int freq : lastScanFreqs) {
2278                        sb.append(freq).append(",");
2279                    }
2280                }
2281                report = reportOnTime();
2282                if (report != null) {
2283                    sb.append(" ").append(report);
2284                }
2285                break;
2286            case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
2287                sb.append(" ");
2288                sb.append(Integer.toString(msg.arg1));
2289                sb.append(" ");
2290                sb.append(Integer.toString(msg.arg2));
2291                StateChangeResult stateChangeResult = (StateChangeResult) msg.obj;
2292                if (stateChangeResult != null) {
2293                    sb.append(stateChangeResult.toString());
2294                }
2295                break;
2296            case WifiManager.SAVE_NETWORK:
2297                sb.append(" ");
2298                sb.append(Integer.toString(msg.arg1));
2299                sb.append(" ");
2300                sb.append(Integer.toString(msg.arg2));
2301                config = (WifiConfiguration) msg.obj;
2302                if (config != null) {
2303                    sb.append(" ").append(config.configKey());
2304                    sb.append(" nid=").append(config.networkId);
2305                    if (config.hiddenSSID) {
2306                        sb.append(" hidden");
2307                    }
2308                    if (config.preSharedKey != null
2309                            && !config.preSharedKey.equals("*")) {
2310                        sb.append(" hasPSK");
2311                    }
2312                    if (config.ephemeral) {
2313                        sb.append(" ephemeral");
2314                    }
2315                    if (config.selfAdded) {
2316                        sb.append(" selfAdded");
2317                    }
2318                    sb.append(" cuid=").append(config.creatorUid);
2319                    sb.append(" suid=").append(config.lastUpdateUid);
2320                }
2321                break;
2322            case WifiManager.FORGET_NETWORK:
2323                sb.append(" ");
2324                sb.append(Integer.toString(msg.arg1));
2325                sb.append(" ");
2326                sb.append(Integer.toString(msg.arg2));
2327                config = (WifiConfiguration) msg.obj;
2328                if (config != null) {
2329                    sb.append(" ").append(config.configKey());
2330                    sb.append(" nid=").append(config.networkId);
2331                    if (config.hiddenSSID) {
2332                        sb.append(" hidden");
2333                    }
2334                    if (config.preSharedKey != null) {
2335                        sb.append(" hasPSK");
2336                    }
2337                    if (config.ephemeral) {
2338                        sb.append(" ephemeral");
2339                    }
2340                    if (config.selfAdded) {
2341                        sb.append(" selfAdded");
2342                    }
2343                    sb.append(" cuid=").append(config.creatorUid);
2344                    sb.append(" suid=").append(config.lastUpdateUid);
2345                    WifiConfiguration.NetworkSelectionStatus netWorkSelectionStatus =
2346                            config.getNetworkSelectionStatus();
2347                    sb.append(" ajst=").append(
2348                            netWorkSelectionStatus.getNetworkStatusString());
2349                }
2350                break;
2351            case WifiMonitor.ASSOCIATION_REJECTION_EVENT:
2352                sb.append(" ");
2353                sb.append(" timedOut=" + Integer.toString(msg.arg1));
2354                sb.append(" ");
2355                sb.append(Integer.toString(msg.arg2));
2356                String bssid = (String) msg.obj;
2357                if (bssid != null && bssid.length() > 0) {
2358                    sb.append(" ");
2359                    sb.append(bssid);
2360                }
2361                sb.append(" blacklist=" + Boolean.toString(didBlackListBSSID));
2362                break;
2363            case WifiMonitor.SCAN_RESULTS_EVENT:
2364                sb.append(" ");
2365                sb.append(Integer.toString(msg.arg1));
2366                sb.append(" ");
2367                sb.append(Integer.toString(msg.arg2));
2368                if (mScanResults != null) {
2369                    sb.append(" found=");
2370                    sb.append(mScanResults.size());
2371                }
2372                sb.append(" known=").append(mNumScanResultsKnown);
2373                sb.append(" got=").append(mNumScanResultsReturned);
2374                sb.append(String.format(" bcn=%d", mRunningBeaconCount));
2375                sb.append(String.format(" con=%d", mConnectionReqCount));
2376                sb.append(String.format(" untrustedcn=%d", mUntrustedReqCount));
2377                key = mWifiConfigManager.getLastSelectedNetworkConfigKey();
2378                if (key != null) {
2379                    sb.append(" last=").append(key);
2380                }
2381                break;
2382            case WifiMonitor.SCAN_FAILED_EVENT:
2383                break;
2384            case WifiMonitor.NETWORK_CONNECTION_EVENT:
2385                sb.append(" ");
2386                sb.append(Integer.toString(msg.arg1));
2387                sb.append(" ");
2388                sb.append(Integer.toString(msg.arg2));
2389                sb.append(" ").append(mLastBssid);
2390                sb.append(" nid=").append(mLastNetworkId);
2391                config = getCurrentWifiConfiguration();
2392                if (config != null) {
2393                    sb.append(" ").append(config.configKey());
2394                }
2395                key = mWifiConfigManager.getLastSelectedNetworkConfigKey();
2396                if (key != null) {
2397                    sb.append(" last=").append(key);
2398                }
2399                break;
2400            case CMD_TARGET_BSSID:
2401            case CMD_ASSOCIATED_BSSID:
2402                sb.append(" ");
2403                sb.append(Integer.toString(msg.arg1));
2404                sb.append(" ");
2405                sb.append(Integer.toString(msg.arg2));
2406                if (msg.obj != null) {
2407                    sb.append(" BSSID=").append((String) msg.obj);
2408                }
2409                if (mTargetRoamBSSID != null) {
2410                    sb.append(" Target=").append(mTargetRoamBSSID);
2411                }
2412                sb.append(" roam=").append(Boolean.toString(mIsAutoRoaming));
2413                break;
2414            case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
2415                if (msg.obj != null) {
2416                    sb.append(" ").append((String) msg.obj);
2417                }
2418                sb.append(" nid=").append(msg.arg1);
2419                sb.append(" reason=").append(msg.arg2);
2420                if (mLastBssid != null) {
2421                    sb.append(" lastbssid=").append(mLastBssid);
2422                }
2423                if (mWifiInfo.getFrequency() != -1) {
2424                    sb.append(" freq=").append(mWifiInfo.getFrequency());
2425                    sb.append(" rssi=").append(mWifiInfo.getRssi());
2426                }
2427                if (isLinkDebouncing()) {
2428                    sb.append(" debounce");
2429                }
2430                break;
2431            case CMD_RSSI_POLL:
2432            case CMD_UNWANTED_NETWORK:
2433            case WifiManager.RSSI_PKTCNT_FETCH:
2434                sb.append(" ");
2435                sb.append(Integer.toString(msg.arg1));
2436                sb.append(" ");
2437                sb.append(Integer.toString(msg.arg2));
2438                if (mWifiInfo.getSSID() != null)
2439                    if (mWifiInfo.getSSID() != null)
2440                        sb.append(" ").append(mWifiInfo.getSSID());
2441                if (mWifiInfo.getBSSID() != null)
2442                    sb.append(" ").append(mWifiInfo.getBSSID());
2443                sb.append(" rssi=").append(mWifiInfo.getRssi());
2444                sb.append(" f=").append(mWifiInfo.getFrequency());
2445                sb.append(" sc=").append(mWifiInfo.score);
2446                sb.append(" link=").append(mWifiInfo.getLinkSpeed());
2447                sb.append(String.format(" tx=%.1f,", mWifiInfo.txSuccessRate));
2448                sb.append(String.format(" %.1f,", mWifiInfo.txRetriesRate));
2449                sb.append(String.format(" %.1f ", mWifiInfo.txBadRate));
2450                sb.append(String.format(" rx=%.1f", mWifiInfo.rxSuccessRate));
2451                sb.append(String.format(" bcn=%d", mRunningBeaconCount));
2452                report = reportOnTime();
2453                if (report != null) {
2454                    sb.append(" ").append(report);
2455                }
2456                if (mWifiScoreReport.isLastReportValid()) {
2457                    sb.append(mWifiScoreReport.getLastReport());
2458                }
2459                break;
2460            case CMD_START_CONNECT:
2461            case WifiManager.CONNECT_NETWORK:
2462                sb.append(" ");
2463                sb.append(Integer.toString(msg.arg1));
2464                sb.append(" ");
2465                sb.append(Integer.toString(msg.arg2));
2466                config = mWifiConfigManager.getConfiguredNetwork(msg.arg1);
2467                if (config != null) {
2468                    sb.append(" ").append(config.configKey());
2469                    if (config.visibility != null) {
2470                        sb.append(" ").append(config.visibility.toString());
2471                    }
2472                }
2473                if (mTargetRoamBSSID != null) {
2474                    sb.append(" ").append(mTargetRoamBSSID);
2475                }
2476                sb.append(" roam=").append(Boolean.toString(mIsAutoRoaming));
2477                config = getCurrentWifiConfiguration();
2478                if (config != null) {
2479                    sb.append(config.configKey());
2480                    if (config.visibility != null) {
2481                        sb.append(" ").append(config.visibility.toString());
2482                    }
2483                }
2484                break;
2485            case CMD_START_ROAM:
2486                sb.append(" ");
2487                sb.append(Integer.toString(msg.arg1));
2488                sb.append(" ");
2489                sb.append(Integer.toString(msg.arg2));
2490                ScanResult result = (ScanResult) msg.obj;
2491                if (result != null) {
2492                    now = mClock.getWallClockMillis();
2493                    sb.append(" bssid=").append(result.BSSID);
2494                    sb.append(" rssi=").append(result.level);
2495                    sb.append(" freq=").append(result.frequency);
2496                    if (result.seen > 0 && result.seen < now) {
2497                        sb.append(" seen=").append(now - result.seen);
2498                    } else {
2499                        // Somehow the timestamp for this scan result is inconsistent
2500                        sb.append(" !seen=").append(result.seen);
2501                    }
2502                }
2503                if (mTargetRoamBSSID != null) {
2504                    sb.append(" ").append(mTargetRoamBSSID);
2505                }
2506                sb.append(" roam=").append(Boolean.toString(mIsAutoRoaming));
2507                sb.append(" fail count=").append(Integer.toString(mRoamFailCount));
2508                break;
2509            case CMD_ADD_OR_UPDATE_NETWORK:
2510                sb.append(" ");
2511                sb.append(Integer.toString(msg.arg1));
2512                sb.append(" ");
2513                sb.append(Integer.toString(msg.arg2));
2514                if (msg.obj != null) {
2515                    config = (WifiConfiguration) msg.obj;
2516                    sb.append(" ").append(config.configKey());
2517                    sb.append(" prio=").append(config.priority);
2518                    sb.append(" status=").append(config.status);
2519                    if (config.BSSID != null) {
2520                        sb.append(" ").append(config.BSSID);
2521                    }
2522                    WifiConfiguration curConfig = getCurrentWifiConfiguration();
2523                    if (curConfig != null) {
2524                        if (curConfig.configKey().equals(config.configKey())) {
2525                            sb.append(" is current");
2526                        } else {
2527                            sb.append(" current=").append(curConfig.configKey());
2528                            sb.append(" prio=").append(curConfig.priority);
2529                            sb.append(" status=").append(curConfig.status);
2530                        }
2531                    }
2532                }
2533                break;
2534            case WifiManager.DISABLE_NETWORK:
2535            case CMD_ENABLE_NETWORK:
2536                sb.append(" ");
2537                sb.append(Integer.toString(msg.arg1));
2538                sb.append(" ");
2539                sb.append(Integer.toString(msg.arg2));
2540                key = mWifiConfigManager.getLastSelectedNetworkConfigKey();
2541                if (key != null) {
2542                    sb.append(" last=").append(key);
2543                }
2544                config = mWifiConfigManager.getConfiguredNetwork(msg.arg1);
2545                if (config != null && (key == null || !config.configKey().equals(key))) {
2546                    sb.append(" target=").append(key);
2547                }
2548                break;
2549            case CMD_GET_CONFIGURED_NETWORKS:
2550                sb.append(" ");
2551                sb.append(Integer.toString(msg.arg1));
2552                sb.append(" ");
2553                sb.append(Integer.toString(msg.arg2));
2554                sb.append(" num=").append(mWifiConfigManager.getConfiguredNetworks().size());
2555                break;
2556            case DhcpClient.CMD_PRE_DHCP_ACTION:
2557                sb.append(" ");
2558                sb.append(Integer.toString(msg.arg1));
2559                sb.append(" ");
2560                sb.append(Integer.toString(msg.arg2));
2561                sb.append(" txpkts=").append(mWifiInfo.txSuccess);
2562                sb.append(",").append(mWifiInfo.txBad);
2563                sb.append(",").append(mWifiInfo.txRetries);
2564                break;
2565            case DhcpClient.CMD_POST_DHCP_ACTION:
2566                sb.append(" ");
2567                sb.append(Integer.toString(msg.arg1));
2568                sb.append(" ");
2569                sb.append(Integer.toString(msg.arg2));
2570                if (msg.arg1 == DhcpClient.DHCP_SUCCESS) {
2571                    sb.append(" OK ");
2572                } else if (msg.arg1 == DhcpClient.DHCP_FAILURE) {
2573                    sb.append(" FAIL ");
2574                }
2575                if (mLinkProperties != null) {
2576                    sb.append(" ");
2577                    sb.append(getLinkPropertiesSummary(mLinkProperties));
2578                }
2579                break;
2580            case WifiP2pServiceImpl.P2P_CONNECTION_CHANGED:
2581                sb.append(" ");
2582                sb.append(Integer.toString(msg.arg1));
2583                sb.append(" ");
2584                sb.append(Integer.toString(msg.arg2));
2585                if (msg.obj != null) {
2586                    NetworkInfo info = (NetworkInfo) msg.obj;
2587                    NetworkInfo.State state = info.getState();
2588                    NetworkInfo.DetailedState detailedState = info.getDetailedState();
2589                    if (state != null) {
2590                        sb.append(" st=").append(state);
2591                    }
2592                    if (detailedState != null) {
2593                        sb.append("/").append(detailedState);
2594                    }
2595                }
2596                break;
2597            case CMD_IP_CONFIGURATION_LOST:
2598                int count = -1;
2599                WifiConfiguration c = getCurrentWifiConfiguration();
2600                if (c != null) {
2601                    count = c.getNetworkSelectionStatus().getDisableReasonCounter(
2602                            WifiConfiguration.NetworkSelectionStatus.DISABLED_DHCP_FAILURE);
2603                }
2604                sb.append(" ");
2605                sb.append(Integer.toString(msg.arg1));
2606                sb.append(" ");
2607                sb.append(Integer.toString(msg.arg2));
2608                sb.append(" failures: ");
2609                sb.append(Integer.toString(count));
2610                sb.append("/");
2611                sb.append(Integer.toString(mFacade.getIntegerSetting(
2612                        mContext, Settings.Global.WIFI_MAX_DHCP_RETRY_COUNT, 0)));
2613                if (mWifiInfo.getBSSID() != null) {
2614                    sb.append(" ").append(mWifiInfo.getBSSID());
2615                }
2616                sb.append(String.format(" bcn=%d", mRunningBeaconCount));
2617                break;
2618            case CMD_UPDATE_LINKPROPERTIES:
2619                sb.append(" ");
2620                sb.append(Integer.toString(msg.arg1));
2621                sb.append(" ");
2622                sb.append(Integer.toString(msg.arg2));
2623                if (mLinkProperties != null) {
2624                    sb.append(" ");
2625                    sb.append(getLinkPropertiesSummary(mLinkProperties));
2626                }
2627                break;
2628            case CMD_IP_REACHABILITY_LOST:
2629                if (msg.obj != null) {
2630                    sb.append(" ").append((String) msg.obj);
2631                }
2632                break;
2633            case CMD_INSTALL_PACKET_FILTER:
2634                sb.append(" len=" + ((byte[])msg.obj).length);
2635                break;
2636            case CMD_SET_FALLBACK_PACKET_FILTERING:
2637                sb.append(" enabled=" + (boolean)msg.obj);
2638                break;
2639            case CMD_ROAM_WATCHDOG_TIMER:
2640                sb.append(" ");
2641                sb.append(Integer.toString(msg.arg1));
2642                sb.append(" ");
2643                sb.append(Integer.toString(msg.arg2));
2644                sb.append(" cur=").append(roamWatchdogCount);
2645                break;
2646            case CMD_DISCONNECTING_WATCHDOG_TIMER:
2647                sb.append(" ");
2648                sb.append(Integer.toString(msg.arg1));
2649                sb.append(" ");
2650                sb.append(Integer.toString(msg.arg2));
2651                sb.append(" cur=").append(disconnectingWatchdogCount);
2652                break;
2653            case CMD_DISABLE_P2P_WATCHDOG_TIMER:
2654                sb.append(" ");
2655                sb.append(Integer.toString(msg.arg1));
2656                sb.append(" ");
2657                sb.append(Integer.toString(msg.arg2));
2658                sb.append(" cur=").append(mDisableP2pWatchdogCount);
2659                break;
2660            case CMD_START_RSSI_MONITORING_OFFLOAD:
2661            case CMD_STOP_RSSI_MONITORING_OFFLOAD:
2662            case CMD_RSSI_THRESHOLD_BREACH:
2663                sb.append(" rssi=");
2664                sb.append(Integer.toString(msg.arg1));
2665                sb.append(" thresholds=");
2666                sb.append(Arrays.toString(mRssiRanges));
2667                break;
2668            case CMD_USER_SWITCH:
2669                sb.append(" userId=");
2670                sb.append(Integer.toString(msg.arg1));
2671                break;
2672            case CMD_IPV4_PROVISIONING_SUCCESS:
2673                sb.append(" ");
2674                if (msg.arg1 == DhcpClient.DHCP_SUCCESS) {
2675                    sb.append("DHCP_OK");
2676                } else if (msg.arg1 == CMD_STATIC_IP_SUCCESS) {
2677                    sb.append("STATIC_OK");
2678                } else {
2679                    sb.append(Integer.toString(msg.arg1));
2680                }
2681                break;
2682            case CMD_IPV4_PROVISIONING_FAILURE:
2683                sb.append(" ");
2684                if (msg.arg1 == DhcpClient.DHCP_FAILURE) {
2685                    sb.append("DHCP_FAIL");
2686                } else if (msg.arg1 == CMD_STATIC_IP_FAILURE) {
2687                    sb.append("STATIC_FAIL");
2688                } else {
2689                    sb.append(Integer.toString(msg.arg1));
2690                }
2691                break;
2692            default:
2693                sb.append(" ");
2694                sb.append(Integer.toString(msg.arg1));
2695                sb.append(" ");
2696                sb.append(Integer.toString(msg.arg2));
2697                break;
2698        }
2699
2700        return sb.toString();
2701    }
2702
2703    private void handleScreenStateChanged(boolean screenOn) {
2704        mScreenOn = screenOn;
2705        if (mVerboseLoggingEnabled) {
2706            logd(" handleScreenStateChanged Enter: screenOn=" + screenOn
2707                    + " mUserWantsSuspendOpt=" + mUserWantsSuspendOpt
2708                    + " state " + getCurrentState().getName()
2709                    + " suppState:" + mSupplicantStateTracker.getSupplicantStateName());
2710        }
2711        enableRssiPolling(screenOn);
2712        if (mUserWantsSuspendOpt.get()) {
2713            int shouldReleaseWakeLock = 0;
2714            if (screenOn) {
2715                sendMessage(CMD_SET_SUSPEND_OPT_ENABLED, 0, shouldReleaseWakeLock);
2716            } else {
2717                if (isConnected()) {
2718                    // Allow 2s for suspend optimizations to be set
2719                    mSuspendWakeLock.acquire(2000);
2720                    shouldReleaseWakeLock = 1;
2721                }
2722                sendMessage(CMD_SET_SUSPEND_OPT_ENABLED, 1, shouldReleaseWakeLock);
2723            }
2724        }
2725
2726        getWifiLinkLayerStats();
2727        mOnTimeScreenStateChange = mOnTime;
2728        lastScreenStateChangeTimeStamp = lastLinkLayerStatsUpdate;
2729
2730        mWifiMetrics.setScreenState(screenOn);
2731
2732        if (mWifiConnectivityManager != null) {
2733            mWifiConnectivityManager.handleScreenStateChanged(screenOn);
2734        }
2735
2736        if (mVerboseLoggingEnabled) log("handleScreenStateChanged Exit: " + screenOn);
2737    }
2738
2739    private void checkAndSetConnectivityInstance() {
2740        if (mCm == null) {
2741            mCm = (ConnectivityManager) mContext.getSystemService(Context.CONNECTIVITY_SERVICE);
2742        }
2743    }
2744
2745    private void setSuspendOptimizationsNative(int reason, boolean enabled) {
2746        if (mVerboseLoggingEnabled) {
2747            log("setSuspendOptimizationsNative: " + reason + " " + enabled
2748                    + " -want " + mUserWantsSuspendOpt.get()
2749                    + " stack:" + Thread.currentThread().getStackTrace()[2].getMethodName()
2750                    + " - " + Thread.currentThread().getStackTrace()[3].getMethodName()
2751                    + " - " + Thread.currentThread().getStackTrace()[4].getMethodName()
2752                    + " - " + Thread.currentThread().getStackTrace()[5].getMethodName());
2753        }
2754        //mWifiNative.setSuspendOptimizations(enabled);
2755
2756        if (enabled) {
2757            mSuspendOptNeedsDisabled &= ~reason;
2758            /* None of dhcp, screen or highperf need it disabled and user wants it enabled */
2759            if (mSuspendOptNeedsDisabled == 0 && mUserWantsSuspendOpt.get()) {
2760                if (mVerboseLoggingEnabled) {
2761                    log("setSuspendOptimizationsNative do it " + reason + " " + enabled
2762                            + " stack:" + Thread.currentThread().getStackTrace()[2].getMethodName()
2763                            + " - " + Thread.currentThread().getStackTrace()[3].getMethodName()
2764                            + " - " + Thread.currentThread().getStackTrace()[4].getMethodName()
2765                            + " - " + Thread.currentThread().getStackTrace()[5].getMethodName());
2766                }
2767                mWifiNative.setSuspendOptimizations(true);
2768            }
2769        } else {
2770            mSuspendOptNeedsDisabled |= reason;
2771            mWifiNative.setSuspendOptimizations(false);
2772        }
2773    }
2774
2775    private void setSuspendOptimizations(int reason, boolean enabled) {
2776        if (mVerboseLoggingEnabled) log("setSuspendOptimizations: " + reason + " " + enabled);
2777        if (enabled) {
2778            mSuspendOptNeedsDisabled &= ~reason;
2779        } else {
2780            mSuspendOptNeedsDisabled |= reason;
2781        }
2782        if (mVerboseLoggingEnabled) log("mSuspendOptNeedsDisabled " + mSuspendOptNeedsDisabled);
2783    }
2784
2785    private void setWifiState(int wifiState) {
2786        final int previousWifiState = mWifiState.get();
2787
2788        try {
2789            if (wifiState == WIFI_STATE_ENABLED) {
2790                mBatteryStats.noteWifiOn();
2791            } else if (wifiState == WIFI_STATE_DISABLED) {
2792                mBatteryStats.noteWifiOff();
2793            }
2794        } catch (RemoteException e) {
2795            loge("Failed to note battery stats in wifi");
2796        }
2797
2798        mWifiState.set(wifiState);
2799
2800        if (mVerboseLoggingEnabled) log("setWifiState: " + syncGetWifiStateByName());
2801
2802        final Intent intent = new Intent(WifiManager.WIFI_STATE_CHANGED_ACTION);
2803        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
2804        intent.putExtra(WifiManager.EXTRA_WIFI_STATE, wifiState);
2805        intent.putExtra(WifiManager.EXTRA_PREVIOUS_WIFI_STATE, previousWifiState);
2806        mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
2807    }
2808
2809    private void setWifiApState(int wifiApState, int reason, String ifaceName, int mode) {
2810        final int previousWifiApState = mWifiApState.get();
2811
2812        try {
2813            if (wifiApState == WIFI_AP_STATE_ENABLED) {
2814                mBatteryStats.noteWifiOn();
2815            } else if (wifiApState == WIFI_AP_STATE_DISABLED) {
2816                mBatteryStats.noteWifiOff();
2817            }
2818        } catch (RemoteException e) {
2819            loge("Failed to note battery stats in wifi");
2820        }
2821
2822        // Update state
2823        mWifiApState.set(wifiApState);
2824
2825        if (mVerboseLoggingEnabled) log("setWifiApState: " + syncGetWifiApStateByName());
2826
2827        final Intent intent = new Intent(WifiManager.WIFI_AP_STATE_CHANGED_ACTION);
2828        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
2829        intent.putExtra(WifiManager.EXTRA_WIFI_AP_STATE, wifiApState);
2830        intent.putExtra(WifiManager.EXTRA_PREVIOUS_WIFI_AP_STATE, previousWifiApState);
2831        if (wifiApState == WifiManager.WIFI_AP_STATE_FAILED) {
2832            //only set reason number when softAP start failed
2833            intent.putExtra(WifiManager.EXTRA_WIFI_AP_FAILURE_REASON, reason);
2834        }
2835
2836        if (ifaceName == null) {
2837            loge("Updating wifiApState with a null iface name");
2838        }
2839        intent.putExtra(WifiManager.EXTRA_WIFI_AP_INTERFACE_NAME, ifaceName);
2840        intent.putExtra(WifiManager.EXTRA_WIFI_AP_MODE, mode);
2841
2842        mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
2843    }
2844
2845    private void setScanResults() {
2846        mNumScanResultsKnown = 0;
2847        mNumScanResultsReturned = 0;
2848
2849        ArrayList<ScanDetail> scanResults = mWifiNative.getScanResults();
2850
2851        if (scanResults.isEmpty()) {
2852            mScanResults = new ArrayList<>();
2853            return;
2854        }
2855
2856        // TODO(b/31065385): mWifiConfigManager.trimANQPCache(false);
2857
2858        boolean connected = mLastBssid != null;
2859        long activeBssid = 0L;
2860        if (connected) {
2861            try {
2862                activeBssid = Utils.parseMac(mLastBssid);
2863            } catch (IllegalArgumentException iae) {
2864                connected = false;
2865            }
2866        }
2867
2868        synchronized (mScanResultsLock) {
2869            mScanResults = scanResults;
2870            mNumScanResultsReturned = mScanResults.size();
2871        }
2872
2873        if (isLinkDebouncing()) {
2874            // If debouncing, we dont re-select a SSID or BSSID hence
2875            // there is no need to call the network selection code
2876            // in WifiAutoJoinController, instead,
2877            // just try to reconnect to the same SSID by triggering a roam
2878            // The third parameter 1 means roam not from network selection but debouncing
2879            sendMessage(CMD_START_ROAM, mLastNetworkId, 1, null);
2880        }
2881    }
2882
2883    /*
2884     * Fetch RSSI, linkspeed, and frequency on current connection
2885     */
2886    private void fetchRssiLinkSpeedAndFrequencyNative() {
2887        Integer newRssi = null;
2888        Integer newLinkSpeed = null;
2889        Integer newFrequency = null;
2890        WifiNative.SignalPollResult pollResult = mWifiNative.signalPoll();
2891        if (pollResult == null) {
2892            return;
2893        }
2894
2895        newRssi = pollResult.currentRssi;
2896        newLinkSpeed = pollResult.txBitrate;
2897        newFrequency = pollResult.associationFrequency;
2898
2899        if (mVerboseLoggingEnabled) {
2900            logd("fetchRssiLinkSpeedAndFrequencyNative rssi=" + newRssi +
2901                 " linkspeed=" + newLinkSpeed + " freq=" + newFrequency);
2902        }
2903
2904        if (newRssi != null && newRssi > WifiInfo.INVALID_RSSI && newRssi < WifiInfo.MAX_RSSI) {
2905            // screen out invalid values
2906            /* some implementations avoid negative values by adding 256
2907             * so we need to adjust for that here.
2908             */
2909            if (newRssi > 0) newRssi -= 256;
2910            mWifiInfo.setRssi(newRssi);
2911            /*
2912             * Rather then sending the raw RSSI out every time it
2913             * changes, we precalculate the signal level that would
2914             * be displayed in the status bar, and only send the
2915             * broadcast if that much more coarse-grained number
2916             * changes. This cuts down greatly on the number of
2917             * broadcasts, at the cost of not informing others
2918             * interested in RSSI of all the changes in signal
2919             * level.
2920             */
2921            int newSignalLevel = WifiManager.calculateSignalLevel(newRssi, WifiManager.RSSI_LEVELS);
2922            if (newSignalLevel != mLastSignalLevel) {
2923                updateCapabilities(getCurrentWifiConfiguration());
2924                sendRssiChangeBroadcast(newRssi);
2925            }
2926            mLastSignalLevel = newSignalLevel;
2927        } else {
2928            mWifiInfo.setRssi(WifiInfo.INVALID_RSSI);
2929            updateCapabilities(getCurrentWifiConfiguration());
2930        }
2931
2932        if (newLinkSpeed != null) {
2933            mWifiInfo.setLinkSpeed(newLinkSpeed);
2934        }
2935        if (newFrequency != null && newFrequency > 0) {
2936            if (ScanResult.is5GHz(newFrequency)) {
2937                mWifiConnectionStatistics.num5GhzConnected++;
2938            }
2939            if (ScanResult.is24GHz(newFrequency)) {
2940                mWifiConnectionStatistics.num24GhzConnected++;
2941            }
2942            mWifiInfo.setFrequency(newFrequency);
2943        }
2944        mWifiConfigManager.updateScanDetailCacheFromWifiInfo(mWifiInfo);
2945        /*
2946         * Increment various performance metrics
2947         */
2948        if (newRssi != null && newLinkSpeed != null && newFrequency != null) {
2949            mWifiMetrics.handlePollResult(mWifiInfo);
2950        }
2951    }
2952
2953    // Polling has completed, hence we wont have a score anymore
2954    private void cleanWifiScore() {
2955        mWifiInfo.txBadRate = 0;
2956        mWifiInfo.txSuccessRate = 0;
2957        mWifiInfo.txRetriesRate = 0;
2958        mWifiInfo.rxSuccessRate = 0;
2959        mWifiScoreReport.reset();
2960    }
2961
2962    private void updateLinkProperties(LinkProperties newLp) {
2963        if (mVerboseLoggingEnabled) {
2964            log("Link configuration changed for netId: " + mLastNetworkId
2965                    + " old: " + mLinkProperties + " new: " + newLp);
2966        }
2967        // We own this instance of LinkProperties because IpManager passes us a copy.
2968        mLinkProperties = newLp;
2969        if (mNetworkAgent != null) {
2970            mNetworkAgent.sendLinkProperties(mLinkProperties);
2971        }
2972
2973        if (getNetworkDetailedState() == DetailedState.CONNECTED) {
2974            // If anything has changed and we're already connected, send out a notification.
2975            // TODO: Update all callers to use NetworkCallbacks and delete this.
2976            sendLinkConfigurationChangedBroadcast();
2977        }
2978
2979        if (mVerboseLoggingEnabled) {
2980            StringBuilder sb = new StringBuilder();
2981            sb.append("updateLinkProperties nid: " + mLastNetworkId);
2982            sb.append(" state: " + getNetworkDetailedState());
2983
2984            if (mLinkProperties != null) {
2985                sb.append(" ");
2986                sb.append(getLinkPropertiesSummary(mLinkProperties));
2987            }
2988            logd(sb.toString());
2989        }
2990    }
2991
2992    /**
2993     * Clears all our link properties.
2994     */
2995    private void clearLinkProperties() {
2996        // Clear the link properties obtained from DHCP. The only caller of this
2997        // function has already called IpManager#stop(), which clears its state.
2998        synchronized (mDhcpResultsLock) {
2999            if (mDhcpResults != null) {
3000                mDhcpResults.clear();
3001            }
3002        }
3003
3004        // Now clear the merged link properties.
3005        mLinkProperties.clear();
3006        if (mNetworkAgent != null) mNetworkAgent.sendLinkProperties(mLinkProperties);
3007    }
3008
3009    /**
3010     * try to update default route MAC address.
3011     */
3012    private String updateDefaultRouteMacAddress(int timeout) {
3013        String address = null;
3014        for (RouteInfo route : mLinkProperties.getRoutes()) {
3015            if (route.isDefaultRoute() && route.hasGateway()) {
3016                InetAddress gateway = route.getGateway();
3017                if (gateway instanceof Inet4Address) {
3018                    if (mVerboseLoggingEnabled) {
3019                        logd("updateDefaultRouteMacAddress found Ipv4 default :"
3020                                + gateway.getHostAddress());
3021                    }
3022                    address = macAddressFromRoute(gateway.getHostAddress());
3023                    /* The gateway's MAC address is known */
3024                    if ((address == null) && (timeout > 0)) {
3025                        boolean reachable = false;
3026                        TrafficStats.setThreadStatsTag(TrafficStats.TAG_SYSTEM_PROBE);
3027                        try {
3028                            reachable = gateway.isReachable(timeout);
3029                        } catch (Exception e) {
3030                            loge("updateDefaultRouteMacAddress exception reaching :"
3031                                    + gateway.getHostAddress());
3032
3033                        } finally {
3034                            TrafficStats.clearThreadStatsTag();
3035                            if (reachable == true) {
3036
3037                                address = macAddressFromRoute(gateway.getHostAddress());
3038                                if (mVerboseLoggingEnabled) {
3039                                    logd("updateDefaultRouteMacAddress reachable (tried again) :"
3040                                            + gateway.getHostAddress() + " found " + address);
3041                                }
3042                            }
3043                        }
3044                    }
3045                    if (address != null) {
3046                        mWifiConfigManager.setNetworkDefaultGwMacAddress(mLastNetworkId, address);
3047                    }
3048                }
3049            }
3050        }
3051        return address;
3052    }
3053
3054    private void sendRssiChangeBroadcast(final int newRssi) {
3055        try {
3056            mBatteryStats.noteWifiRssiChanged(newRssi);
3057        } catch (RemoteException e) {
3058            // Won't happen.
3059        }
3060        Intent intent = new Intent(WifiManager.RSSI_CHANGED_ACTION);
3061        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
3062        intent.putExtra(WifiManager.EXTRA_NEW_RSSI, newRssi);
3063        mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
3064    }
3065
3066    private void sendNetworkStateChangeBroadcast(String bssid) {
3067        Intent intent = new Intent(WifiManager.NETWORK_STATE_CHANGED_ACTION);
3068        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
3069        intent.putExtra(WifiManager.EXTRA_NETWORK_INFO, new NetworkInfo(mNetworkInfo));
3070        intent.putExtra(WifiManager.EXTRA_LINK_PROPERTIES, new LinkProperties(mLinkProperties));
3071        if (bssid != null)
3072            intent.putExtra(WifiManager.EXTRA_BSSID, bssid);
3073        if (mNetworkInfo.getDetailedState() == DetailedState.VERIFYING_POOR_LINK ||
3074                mNetworkInfo.getDetailedState() == DetailedState.CONNECTED) {
3075            // We no longer report MAC address to third-parties and our code does
3076            // not rely on this broadcast, so just send the default MAC address.
3077            fetchRssiLinkSpeedAndFrequencyNative();
3078            WifiInfo sentWifiInfo = new WifiInfo(mWifiInfo);
3079            sentWifiInfo.setMacAddress(WifiInfo.DEFAULT_MAC_ADDRESS);
3080            intent.putExtra(WifiManager.EXTRA_WIFI_INFO, sentWifiInfo);
3081        }
3082        mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
3083    }
3084
3085    private WifiInfo getWiFiInfoForUid(int uid) {
3086        if (Binder.getCallingUid() == Process.myUid()) {
3087            return mWifiInfo;
3088        }
3089
3090        WifiInfo result = new WifiInfo(mWifiInfo);
3091        result.setMacAddress(WifiInfo.DEFAULT_MAC_ADDRESS);
3092
3093        IBinder binder = mFacade.getService("package");
3094        IPackageManager packageManager = IPackageManager.Stub.asInterface(binder);
3095
3096        try {
3097            if (packageManager.checkUidPermission(Manifest.permission.LOCAL_MAC_ADDRESS,
3098                    uid) == PackageManager.PERMISSION_GRANTED) {
3099                result.setMacAddress(mWifiInfo.getMacAddress());
3100            }
3101        } catch (RemoteException e) {
3102            Log.e(TAG, "Error checking receiver permission", e);
3103        }
3104
3105        return result;
3106    }
3107
3108    private void sendLinkConfigurationChangedBroadcast() {
3109        Intent intent = new Intent(WifiManager.LINK_CONFIGURATION_CHANGED_ACTION);
3110        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
3111        intent.putExtra(WifiManager.EXTRA_LINK_PROPERTIES, new LinkProperties(mLinkProperties));
3112        mContext.sendBroadcastAsUser(intent, UserHandle.ALL);
3113    }
3114
3115    private void sendSupplicantConnectionChangedBroadcast(boolean connected) {
3116        Intent intent = new Intent(WifiManager.SUPPLICANT_CONNECTION_CHANGE_ACTION);
3117        intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
3118        intent.putExtra(WifiManager.EXTRA_SUPPLICANT_CONNECTED, connected);
3119        mContext.sendBroadcastAsUser(intent, UserHandle.ALL);
3120    }
3121
3122    /**
3123     * Record the detailed state of a network.
3124     *
3125     * @param state the new {@code DetailedState}
3126     */
3127    private boolean setNetworkDetailedState(NetworkInfo.DetailedState state) {
3128        boolean hidden = false;
3129
3130        if (isLinkDebouncing() || mIsAutoRoaming) {
3131            // There is generally a confusion in the system about colluding
3132            // WiFi Layer 2 state (as reported by supplicant) and the Network state
3133            // which leads to multiple confusion.
3134            //
3135            // If link is de-bouncing or roaming, we already have an IP address
3136            // as well we were connected and are doing L2 cycles of
3137            // reconnecting or renewing IP address to check that we still have it
3138            // This L2 link flapping should ne be reflected into the Network state
3139            // which is the state of the WiFi Network visible to Layer 3 and applications
3140            // Note that once debouncing and roaming are completed, we will
3141            // set the Network state to where it should be, or leave it as unchanged
3142            //
3143            hidden = true;
3144        }
3145        if (mVerboseLoggingEnabled) {
3146            log("setDetailed state, old ="
3147                    + mNetworkInfo.getDetailedState() + " and new state=" + state
3148                    + " hidden=" + hidden);
3149        }
3150        if (mNetworkInfo.getExtraInfo() != null && mWifiInfo.getSSID() != null
3151                && !mWifiInfo.getSSID().equals(WifiSsid.NONE)) {
3152            // Always indicate that SSID has changed
3153            if (!mNetworkInfo.getExtraInfo().equals(mWifiInfo.getSSID())) {
3154                if (mVerboseLoggingEnabled) {
3155                    log("setDetailed state send new extra info" + mWifiInfo.getSSID());
3156                }
3157                mNetworkInfo.setExtraInfo(mWifiInfo.getSSID());
3158                sendNetworkStateChangeBroadcast(null);
3159            }
3160        }
3161        if (hidden == true) {
3162            return false;
3163        }
3164
3165        if (state != mNetworkInfo.getDetailedState()) {
3166            mNetworkInfo.setDetailedState(state, null, mWifiInfo.getSSID());
3167            if (mNetworkAgent != null) {
3168                mNetworkAgent.sendNetworkInfo(mNetworkInfo);
3169            }
3170            sendNetworkStateChangeBroadcast(null);
3171            return true;
3172        }
3173        return false;
3174    }
3175
3176    private DetailedState getNetworkDetailedState() {
3177        return mNetworkInfo.getDetailedState();
3178    }
3179
3180    private SupplicantState handleSupplicantStateChange(Message message) {
3181        StateChangeResult stateChangeResult = (StateChangeResult) message.obj;
3182        SupplicantState state = stateChangeResult.state;
3183        // Supplicant state change
3184        // [31-13] Reserved for future use
3185        // [8 - 0] Supplicant state (as defined in SupplicantState.java)
3186        // 50023 supplicant_state_changed (custom|1|5)
3187        mWifiInfo.setSupplicantState(state);
3188        // If we receive a supplicant state change with an empty SSID,
3189        // this implies that wpa_supplicant is already disconnected.
3190        // We should pretend we are still connected when linkDebouncing is on.
3191        if ((stateChangeResult.wifiSsid == null
3192                || stateChangeResult.wifiSsid.toString().isEmpty()) && isLinkDebouncing()) {
3193            return state;
3194        }
3195        // Network id is only valid when we start connecting
3196        if (SupplicantState.isConnecting(state)) {
3197            mWifiInfo.setNetworkId(lookupFrameworkNetworkId(stateChangeResult.networkId));
3198        } else {
3199            mWifiInfo.setNetworkId(WifiConfiguration.INVALID_NETWORK_ID);
3200        }
3201
3202        mWifiInfo.setBSSID(stateChangeResult.BSSID);
3203
3204        mWifiInfo.setSSID(stateChangeResult.wifiSsid);
3205        WifiConfiguration config = getCurrentWifiConfiguration();
3206        if (config != null) {
3207            // Set meteredHint to true if the access network type of the connecting/connected AP
3208            // is a chargeable public network.
3209            ScanDetailCache scanDetailCache = mWifiConfigManager.getScanDetailCacheForNetwork(
3210                    config.networkId);
3211            if (scanDetailCache != null) {
3212                ScanDetail scanDetail = scanDetailCache.getScanDetail(stateChangeResult.BSSID);
3213                if (scanDetail != null) {
3214                    NetworkDetail networkDetail = scanDetail.getNetworkDetail();
3215                    if (networkDetail != null
3216                            && networkDetail.getAnt() == NetworkDetail.Ant.ChargeablePublic) {
3217                        mWifiInfo.setMeteredHint(true);
3218                    }
3219                }
3220            }
3221
3222            mWifiInfo.setEphemeral(config.ephemeral);
3223            if (!mWifiInfo.getMeteredHint()) { // don't override the value if already set.
3224                mWifiInfo.setMeteredHint(config.meteredHint);
3225            }
3226        }
3227
3228        mSupplicantStateTracker.sendMessage(Message.obtain(message));
3229
3230        return state;
3231    }
3232
3233    /**
3234     * Resets the Wi-Fi Connections by clearing any state, resetting any sockets
3235     * using the interface, stopping DHCP & disabling interface
3236     */
3237    private void handleNetworkDisconnect() {
3238        if (mVerboseLoggingEnabled) {
3239            log("handleNetworkDisconnect: Stopping DHCP and clearing IP"
3240                    + " stack:" + Thread.currentThread().getStackTrace()[2].getMethodName()
3241                    + " - " + Thread.currentThread().getStackTrace()[3].getMethodName()
3242                    + " - " + Thread.currentThread().getStackTrace()[4].getMethodName()
3243                    + " - " + Thread.currentThread().getStackTrace()[5].getMethodName());
3244        }
3245
3246        stopRssiMonitoringOffload();
3247
3248        clearTargetBssid("handleNetworkDisconnect");
3249
3250        stopIpManager();
3251
3252        /* Reset data structures */
3253        mWifiScoreReport.reset();
3254        mWifiInfo.reset();
3255        mIsLinkDebouncing = false;
3256        /* Reset roaming parameters */
3257        mIsAutoRoaming = false;
3258
3259        setNetworkDetailedState(DetailedState.DISCONNECTED);
3260        if (mNetworkAgent != null) {
3261            mNetworkAgent.sendNetworkInfo(mNetworkInfo);
3262            mNetworkAgent = null;
3263        }
3264
3265        /* Clear network properties */
3266        clearLinkProperties();
3267
3268        /* Cend event to CM & network change broadcast */
3269        sendNetworkStateChangeBroadcast(mLastBssid);
3270
3271        mLastBssid = null;
3272        registerDisconnected();
3273        mLastNetworkId = WifiConfiguration.INVALID_NETWORK_ID;
3274    }
3275
3276    private void handleSupplicantConnectionLoss(boolean killSupplicant) {
3277        /* Socket connection can be lost when we do a graceful shutdown
3278        * or when the driver is hung. Ensure supplicant is stopped here.
3279        */
3280        if (killSupplicant) {
3281            mWifiMonitor.stopAllMonitoring();
3282            if (!mWifiNative.disableSupplicant()) {
3283                loge("Failed to disable supplicant after connection loss");
3284            }
3285        }
3286        mWifiNative.closeSupplicantConnection();
3287        sendSupplicantConnectionChangedBroadcast(false);
3288        setWifiState(WIFI_STATE_DISABLED);
3289    }
3290
3291    void handlePreDhcpSetup() {
3292        if (!mBluetoothConnectionActive) {
3293            /*
3294             * There are problems setting the Wi-Fi driver's power
3295             * mode to active when bluetooth coexistence mode is
3296             * enabled or sense.
3297             * <p>
3298             * We set Wi-Fi to active mode when
3299             * obtaining an IP address because we've found
3300             * compatibility issues with some routers with low power
3301             * mode.
3302             * <p>
3303             * In order for this active power mode to properly be set,
3304             * we disable coexistence mode until we're done with
3305             * obtaining an IP address.  One exception is if we
3306             * are currently connected to a headset, since disabling
3307             * coexistence would interrupt that connection.
3308             */
3309            // Disable the coexistence mode
3310            mWifiNative.setBluetoothCoexistenceMode(
3311                    WifiNative.BLUETOOTH_COEXISTENCE_MODE_DISABLED);
3312        }
3313
3314        // Disable power save and suspend optimizations during DHCP
3315        // Note: The order here is important for now. Brcm driver changes
3316        // power settings when we control suspend mode optimizations.
3317        // TODO: Remove this comment when the driver is fixed.
3318        setSuspendOptimizationsNative(SUSPEND_DUE_TO_DHCP, false);
3319        mWifiNative.setPowerSave(false);
3320
3321        // Update link layer stats
3322        getWifiLinkLayerStats();
3323
3324        if (mWifiP2pChannel != null) {
3325            /* P2p discovery breaks dhcp, shut it down in order to get through this */
3326            Message msg = new Message();
3327            msg.what = WifiP2pServiceImpl.BLOCK_DISCOVERY;
3328            msg.arg1 = WifiP2pServiceImpl.ENABLED;
3329            msg.arg2 = DhcpClient.CMD_PRE_DHCP_ACTION_COMPLETE;
3330            msg.obj = WifiStateMachine.this;
3331            mWifiP2pChannel.sendMessage(msg);
3332        } else {
3333            // If the p2p service is not running, we can proceed directly.
3334            sendMessage(DhcpClient.CMD_PRE_DHCP_ACTION_COMPLETE);
3335        }
3336    }
3337
3338    void handlePostDhcpSetup() {
3339        /* Restore power save and suspend optimizations */
3340        setSuspendOptimizationsNative(SUSPEND_DUE_TO_DHCP, true);
3341        mWifiNative.setPowerSave(true);
3342
3343        p2pSendMessage(WifiP2pServiceImpl.BLOCK_DISCOVERY, WifiP2pServiceImpl.DISABLED);
3344
3345        // Set the coexistence mode back to its default value
3346        mWifiNative.setBluetoothCoexistenceMode(
3347                WifiNative.BLUETOOTH_COEXISTENCE_MODE_SENSE);
3348    }
3349
3350    private static final long DIAGS_CONNECT_TIMEOUT_MILLIS = 60 * 1000;
3351    private long mDiagsConnectionStartMillis = -1;
3352    /**
3353     * Inform other components that a new connection attempt is starting.
3354     */
3355    private void reportConnectionAttemptStart(
3356            WifiConfiguration config, String targetBSSID, int roamType) {
3357        mWifiMetrics.startConnectionEvent(config, targetBSSID, roamType);
3358        mDiagsConnectionStartMillis = mClock.getElapsedSinceBootMillis();
3359        mWifiDiagnostics.reportConnectionEvent(
3360                mDiagsConnectionStartMillis, WifiDiagnostics.CONNECTION_EVENT_STARTED);
3361        // TODO(b/35329124): Remove CMD_DIAGS_CONNECT_TIMEOUT, once WifiStateMachine
3362        // grows a proper CONNECTING state.
3363        sendMessageDelayed(CMD_DIAGS_CONNECT_TIMEOUT,
3364                mDiagsConnectionStartMillis, DIAGS_CONNECT_TIMEOUT_MILLIS);
3365    }
3366
3367    /**
3368     * Inform other components (WifiMetrics, WifiDiagnostics, etc.) that the current connection attempt
3369     * has concluded.
3370     */
3371    private void reportConnectionAttemptEnd(int level2FailureCode, int connectivityFailureCode) {
3372        mWifiMetrics.endConnectionEvent(level2FailureCode, connectivityFailureCode);
3373        switch (level2FailureCode) {
3374            case WifiMetrics.ConnectionEvent.FAILURE_NONE:
3375                // Ideally, we'd wait until IP reachability has been confirmed. this code falls
3376                // short in two ways:
3377                // - at the time of the CMD_IP_CONFIGURATION_SUCCESSFUL event, we don't know if we
3378                //   actually have ARP reachability. it might be better to wait until the wifi
3379                //   network has been validated by IpManager.
3380                // - in the case of a roaming event (intra-SSID), we probably trigger when L2 is
3381                //   complete.
3382                //
3383                // TODO(b/34181219): Fix the above.
3384                mWifiDiagnostics.reportConnectionEvent(
3385                        mDiagsConnectionStartMillis, WifiDiagnostics.CONNECTION_EVENT_SUCCEEDED);
3386                break;
3387            case WifiMetrics.ConnectionEvent.FAILURE_REDUNDANT_CONNECTION_ATTEMPT:
3388            case WifiMetrics.ConnectionEvent.FAILURE_CONNECT_NETWORK_FAILED:
3389                // WifiDiagnostics doesn't care about pre-empted connections, or cases
3390                // where we failed to initiate a connection attempt with supplicant.
3391                break;
3392            default:
3393                mWifiDiagnostics.reportConnectionEvent(
3394                        mDiagsConnectionStartMillis, WifiDiagnostics.CONNECTION_EVENT_FAILED);
3395        }
3396        mDiagsConnectionStartMillis = -1;
3397    }
3398
3399    private void handleIPv4Success(DhcpResults dhcpResults) {
3400        if (mVerboseLoggingEnabled) {
3401            logd("handleIPv4Success <" + dhcpResults.toString() + ">");
3402            logd("link address " + dhcpResults.ipAddress);
3403        }
3404
3405        Inet4Address addr;
3406        synchronized (mDhcpResultsLock) {
3407            mDhcpResults = dhcpResults;
3408            addr = (Inet4Address) dhcpResults.ipAddress.getAddress();
3409        }
3410
3411        if (mIsAutoRoaming) {
3412            int previousAddress = mWifiInfo.getIpAddress();
3413            int newAddress = NetworkUtils.inetAddressToInt(addr);
3414            if (previousAddress != newAddress) {
3415                logd("handleIPv4Success, roaming and address changed" +
3416                        mWifiInfo + " got: " + addr);
3417            }
3418        }
3419        mWifiInfo.setInetAddress(addr);
3420        if (!mWifiInfo.getMeteredHint()) { // don't override the value if already set.
3421            mWifiInfo.setMeteredHint(dhcpResults.hasMeteredHint());
3422            updateCapabilities(getCurrentWifiConfiguration());
3423        }
3424    }
3425
3426    private void handleSuccessfulIpConfiguration() {
3427        mLastSignalLevel = -1; // Force update of signal strength
3428        WifiConfiguration c = getCurrentWifiConfiguration();
3429        if (c != null) {
3430            // Reset IP failure tracking
3431            c.getNetworkSelectionStatus().clearDisableReasonCounter(
3432                    WifiConfiguration.NetworkSelectionStatus.DISABLED_DHCP_FAILURE);
3433
3434            // Tell the framework whether the newly connected network is trusted or untrusted.
3435            updateCapabilities(c);
3436        }
3437        if (c != null) {
3438            ScanResult result = getCurrentScanResult();
3439            if (result == null) {
3440                logd("WifiStateMachine: handleSuccessfulIpConfiguration and no scan results" +
3441                        c.configKey());
3442            } else {
3443                // Clear the per BSSID failure count
3444                result.numIpConfigFailures = 0;
3445            }
3446        }
3447    }
3448
3449    private void handleIPv4Failure() {
3450        // TODO: Move this to provisioning failure, not DHCP failure.
3451        // DHCPv4 failure is expected on an IPv6-only network.
3452        mWifiDiagnostics.captureBugReportData(WifiDiagnostics.REPORT_REASON_DHCP_FAILURE);
3453        if (mVerboseLoggingEnabled) {
3454            int count = -1;
3455            WifiConfiguration config = getCurrentWifiConfiguration();
3456            if (config != null) {
3457                count = config.getNetworkSelectionStatus().getDisableReasonCounter(
3458                        WifiConfiguration.NetworkSelectionStatus.DISABLED_DHCP_FAILURE);
3459            }
3460            log("DHCP failure count=" + count);
3461        }
3462        reportConnectionAttemptEnd(
3463                WifiMetrics.ConnectionEvent.FAILURE_DHCP,
3464                WifiMetricsProto.ConnectionEvent.HLF_DHCP);
3465        synchronized(mDhcpResultsLock) {
3466             if (mDhcpResults != null) {
3467                 mDhcpResults.clear();
3468             }
3469        }
3470        if (mVerboseLoggingEnabled) {
3471            logd("handleIPv4Failure");
3472        }
3473    }
3474
3475    private void handleIpConfigurationLost() {
3476        mWifiInfo.setInetAddress(null);
3477        mWifiInfo.setMeteredHint(false);
3478
3479        mWifiConfigManager.updateNetworkSelectionStatus(mLastNetworkId,
3480                WifiConfiguration.NetworkSelectionStatus.DISABLED_DHCP_FAILURE);
3481
3482        /* DHCP times out after about 30 seconds, we do a
3483         * disconnect thru supplicant, we will let autojoin retry connecting to the network
3484         */
3485        mWifiNative.disconnect();
3486    }
3487
3488    // TODO: De-duplicated this and handleIpConfigurationLost().
3489    private void handleIpReachabilityLost() {
3490        mWifiInfo.setInetAddress(null);
3491        mWifiInfo.setMeteredHint(false);
3492
3493        // TODO: Determine whether to call some form of mWifiConfigManager.handleSSIDStateChange().
3494
3495        // Disconnect via supplicant, and let autojoin retry connecting to the network.
3496        mWifiNative.disconnect();
3497    }
3498
3499    /*
3500     * Read a MAC address in /proc/arp/table, used by WifistateMachine
3501     * so as to record MAC address of default gateway.
3502     **/
3503    private String macAddressFromRoute(String ipAddress) {
3504        String macAddress = null;
3505        BufferedReader reader = null;
3506        try {
3507            reader = new BufferedReader(new FileReader("/proc/net/arp"));
3508
3509            // Skip over the line bearing colum titles
3510            String line = reader.readLine();
3511
3512            while ((line = reader.readLine()) != null) {
3513                String[] tokens = line.split("[ ]+");
3514                if (tokens.length < 6) {
3515                    continue;
3516                }
3517
3518                // ARP column format is
3519                // Address HWType HWAddress Flags Mask IFace
3520                String ip = tokens[0];
3521                String mac = tokens[3];
3522
3523                if (ipAddress.equals(ip)) {
3524                    macAddress = mac;
3525                    break;
3526                }
3527            }
3528
3529            if (macAddress == null) {
3530                loge("Did not find remoteAddress {" + ipAddress + "} in " +
3531                        "/proc/net/arp");
3532            }
3533
3534        } catch (FileNotFoundException e) {
3535            loge("Could not open /proc/net/arp to lookup mac address");
3536        } catch (IOException e) {
3537            loge("Could not read /proc/net/arp to lookup mac address");
3538        } finally {
3539            try {
3540                if (reader != null) {
3541                    reader.close();
3542                }
3543            } catch (IOException e) {
3544                // Do nothing
3545            }
3546        }
3547        return macAddress;
3548
3549    }
3550
3551    private class WifiNetworkFactory extends NetworkFactory {
3552        public WifiNetworkFactory(Looper l, Context c, String TAG, NetworkCapabilities f) {
3553            super(l, c, TAG, f);
3554        }
3555
3556        @Override
3557        protected void needNetworkFor(NetworkRequest networkRequest, int score) {
3558            synchronized (mWifiReqCountLock) {
3559                if (++mConnectionReqCount == 1) {
3560                    if (mWifiConnectivityManager != null && mUntrustedReqCount == 0) {
3561                        mWifiConnectivityManager.enable(true);
3562                    }
3563                }
3564            }
3565        }
3566
3567        @Override
3568        protected void releaseNetworkFor(NetworkRequest networkRequest) {
3569            synchronized (mWifiReqCountLock) {
3570                if (--mConnectionReqCount == 0) {
3571                    if (mWifiConnectivityManager != null && mUntrustedReqCount == 0) {
3572                        mWifiConnectivityManager.enable(false);
3573                    }
3574                }
3575            }
3576        }
3577
3578        @Override
3579        public void dump(FileDescriptor fd, PrintWriter pw, String[] args) {
3580            pw.println("mConnectionReqCount " + mConnectionReqCount);
3581        }
3582
3583    }
3584
3585    private class UntrustedWifiNetworkFactory extends NetworkFactory {
3586        public UntrustedWifiNetworkFactory(Looper l, Context c, String tag, NetworkCapabilities f) {
3587            super(l, c, tag, f);
3588        }
3589
3590        @Override
3591        protected void needNetworkFor(NetworkRequest networkRequest, int score) {
3592            if (!networkRequest.networkCapabilities.hasCapability(
3593                    NetworkCapabilities.NET_CAPABILITY_TRUSTED)) {
3594                synchronized (mWifiReqCountLock) {
3595                    if (++mUntrustedReqCount == 1) {
3596                        if (mWifiConnectivityManager != null) {
3597                            if (mConnectionReqCount == 0) {
3598                                mWifiConnectivityManager.enable(true);
3599                            }
3600                            mWifiConnectivityManager.setUntrustedConnectionAllowed(true);
3601                        }
3602                    }
3603                }
3604            }
3605        }
3606
3607        @Override
3608        protected void releaseNetworkFor(NetworkRequest networkRequest) {
3609            if (!networkRequest.networkCapabilities.hasCapability(
3610                    NetworkCapabilities.NET_CAPABILITY_TRUSTED)) {
3611                synchronized (mWifiReqCountLock) {
3612                    if (--mUntrustedReqCount == 0) {
3613                        if (mWifiConnectivityManager != null) {
3614                            mWifiConnectivityManager.setUntrustedConnectionAllowed(false);
3615                            if (mConnectionReqCount == 0) {
3616                                mWifiConnectivityManager.enable(false);
3617                            }
3618                        }
3619                    }
3620                }
3621            }
3622        }
3623
3624        @Override
3625        public void dump(FileDescriptor fd, PrintWriter pw, String[] args) {
3626            pw.println("mUntrustedReqCount " + mUntrustedReqCount);
3627        }
3628    }
3629
3630    void maybeRegisterNetworkFactory() {
3631        if (mNetworkFactory == null) {
3632            checkAndSetConnectivityInstance();
3633            if (mCm != null) {
3634                mNetworkFactory = new WifiNetworkFactory(getHandler().getLooper(), mContext,
3635                        NETWORKTYPE, mNetworkCapabilitiesFilter);
3636                mNetworkFactory.setScoreFilter(60);
3637                mNetworkFactory.register();
3638
3639                // We can't filter untrusted network in the capabilities filter because a trusted
3640                // network would still satisfy a request that accepts untrusted ones.
3641                mUntrustedNetworkFactory = new UntrustedWifiNetworkFactory(getHandler().getLooper(),
3642                        mContext, NETWORKTYPE_UNTRUSTED, mNetworkCapabilitiesFilter);
3643                mUntrustedNetworkFactory.setScoreFilter(Integer.MAX_VALUE);
3644                mUntrustedNetworkFactory.register();
3645            }
3646        }
3647    }
3648
3649    /**
3650     * WifiStateMachine needs to enable/disable other services when wifi is in client mode.  This
3651     * method allows WifiStateMachine to get these additional system services.
3652     *
3653     * At this time, this method is used to setup variables for P2P service and Wifi Aware.
3654     */
3655    private void getAdditionalWifiServiceInterfaces() {
3656        // First set up Wifi Direct
3657        if (mP2pSupported) {
3658            IBinder s1 = mFacade.getService(Context.WIFI_P2P_SERVICE);
3659            WifiP2pServiceImpl wifiP2pServiceImpl =
3660                    (WifiP2pServiceImpl) IWifiP2pManager.Stub.asInterface(s1);
3661
3662            if (wifiP2pServiceImpl != null) {
3663                mWifiP2pChannel = new AsyncChannel();
3664                mWifiP2pChannel.connect(mContext, getHandler(),
3665                        wifiP2pServiceImpl.getP2pStateMachineMessenger());
3666            }
3667        }
3668    }
3669
3670    /********************************************************
3671     * HSM states
3672     *******************************************************/
3673
3674    class DefaultState extends State {
3675
3676        @Override
3677        public boolean processMessage(Message message) {
3678            logStateAndMessage(message, this);
3679
3680            switch (message.what) {
3681                case AsyncChannel.CMD_CHANNEL_HALF_CONNECTED: {
3682                    AsyncChannel ac = (AsyncChannel) message.obj;
3683                    if (ac == mWifiP2pChannel) {
3684                        if (message.arg1 == AsyncChannel.STATUS_SUCCESSFUL) {
3685                            p2pSendMessage(AsyncChannel.CMD_CHANNEL_FULL_CONNECTION);
3686                            // since the p2p channel is connected, we should enable p2p if we are in
3687                            // connect mode.  We may not be in connect mode yet, we may have just
3688                            // set the operational mode and started to set up for connect mode.
3689                            if (mOperationalMode == CONNECT_MODE) {
3690                                // This message will only be handled if we are in Connect mode.
3691                                // If we are not in connect mode yet, this will be dropped and the
3692                                // ConnectMode.enter method will call to enable p2p.
3693                                sendMessage(CMD_ENABLE_P2P);
3694                            }
3695                        } else {
3696                            // TODO: We should probably do some cleanup or attempt a retry
3697                            // b/34283611
3698                            loge("WifiP2pService connection failure, error=" + message.arg1);
3699                        }
3700                    } else {
3701                        loge("got HALF_CONNECTED for unknown channel");
3702                    }
3703                    break;
3704                }
3705                case AsyncChannel.CMD_CHANNEL_DISCONNECTED: {
3706                    AsyncChannel ac = (AsyncChannel) message.obj;
3707                    if (ac == mWifiP2pChannel) {
3708                        loge("WifiP2pService channel lost, message.arg1 =" + message.arg1);
3709                        //TODO: Re-establish connection to state machine after a delay (b/34283611)
3710                        // mWifiP2pChannel.connect(mContext, getHandler(),
3711                        // mWifiP2pManager.getMessenger());
3712                    }
3713                    break;
3714                }
3715                case CMD_BLUETOOTH_ADAPTER_STATE_CHANGE:
3716                    mBluetoothConnectionActive = (message.arg1 !=
3717                            BluetoothAdapter.STATE_DISCONNECTED);
3718                    break;
3719                case CMD_ENABLE_NETWORK:
3720                    boolean disableOthers = message.arg2 == 1;
3721                    int netId = message.arg1;
3722                    boolean ok = mWifiConfigManager.enableNetwork(
3723                            netId, disableOthers, message.sendingUid);
3724                    if (!ok) {
3725                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
3726                    }
3727                    replyToMessage(message, message.what, ok ? SUCCESS : FAILURE);
3728                    break;
3729                case CMD_ADD_OR_UPDATE_NETWORK:
3730                    WifiConfiguration config = (WifiConfiguration) message.obj;
3731                    NetworkUpdateResult result =
3732                            mWifiConfigManager.addOrUpdateNetwork(config, message.sendingUid);
3733                    if (!result.isSuccess()) {
3734                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
3735                    }
3736                    replyToMessage(message, message.what, result.getNetworkId());
3737                    break;
3738                case CMD_SAVE_CONFIG:
3739                    replyToMessage(message, message.what, FAILURE);
3740                    break;
3741                case CMD_REMOVE_NETWORK:
3742                    deleteNetworkConfigAndSendReply(message, false);
3743                    break;
3744                case CMD_GET_CONFIGURED_NETWORKS:
3745                    replyToMessage(message, message.what, mWifiConfigManager.getSavedNetworks());
3746                    break;
3747                case CMD_GET_PRIVILEGED_CONFIGURED_NETWORKS:
3748                    replyToMessage(message, message.what,
3749                            mWifiConfigManager.getConfiguredNetworksWithPasswords());
3750                    break;
3751                case CMD_ENABLE_RSSI_POLL:
3752                    mEnableRssiPolling = (message.arg1 == 1);
3753                    break;
3754                case CMD_SET_HIGH_PERF_MODE:
3755                    if (message.arg1 == 1) {
3756                        setSuspendOptimizations(SUSPEND_DUE_TO_HIGH_PERF, false);
3757                    } else {
3758                        setSuspendOptimizations(SUSPEND_DUE_TO_HIGH_PERF, true);
3759                    }
3760                    break;
3761                case CMD_INITIALIZE:
3762                    ok = mWifiNative.initializeVendorHal(mVendorHalDeathRecipient);
3763                    replyToMessage(message, message.what, ok ? SUCCESS : FAILURE);
3764                    break;
3765                case CMD_BOOT_COMPLETED:
3766                    // get other services that we need to manage
3767                    getAdditionalWifiServiceInterfaces();
3768                    if (!mWifiConfigManager.loadFromStore()) {
3769                        Log.e(TAG, "Failed to load from config store");
3770                    }
3771                    maybeRegisterNetworkFactory();
3772                    break;
3773                case CMD_SCREEN_STATE_CHANGED:
3774                    handleScreenStateChanged(message.arg1 != 0);
3775                    break;
3776                    /* Discard */
3777                case CMD_START_SCAN:
3778                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
3779                    break;
3780                case CMD_START_SUPPLICANT:
3781                case CMD_STOP_SUPPLICANT:
3782                case CMD_DRIVER_START_TIMED_OUT:
3783                case CMD_START_AP:
3784                case CMD_START_AP_FAILURE:
3785                case CMD_STOP_AP:
3786                case CMD_AP_STOPPED:
3787                case CMD_DISCONNECT:
3788                case CMD_RECONNECT:
3789                case CMD_REASSOCIATE:
3790                case CMD_RELOAD_TLS_AND_RECONNECT:
3791                case WifiMonitor.SUP_CONNECTION_EVENT:
3792                case WifiMonitor.SUP_DISCONNECTION_EVENT:
3793                case WifiMonitor.NETWORK_CONNECTION_EVENT:
3794                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
3795                case WifiMonitor.SCAN_RESULTS_EVENT:
3796                case WifiMonitor.SCAN_FAILED_EVENT:
3797                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
3798                case WifiMonitor.AUTHENTICATION_FAILURE_EVENT:
3799                case WifiMonitor.ASSOCIATION_REJECTION_EVENT:
3800                case WifiMonitor.WPS_OVERLAP_EVENT:
3801                case CMD_SET_OPERATIONAL_MODE:
3802                case CMD_RSSI_POLL:
3803                case DhcpClient.CMD_PRE_DHCP_ACTION:
3804                case DhcpClient.CMD_PRE_DHCP_ACTION_COMPLETE:
3805                case DhcpClient.CMD_POST_DHCP_ACTION:
3806                case CMD_NO_NETWORKS_PERIODIC_SCAN:
3807                case CMD_ENABLE_P2P:
3808                case CMD_DISABLE_P2P_RSP:
3809                case WifiMonitor.SUP_REQUEST_IDENTITY:
3810                case CMD_TEST_NETWORK_DISCONNECT:
3811                case WifiMonitor.SUP_REQUEST_SIM_AUTH:
3812                case CMD_TARGET_BSSID:
3813                case CMD_START_CONNECT:
3814                case CMD_START_ROAM:
3815                case CMD_ASSOCIATED_BSSID:
3816                case CMD_UNWANTED_NETWORK:
3817                case CMD_DISCONNECTING_WATCHDOG_TIMER:
3818                case CMD_ROAM_WATCHDOG_TIMER:
3819                case CMD_DISABLE_P2P_WATCHDOG_TIMER:
3820                case CMD_DISABLE_EPHEMERAL_NETWORK:
3821                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
3822                    break;
3823                case CMD_SET_SUSPEND_OPT_ENABLED:
3824                    if (message.arg1 == 1) {
3825                        if (message.arg2 == 1) {
3826                            mSuspendWakeLock.release();
3827                        }
3828                        setSuspendOptimizations(SUSPEND_DUE_TO_SCREEN, true);
3829                    } else {
3830                        setSuspendOptimizations(SUSPEND_DUE_TO_SCREEN, false);
3831                    }
3832                    break;
3833                case WifiManager.CONNECT_NETWORK:
3834                    replyToMessage(message, WifiManager.CONNECT_NETWORK_FAILED,
3835                            WifiManager.BUSY);
3836                    break;
3837                case WifiManager.FORGET_NETWORK:
3838                    deleteNetworkConfigAndSendReply(message, true);
3839                    break;
3840                case WifiManager.SAVE_NETWORK:
3841                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
3842                    replyToMessage(message, WifiManager.SAVE_NETWORK_FAILED,
3843                            WifiManager.BUSY);
3844                    break;
3845                case WifiManager.START_WPS:
3846                    replyToMessage(message, WifiManager.WPS_FAILED,
3847                            WifiManager.BUSY);
3848                    break;
3849                case WifiManager.CANCEL_WPS:
3850                    replyToMessage(message, WifiManager.CANCEL_WPS_FAILED,
3851                            WifiManager.BUSY);
3852                    break;
3853                case WifiManager.DISABLE_NETWORK:
3854                    replyToMessage(message, WifiManager.DISABLE_NETWORK_FAILED,
3855                            WifiManager.BUSY);
3856                    break;
3857                case WifiManager.RSSI_PKTCNT_FETCH:
3858                    replyToMessage(message, WifiManager.RSSI_PKTCNT_FETCH_FAILED,
3859                            WifiManager.BUSY);
3860                    break;
3861                case CMD_GET_SUPPORTED_FEATURES:
3862                    int featureSet = mWifiNative.getSupportedFeatureSet();
3863                    replyToMessage(message, message.what, featureSet);
3864                    break;
3865                case CMD_FIRMWARE_ALERT:
3866                    if (mWifiDiagnostics != null) {
3867                        byte[] buffer = (byte[])message.obj;
3868                        int alertReason = message.arg1;
3869                        mWifiDiagnostics.captureAlertData(alertReason, buffer);
3870                        mWifiMetrics.incrementAlertReasonCount(alertReason);
3871                    }
3872                    break;
3873                case CMD_GET_LINK_LAYER_STATS:
3874                    // Not supported hence reply with error message
3875                    replyToMessage(message, message.what, null);
3876                    break;
3877                case WifiP2pServiceImpl.P2P_CONNECTION_CHANGED:
3878                    NetworkInfo info = (NetworkInfo) message.obj;
3879                    mP2pConnected.set(info.isConnected());
3880                    break;
3881                case WifiP2pServiceImpl.DISCONNECT_WIFI_REQUEST:
3882                    mTemporarilyDisconnectWifi = (message.arg1 == 1);
3883                    replyToMessage(message, WifiP2pServiceImpl.DISCONNECT_WIFI_RESPONSE);
3884                    break;
3885                /* Link configuration (IP address, DNS, ...) changes notified via netlink */
3886                case CMD_UPDATE_LINKPROPERTIES:
3887                    updateLinkProperties((LinkProperties) message.obj);
3888                    break;
3889                case CMD_GET_MATCHING_CONFIG:
3890                    replyToMessage(message, message.what);
3891                    break;
3892                case CMD_IP_CONFIGURATION_SUCCESSFUL:
3893                case CMD_IP_CONFIGURATION_LOST:
3894                case CMD_IP_REACHABILITY_LOST:
3895                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
3896                    break;
3897                case CMD_GET_CONNECTION_STATISTICS:
3898                    replyToMessage(message, message.what, mWifiConnectionStatistics);
3899                    break;
3900                case CMD_REMOVE_APP_CONFIGURATIONS:
3901                    deferMessage(message);
3902                    break;
3903                case CMD_REMOVE_USER_CONFIGURATIONS:
3904                    deferMessage(message);
3905                    break;
3906                case CMD_START_IP_PACKET_OFFLOAD:
3907                    if (mNetworkAgent != null) mNetworkAgent.onPacketKeepaliveEvent(
3908                            message.arg1,
3909                            ConnectivityManager.PacketKeepalive.ERROR_INVALID_NETWORK);
3910                    break;
3911                case CMD_STOP_IP_PACKET_OFFLOAD:
3912                    if (mNetworkAgent != null) mNetworkAgent.onPacketKeepaliveEvent(
3913                            message.arg1,
3914                            ConnectivityManager.PacketKeepalive.ERROR_INVALID_NETWORK);
3915                    break;
3916                case CMD_START_RSSI_MONITORING_OFFLOAD:
3917                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
3918                    break;
3919                case CMD_STOP_RSSI_MONITORING_OFFLOAD:
3920                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
3921                    break;
3922                case CMD_USER_SWITCH:
3923                    Set<Integer> removedNetworkIds =
3924                            mWifiConfigManager.handleUserSwitch(message.arg1);
3925                    if (removedNetworkIds.contains(mTargetNetworkId) ||
3926                            removedNetworkIds.contains(mLastNetworkId)) {
3927                        // Disconnect and let autojoin reselect a new network
3928                        sendMessage(CMD_DISCONNECT);
3929                    }
3930                    break;
3931                case CMD_USER_UNLOCK:
3932                    mWifiConfigManager.handleUserUnlock(message.arg1);
3933                    break;
3934                case CMD_USER_STOP:
3935                    mWifiConfigManager.handleUserStop(message.arg1);
3936                    break;
3937                case CMD_QUERY_OSU_ICON:
3938                case CMD_MATCH_PROVIDER_NETWORK:
3939                    /* reply with arg1 = 0 - it returns API failure to the calling app
3940                     * (message.what is not looked at)
3941                     */
3942                    replyToMessage(message, message.what);
3943                    break;
3944                case CMD_ADD_OR_UPDATE_PASSPOINT_CONFIG:
3945                    int addResult = mPasspointManager.addOrUpdateProvider(
3946                            (PasspointConfiguration) message.obj, message.arg1)
3947                            ? SUCCESS : FAILURE;
3948                    replyToMessage(message, message.what, addResult);
3949                    break;
3950                case CMD_REMOVE_PASSPOINT_CONFIG:
3951                    int removeResult = mPasspointManager.removeProvider(
3952                            (String) message.obj) ? SUCCESS : FAILURE;
3953                    replyToMessage(message, message.what, removeResult);
3954                    break;
3955                case CMD_GET_PASSPOINT_CONFIGS:
3956                    replyToMessage(message, message.what, mPasspointManager.getProviderConfigs());
3957                    break;
3958                case CMD_RESET_SIM_NETWORKS:
3959                    /* Defer this message until supplicant is started. */
3960                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
3961                    deferMessage(message);
3962                    break;
3963                case CMD_INSTALL_PACKET_FILTER:
3964                    mWifiNative.installPacketFilter((byte[]) message.obj);
3965                    break;
3966                case CMD_SET_FALLBACK_PACKET_FILTERING:
3967                    if ((boolean) message.obj) {
3968                        mWifiNative.startFilteringMulticastV4Packets();
3969                    } else {
3970                        mWifiNative.stopFilteringMulticastV4Packets();
3971                    }
3972                    break;
3973                case CMD_CLIENT_INTERFACE_BINDER_DEATH:
3974                    Log.e(TAG, "wificond died unexpectedly. Triggering recovery");
3975                    mWifiMetrics.incrementNumWificondCrashes();
3976                    mWifiInjector.getSelfRecovery().trigger(SelfRecovery.REASON_WIFICOND_CRASH);
3977                    break;
3978                case CMD_VENDOR_HAL_HWBINDER_DEATH:
3979                    Log.e(TAG, "Vendor HAL died unexpectedly. Triggering recovery");
3980                    mWifiMetrics.incrementNumHalCrashes();
3981                    mWifiInjector.getSelfRecovery().trigger(SelfRecovery.REASON_HAL_CRASH);
3982                    break;
3983                case CMD_DIAGS_CONNECT_TIMEOUT:
3984                    mWifiDiagnostics.reportConnectionEvent(
3985                            (Long) message.obj, BaseWifiDiagnostics.CONNECTION_EVENT_FAILED);
3986                    break;
3987                default:
3988                    loge("Error! unhandled message" + message);
3989                    break;
3990            }
3991            return HANDLED;
3992        }
3993    }
3994
3995    class InitialState extends State {
3996
3997        private void cleanup() {
3998            // Tearing down the client interfaces below is going to stop our supplicant.
3999            mWifiMonitor.stopAllMonitoring();
4000
4001            mDeathRecipient.unlinkToDeath();
4002            mWifiNative.tearDown();
4003        }
4004
4005        @Override
4006        public void enter() {
4007            mWifiStateTracker.updateState(WifiStateTracker.INVALID);
4008            cleanup();
4009        }
4010
4011        @Override
4012        public boolean processMessage(Message message) {
4013            logStateAndMessage(message, this);
4014            switch (message.what) {
4015                case CMD_START_SUPPLICANT:
4016                    mClientInterface = mWifiNative.setupForClientMode();
4017                    if (mClientInterface == null
4018                            || !mDeathRecipient.linkToDeath(mClientInterface.asBinder())) {
4019                        setWifiState(WifiManager.WIFI_STATE_UNKNOWN);
4020                        cleanup();
4021                        break;
4022                    }
4023
4024                    try {
4025                        // A runtime crash or shutting down AP mode can leave
4026                        // IP addresses configured, and this affects
4027                        // connectivity when supplicant starts up.
4028                        // Ensure we have no IP addresses before a supplicant start.
4029                        mNwService.clearInterfaceAddresses(mInterfaceName);
4030
4031                        // Set privacy extensions
4032                        mNwService.setInterfaceIpv6PrivacyExtensions(mInterfaceName, true);
4033
4034                        // IPv6 is enabled only as long as access point is connected since:
4035                        // - IPv6 addresses and routes stick around after disconnection
4036                        // - kernel is unaware when connected and fails to start IPv6 negotiation
4037                        // - kernel can start autoconfiguration when 802.1x is not complete
4038                        mNwService.disableIpv6(mInterfaceName);
4039                    } catch (RemoteException re) {
4040                        loge("Unable to change interface settings: " + re);
4041                    } catch (IllegalStateException ie) {
4042                        loge("Unable to change interface settings: " + ie);
4043                    }
4044
4045                    if (!mWifiNative.enableSupplicant()) {
4046                        loge("Failed to start supplicant!");
4047                        setWifiState(WifiManager.WIFI_STATE_UNKNOWN);
4048                        cleanup();
4049                        break;
4050                    }
4051                    if (mVerboseLoggingEnabled) log("Supplicant start successful");
4052                    mWifiMonitor.startMonitoring(mInterfaceName, true);
4053                    setSupplicantLogLevel();
4054                    transitionTo(mSupplicantStartingState);
4055                    break;
4056                case CMD_START_AP:
4057                    transitionTo(mSoftApState);
4058                    break;
4059                case CMD_SET_OPERATIONAL_MODE:
4060                    mOperationalMode = message.arg1;
4061                    if (mOperationalMode != DISABLED_MODE) {
4062                        sendMessage(CMD_START_SUPPLICANT);
4063                    }
4064                    break;
4065                default:
4066                    return NOT_HANDLED;
4067            }
4068            return HANDLED;
4069        }
4070    }
4071
4072    class SupplicantStartingState extends State {
4073        private void initializeWpsDetails() {
4074            String detail;
4075            detail = mPropertyService.get("ro.product.name", "");
4076            if (!mWifiNative.setDeviceName(detail)) {
4077                loge("Failed to set device name " +  detail);
4078            }
4079            detail = mPropertyService.get("ro.product.manufacturer", "");
4080            if (!mWifiNative.setManufacturer(detail)) {
4081                loge("Failed to set manufacturer " + detail);
4082            }
4083            detail = mPropertyService.get("ro.product.model", "");
4084            if (!mWifiNative.setModelName(detail)) {
4085                loge("Failed to set model name " + detail);
4086            }
4087            detail = mPropertyService.get("ro.product.model", "");
4088            if (!mWifiNative.setModelNumber(detail)) {
4089                loge("Failed to set model number " + detail);
4090            }
4091            detail = mPropertyService.get("ro.serialno", "");
4092            if (!mWifiNative.setSerialNumber(detail)) {
4093                loge("Failed to set serial number " + detail);
4094            }
4095            if (!mWifiNative.setConfigMethods("physical_display virtual_push_button")) {
4096                loge("Failed to set WPS config methods");
4097            }
4098            if (!mWifiNative.setDeviceType(mPrimaryDeviceType)) {
4099                loge("Failed to set primary device type " + mPrimaryDeviceType);
4100            }
4101        }
4102
4103        @Override
4104        public boolean processMessage(Message message) {
4105            logStateAndMessage(message, this);
4106
4107            switch(message.what) {
4108                case WifiMonitor.SUP_CONNECTION_EVENT:
4109                    if (mVerboseLoggingEnabled) log("Supplicant connection established");
4110
4111                    mSupplicantRestartCount = 0;
4112                    /* Reset the supplicant state to indicate the supplicant
4113                     * state is not known at this time */
4114                    mSupplicantStateTracker.sendMessage(CMD_RESET_SUPPLICANT_STATE);
4115                    /* Initialize data structures */
4116                    mLastBssid = null;
4117                    mLastNetworkId = WifiConfiguration.INVALID_NETWORK_ID;
4118                    mLastSignalLevel = -1;
4119
4120                    mWifiInfo.setMacAddress(mWifiNative.getMacAddress());
4121                    // Attempt to migrate data out of legacy store.
4122                    if (!mWifiConfigManager.migrateFromLegacyStore()) {
4123                        Log.e(TAG, "Failed to migrate from legacy config store");
4124                    }
4125                    initializeWpsDetails();
4126                    sendSupplicantConnectionChangedBroadcast(true);
4127                    transitionTo(mSupplicantStartedState);
4128                    break;
4129                case WifiMonitor.SUP_DISCONNECTION_EVENT:
4130                    if (++mSupplicantRestartCount <= SUPPLICANT_RESTART_TRIES) {
4131                        loge("Failed to setup control channel, restart supplicant");
4132                        mWifiMonitor.stopAllMonitoring();
4133                        mWifiNative.disableSupplicant();
4134                        transitionTo(mInitialState);
4135                        sendMessageDelayed(CMD_START_SUPPLICANT, SUPPLICANT_RESTART_INTERVAL_MSECS);
4136                    } else {
4137                        loge("Failed " + mSupplicantRestartCount +
4138                                " times to start supplicant, unload driver");
4139                        mSupplicantRestartCount = 0;
4140                        setWifiState(WIFI_STATE_UNKNOWN);
4141                        transitionTo(mInitialState);
4142                    }
4143                    break;
4144                case CMD_START_SUPPLICANT:
4145                case CMD_STOP_SUPPLICANT:
4146                case CMD_START_AP:
4147                case CMD_STOP_AP:
4148                case CMD_SET_OPERATIONAL_MODE:
4149                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
4150                    deferMessage(message);
4151                    break;
4152                default:
4153                    return NOT_HANDLED;
4154            }
4155            return HANDLED;
4156        }
4157    }
4158
4159    class SupplicantStartedState extends State {
4160        @Override
4161        public void enter() {
4162            if (mVerboseLoggingEnabled) {
4163                logd("SupplicantStartedState enter");
4164            }
4165
4166            mWifiNative.setExternalSim(true);
4167
4168            setRandomMacOui();
4169            mCountryCode.setReadyForChange(true);
4170
4171            // We can't do this in the constructor because WifiStateMachine is created before the
4172            // wifi scanning service is initialized
4173            if (mWifiScanner == null) {
4174                mWifiScanner = mWifiInjector.getWifiScanner();
4175
4176                synchronized (mWifiReqCountLock) {
4177                    mWifiConnectivityManager =
4178                            mWifiInjector.makeWifiConnectivityManager(mWifiInfo,
4179                                                                      hasConnectionRequests());
4180                    mWifiConnectivityManager.setUntrustedConnectionAllowed(mUntrustedReqCount > 0);
4181                    mWifiConnectivityManager.handleScreenStateChanged(mScreenOn);
4182                }
4183            }
4184
4185            mWifiDiagnostics.startLogging(mVerboseLoggingEnabled);
4186            mIsRunning = true;
4187            updateBatteryWorkSource(null);
4188            /**
4189             * Enable bluetooth coexistence scan mode when bluetooth connection is active.
4190             * When this mode is on, some of the low-level scan parameters used by the
4191             * driver are changed to reduce interference with bluetooth
4192             */
4193            mWifiNative.setBluetoothCoexistenceScanMode(mBluetoothConnectionActive);
4194            // initialize network state
4195            setNetworkDetailedState(DetailedState.DISCONNECTED);
4196
4197            // Disable legacy multicast filtering, which on some chipsets defaults to enabled.
4198            // Legacy IPv6 multicast filtering blocks ICMPv6 router advertisements which breaks IPv6
4199            // provisioning. Legacy IPv4 multicast filtering may be re-enabled later via
4200            // IpManager.Callback.setFallbackMulticastFilter()
4201            mWifiNative.stopFilteringMulticastV4Packets();
4202            mWifiNative.stopFilteringMulticastV6Packets();
4203
4204            if (mOperationalMode == SCAN_ONLY_MODE ||
4205                    mOperationalMode == SCAN_ONLY_WITH_WIFI_OFF_MODE) {
4206                mWifiNative.disconnect();
4207                setWifiState(WIFI_STATE_DISABLED);
4208                transitionTo(mScanModeState);
4209            } else if (mOperationalMode == CONNECT_MODE) {
4210                setWifiState(WIFI_STATE_ENABLING);
4211                // Transitioning to Disconnected state will trigger a scan and subsequently AutoJoin
4212                transitionTo(mDisconnectedState);
4213            } else if (mOperationalMode == DISABLED_MODE) {
4214                transitionTo(mSupplicantStoppingState);
4215            }
4216
4217            // Set the right suspend mode settings
4218            mWifiNative.setSuspendOptimizations(mSuspendOptNeedsDisabled == 0
4219                    && mUserWantsSuspendOpt.get());
4220
4221            mWifiNative.setPowerSave(true);
4222
4223            if (mP2pSupported) {
4224                if (mOperationalMode == CONNECT_MODE) {
4225                    p2pSendMessage(WifiStateMachine.CMD_ENABLE_P2P);
4226                } else {
4227                    // P2P state machine starts in disabled state, and is not enabled until
4228                    // CMD_ENABLE_P2P is sent from here; so, nothing needs to be done to
4229                    // keep it disabled.
4230                }
4231            }
4232
4233            final Intent intent = new Intent(WifiManager.WIFI_SCAN_AVAILABLE);
4234            intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
4235            intent.putExtra(WifiManager.EXTRA_SCAN_AVAILABLE, WIFI_STATE_ENABLED);
4236            mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
4237
4238            // Disable wpa_supplicant from auto reconnecting.
4239            mWifiNative.enableStaAutoReconnect(false);
4240            // STA has higher priority over P2P
4241            mWifiNative.setConcurrencyPriority(true);
4242        }
4243
4244        @Override
4245        public boolean processMessage(Message message) {
4246            logStateAndMessage(message, this);
4247
4248            switch(message.what) {
4249                case CMD_STOP_SUPPLICANT:   /* Supplicant stopped by user */
4250                    if (mP2pSupported) {
4251                        transitionTo(mWaitForP2pDisableState);
4252                    } else {
4253                        transitionTo(mSupplicantStoppingState);
4254                    }
4255                    break;
4256                case WifiMonitor.SUP_DISCONNECTION_EVENT:  /* Supplicant connection lost */
4257                    loge("Connection lost, restart supplicant");
4258                    handleSupplicantConnectionLoss(true);
4259                    handleNetworkDisconnect();
4260                    mSupplicantStateTracker.sendMessage(CMD_RESET_SUPPLICANT_STATE);
4261                    if (mP2pSupported) {
4262                        transitionTo(mWaitForP2pDisableState);
4263                    } else {
4264                        transitionTo(mInitialState);
4265                    }
4266                    sendMessageDelayed(CMD_START_SUPPLICANT, SUPPLICANT_RESTART_INTERVAL_MSECS);
4267                    break;
4268                case CMD_START_SCAN:
4269                    // TODO: remove scan request path (b/31445200)
4270                    handleScanRequest(message);
4271                    break;
4272                case WifiMonitor.SCAN_RESULTS_EVENT:
4273                case WifiMonitor.SCAN_FAILED_EVENT:
4274                    // TODO: remove handing of SCAN_RESULTS_EVENT and SCAN_FAILED_EVENT when scan
4275                    // results are retrieved from WifiScanner (b/31444878)
4276                    maybeRegisterNetworkFactory(); // Make sure our NetworkFactory is registered
4277                    setScanResults();
4278                    mIsScanOngoing = false;
4279                    mIsFullScanOngoing = false;
4280                    if (mBufferedScanMsg.size() > 0)
4281                        sendMessage(mBufferedScanMsg.remove());
4282                    break;
4283                case CMD_START_AP:
4284                    /* Cannot start soft AP while in client mode */
4285                    loge("Failed to start soft AP with a running supplicant");
4286                    setWifiApState(WIFI_AP_STATE_FAILED, WifiManager.SAP_START_FAILURE_GENERAL,
4287                            null, WifiManager.IFACE_IP_MODE_UNSPECIFIED);
4288                    break;
4289                case CMD_SET_OPERATIONAL_MODE:
4290                    mOperationalMode = message.arg1;
4291                    if (mOperationalMode == DISABLED_MODE) {
4292                        transitionTo(mSupplicantStoppingState);
4293                    }
4294                    break;
4295                case CMD_TARGET_BSSID:
4296                    // Trying to associate to this BSSID
4297                    if (message.obj != null) {
4298                        mTargetRoamBSSID = (String) message.obj;
4299                    }
4300                    break;
4301                case CMD_GET_LINK_LAYER_STATS:
4302                    WifiLinkLayerStats stats = getWifiLinkLayerStats();
4303                    replyToMessage(message, message.what, stats);
4304                    break;
4305                case CMD_RESET_SIM_NETWORKS:
4306                    log("resetting EAP-SIM/AKA/AKA' networks since SIM was changed");
4307                    mWifiConfigManager.resetSimNetworks();
4308                    break;
4309                case CMD_BLUETOOTH_ADAPTER_STATE_CHANGE:
4310                    mBluetoothConnectionActive = (message.arg1 !=
4311                            BluetoothAdapter.STATE_DISCONNECTED);
4312                    mWifiNative.setBluetoothCoexistenceScanMode(mBluetoothConnectionActive);
4313                    break;
4314                case CMD_SET_SUSPEND_OPT_ENABLED:
4315                    if (message.arg1 == 1) {
4316                        setSuspendOptimizationsNative(SUSPEND_DUE_TO_SCREEN, true);
4317                        if (message.arg2 == 1) {
4318                            mSuspendWakeLock.release();
4319                        }
4320                    } else {
4321                        setSuspendOptimizationsNative(SUSPEND_DUE_TO_SCREEN, false);
4322                    }
4323                    break;
4324                case CMD_SET_HIGH_PERF_MODE:
4325                    if (message.arg1 == 1) {
4326                        setSuspendOptimizationsNative(SUSPEND_DUE_TO_HIGH_PERF, false);
4327                    } else {
4328                        setSuspendOptimizationsNative(SUSPEND_DUE_TO_HIGH_PERF, true);
4329                    }
4330                    break;
4331                case CMD_ENABLE_TDLS:
4332                    if (message.obj != null) {
4333                        String remoteAddress = (String) message.obj;
4334                        boolean enable = (message.arg1 == 1);
4335                        mWifiNative.startTdls(remoteAddress, enable);
4336                    }
4337                    break;
4338                case WifiMonitor.ANQP_DONE_EVENT:
4339                    // TODO(zqiu): remove this when switch over to wificond for ANQP requests.
4340                    mPasspointManager.notifyANQPDone((AnqpEvent) message.obj);
4341                    break;
4342                case CMD_STOP_IP_PACKET_OFFLOAD: {
4343                    int slot = message.arg1;
4344                    int ret = stopWifiIPPacketOffload(slot);
4345                    if (mNetworkAgent != null) {
4346                        mNetworkAgent.onPacketKeepaliveEvent(slot, ret);
4347                    }
4348                    break;
4349                }
4350                case WifiMonitor.RX_HS20_ANQP_ICON_EVENT:
4351                    // TODO(zqiu): remove this when switch over to wificond for icon requests.
4352                    mPasspointManager.notifyIconDone((IconEvent) message.obj);
4353                    break;
4354                case WifiMonitor.HS20_REMEDIATION_EVENT:
4355                    // TODO(zqiu): remove this when switch over to wificond for WNM frames
4356                    // monitoring.
4357                    mPasspointManager.receivedWnmFrame((WnmData) message.obj);
4358                    break;
4359                case CMD_CONFIG_ND_OFFLOAD:
4360                    final boolean enabled = (message.arg1 > 0);
4361                    mWifiNative.configureNeighborDiscoveryOffload(enabled);
4362                    break;
4363                case CMD_ENABLE_WIFI_CONNECTIVITY_MANAGER:
4364                    mWifiConnectivityManager.enable(message.arg1 == 1 ? true : false);
4365                    break;
4366                case CMD_ENABLE_AUTOJOIN_WHEN_ASSOCIATED:
4367                    final boolean allowed = (message.arg1 > 0);
4368                    boolean old_state = mEnableAutoJoinWhenAssociated;
4369                    mEnableAutoJoinWhenAssociated = allowed;
4370                    if (!old_state && allowed && mScreenOn
4371                            && getCurrentState() == mConnectedState) {
4372                        mWifiConnectivityManager.forceConnectivityScan();
4373                    }
4374                    break;
4375                default:
4376                    return NOT_HANDLED;
4377            }
4378            return HANDLED;
4379        }
4380
4381        @Override
4382        public void exit() {
4383            mWifiDiagnostics.stopLogging();
4384
4385            mIsRunning = false;
4386            updateBatteryWorkSource(null);
4387            mScanResults = new ArrayList<>();
4388
4389            final Intent intent = new Intent(WifiManager.WIFI_SCAN_AVAILABLE);
4390            intent.addFlags(Intent.FLAG_RECEIVER_REGISTERED_ONLY_BEFORE_BOOT);
4391            intent.putExtra(WifiManager.EXTRA_SCAN_AVAILABLE, WIFI_STATE_DISABLED);
4392            mContext.sendStickyBroadcastAsUser(intent, UserHandle.ALL);
4393            mBufferedScanMsg.clear();
4394
4395            mNetworkInfo.setIsAvailable(false);
4396            if (mNetworkAgent != null) mNetworkAgent.sendNetworkInfo(mNetworkInfo);
4397            mCountryCode.setReadyForChange(false);
4398        }
4399    }
4400
4401    class SupplicantStoppingState extends State {
4402        @Override
4403        public void enter() {
4404            /* Send any reset commands to supplicant before shutting it down */
4405            handleNetworkDisconnect();
4406
4407            String suppState = System.getProperty("init.svc.wpa_supplicant");
4408            if (suppState == null) suppState = "unknown";
4409
4410            setWifiState(WIFI_STATE_DISABLING);
4411            mSupplicantStateTracker.sendMessage(CMD_RESET_SUPPLICANT_STATE);
4412            logd("SupplicantStoppingState: disableSupplicant "
4413                    + " init.svc.wpa_supplicant=" + suppState);
4414            if (mWifiNative.disableSupplicant()) {
4415                mWifiNative.closeSupplicantConnection();
4416                sendSupplicantConnectionChangedBroadcast(false);
4417                setWifiState(WIFI_STATE_DISABLED);
4418            } else {
4419                // Failed to disable supplicant
4420                handleSupplicantConnectionLoss(true);
4421            }
4422            transitionTo(mInitialState);
4423        }
4424    }
4425
4426    class WaitForP2pDisableState extends State {
4427        private State mTransitionToState;
4428        @Override
4429        public void enter() {
4430            switch (getCurrentMessage().what) {
4431                case WifiMonitor.SUP_DISCONNECTION_EVENT:
4432                    mTransitionToState = mInitialState;
4433                    break;
4434                case CMD_STOP_SUPPLICANT:
4435                default:
4436                    mTransitionToState = mSupplicantStoppingState;
4437                    break;
4438            }
4439            if (p2pSendMessage(WifiStateMachine.CMD_DISABLE_P2P_REQ)) {
4440                sendMessageDelayed(obtainMessage(CMD_DISABLE_P2P_WATCHDOG_TIMER,
4441                        mDisableP2pWatchdogCount, 0), DISABLE_P2P_GUARD_TIMER_MSEC);
4442            } else {
4443                transitionTo(mTransitionToState);
4444            }
4445        }
4446        @Override
4447        public boolean processMessage(Message message) {
4448            logStateAndMessage(message, this);
4449
4450            switch(message.what) {
4451                case WifiStateMachine.CMD_DISABLE_P2P_RSP:
4452                    transitionTo(mTransitionToState);
4453                    break;
4454                case WifiStateMachine.CMD_DISABLE_P2P_WATCHDOG_TIMER:
4455                    if (mDisableP2pWatchdogCount == message.arg1) {
4456                        logd("Timeout waiting for CMD_DISABLE_P2P_RSP");
4457                        transitionTo(mTransitionToState);
4458                    }
4459                    break;
4460                /* Defer wifi start/shut and driver commands */
4461                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
4462                case CMD_START_SUPPLICANT:
4463                case CMD_STOP_SUPPLICANT:
4464                case CMD_START_AP:
4465                case CMD_STOP_AP:
4466                case CMD_SET_OPERATIONAL_MODE:
4467                case CMD_START_SCAN:
4468                case CMD_DISCONNECT:
4469                case CMD_REASSOCIATE:
4470                case CMD_RECONNECT:
4471                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
4472                    deferMessage(message);
4473                    break;
4474                default:
4475                    return NOT_HANDLED;
4476            }
4477            return HANDLED;
4478        }
4479    }
4480
4481    class ScanModeState extends State {
4482        private int mLastOperationMode;
4483        @Override
4484        public void enter() {
4485            mLastOperationMode = mOperationalMode;
4486            mWifiStateTracker.updateState(WifiStateTracker.SCAN_MODE);
4487        }
4488        @Override
4489        public boolean processMessage(Message message) {
4490            logStateAndMessage(message, this);
4491
4492            switch(message.what) {
4493                case CMD_SET_OPERATIONAL_MODE:
4494                    if (message.arg1 == CONNECT_MODE) {
4495                        mOperationalMode = CONNECT_MODE;
4496                        setWifiState(WIFI_STATE_ENABLING);
4497                        transitionTo(mDisconnectedState);
4498                    } else if (message.arg1 == DISABLED_MODE) {
4499                        transitionTo(mSupplicantStoppingState);
4500                    }
4501                    // Nothing to do
4502                    break;
4503                // Handle scan. All the connection related commands are
4504                // handled only in ConnectModeState
4505                case CMD_START_SCAN:
4506                    handleScanRequest(message);
4507                    break;
4508                default:
4509                    return NOT_HANDLED;
4510            }
4511            return HANDLED;
4512        }
4513    }
4514
4515
4516    String smToString(Message message) {
4517        return smToString(message.what);
4518    }
4519
4520    String smToString(int what) {
4521        String s = sSmToString.get(what);
4522        if (s != null) {
4523            return s;
4524        }
4525        switch (what) {
4526            case AsyncChannel.CMD_CHANNEL_HALF_CONNECTED:
4527                s = "AsyncChannel.CMD_CHANNEL_HALF_CONNECTED";
4528                break;
4529            case AsyncChannel.CMD_CHANNEL_DISCONNECTED:
4530                s = "AsyncChannel.CMD_CHANNEL_DISCONNECTED";
4531                break;
4532            case WifiP2pServiceImpl.DISCONNECT_WIFI_REQUEST:
4533                s = "WifiP2pServiceImpl.DISCONNECT_WIFI_REQUEST";
4534                break;
4535            case WifiManager.DISABLE_NETWORK:
4536                s = "WifiManager.DISABLE_NETWORK";
4537                break;
4538            case WifiManager.CONNECT_NETWORK:
4539                s = "CONNECT_NETWORK";
4540                break;
4541            case WifiManager.SAVE_NETWORK:
4542                s = "SAVE_NETWORK";
4543                break;
4544            case WifiManager.FORGET_NETWORK:
4545                s = "FORGET_NETWORK";
4546                break;
4547            case WifiMonitor.SUP_CONNECTION_EVENT:
4548                s = "SUP_CONNECTION_EVENT";
4549                break;
4550            case WifiMonitor.SUP_DISCONNECTION_EVENT:
4551                s = "SUP_DISCONNECTION_EVENT";
4552                break;
4553            case WifiMonitor.SCAN_RESULTS_EVENT:
4554                s = "SCAN_RESULTS_EVENT";
4555                break;
4556            case WifiMonitor.SCAN_FAILED_EVENT:
4557                s = "SCAN_FAILED_EVENT";
4558                break;
4559            case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
4560                s = "SUPPLICANT_STATE_CHANGE_EVENT";
4561                break;
4562            case WifiMonitor.AUTHENTICATION_FAILURE_EVENT:
4563                s = "AUTHENTICATION_FAILURE_EVENT";
4564                break;
4565            case WifiMonitor.WPS_SUCCESS_EVENT:
4566                s = "WPS_SUCCESS_EVENT";
4567                break;
4568            case WifiMonitor.WPS_FAIL_EVENT:
4569                s = "WPS_FAIL_EVENT";
4570                break;
4571            case WifiMonitor.SUP_REQUEST_IDENTITY:
4572                s = "SUP_REQUEST_IDENTITY";
4573                break;
4574            case WifiMonitor.NETWORK_CONNECTION_EVENT:
4575                s = "NETWORK_CONNECTION_EVENT";
4576                break;
4577            case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
4578                s = "NETWORK_DISCONNECTION_EVENT";
4579                break;
4580            case WifiMonitor.ASSOCIATION_REJECTION_EVENT:
4581                s = "ASSOCIATION_REJECTION_EVENT";
4582                break;
4583            case WifiMonitor.ANQP_DONE_EVENT:
4584                s = "WifiMonitor.ANQP_DONE_EVENT";
4585                break;
4586            case WifiMonitor.RX_HS20_ANQP_ICON_EVENT:
4587                s = "WifiMonitor.RX_HS20_ANQP_ICON_EVENT";
4588                break;
4589            case WifiMonitor.GAS_QUERY_DONE_EVENT:
4590                s = "WifiMonitor.GAS_QUERY_DONE_EVENT";
4591                break;
4592            case WifiMonitor.HS20_REMEDIATION_EVENT:
4593                s = "WifiMonitor.HS20_REMEDIATION_EVENT";
4594                break;
4595            case WifiMonitor.GAS_QUERY_START_EVENT:
4596                s = "WifiMonitor.GAS_QUERY_START_EVENT";
4597                break;
4598            case WifiP2pServiceImpl.GROUP_CREATING_TIMED_OUT:
4599                s = "GROUP_CREATING_TIMED_OUT";
4600                break;
4601            case WifiP2pServiceImpl.P2P_CONNECTION_CHANGED:
4602                s = "P2P_CONNECTION_CHANGED";
4603                break;
4604            case WifiP2pServiceImpl.DISCONNECT_WIFI_RESPONSE:
4605                s = "P2P.DISCONNECT_WIFI_RESPONSE";
4606                break;
4607            case WifiP2pServiceImpl.SET_MIRACAST_MODE:
4608                s = "P2P.SET_MIRACAST_MODE";
4609                break;
4610            case WifiP2pServiceImpl.BLOCK_DISCOVERY:
4611                s = "P2P.BLOCK_DISCOVERY";
4612                break;
4613            case WifiManager.CANCEL_WPS:
4614                s = "CANCEL_WPS";
4615                break;
4616            case WifiManager.CANCEL_WPS_FAILED:
4617                s = "CANCEL_WPS_FAILED";
4618                break;
4619            case WifiManager.CANCEL_WPS_SUCCEDED:
4620                s = "CANCEL_WPS_SUCCEDED";
4621                break;
4622            case WifiManager.START_WPS:
4623                s = "START_WPS";
4624                break;
4625            case WifiManager.START_WPS_SUCCEEDED:
4626                s = "START_WPS_SUCCEEDED";
4627                break;
4628            case WifiManager.WPS_FAILED:
4629                s = "WPS_FAILED";
4630                break;
4631            case WifiManager.WPS_COMPLETED:
4632                s = "WPS_COMPLETED";
4633                break;
4634            case WifiManager.RSSI_PKTCNT_FETCH:
4635                s = "RSSI_PKTCNT_FETCH";
4636                break;
4637            default:
4638                s = "what:" + Integer.toString(what);
4639                break;
4640        }
4641        return s;
4642    }
4643
4644    void registerConnected() {
4645        if (mLastNetworkId != WifiConfiguration.INVALID_NETWORK_ID) {
4646            mWifiConfigManager.updateNetworkAfterConnect(mLastNetworkId);
4647            // On connect, reset wifiScoreReport
4648            mWifiScoreReport.reset();
4649       }
4650    }
4651
4652    void registerDisconnected() {
4653        if (mLastNetworkId != WifiConfiguration.INVALID_NETWORK_ID) {
4654            mWifiConfigManager.updateNetworkAfterDisconnect(mLastNetworkId);
4655            // We are switching away from this configuration,
4656            // hence record the time we were connected last
4657            WifiConfiguration config = mWifiConfigManager.getConfiguredNetwork(mLastNetworkId);
4658            if (config != null) {
4659                // Remove WifiConfiguration for ephemeral or Passpoint networks, since they're
4660                // temporary networks.
4661                if (config.ephemeral || config.isPasspoint()) {
4662                    mWifiConfigManager.removeNetwork(mLastNetworkId, Process.WIFI_UID);
4663                }
4664            }
4665        }
4666    }
4667
4668    /**
4669     * Returns Wificonfiguration object correponding to the currently connected network, null if
4670     * not connected.
4671     */
4672    public WifiConfiguration getCurrentWifiConfiguration() {
4673        if (mLastNetworkId == WifiConfiguration.INVALID_NETWORK_ID) {
4674            return null;
4675        }
4676        return mWifiConfigManager.getConfiguredNetwork(mLastNetworkId);
4677    }
4678
4679    ScanResult getCurrentScanResult() {
4680        WifiConfiguration config = getCurrentWifiConfiguration();
4681        if (config == null) {
4682            return null;
4683        }
4684        String BSSID = mWifiInfo.getBSSID();
4685        if (BSSID == null) {
4686            BSSID = mTargetRoamBSSID;
4687        }
4688        ScanDetailCache scanDetailCache =
4689                mWifiConfigManager.getScanDetailCacheForNetwork(config.networkId);
4690
4691        if (scanDetailCache == null) {
4692            return null;
4693        }
4694
4695        return scanDetailCache.get(BSSID);
4696    }
4697
4698    String getCurrentBSSID() {
4699        if (isLinkDebouncing()) {
4700            return null;
4701        }
4702        return mLastBssid;
4703    }
4704
4705    class ConnectModeState extends State {
4706
4707        @Override
4708        public void enter() {
4709            if (!mWifiNative.removeAllNetworks()) {
4710                loge("Failed to remove networks on entering connect mode");
4711            }
4712            mWifiInfo.reset();
4713            mWifiInfo.setSupplicantState(SupplicantState.DISCONNECTED);
4714            // Let the system know that wifi is available in client mode.
4715            setWifiState(WIFI_STATE_ENABLED);
4716
4717            mNetworkInfo.setIsAvailable(true);
4718            if (mNetworkAgent != null) mNetworkAgent.sendNetworkInfo(mNetworkInfo);
4719
4720            // initialize network state
4721            setNetworkDetailedState(DetailedState.DISCONNECTED);
4722
4723            // Inform WifiConnectivityManager that Wifi is enabled
4724            mWifiConnectivityManager.setWifiEnabled(true);
4725            // Inform metrics that Wifi is Enabled (but not yet connected)
4726            mWifiMetrics.setWifiState(WifiMetricsProto.WifiLog.WIFI_DISCONNECTED);
4727            // Inform p2p service that wifi is up and ready when applicable
4728            p2pSendMessage(WifiStateMachine.CMD_ENABLE_P2P);
4729        }
4730
4731        @Override
4732        public void exit() {
4733            // Let the system know that wifi is not available since we are exiting client mode.
4734            mNetworkInfo.setIsAvailable(false);
4735            if (mNetworkAgent != null) mNetworkAgent.sendNetworkInfo(mNetworkInfo);
4736
4737            // Inform WifiConnectivityManager that Wifi is disabled
4738            mWifiConnectivityManager.setWifiEnabled(false);
4739            // Inform metrics that Wifi is being disabled (Toggled, airplane enabled, etc)
4740            mWifiMetrics.setWifiState(WifiMetricsProto.WifiLog.WIFI_DISABLED);
4741
4742            if (!mWifiNative.removeAllNetworks()) {
4743                loge("Failed to remove networks on exiting connect mode");
4744            }
4745            mWifiInfo.reset();
4746            mWifiInfo.setSupplicantState(SupplicantState.DISCONNECTED);
4747        }
4748
4749        @Override
4750        public boolean processMessage(Message message) {
4751            WifiConfiguration config;
4752            int netId;
4753            boolean ok;
4754            boolean didDisconnect;
4755            String bssid;
4756            String ssid;
4757            NetworkUpdateResult result;
4758            Set<Integer> removedNetworkIds;
4759            int reasonCode;
4760            boolean timedOut;
4761            logStateAndMessage(message, this);
4762
4763            switch (message.what) {
4764                case WifiMonitor.ASSOCIATION_REJECTION_EVENT:
4765                    mWifiDiagnostics.captureBugReportData(
4766                            WifiDiagnostics.REPORT_REASON_ASSOC_FAILURE);
4767                    didBlackListBSSID = false;
4768                    bssid = (String) message.obj;
4769                    timedOut = message.arg1 > 0;
4770                    reasonCode = message.arg2;
4771                    Log.d(TAG, "Assocation Rejection event: bssid=" + bssid + " reason code="
4772                            + reasonCode + " timedOut=" + Boolean.toString(timedOut));
4773                    if (bssid == null || TextUtils.isEmpty(bssid)) {
4774                        // If BSSID is null, use the target roam BSSID
4775                        bssid = mTargetRoamBSSID;
4776                    }
4777                    if (bssid != null) {
4778                        // If we have a BSSID, tell configStore to black list it
4779                        didBlackListBSSID = mWifiConnectivityManager.trackBssid(bssid, false,
4780                            reasonCode);
4781                    }
4782                    mWifiConfigManager.updateNetworkSelectionStatus(mTargetNetworkId,
4783                            WifiConfiguration.NetworkSelectionStatus
4784                            .DISABLED_ASSOCIATION_REJECTION);
4785                    mSupplicantStateTracker.sendMessage(WifiMonitor.ASSOCIATION_REJECTION_EVENT);
4786                    //If rejection occurred while Metrics is tracking a ConnnectionEvent, end it.
4787                    reportConnectionAttemptEnd(
4788                            WifiMetrics.ConnectionEvent.FAILURE_ASSOCIATION_REJECTION,
4789                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
4790                    mWifiInjector.getWifiLastResortWatchdog()
4791                            .noteConnectionFailureAndTriggerIfNeeded(
4792                                    getTargetSsid(), bssid,
4793                                    WifiLastResortWatchdog.FAILURE_CODE_ASSOCIATION);
4794                    break;
4795                case WifiMonitor.AUTHENTICATION_FAILURE_EVENT:
4796                    mWifiDiagnostics.captureBugReportData(
4797                            WifiDiagnostics.REPORT_REASON_AUTH_FAILURE);
4798                    mSupplicantStateTracker.sendMessage(WifiMonitor.AUTHENTICATION_FAILURE_EVENT);
4799                    mWifiConfigManager.updateNetworkSelectionStatus(mTargetNetworkId,
4800                            WifiConfiguration.NetworkSelectionStatus
4801                                    .DISABLED_AUTHENTICATION_FAILURE);
4802                    //If failure occurred while Metrics is tracking a ConnnectionEvent, end it.
4803                    reportConnectionAttemptEnd(
4804                            WifiMetrics.ConnectionEvent.FAILURE_AUTHENTICATION_FAILURE,
4805                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
4806                    mWifiInjector.getWifiLastResortWatchdog()
4807                            .noteConnectionFailureAndTriggerIfNeeded(
4808                                    getTargetSsid(), mTargetRoamBSSID,
4809                                    WifiLastResortWatchdog.FAILURE_CODE_AUTHENTICATION);
4810                    break;
4811                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
4812                    SupplicantState state = handleSupplicantStateChange(message);
4813                    // A driver/firmware hang can now put the interface in a down state.
4814                    // We detect the interface going down and recover from it
4815                    if (!SupplicantState.isDriverActive(state)) {
4816                        if (mNetworkInfo.getState() != NetworkInfo.State.DISCONNECTED) {
4817                            handleNetworkDisconnect();
4818                        }
4819                        log("Detected an interface down, restart driver");
4820                        // Rely on the fact that this will force us into killing supplicant and then
4821                        // restart supplicant from a clean state.
4822                        transitionTo(mSupplicantStoppingState);
4823                        sendMessage(CMD_START_SUPPLICANT);
4824                        break;
4825                    }
4826
4827                    // Supplicant can fail to report a NETWORK_DISCONNECTION_EVENT
4828                    // when authentication times out after a successful connection,
4829                    // we can figure this from the supplicant state. If supplicant
4830                    // state is DISCONNECTED, but the mNetworkInfo says we are not
4831                    // disconnected, we need to handle a disconnection
4832                    if (!isLinkDebouncing() && state == SupplicantState.DISCONNECTED &&
4833                            mNetworkInfo.getState() != NetworkInfo.State.DISCONNECTED) {
4834                        if (mVerboseLoggingEnabled) {
4835                            log("Missed CTRL-EVENT-DISCONNECTED, disconnect");
4836                        }
4837                        handleNetworkDisconnect();
4838                        transitionTo(mDisconnectedState);
4839                    }
4840
4841                    // If we have COMPLETED a connection to a BSSID, start doing
4842                    // DNAv4/DNAv6 -style probing for on-link neighbors of
4843                    // interest (e.g. routers); harmless if none are configured.
4844                    if (state == SupplicantState.COMPLETED) {
4845                        mIpManager.confirmConfiguration();
4846                    }
4847                    break;
4848                case WifiP2pServiceImpl.DISCONNECT_WIFI_REQUEST:
4849                    if (message.arg1 == 1) {
4850                        mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
4851                                StaEvent.DISCONNECT_P2P_DISCONNECT_WIFI_REQUEST);
4852                        mWifiNative.disconnect();
4853                        mTemporarilyDisconnectWifi = true;
4854                    } else {
4855                        mWifiNative.reconnect();
4856                        mTemporarilyDisconnectWifi = false;
4857                    }
4858                    break;
4859                case CMD_REMOVE_NETWORK:
4860                    if (!deleteNetworkConfigAndSendReply(message, false)) {
4861                        // failed to remove the config and caller was notified
4862                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
4863                        break;
4864                    }
4865                    //  we successfully deleted the network config
4866                    netId = message.arg1;
4867                    if (netId == mTargetNetworkId || netId == mLastNetworkId) {
4868                        // Disconnect and let autojoin reselect a new network
4869                        sendMessage(CMD_DISCONNECT);
4870                    }
4871                    break;
4872                case CMD_ENABLE_NETWORK:
4873                    boolean disableOthers = message.arg2 == 1;
4874                    netId = message.arg1;
4875                    if (disableOthers) {
4876                        // If the app has all the necessary permissions, this will trigger a connect
4877                        // attempt.
4878                        ok = connectToUserSelectNetwork(netId, message.sendingUid, false);
4879                    } else {
4880                        ok = mWifiConfigManager.enableNetwork(netId, false, message.sendingUid);
4881                    }
4882                    if (!ok) {
4883                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
4884                    }
4885                    replyToMessage(message, message.what, ok ? SUCCESS : FAILURE);
4886                    break;
4887                case WifiManager.DISABLE_NETWORK:
4888                    netId = message.arg1;
4889                    if (mWifiConfigManager.disableNetwork(netId, message.sendingUid)) {
4890                        replyToMessage(message, WifiManager.DISABLE_NETWORK_SUCCEEDED);
4891                        if (netId == mTargetNetworkId || netId == mLastNetworkId) {
4892                            // Disconnect and let autojoin reselect a new network
4893                            sendMessage(CMD_DISCONNECT);
4894                        }
4895                    } else {
4896                        loge("Failed to disable network");
4897                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
4898                        replyToMessage(message, WifiManager.DISABLE_NETWORK_FAILED,
4899                                WifiManager.ERROR);
4900                    }
4901                    break;
4902                case CMD_DISABLE_EPHEMERAL_NETWORK:
4903                    config = mWifiConfigManager.disableEphemeralNetwork((String)message.obj);
4904                    if (config != null) {
4905                        if (config.networkId == mTargetNetworkId
4906                                || config.networkId == mLastNetworkId) {
4907                            // Disconnect and let autojoin reselect a new network
4908                            sendMessage(CMD_DISCONNECT);
4909                        }
4910                    }
4911                    break;
4912                case CMD_SAVE_CONFIG:
4913                    ok = mWifiConfigManager.saveToStore(true);
4914                    replyToMessage(message, CMD_SAVE_CONFIG, ok ? SUCCESS : FAILURE);
4915                    // Inform the backup manager about a data change
4916                    mBackupManagerProxy.notifyDataChanged();
4917                    break;
4918                case WifiMonitor.SUP_REQUEST_IDENTITY:
4919                    int supplicantNetworkId = message.arg2;
4920                    netId = lookupFrameworkNetworkId(supplicantNetworkId);
4921                    boolean identitySent = false;
4922                    // For SIM & AKA/AKA' EAP method Only, get identity from ICC
4923                    if (targetWificonfiguration != null
4924                            && targetWificonfiguration.networkId == netId
4925                            && TelephonyUtil.isSimConfig(targetWificonfiguration)) {
4926                        String identity =
4927                                TelephonyUtil.getSimIdentity(getTelephonyManager(),
4928                                        targetWificonfiguration);
4929                        if (identity != null) {
4930                            mWifiNative.simIdentityResponse(supplicantNetworkId, identity);
4931                            identitySent = true;
4932                        } else {
4933                            Log.e(TAG, "Unable to retrieve identity from Telephony");
4934                        }
4935                    }
4936                    if (!identitySent) {
4937                        // Supplicant lacks credentials to connect to that network, hence black list
4938                        ssid = (String) message.obj;
4939                        if (targetWificonfiguration != null && ssid != null
4940                                && targetWificonfiguration.SSID != null
4941                                && targetWificonfiguration.SSID.equals("\"" + ssid + "\"")) {
4942                            mWifiConfigManager.updateNetworkSelectionStatus(
4943                                    targetWificonfiguration.networkId,
4944                                    WifiConfiguration.NetworkSelectionStatus
4945                                            .DISABLED_AUTHENTICATION_NO_CREDENTIALS);
4946                        }
4947                        mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
4948                                StaEvent.DISCONNECT_GENERIC);
4949                        mWifiNative.disconnect();
4950                    }
4951                    break;
4952                case WifiMonitor.SUP_REQUEST_SIM_AUTH:
4953                    logd("Received SUP_REQUEST_SIM_AUTH");
4954                    SimAuthRequestData requestData = (SimAuthRequestData) message.obj;
4955                    if (requestData != null) {
4956                        if (requestData.protocol == WifiEnterpriseConfig.Eap.SIM) {
4957                            handleGsmAuthRequest(requestData);
4958                        } else if (requestData.protocol == WifiEnterpriseConfig.Eap.AKA
4959                            || requestData.protocol == WifiEnterpriseConfig.Eap.AKA_PRIME) {
4960                            handle3GAuthRequest(requestData);
4961                        }
4962                    } else {
4963                        loge("Invalid sim auth request");
4964                    }
4965                    break;
4966                case CMD_GET_MATCHING_CONFIG:
4967                    replyToMessage(message, message.what,
4968                            mPasspointManager.getMatchingWifiConfig((ScanResult) message.obj));
4969                    break;
4970                case CMD_RECONNECT:
4971                    mWifiConnectivityManager.forceConnectivityScan();
4972                    break;
4973                case CMD_REASSOCIATE:
4974                    lastConnectAttemptTimestamp = mClock.getWallClockMillis();
4975                    mWifiNative.reassociate();
4976                    break;
4977                case CMD_RELOAD_TLS_AND_RECONNECT:
4978                    if (mWifiConfigManager.needsUnlockedKeyStore()) {
4979                        logd("Reconnecting to give a chance to un-connected TLS networks");
4980                        mWifiNative.disconnect();
4981                        lastConnectAttemptTimestamp = mClock.getWallClockMillis();
4982                        mWifiNative.reconnect();
4983                    }
4984                    break;
4985                case CMD_START_ROAM:
4986                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
4987                    return HANDLED;
4988                case CMD_START_CONNECT:
4989                    /* connect command coming from auto-join */
4990                    netId = message.arg1;
4991                    bssid = (String) message.obj;
4992                    config = mWifiConfigManager.getConfiguredNetworkWithPassword(netId);
4993                    logd("CMD_START_CONNECT sup state "
4994                            + mSupplicantStateTracker.getSupplicantStateName()
4995                            + " my state " + getCurrentState().getName()
4996                            + " nid=" + Integer.toString(netId)
4997                            + " roam=" + Boolean.toString(mIsAutoRoaming));
4998                    if (config == null) {
4999                        loge("CMD_START_CONNECT and no config, bail out...");
5000                        break;
5001                    }
5002                    mTargetNetworkId = netId;
5003                    setTargetBssid(config, bssid);
5004
5005                    reportConnectionAttemptStart(config, mTargetRoamBSSID,
5006                            WifiMetricsProto.ConnectionEvent.ROAM_UNRELATED);
5007                    if (mWifiNative.connectToNetwork(config)) {
5008                        mWifiMetrics.logStaEvent(StaEvent.TYPE_CMD_START_CONNECT, config);
5009                        lastConnectAttemptTimestamp = mClock.getWallClockMillis();
5010                        targetWificonfiguration = config;
5011                        mIsAutoRoaming = false;
5012                        if (isLinkDebouncing()) {
5013                            transitionTo(mRoamingState);
5014                        } else if (getCurrentState() != mDisconnectedState) {
5015                            transitionTo(mDisconnectingState);
5016                        }
5017                    } else {
5018                        loge("CMD_START_CONNECT Failed to start connection to network " + config);
5019                        reportConnectionAttemptEnd(
5020                                WifiMetrics.ConnectionEvent.FAILURE_CONNECT_NETWORK_FAILED,
5021                                WifiMetricsProto.ConnectionEvent.HLF_NONE);
5022                        replyToMessage(message, WifiManager.CONNECT_NETWORK_FAILED,
5023                                WifiManager.ERROR);
5024                        break;
5025                    }
5026                    break;
5027                case CMD_REMOVE_APP_CONFIGURATIONS:
5028                    removedNetworkIds =
5029                            mWifiConfigManager.removeNetworksForApp((ApplicationInfo) message.obj);
5030                    if (removedNetworkIds.contains(mTargetNetworkId) ||
5031                            removedNetworkIds.contains(mLastNetworkId)) {
5032                        // Disconnect and let autojoin reselect a new network.
5033                        sendMessage(CMD_DISCONNECT);
5034                    }
5035                    break;
5036                case CMD_REMOVE_USER_CONFIGURATIONS:
5037                    removedNetworkIds =
5038                            mWifiConfigManager.removeNetworksForUser((Integer) message.arg1);
5039                    if (removedNetworkIds.contains(mTargetNetworkId) ||
5040                            removedNetworkIds.contains(mLastNetworkId)) {
5041                        // Disconnect and let autojoin reselect a new network.
5042                        sendMessage(CMD_DISCONNECT);
5043                    }
5044                    break;
5045                case WifiManager.CONNECT_NETWORK:
5046                    /**
5047                     * The connect message can contain a network id passed as arg1 on message or
5048                     * or a config passed as obj on message.
5049                     * For a new network, a config is passed to create and connect.
5050                     * For an existing network, a network id is passed
5051                     */
5052                    netId = message.arg1;
5053                    config = (WifiConfiguration) message.obj;
5054                    mWifiConnectionStatistics.numWifiManagerJoinAttempt++;
5055                    boolean hasCredentialChanged = false;
5056                    // New network addition.
5057                    if (config != null) {
5058                        result = mWifiConfigManager.addOrUpdateNetwork(config, message.sendingUid);
5059                        if (!result.isSuccess()) {
5060                            loge("CONNECT_NETWORK adding/updating config=" + config + " failed");
5061                            messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
5062                            replyToMessage(message, WifiManager.CONNECT_NETWORK_FAILED,
5063                                    WifiManager.ERROR);
5064                            break;
5065                        }
5066                        netId = result.getNetworkId();
5067                        hasCredentialChanged = result.hasCredentialChanged();
5068                    }
5069                    if (!connectToUserSelectNetwork(
5070                            netId, message.sendingUid, hasCredentialChanged)) {
5071                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
5072                        replyToMessage(message, WifiManager.CONNECT_NETWORK_FAILED,
5073                                WifiManager.NOT_AUTHORIZED);
5074                        break;
5075                    }
5076                    mWifiMetrics.logStaEvent(StaEvent.TYPE_CONNECT_NETWORK, config);
5077                    broadcastWifiCredentialChanged(WifiManager.WIFI_CREDENTIAL_SAVED, config);
5078                    replyToMessage(message, WifiManager.CONNECT_NETWORK_SUCCEEDED);
5079                    break;
5080                case WifiManager.SAVE_NETWORK:
5081                    config = (WifiConfiguration) message.obj;
5082                    mWifiConnectionStatistics.numWifiManagerJoinAttempt++;
5083                    if (config == null) {
5084                        loge("SAVE_NETWORK with null configuration"
5085                                + mSupplicantStateTracker.getSupplicantStateName()
5086                                + " my state " + getCurrentState().getName());
5087                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
5088                        replyToMessage(message, WifiManager.SAVE_NETWORK_FAILED,
5089                                WifiManager.ERROR);
5090                        break;
5091                    }
5092                    result = mWifiConfigManager.addOrUpdateNetwork(config, message.sendingUid);
5093                    if (!result.isSuccess()) {
5094                        loge("SAVE_NETWORK adding/updating config=" + config + " failed");
5095                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
5096                        replyToMessage(message, WifiManager.SAVE_NETWORK_FAILED,
5097                                WifiManager.ERROR);
5098                        break;
5099                    }
5100                    if (!mWifiConfigManager.enableNetwork(
5101                            result.getNetworkId(), false, message.sendingUid)) {
5102                        loge("SAVE_NETWORK enabling config=" + config + " failed");
5103                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
5104                        replyToMessage(message, WifiManager.SAVE_NETWORK_FAILED,
5105                                WifiManager.ERROR);
5106                        break;
5107                    }
5108                    netId = result.getNetworkId();
5109                    if (mWifiInfo.getNetworkId() == netId) {
5110                        if (result.hasCredentialChanged()) {
5111                            // The network credentials changed and we're connected to this network,
5112                            // start a new connection with the updated credentials.
5113                            logi("SAVE_NETWORK credential changed for config=" + config.configKey()
5114                                    + ", Reconnecting.");
5115                            startConnectToNetwork(netId, SUPPLICANT_BSSID_ANY);
5116                        } else {
5117                            if (result.hasProxyChanged()) {
5118                                log("Reconfiguring proxy on connection");
5119                                mIpManager.setHttpProxy(
5120                                        getCurrentWifiConfiguration().getHttpProxy());
5121                            }
5122                            if (result.hasIpChanged()) {
5123                                // The current connection configuration was changed
5124                                // We switched from DHCP to static or from static to DHCP, or the
5125                                // static IP address has changed.
5126                                log("Reconfiguring IP on connection");
5127                                // TODO(b/36576642): clear addresses and disable IPv6
5128                                // to simplify obtainingIpState.
5129                                transitionTo(mObtainingIpState);
5130                            }
5131                        }
5132                    }
5133                    broadcastWifiCredentialChanged(WifiManager.WIFI_CREDENTIAL_SAVED, config);
5134                    replyToMessage(message, WifiManager.SAVE_NETWORK_SUCCEEDED);
5135                    break;
5136                case WifiManager.FORGET_NETWORK:
5137                    if (!deleteNetworkConfigAndSendReply(message, true)) {
5138                        // Caller was notified of failure, nothing else to do
5139                        break;
5140                    }
5141                    // the network was deleted
5142                    netId = message.arg1;
5143                    if (netId == mTargetNetworkId || netId == mLastNetworkId) {
5144                        // Disconnect and let autojoin reselect a new network
5145                        sendMessage(CMD_DISCONNECT);
5146                    }
5147                    break;
5148                case WifiManager.START_WPS:
5149                    WpsInfo wpsInfo = (WpsInfo) message.obj;
5150                    if (wpsInfo == null) {
5151                        loge("Cannot start WPS with null WpsInfo object");
5152                        replyToMessage(message, WifiManager.WPS_FAILED, WifiManager.ERROR);
5153                        break;
5154                    }
5155                    WpsResult wpsResult = new WpsResult();
5156                    // TODO(b/32898136): Not needed when we start deleting networks from supplicant
5157                    // on disconnect.
5158                    if (!mWifiNative.removeAllNetworks()) {
5159                        loge("Failed to remove networks before WPS");
5160                    }
5161                    switch (wpsInfo.setup) {
5162                        case WpsInfo.PBC:
5163                            if (mWifiNative.startWpsPbc(wpsInfo.BSSID)) {
5164                                wpsResult.status = WpsResult.Status.SUCCESS;
5165                            } else {
5166                                Log.e(TAG, "Failed to start WPS push button configuration");
5167                                wpsResult.status = WpsResult.Status.FAILURE;
5168                            }
5169                            break;
5170                        case WpsInfo.KEYPAD:
5171                            if (mWifiNative.startWpsRegistrar(wpsInfo.BSSID, wpsInfo.pin)) {
5172                                wpsResult.status = WpsResult.Status.SUCCESS;
5173                            } else {
5174                                Log.e(TAG, "Failed to start WPS push button configuration");
5175                                wpsResult.status = WpsResult.Status.FAILURE;
5176                            }
5177                            break;
5178                        case WpsInfo.DISPLAY:
5179                            wpsResult.pin = mWifiNative.startWpsPinDisplay(wpsInfo.BSSID);
5180                            if (!TextUtils.isEmpty(wpsResult.pin)) {
5181                                wpsResult.status = WpsResult.Status.SUCCESS;
5182                            } else {
5183                                Log.e(TAG, "Failed to start WPS pin method configuration");
5184                                wpsResult.status = WpsResult.Status.FAILURE;
5185                            }
5186                            break;
5187                        default:
5188                            wpsResult = new WpsResult(Status.FAILURE);
5189                            loge("Invalid setup for WPS");
5190                            break;
5191                    }
5192                    if (wpsResult.status == Status.SUCCESS) {
5193                        replyToMessage(message, WifiManager.START_WPS_SUCCEEDED, wpsResult);
5194                        transitionTo(mWpsRunningState);
5195                    } else {
5196                        loge("Failed to start WPS with config " + wpsInfo.toString());
5197                        replyToMessage(message, WifiManager.WPS_FAILED, WifiManager.ERROR);
5198                    }
5199                    break;
5200                case CMD_ASSOCIATED_BSSID:
5201                    // This is where we can confirm the connection BSSID. Use it to find the
5202                    // right ScanDetail to populate metrics.
5203                    String someBssid = (String) message.obj;
5204                    if (someBssid != null) {
5205                        // Get the ScanDetail associated with this BSSID.
5206                        ScanDetailCache scanDetailCache =
5207                                mWifiConfigManager.getScanDetailCacheForNetwork(mTargetNetworkId);
5208                        if (scanDetailCache != null) {
5209                            mWifiMetrics.setConnectionScanDetail(scanDetailCache.getScanDetail(
5210                                    someBssid));
5211                        }
5212                    }
5213                    return NOT_HANDLED;
5214                case WifiMonitor.NETWORK_CONNECTION_EVENT:
5215                    if (mVerboseLoggingEnabled) log("Network connection established");
5216                    mLastNetworkId = lookupFrameworkNetworkId(message.arg1);
5217                    mLastBssid = (String) message.obj;
5218                    reasonCode = message.arg2;
5219                    // TODO: This check should not be needed after WifiStateMachinePrime refactor.
5220                    // Currently, the last connected network configuration is left in
5221                    // wpa_supplicant, this may result in wpa_supplicant initiating connection
5222                    // to it after a config store reload. Hence the old network Id lookups may not
5223                    // work, so disconnect the network and let network selector reselect a new
5224                    // network.
5225                    config = getCurrentWifiConfiguration();
5226                    if (config != null) {
5227                        mWifiInfo.setBSSID(mLastBssid);
5228                        mWifiInfo.setNetworkId(mLastNetworkId);
5229                        mWifiConnectivityManager.trackBssid(mLastBssid, true, reasonCode);
5230                        // We need to get the updated pseudonym from supplicant for EAP-SIM/AKA/AKA'
5231                        if (config.enterpriseConfig != null
5232                                && TelephonyUtil.isSimEapMethod(
5233                                        config.enterpriseConfig.getEapMethod())) {
5234                            String anonymousIdentity = mWifiNative.getEapAnonymousIdentity();
5235                            if (anonymousIdentity != null) {
5236                                config.enterpriseConfig.setAnonymousIdentity(anonymousIdentity);
5237                            } else {
5238                                Log.d(TAG, "Failed to get updated anonymous identity"
5239                                        + " from supplicant, reset it in WifiConfiguration.");
5240                                config.enterpriseConfig.setAnonymousIdentity(null);
5241                            }
5242                            mWifiConfigManager.addOrUpdateNetwork(config, Process.WIFI_UID);
5243                        }
5244                        sendNetworkStateChangeBroadcast(mLastBssid);
5245                        transitionTo(mObtainingIpState);
5246                    } else {
5247                        logw("Connected to unknown networkId " + mLastNetworkId
5248                                + ", disconnecting...");
5249                        sendMessage(CMD_DISCONNECT);
5250                    }
5251                    break;
5252                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
5253                    // Calling handleNetworkDisconnect here is redundant because we might already
5254                    // have called it when leaving L2ConnectedState to go to disconnecting state
5255                    // or thru other path
5256                    // We should normally check the mWifiInfo or mLastNetworkId so as to check
5257                    // if they are valid, and only in this case call handleNEtworkDisconnect,
5258                    // TODO: this should be fixed for a L MR release
5259                    // The side effect of calling handleNetworkDisconnect twice is that a bunch of
5260                    // idempotent commands are executed twice (stopping Dhcp, enabling the SPS mode
5261                    // at the chip etc...
5262                    if (mVerboseLoggingEnabled) log("ConnectModeState: Network connection lost ");
5263                    handleNetworkDisconnect();
5264                    transitionTo(mDisconnectedState);
5265                    break;
5266                case CMD_QUERY_OSU_ICON:
5267                    mPasspointManager.queryPasspointIcon(
5268                            ((Bundle) message.obj).getLong(EXTRA_OSU_ICON_QUERY_BSSID),
5269                            ((Bundle) message.obj).getString(EXTRA_OSU_ICON_QUERY_FILENAME));
5270                    break;
5271                case CMD_MATCH_PROVIDER_NETWORK:
5272                    // TODO(b/31065385): Passpoint config management.
5273                    replyToMessage(message, message.what, 0);
5274                    break;
5275                case CMD_ADD_OR_UPDATE_PASSPOINT_CONFIG:
5276                    PasspointConfiguration passpointConfig = (PasspointConfiguration) message.obj;
5277                    if (mPasspointManager.addOrUpdateProvider(passpointConfig, message.arg1)) {
5278                        String fqdn = passpointConfig.getHomeSp().getFqdn();
5279                        if (isProviderOwnedNetwork(mTargetNetworkId, fqdn)
5280                                || isProviderOwnedNetwork(mLastNetworkId, fqdn)) {
5281                            logd("Disconnect from current network since its provider is updated");
5282                            sendMessage(CMD_DISCONNECT);
5283                        }
5284                        replyToMessage(message, message.what, SUCCESS);
5285                    } else {
5286                        replyToMessage(message, message.what, FAILURE);
5287                    }
5288                    break;
5289                case CMD_REMOVE_PASSPOINT_CONFIG:
5290                    String fqdn = (String) message.obj;
5291                    if (mPasspointManager.removeProvider(fqdn)) {
5292                        if (isProviderOwnedNetwork(mTargetNetworkId, fqdn)
5293                                || isProviderOwnedNetwork(mLastNetworkId, fqdn)) {
5294                            logd("Disconnect from current network since its provider is removed");
5295                            sendMessage(CMD_DISCONNECT);
5296                        }
5297                        replyToMessage(message, message.what, SUCCESS);
5298                    } else {
5299                        replyToMessage(message, message.what, FAILURE);
5300                    }
5301                    break;
5302                case CMD_ENABLE_P2P:
5303                    p2pSendMessage(WifiStateMachine.CMD_ENABLE_P2P);
5304                    break;
5305                default:
5306                    return NOT_HANDLED;
5307            }
5308            return HANDLED;
5309        }
5310    }
5311
5312    private void updateCapabilities(WifiConfiguration config) {
5313        NetworkCapabilities networkCapabilities = new NetworkCapabilities(mDfltNetworkCapabilities);
5314        if (config != null) {
5315            if (config.ephemeral) {
5316                networkCapabilities.removeCapability(
5317                        NetworkCapabilities.NET_CAPABILITY_TRUSTED);
5318            } else {
5319                networkCapabilities.addCapability(
5320                        NetworkCapabilities.NET_CAPABILITY_TRUSTED);
5321            }
5322
5323            networkCapabilities.setSignalStrength(
5324                    (mWifiInfo.getRssi() != WifiInfo.INVALID_RSSI)
5325                    ? mWifiInfo.getRssi()
5326                    : NetworkCapabilities.SIGNAL_STRENGTH_UNSPECIFIED);
5327        }
5328
5329        if (mWifiInfo.getMeteredHint()) {
5330            networkCapabilities.removeCapability(NetworkCapabilities.NET_CAPABILITY_NOT_METERED);
5331        }
5332
5333        mNetworkAgent.sendNetworkCapabilities(networkCapabilities);
5334    }
5335
5336    /**
5337     * Checks if the given network |networkdId| is provided by the given Passpoint provider with
5338     * |providerFqdn|.
5339     *
5340     * @param networkId The ID of the network to check
5341     * @param providerFqdn The FQDN of the Passpoint provider
5342     * @return true if the given network is provided by the given Passpoint provider
5343     */
5344    private boolean isProviderOwnedNetwork(int networkId, String providerFqdn) {
5345        if (networkId == WifiConfiguration.INVALID_NETWORK_ID) {
5346            return false;
5347        }
5348        WifiConfiguration config = mWifiConfigManager.getConfiguredNetwork(networkId);
5349        if (config == null) {
5350            return false;
5351        }
5352        return TextUtils.equals(config.FQDN, providerFqdn);
5353    }
5354
5355    private class WifiNetworkAgent extends NetworkAgent {
5356        public WifiNetworkAgent(Looper l, Context c, String TAG, NetworkInfo ni,
5357                NetworkCapabilities nc, LinkProperties lp, int score, NetworkMisc misc) {
5358            super(l, c, TAG, ni, nc, lp, score, misc);
5359        }
5360
5361        @Override
5362        protected void unwanted() {
5363            // Ignore if we're not the current networkAgent.
5364            if (this != mNetworkAgent) return;
5365            if (mVerboseLoggingEnabled) {
5366                log("WifiNetworkAgent -> Wifi unwanted score " + Integer.toString(mWifiInfo.score));
5367            }
5368            unwantedNetwork(NETWORK_STATUS_UNWANTED_DISCONNECT);
5369        }
5370
5371        @Override
5372        protected void networkStatus(int status, String redirectUrl) {
5373            if (this != mNetworkAgent) return;
5374            if (status == NetworkAgent.INVALID_NETWORK) {
5375                if (mVerboseLoggingEnabled) {
5376                    log("WifiNetworkAgent -> Wifi networkStatus invalid, score="
5377                            + Integer.toString(mWifiInfo.score));
5378                }
5379                unwantedNetwork(NETWORK_STATUS_UNWANTED_VALIDATION_FAILED);
5380            } else if (status == NetworkAgent.VALID_NETWORK) {
5381                if (mVerboseLoggingEnabled) {
5382                    log("WifiNetworkAgent -> Wifi networkStatus valid, score= "
5383                            + Integer.toString(mWifiInfo.score));
5384                }
5385                mWifiMetrics.logStaEvent(StaEvent.TYPE_NETWORK_AGENT_VALID_NETWORK);
5386                doNetworkStatus(status);
5387            }
5388        }
5389
5390        @Override
5391        protected void saveAcceptUnvalidated(boolean accept) {
5392            if (this != mNetworkAgent) return;
5393            WifiStateMachine.this.sendMessage(CMD_ACCEPT_UNVALIDATED, accept ? 1 : 0);
5394        }
5395
5396        @Override
5397        protected void startPacketKeepalive(Message msg) {
5398            WifiStateMachine.this.sendMessage(
5399                    CMD_START_IP_PACKET_OFFLOAD, msg.arg1, msg.arg2, msg.obj);
5400        }
5401
5402        @Override
5403        protected void stopPacketKeepalive(Message msg) {
5404            WifiStateMachine.this.sendMessage(
5405                    CMD_STOP_IP_PACKET_OFFLOAD, msg.arg1, msg.arg2, msg.obj);
5406        }
5407
5408        @Override
5409        protected void setSignalStrengthThresholds(int[] thresholds) {
5410            // 0. If there are no thresholds, or if the thresholds are invalid, stop RSSI monitoring.
5411            // 1. Tell the hardware to start RSSI monitoring here, possibly adding MIN_VALUE and
5412            //    MAX_VALUE at the start/end of the thresholds array if necessary.
5413            // 2. Ensure that when the hardware event fires, we fetch the RSSI from the hardware
5414            //    event, call mWifiInfo.setRssi() with it, and call updateCapabilities(), and then
5415            //    re-arm the hardware event. This needs to be done on the state machine thread to
5416            //    avoid race conditions. The RSSI used to re-arm the event (and perhaps also the one
5417            //    sent in the NetworkCapabilities) must be the one received from the hardware event
5418            //    received, or we might skip callbacks.
5419            // 3. Ensure that when we disconnect, RSSI monitoring is stopped.
5420            log("Received signal strength thresholds: " + Arrays.toString(thresholds));
5421            if (thresholds.length == 0) {
5422                WifiStateMachine.this.sendMessage(CMD_STOP_RSSI_MONITORING_OFFLOAD,
5423                        mWifiInfo.getRssi());
5424                return;
5425            }
5426            int [] rssiVals = Arrays.copyOf(thresholds, thresholds.length + 2);
5427            rssiVals[rssiVals.length - 2] = Byte.MIN_VALUE;
5428            rssiVals[rssiVals.length - 1] = Byte.MAX_VALUE;
5429            Arrays.sort(rssiVals);
5430            byte[] rssiRange = new byte[rssiVals.length];
5431            for (int i = 0; i < rssiVals.length; i++) {
5432                int val = rssiVals[i];
5433                if (val <= Byte.MAX_VALUE && val >= Byte.MIN_VALUE) {
5434                    rssiRange[i] = (byte) val;
5435                } else {
5436                    Log.e(TAG, "Illegal value " + val + " for RSSI thresholds: "
5437                            + Arrays.toString(rssiVals));
5438                    WifiStateMachine.this.sendMessage(CMD_STOP_RSSI_MONITORING_OFFLOAD,
5439                            mWifiInfo.getRssi());
5440                    return;
5441                }
5442            }
5443            // TODO: Do we quash rssi values in this sorted array which are very close?
5444            mRssiRanges = rssiRange;
5445            WifiStateMachine.this.sendMessage(CMD_START_RSSI_MONITORING_OFFLOAD,
5446                    mWifiInfo.getRssi());
5447        }
5448
5449        @Override
5450        protected void preventAutomaticReconnect() {
5451            if (this != mNetworkAgent) return;
5452            unwantedNetwork(NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN);
5453        }
5454    }
5455
5456    void unwantedNetwork(int reason) {
5457        sendMessage(CMD_UNWANTED_NETWORK, reason);
5458    }
5459
5460    void doNetworkStatus(int status) {
5461        sendMessage(CMD_NETWORK_STATUS, status);
5462    }
5463
5464    // rfc4186 & rfc4187:
5465    // create Permanent Identity base on IMSI,
5466    // identity = usernam@realm
5467    // with username = prefix | IMSI
5468    // and realm is derived MMC/MNC tuple according 3GGP spec(TS23.003)
5469    private String buildIdentity(int eapMethod, String imsi, String mccMnc) {
5470        String mcc;
5471        String mnc;
5472        String prefix;
5473
5474        if (imsi == null || imsi.isEmpty())
5475            return "";
5476
5477        if (eapMethod == WifiEnterpriseConfig.Eap.SIM)
5478            prefix = "1";
5479        else if (eapMethod == WifiEnterpriseConfig.Eap.AKA)
5480            prefix = "0";
5481        else if (eapMethod == WifiEnterpriseConfig.Eap.AKA_PRIME)
5482            prefix = "6";
5483        else  // not a valide EapMethod
5484            return "";
5485
5486        /* extract mcc & mnc from mccMnc */
5487        if (mccMnc != null && !mccMnc.isEmpty()) {
5488            mcc = mccMnc.substring(0, 3);
5489            mnc = mccMnc.substring(3);
5490            if (mnc.length() == 2)
5491                mnc = "0" + mnc;
5492        } else {
5493            // extract mcc & mnc from IMSI, assume mnc size is 3
5494            mcc = imsi.substring(0, 3);
5495            mnc = imsi.substring(3, 6);
5496        }
5497
5498        return prefix + imsi + "@wlan.mnc" + mnc + ".mcc" + mcc + ".3gppnetwork.org";
5499    }
5500
5501    boolean startScanForConfiguration(WifiConfiguration config) {
5502        if (config == null)
5503            return false;
5504
5505        // We are still seeing a fairly high power consumption triggered by autojoin scans
5506        // Hence do partial scans only for PSK configuration that are roamable since the
5507        // primary purpose of the partial scans is roaming.
5508        // Full badn scans with exponential backoff for the purpose or extended roaming and
5509        // network switching are performed unconditionally.
5510        ScanDetailCache scanDetailCache =
5511                mWifiConfigManager.getScanDetailCacheForNetwork(config.networkId);
5512        if (scanDetailCache == null
5513                || !config.allowedKeyManagement.get(WifiConfiguration.KeyMgmt.WPA_PSK)
5514                || scanDetailCache.size() > 6) {
5515            //return true but to not trigger the scan
5516            return true;
5517        }
5518        Set<Integer> freqs =
5519                mWifiConfigManager.fetchChannelSetForNetworkForPartialScan(
5520                        config.networkId, ONE_HOUR_MILLI, mWifiInfo.getFrequency());
5521        if (freqs != null && freqs.size() != 0) {
5522            //if (mVerboseLoggingEnabled) {
5523            logd("starting scan for " + config.configKey() + " with " + freqs);
5524            //}
5525            List<WifiScanner.ScanSettings.HiddenNetwork> hiddenNetworks = new ArrayList<>();
5526            if (config.hiddenSSID) {
5527                hiddenNetworks.add(new WifiScanner.ScanSettings.HiddenNetwork(config.SSID));
5528            }
5529            // Call wifi native to start the scan
5530            if (startScanNative(freqs, hiddenNetworks, WIFI_WORK_SOURCE)) {
5531                messageHandlingStatus = MESSAGE_HANDLING_STATUS_OK;
5532            } else {
5533                // used for debug only, mark scan as failed
5534                messageHandlingStatus = MESSAGE_HANDLING_STATUS_HANDLING_ERROR;
5535            }
5536            return true;
5537        } else {
5538            if (mVerboseLoggingEnabled) logd("no channels for " + config.configKey());
5539            return false;
5540        }
5541    }
5542
5543    class L2ConnectedState extends State {
5544        @Override
5545        public void enter() {
5546            mRssiPollToken++;
5547            if (mEnableRssiPolling) {
5548                sendMessage(CMD_RSSI_POLL, mRssiPollToken, 0);
5549            }
5550            if (mNetworkAgent != null) {
5551                loge("Have NetworkAgent when entering L2Connected");
5552                setNetworkDetailedState(DetailedState.DISCONNECTED);
5553            }
5554            setNetworkDetailedState(DetailedState.CONNECTING);
5555
5556            mNetworkAgent = new WifiNetworkAgent(getHandler().getLooper(), mContext,
5557                    "WifiNetworkAgent", mNetworkInfo, mNetworkCapabilitiesFilter,
5558                    mLinkProperties, 60, mNetworkMisc);
5559
5560            // We must clear the config BSSID, as the wifi chipset may decide to roam
5561            // from this point on and having the BSSID specified in the network block would
5562            // cause the roam to faile and the device to disconnect
5563            clearTargetBssid("L2ConnectedState");
5564            mCountryCode.setReadyForChange(false);
5565            mWifiMetrics.setWifiState(WifiMetricsProto.WifiLog.WIFI_ASSOCIATED);
5566        }
5567
5568        @Override
5569        public void exit() {
5570            mIpManager.stop();
5571
5572            // This is handled by receiving a NETWORK_DISCONNECTION_EVENT in ConnectModeState
5573            // Bug: 15347363
5574            // For paranoia's sake, call handleNetworkDisconnect
5575            // only if BSSID is null or last networkId
5576            // is not invalid.
5577            if (mVerboseLoggingEnabled) {
5578                StringBuilder sb = new StringBuilder();
5579                sb.append("leaving L2ConnectedState state nid=" + Integer.toString(mLastNetworkId));
5580                if (mLastBssid !=null) {
5581                    sb.append(" ").append(mLastBssid);
5582                }
5583            }
5584            if (mLastBssid != null || mLastNetworkId != WifiConfiguration.INVALID_NETWORK_ID) {
5585                handleNetworkDisconnect();
5586            }
5587            mCountryCode.setReadyForChange(true);
5588            mWifiMetrics.setWifiState(WifiMetricsProto.WifiLog.WIFI_DISCONNECTED);
5589        }
5590
5591        @Override
5592        public boolean processMessage(Message message) {
5593            logStateAndMessage(message, this);
5594
5595            switch (message.what) {
5596                case DhcpClient.CMD_PRE_DHCP_ACTION:
5597                    handlePreDhcpSetup();
5598                    break;
5599                case DhcpClient.CMD_PRE_DHCP_ACTION_COMPLETE:
5600                    mIpManager.completedPreDhcpAction();
5601                    break;
5602                case DhcpClient.CMD_POST_DHCP_ACTION:
5603                    handlePostDhcpSetup();
5604                    // We advance to mConnectedState because IpManager will also send a
5605                    // CMD_IPV4_PROVISIONING_SUCCESS message, which calls handleIPv4Success(),
5606                    // which calls updateLinkProperties, which then sends
5607                    // CMD_IP_CONFIGURATION_SUCCESSFUL.
5608                    //
5609                    // In the event of failure, we transition to mDisconnectingState
5610                    // similarly--via messages sent back from IpManager.
5611                    break;
5612                case CMD_IPV4_PROVISIONING_SUCCESS: {
5613                    handleIPv4Success((DhcpResults) message.obj);
5614                    sendNetworkStateChangeBroadcast(mLastBssid);
5615                    break;
5616                }
5617                case CMD_IPV4_PROVISIONING_FAILURE: {
5618                    handleIPv4Failure();
5619                    break;
5620                }
5621                case CMD_IP_CONFIGURATION_SUCCESSFUL:
5622                    handleSuccessfulIpConfiguration();
5623                    reportConnectionAttemptEnd(
5624                            WifiMetrics.ConnectionEvent.FAILURE_NONE,
5625                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
5626                    sendConnectedState();
5627                    transitionTo(mConnectedState);
5628                    break;
5629                case CMD_IP_CONFIGURATION_LOST:
5630                    // Get Link layer stats so that we get fresh tx packet counters.
5631                    getWifiLinkLayerStats();
5632                    handleIpConfigurationLost();
5633                    reportConnectionAttemptEnd(
5634                            WifiMetrics.ConnectionEvent.FAILURE_DHCP,
5635                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
5636                    transitionTo(mDisconnectingState);
5637                    break;
5638                case CMD_IP_REACHABILITY_LOST:
5639                    if (mVerboseLoggingEnabled && message.obj != null) log((String) message.obj);
5640                    if (mIpReachabilityDisconnectEnabled) {
5641                        handleIpReachabilityLost();
5642                        transitionTo(mDisconnectingState);
5643                    } else {
5644                        logd("CMD_IP_REACHABILITY_LOST but disconnect disabled -- ignore");
5645                    }
5646                    break;
5647                case CMD_DISCONNECT:
5648                    mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
5649                                StaEvent.DISCONNECT_UNKNOWN);
5650                    mWifiNative.disconnect();
5651                    transitionTo(mDisconnectingState);
5652                    break;
5653                case WifiP2pServiceImpl.DISCONNECT_WIFI_REQUEST:
5654                    if (message.arg1 == 1) {
5655                        mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
5656                                StaEvent.DISCONNECT_P2P_DISCONNECT_WIFI_REQUEST);
5657                        mWifiNative.disconnect();
5658                        mTemporarilyDisconnectWifi = true;
5659                        transitionTo(mDisconnectingState);
5660                    }
5661                    break;
5662                case CMD_SET_OPERATIONAL_MODE:
5663                    if (message.arg1 != CONNECT_MODE) {
5664                        sendMessage(CMD_DISCONNECT);
5665                        deferMessage(message);
5666                    }
5667                    break;
5668                    /* Ignore connection to same network */
5669                case WifiManager.CONNECT_NETWORK:
5670                    int netId = message.arg1;
5671                    if (mWifiInfo.getNetworkId() == netId) {
5672                        replyToMessage(message, WifiManager.CONNECT_NETWORK_SUCCEEDED);
5673                        break;
5674                    }
5675                    return NOT_HANDLED;
5676                case WifiMonitor.NETWORK_CONNECTION_EVENT:
5677                    mWifiInfo.setBSSID((String) message.obj);
5678                    mLastNetworkId = lookupFrameworkNetworkId(message.arg1);
5679                    mWifiInfo.setNetworkId(mLastNetworkId);
5680                    if(!mLastBssid.equals(message.obj)) {
5681                        mLastBssid = (String) message.obj;
5682                        sendNetworkStateChangeBroadcast(mLastBssid);
5683                    }
5684                    break;
5685                case CMD_RSSI_POLL:
5686                    if (message.arg1 == mRssiPollToken) {
5687                        if (mEnableChipWakeUpWhenAssociated) {
5688                            if (mVerboseLoggingEnabled) {
5689                                log(" get link layer stats " + mWifiLinkLayerStatsSupported);
5690                            }
5691                            WifiLinkLayerStats stats = getWifiLinkLayerStats();
5692                            if (stats != null) {
5693                                // Sanity check the results provided by driver
5694                                if (mWifiInfo.getRssi() != WifiInfo.INVALID_RSSI
5695                                        && (stats.rssi_mgmt == 0
5696                                        || stats.beacon_rx == 0)) {
5697                                    stats = null;
5698                                }
5699                            }
5700                            // Get Info and continue polling
5701                            fetchRssiLinkSpeedAndFrequencyNative();
5702                            // Send the update score to network agent.
5703                            mWifiScoreReport.calculateAndReportScore(
5704                                    mWifiInfo, mNetworkAgent, mAggressiveHandover,
5705                                    mWifiMetrics);
5706                        }
5707                        sendMessageDelayed(obtainMessage(CMD_RSSI_POLL,
5708                                mRssiPollToken, 0), POLL_RSSI_INTERVAL_MSECS);
5709                        if (mVerboseLoggingEnabled) sendRssiChangeBroadcast(mWifiInfo.getRssi());
5710                    } else {
5711                        // Polling has completed
5712                    }
5713                    break;
5714                case CMD_ENABLE_RSSI_POLL:
5715                    cleanWifiScore();
5716                    if (mEnableRssiPollWhenAssociated) {
5717                        mEnableRssiPolling = (message.arg1 == 1);
5718                    } else {
5719                        mEnableRssiPolling = false;
5720                    }
5721                    mRssiPollToken++;
5722                    if (mEnableRssiPolling) {
5723                        // First poll
5724                        fetchRssiLinkSpeedAndFrequencyNative();
5725                        sendMessageDelayed(obtainMessage(CMD_RSSI_POLL,
5726                                mRssiPollToken, 0), POLL_RSSI_INTERVAL_MSECS);
5727                    }
5728                    break;
5729                case WifiManager.RSSI_PKTCNT_FETCH:
5730                    RssiPacketCountInfo info = new RssiPacketCountInfo();
5731                    fetchRssiLinkSpeedAndFrequencyNative();
5732                    info.rssi = mWifiInfo.getRssi();
5733                    WifiNative.TxPacketCounters counters = mWifiNative.getTxPacketCounters();
5734                    if (counters != null) {
5735                        info.txgood = counters.txSucceeded;
5736                        info.txbad = counters.txFailed;
5737                        replyToMessage(message, WifiManager.RSSI_PKTCNT_FETCH_SUCCEEDED, info);
5738                    } else {
5739                        replyToMessage(message,
5740                                WifiManager.RSSI_PKTCNT_FETCH_FAILED, WifiManager.ERROR);
5741                    }
5742                    break;
5743                case CMD_DELAYED_NETWORK_DISCONNECT:
5744                    if (!isLinkDebouncing()) {
5745
5746                        // Ignore if we are not debouncing
5747                        logd("CMD_DELAYED_NETWORK_DISCONNECT and not debouncing - ignore "
5748                                + message.arg1);
5749                        return HANDLED;
5750                    } else {
5751                        logd("CMD_DELAYED_NETWORK_DISCONNECT and debouncing - disconnect "
5752                                + message.arg1);
5753
5754                        mIsLinkDebouncing = false;
5755                        // If we are still debouncing while this message comes,
5756                        // it means we were not able to reconnect within the alloted time
5757                        // = LINK_FLAPPING_DEBOUNCE_MSEC
5758                        // and thus, trigger a real disconnect
5759                        handleNetworkDisconnect();
5760                        transitionTo(mDisconnectedState);
5761                    }
5762                    break;
5763                case CMD_ASSOCIATED_BSSID:
5764                    if ((String) message.obj == null) {
5765                        logw("Associated command w/o BSSID");
5766                        break;
5767                    }
5768                    mLastBssid = (String) message.obj;
5769                    if (mLastBssid != null && (mWifiInfo.getBSSID() == null
5770                            || !mLastBssid.equals(mWifiInfo.getBSSID()))) {
5771                        mWifiInfo.setBSSID((String) message.obj);
5772                        sendNetworkStateChangeBroadcast(mLastBssid);
5773                    }
5774                    break;
5775                case CMD_START_RSSI_MONITORING_OFFLOAD:
5776                case CMD_RSSI_THRESHOLD_BREACH:
5777                    byte currRssi = (byte) message.arg1;
5778                    processRssiThreshold(currRssi, message.what);
5779                    break;
5780                case CMD_STOP_RSSI_MONITORING_OFFLOAD:
5781                    stopRssiMonitoringOffload();
5782                    break;
5783                case CMD_RESET_SIM_NETWORKS:
5784                    if (message.arg1 == 0 // sim was removed
5785                            && mLastNetworkId != WifiConfiguration.INVALID_NETWORK_ID) {
5786                        WifiConfiguration config =
5787                                mWifiConfigManager.getConfiguredNetwork(mLastNetworkId);
5788                        if (TelephonyUtil.isSimConfig(config)) {
5789                            mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
5790                                    StaEvent.DISCONNECT_RESET_SIM_NETWORKS);
5791                            mWifiNative.disconnect();
5792                            transitionTo(mDisconnectingState);
5793                        }
5794                    }
5795                    /* allow parent state to reset data for other networks */
5796                    return NOT_HANDLED;
5797                default:
5798                    return NOT_HANDLED;
5799            }
5800
5801            return HANDLED;
5802        }
5803    }
5804
5805    class ObtainingIpState extends State {
5806        @Override
5807        public void enter() {
5808            WifiConfiguration currentConfig = getCurrentWifiConfiguration();
5809            boolean isUsingStaticIp =
5810                    (currentConfig.getIpAssignment() == IpConfiguration.IpAssignment.STATIC);
5811            if (mVerboseLoggingEnabled) {
5812                String key = "";
5813                if (getCurrentWifiConfiguration() != null) {
5814                    key = getCurrentWifiConfiguration().configKey();
5815                }
5816                log("enter ObtainingIpState netId=" + Integer.toString(mLastNetworkId)
5817                        + " " + key + " "
5818                        + " roam=" + mIsAutoRoaming
5819                        + " static=" + isUsingStaticIp);
5820            }
5821
5822            // Reset link Debouncing, indicating we have successfully re-connected to the AP
5823            // We might still be roaming
5824            mIsLinkDebouncing = false;
5825
5826            // Send event to CM & network change broadcast
5827            setNetworkDetailedState(DetailedState.OBTAINING_IPADDR);
5828
5829            // We must clear the config BSSID, as the wifi chipset may decide to roam
5830            // from this point on and having the BSSID specified in the network block would
5831            // cause the roam to fail and the device to disconnect.
5832            clearTargetBssid("ObtainingIpAddress");
5833
5834            // Stop IpManager in case we're switching from DHCP to static
5835            // configuration or vice versa.
5836            //
5837            // TODO: Only ever enter this state the first time we connect to a
5838            // network, never on switching between static configuration and
5839            // DHCP. When we transition from static configuration to DHCP in
5840            // particular, we must tell ConnectivityService that we're
5841            // disconnected, because DHCP might take a long time during which
5842            // connectivity APIs such as getActiveNetworkInfo should not return
5843            // CONNECTED.
5844            stopIpManager();
5845
5846            mIpManager.setHttpProxy(currentConfig.getHttpProxy());
5847            if (!TextUtils.isEmpty(mTcpBufferSizes)) {
5848                mIpManager.setTcpBufferSizes(mTcpBufferSizes);
5849            }
5850            final IpManager.ProvisioningConfiguration prov;
5851            if (!isUsingStaticIp) {
5852                prov = IpManager.buildProvisioningConfiguration()
5853                            .withPreDhcpAction()
5854                            .withApfCapabilities(mWifiNative.getApfCapabilities())
5855                            .build();
5856            } else {
5857                StaticIpConfiguration staticIpConfig = currentConfig.getStaticIpConfiguration();
5858                prov = IpManager.buildProvisioningConfiguration()
5859                            .withStaticConfiguration(staticIpConfig)
5860                            .withApfCapabilities(mWifiNative.getApfCapabilities())
5861                            .build();
5862            }
5863            mIpManager.startProvisioning(prov);
5864            // Get Link layer stats so as we get fresh tx packet counters
5865            getWifiLinkLayerStats();
5866        }
5867
5868        @Override
5869        public boolean processMessage(Message message) {
5870            logStateAndMessage(message, this);
5871
5872            switch(message.what) {
5873                case CMD_START_CONNECT:
5874                case CMD_START_ROAM:
5875                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
5876                    break;
5877                case WifiManager.SAVE_NETWORK:
5878                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
5879                    deferMessage(message);
5880                    break;
5881                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
5882                    reportConnectionAttemptEnd(
5883                            WifiMetrics.ConnectionEvent.FAILURE_NETWORK_DISCONNECTION,
5884                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
5885                    return NOT_HANDLED;
5886                case CMD_SET_HIGH_PERF_MODE:
5887                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
5888                    deferMessage(message);
5889                    break;
5890                    /* Defer scan request since we should not switch to other channels at DHCP */
5891                case CMD_START_SCAN:
5892                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DEFERRED;
5893                    deferMessage(message);
5894                    break;
5895                default:
5896                    return NOT_HANDLED;
5897            }
5898            return HANDLED;
5899        }
5900    }
5901
5902    private void sendConnectedState() {
5903        // If this network was explicitly selected by the user, evaluate whether to call
5904        // explicitlySelected() so the system can treat it appropriately.
5905        WifiConfiguration config = getCurrentWifiConfiguration();
5906        if (config == null) {
5907            Log.wtf(TAG, "Current WifiConfiguration is null, but IP provisioning just succeeded");
5908        } else if (mWifiConfigManager.getLastSelectedNetwork() == config.networkId) {
5909            boolean prompt =
5910                    mWifiPermissionsUtil.checkConfigOverridePermission(config.lastConnectUid);
5911            if (mVerboseLoggingEnabled) {
5912                log("Network selected by UID " + config.lastConnectUid + " prompt=" + prompt);
5913            }
5914            if (prompt) {
5915                // Selected by the user via Settings or QuickSettings. If this network has Internet
5916                // access, switch to it. Otherwise, switch to it only if the user confirms that they
5917                // really want to switch, or has already confirmed and selected "Don't ask again".
5918                if (mVerboseLoggingEnabled) {
5919                    log("explictlySelected acceptUnvalidated=" + config.noInternetAccessExpected);
5920                }
5921                mNetworkAgent.explicitlySelected(config.noInternetAccessExpected);
5922            }
5923        }
5924
5925        setNetworkDetailedState(DetailedState.CONNECTED);
5926        mWifiConfigManager.updateNetworkAfterConnect(mLastNetworkId);
5927        sendNetworkStateChangeBroadcast(mLastBssid);
5928    }
5929
5930    class RoamingState extends State {
5931        boolean mAssociated;
5932        @Override
5933        public void enter() {
5934            if (mVerboseLoggingEnabled) {
5935                log("RoamingState Enter"
5936                        + " mScreenOn=" + mScreenOn );
5937            }
5938
5939            // Make sure we disconnect if roaming fails
5940            roamWatchdogCount++;
5941            logd("Start Roam Watchdog " + roamWatchdogCount);
5942            sendMessageDelayed(obtainMessage(CMD_ROAM_WATCHDOG_TIMER,
5943                    roamWatchdogCount, 0), ROAM_GUARD_TIMER_MSEC);
5944            mAssociated = false;
5945        }
5946        @Override
5947        public boolean processMessage(Message message) {
5948            logStateAndMessage(message, this);
5949            WifiConfiguration config;
5950            switch (message.what) {
5951                case CMD_IP_CONFIGURATION_LOST:
5952                    config = getCurrentWifiConfiguration();
5953                    if (config != null) {
5954                        mWifiDiagnostics.captureBugReportData(
5955                                WifiDiagnostics.REPORT_REASON_AUTOROAM_FAILURE);
5956                    }
5957                    return NOT_HANDLED;
5958                case CMD_UNWANTED_NETWORK:
5959                    if (mVerboseLoggingEnabled) {
5960                        log("Roaming and CS doesnt want the network -> ignore");
5961                    }
5962                    return HANDLED;
5963                case CMD_SET_OPERATIONAL_MODE:
5964                    if (message.arg1 != CONNECT_MODE) {
5965                        deferMessage(message);
5966                    }
5967                    break;
5968                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
5969                    /**
5970                     * If we get a SUPPLICANT_STATE_CHANGE_EVENT indicating a DISCONNECT
5971                     * before NETWORK_DISCONNECTION_EVENT
5972                     * And there is an associated BSSID corresponding to our target BSSID, then
5973                     * we have missed the network disconnection, transition to mDisconnectedState
5974                     * and handle the rest of the events there.
5975                     */
5976                    StateChangeResult stateChangeResult = (StateChangeResult) message.obj;
5977                    if (stateChangeResult.state == SupplicantState.DISCONNECTED
5978                            || stateChangeResult.state == SupplicantState.INACTIVE
5979                            || stateChangeResult.state == SupplicantState.INTERFACE_DISABLED) {
5980                        if (mVerboseLoggingEnabled) {
5981                            log("STATE_CHANGE_EVENT in roaming state "
5982                                    + stateChangeResult.toString() );
5983                        }
5984                        if (stateChangeResult.BSSID != null
5985                                && stateChangeResult.BSSID.equals(mTargetRoamBSSID)) {
5986                            handleNetworkDisconnect();
5987                            transitionTo(mDisconnectedState);
5988                        }
5989                    }
5990                    if (stateChangeResult.state == SupplicantState.ASSOCIATED) {
5991                        // We completed the layer2 roaming part
5992                        mAssociated = true;
5993                        if (stateChangeResult.BSSID != null) {
5994                            mTargetRoamBSSID = stateChangeResult.BSSID;
5995                        }
5996                    }
5997                    break;
5998                case CMD_ROAM_WATCHDOG_TIMER:
5999                    if (roamWatchdogCount == message.arg1) {
6000                        if (mVerboseLoggingEnabled) log("roaming watchdog! -> disconnect");
6001                        mWifiMetrics.endConnectionEvent(
6002                                WifiMetrics.ConnectionEvent.FAILURE_ROAM_TIMEOUT,
6003                                WifiMetricsProto.ConnectionEvent.HLF_NONE);
6004                        mRoamFailCount++;
6005                        handleNetworkDisconnect();
6006                        mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
6007                                StaEvent.DISCONNECT_ROAM_WATCHDOG_TIMER);
6008                        mWifiNative.disconnect();
6009                        transitionTo(mDisconnectedState);
6010                    }
6011                    break;
6012                case WifiMonitor.NETWORK_CONNECTION_EVENT:
6013                    if (mAssociated) {
6014                        if (mVerboseLoggingEnabled) {
6015                            log("roaming and Network connection established");
6016                        }
6017                        mLastNetworkId = lookupFrameworkNetworkId(message.arg1);
6018                        mLastBssid = (String) message.obj;
6019                        mWifiInfo.setBSSID(mLastBssid);
6020                        mWifiInfo.setNetworkId(mLastNetworkId);
6021                        int reasonCode = message.arg2;
6022                        mWifiConnectivityManager.trackBssid(mLastBssid, true, reasonCode);
6023                        sendNetworkStateChangeBroadcast(mLastBssid);
6024
6025                        // Successful framework roam! (probably)
6026                        reportConnectionAttemptEnd(
6027                                WifiMetrics.ConnectionEvent.FAILURE_NONE,
6028                                WifiMetricsProto.ConnectionEvent.HLF_NONE);
6029
6030                        // We must clear the config BSSID, as the wifi chipset may decide to roam
6031                        // from this point on and having the BSSID specified by QNS would cause
6032                        // the roam to fail and the device to disconnect.
6033                        // When transition from RoamingState to DisconnectingState or
6034                        // DisconnectedState, the config BSSID is cleared by
6035                        // handleNetworkDisconnect().
6036                        clearTargetBssid("RoamingCompleted");
6037
6038                        // We used to transition to ObtainingIpState in an
6039                        // attempt to do DHCPv4 RENEWs on framework roams.
6040                        // DHCP can take too long to time out, and we now rely
6041                        // upon IpManager's use of IpReachabilityMonitor to
6042                        // confirm our current network configuration.
6043                        //
6044                        // mIpManager.confirmConfiguration() is called within
6045                        // the handling of SupplicantState.COMPLETED.
6046                        transitionTo(mConnectedState);
6047                    } else {
6048                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
6049                    }
6050                    break;
6051                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
6052                    // Throw away but only if it corresponds to the network we're roaming to
6053                    String bssid = (String) message.obj;
6054                    if (true) {
6055                        String target = "";
6056                        if (mTargetRoamBSSID != null) target = mTargetRoamBSSID;
6057                        log("NETWORK_DISCONNECTION_EVENT in roaming state"
6058                                + " BSSID=" + bssid
6059                                + " target=" + target);
6060                    }
6061                    if (bssid != null && bssid.equals(mTargetRoamBSSID)) {
6062                        handleNetworkDisconnect();
6063                        transitionTo(mDisconnectedState);
6064                    }
6065                    break;
6066                case CMD_START_SCAN:
6067                    deferMessage(message);
6068                    break;
6069                default:
6070                    return NOT_HANDLED;
6071            }
6072            return HANDLED;
6073        }
6074
6075        @Override
6076        public void exit() {
6077            logd("WifiStateMachine: Leaving Roaming state");
6078        }
6079    }
6080
6081    class ConnectedState extends State {
6082        @Override
6083        public void enter() {
6084            updateDefaultRouteMacAddress(1000);
6085            if (mVerboseLoggingEnabled) {
6086                log("Enter ConnectedState "
6087                       + " mScreenOn=" + mScreenOn);
6088            }
6089
6090            mWifiConnectivityManager.handleConnectionStateChanged(
6091                    WifiConnectivityManager.WIFI_STATE_CONNECTED);
6092            registerConnected();
6093            lastConnectAttemptTimestamp = 0;
6094            targetWificonfiguration = null;
6095            // Paranoia
6096            mIsLinkDebouncing = false;
6097
6098            // Not roaming anymore
6099            mIsAutoRoaming = false;
6100
6101            if (testNetworkDisconnect) {
6102                testNetworkDisconnectCounter++;
6103                logd("ConnectedState Enter start disconnect test " +
6104                        testNetworkDisconnectCounter);
6105                sendMessageDelayed(obtainMessage(CMD_TEST_NETWORK_DISCONNECT,
6106                        testNetworkDisconnectCounter, 0), 15000);
6107            }
6108
6109            mLastDriverRoamAttempt = 0;
6110            mTargetNetworkId = WifiConfiguration.INVALID_NETWORK_ID;
6111            mWifiInjector.getWifiLastResortWatchdog().connectedStateTransition(true);
6112            mWifiStateTracker.updateState(WifiStateTracker.CONNECTED);
6113        }
6114        @Override
6115        public boolean processMessage(Message message) {
6116            WifiConfiguration config = null;
6117            logStateAndMessage(message, this);
6118
6119            switch (message.what) {
6120                case CMD_UNWANTED_NETWORK:
6121                    if (message.arg1 == NETWORK_STATUS_UNWANTED_DISCONNECT) {
6122                        mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
6123                                StaEvent.DISCONNECT_UNWANTED);
6124                        mWifiNative.disconnect();
6125                        transitionTo(mDisconnectingState);
6126                    } else if (message.arg1 == NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN ||
6127                            message.arg1 == NETWORK_STATUS_UNWANTED_VALIDATION_FAILED) {
6128                        Log.d(TAG, (message.arg1 == NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN
6129                                ? "NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN"
6130                                : "NETWORK_STATUS_UNWANTED_VALIDATION_FAILED"));
6131                        config = getCurrentWifiConfiguration();
6132                        if (config != null) {
6133                            // Disable autojoin
6134                            if (message.arg1 == NETWORK_STATUS_UNWANTED_DISABLE_AUTOJOIN) {
6135                                mWifiConfigManager.setNetworkValidatedInternetAccess(
6136                                        config.networkId, false);
6137                                mWifiConfigManager.updateNetworkSelectionStatus(config.networkId,
6138                                        WifiConfiguration.NetworkSelectionStatus
6139                                        .DISABLED_NO_INTERNET);
6140                            }
6141                            mWifiConfigManager.incrementNetworkNoInternetAccessReports(
6142                                    config.networkId);
6143                        }
6144                    }
6145                    return HANDLED;
6146                case CMD_NETWORK_STATUS:
6147                    if (message.arg1 == NetworkAgent.VALID_NETWORK) {
6148                        config = getCurrentWifiConfiguration();
6149                        if (config != null) {
6150                            // re-enable autojoin
6151                            mWifiConfigManager.setNetworkValidatedInternetAccess(
6152                                    config.networkId, true);
6153                        }
6154                    }
6155                    return HANDLED;
6156                case CMD_ACCEPT_UNVALIDATED:
6157                    boolean accept = (message.arg1 != 0);
6158                    mWifiConfigManager.setNetworkNoInternetAccessExpected(mLastNetworkId, accept);
6159                    return HANDLED;
6160                case CMD_TEST_NETWORK_DISCONNECT:
6161                    // Force a disconnect
6162                    if (message.arg1 == testNetworkDisconnectCounter) {
6163                        mWifiNative.disconnect();
6164                    }
6165                    break;
6166                case CMD_ASSOCIATED_BSSID:
6167                    // ASSOCIATING to a new BSSID while already connected, indicates
6168                    // that driver is roaming
6169                    mLastDriverRoamAttempt = mClock.getWallClockMillis();
6170                    return NOT_HANDLED;
6171                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
6172                    long lastRoam = 0;
6173                    reportConnectionAttemptEnd(
6174                            WifiMetrics.ConnectionEvent.FAILURE_NETWORK_DISCONNECTION,
6175                            WifiMetricsProto.ConnectionEvent.HLF_NONE);
6176                    if (mLastDriverRoamAttempt != 0) {
6177                        // Calculate time since last driver roam attempt
6178                        lastRoam = mClock.getWallClockMillis() - mLastDriverRoamAttempt;
6179                        mLastDriverRoamAttempt = 0;
6180                    }
6181                    if (unexpectedDisconnectedReason(message.arg2)) {
6182                        mWifiDiagnostics.captureBugReportData(
6183                                WifiDiagnostics.REPORT_REASON_UNEXPECTED_DISCONNECT);
6184                    }
6185                    config = getCurrentWifiConfiguration();
6186                    if (mEnableLinkDebouncing
6187                            && mScreenOn
6188                            && !isLinkDebouncing()
6189                            && config != null
6190                            && config.getNetworkSelectionStatus().isNetworkEnabled()
6191                            && config.networkId != mWifiConfigManager.getLastSelectedNetwork()
6192                            && (message.arg2 != 3 /* reason cannot be 3, i.e. locally generated */
6193                                || (lastRoam > 0 && lastRoam < 2000) /* unless driver is roaming */)
6194                            && ((ScanResult.is24GHz(mWifiInfo.getFrequency())
6195                                    && mWifiInfo.getRssi() >
6196                                     mThresholdQualifiedRssi5)
6197                                    || (ScanResult.is5GHz(mWifiInfo.getFrequency())
6198                                    && mWifiInfo.getRssi() >
6199                                    mThresholdQualifiedRssi5))) {
6200                        // Start de-bouncing the L2 disconnection:
6201                        // this L2 disconnection might be spurious.
6202                        // Hence we allow 4 seconds for the state machine to try
6203                        // to reconnect, go thru the
6204                        // roaming cycle and enter Obtaining IP address
6205                        // before signalling the disconnect to ConnectivityService and L3
6206                        startScanForConfiguration(getCurrentWifiConfiguration());
6207                        mIsLinkDebouncing = true;
6208
6209                        sendMessageDelayed(obtainMessage(CMD_DELAYED_NETWORK_DISCONNECT,
6210                                0, mLastNetworkId), LINK_FLAPPING_DEBOUNCE_MSEC);
6211                        if (mVerboseLoggingEnabled) {
6212                            log("NETWORK_DISCONNECTION_EVENT in connected state"
6213                                    + " BSSID=" + mWifiInfo.getBSSID()
6214                                    + " RSSI=" + mWifiInfo.getRssi()
6215                                    + " freq=" + mWifiInfo.getFrequency()
6216                                    + " reason=" + message.arg2
6217                                    + " -> debounce");
6218                        }
6219                        return HANDLED;
6220                    } else {
6221                        if (mVerboseLoggingEnabled) {
6222                            log("NETWORK_DISCONNECTION_EVENT in connected state"
6223                                    + " BSSID=" + mWifiInfo.getBSSID()
6224                                    + " RSSI=" + mWifiInfo.getRssi()
6225                                    + " freq=" + mWifiInfo.getFrequency()
6226                                    + " was debouncing=" + isLinkDebouncing()
6227                                    + " reason=" + message.arg2
6228                                    + " Network Selection Status=" + (config == null ? "Unavailable"
6229                                    : config.getNetworkSelectionStatus().getNetworkStatusString()));
6230                        }
6231                    }
6232                    break;
6233                case CMD_START_ROAM:
6234                    // Clear the driver roam indication since we are attempting a framework roam
6235                    mLastDriverRoamAttempt = 0;
6236
6237                    /* Connect command coming from auto-join */
6238                    int netId = message.arg1;
6239                    ScanResult candidate = (ScanResult)message.obj;
6240                    String bssid = SUPPLICANT_BSSID_ANY;
6241                    if (candidate != null) {
6242                        bssid = candidate.BSSID;
6243                    }
6244                    config = mWifiConfigManager.getConfiguredNetworkWithPassword(netId);
6245                    if (config == null) {
6246                        loge("CMD_START_ROAM and no config, bail out...");
6247                        break;
6248                    }
6249
6250                    setTargetBssid(config, bssid);
6251                    mTargetNetworkId = netId;
6252
6253                    logd("CMD_START_ROAM sup state "
6254                            + mSupplicantStateTracker.getSupplicantStateName()
6255                            + " my state " + getCurrentState().getName()
6256                            + " nid=" + Integer.toString(netId)
6257                            + " config " + config.configKey()
6258                            + " targetRoamBSSID " + mTargetRoamBSSID);
6259
6260                    reportConnectionAttemptStart(config, mTargetRoamBSSID,
6261                            WifiMetricsProto.ConnectionEvent.ROAM_ENTERPRISE);
6262                    if (mWifiNative.roamToNetwork(config)) {
6263                        lastConnectAttemptTimestamp = mClock.getWallClockMillis();
6264                        targetWificonfiguration = config;
6265                        mIsAutoRoaming = true;
6266                        mWifiMetrics.logStaEvent(StaEvent.TYPE_CMD_START_ROAM, config);
6267                        transitionTo(mRoamingState);
6268                    } else {
6269                        loge("CMD_START_ROAM Failed to start roaming to network " + config);
6270                        reportConnectionAttemptEnd(
6271                                WifiMetrics.ConnectionEvent.FAILURE_CONNECT_NETWORK_FAILED,
6272                                WifiMetricsProto.ConnectionEvent.HLF_NONE);
6273                        replyToMessage(message, WifiManager.CONNECT_NETWORK_FAILED,
6274                                WifiManager.ERROR);
6275                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
6276                        break;
6277                    }
6278                    break;
6279                case CMD_START_IP_PACKET_OFFLOAD: {
6280                    int slot = message.arg1;
6281                    int intervalSeconds = message.arg2;
6282                    KeepalivePacketData pkt = (KeepalivePacketData) message.obj;
6283                    byte[] dstMac;
6284                    try {
6285                        InetAddress gateway = RouteInfo.selectBestRoute(
6286                                mLinkProperties.getRoutes(), pkt.dstAddress).getGateway();
6287                        String dstMacStr = macAddressFromRoute(gateway.getHostAddress());
6288                        dstMac = NativeUtil.macAddressToByteArray(dstMacStr);
6289                    } catch (NullPointerException | IllegalArgumentException e) {
6290                        loge("Can't find MAC address for next hop to " + pkt.dstAddress);
6291                        mNetworkAgent.onPacketKeepaliveEvent(slot,
6292                                ConnectivityManager.PacketKeepalive.ERROR_INVALID_IP_ADDRESS);
6293                        break;
6294                    }
6295                    pkt.dstMac = dstMac;
6296                    int result = startWifiIPPacketOffload(slot, pkt, intervalSeconds);
6297                    mNetworkAgent.onPacketKeepaliveEvent(slot, result);
6298                    break;
6299                }
6300                default:
6301                    return NOT_HANDLED;
6302            }
6303            return HANDLED;
6304        }
6305
6306        @Override
6307        public void exit() {
6308            logd("WifiStateMachine: Leaving Connected state");
6309            mWifiConnectivityManager.handleConnectionStateChanged(
6310                     WifiConnectivityManager.WIFI_STATE_TRANSITIONING);
6311
6312            mLastDriverRoamAttempt = 0;
6313            mWifiInjector.getWifiLastResortWatchdog().connectedStateTransition(false);
6314        }
6315    }
6316
6317    class DisconnectingState extends State {
6318
6319        @Override
6320        public void enter() {
6321
6322            if (mVerboseLoggingEnabled) {
6323                logd(" Enter DisconnectingState State screenOn=" + mScreenOn);
6324            }
6325
6326            // Make sure we disconnect: we enter this state prior to connecting to a new
6327            // network, waiting for either a DISCONNECT event or a SUPPLICANT_STATE_CHANGE
6328            // event which in this case will be indicating that supplicant started to associate.
6329            // In some cases supplicant doesn't ignore the connect requests (it might not
6330            // find the target SSID in its cache),
6331            // Therefore we end up stuck that state, hence the need for the watchdog.
6332            disconnectingWatchdogCount++;
6333            logd("Start Disconnecting Watchdog " + disconnectingWatchdogCount);
6334            sendMessageDelayed(obtainMessage(CMD_DISCONNECTING_WATCHDOG_TIMER,
6335                    disconnectingWatchdogCount, 0), DISCONNECTING_GUARD_TIMER_MSEC);
6336        }
6337
6338        @Override
6339        public boolean processMessage(Message message) {
6340            logStateAndMessage(message, this);
6341            switch (message.what) {
6342                case CMD_SET_OPERATIONAL_MODE:
6343                    if (message.arg1 != CONNECT_MODE) {
6344                        deferMessage(message);
6345                    }
6346                    break;
6347                case CMD_START_SCAN:
6348                    deferMessage(message);
6349                    return HANDLED;
6350                case CMD_DISCONNECT:
6351                    if (mVerboseLoggingEnabled) log("Ignore CMD_DISCONNECT when already disconnecting.");
6352                    break;
6353                case CMD_DISCONNECTING_WATCHDOG_TIMER:
6354                    if (disconnectingWatchdogCount == message.arg1) {
6355                        if (mVerboseLoggingEnabled) log("disconnecting watchdog! -> disconnect");
6356                        handleNetworkDisconnect();
6357                        transitionTo(mDisconnectedState);
6358                    }
6359                    break;
6360                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
6361                    /**
6362                     * If we get a SUPPLICANT_STATE_CHANGE_EVENT before NETWORK_DISCONNECTION_EVENT
6363                     * we have missed the network disconnection, transition to mDisconnectedState
6364                     * and handle the rest of the events there
6365                     */
6366                    deferMessage(message);
6367                    handleNetworkDisconnect();
6368                    transitionTo(mDisconnectedState);
6369                    break;
6370                default:
6371                    return NOT_HANDLED;
6372            }
6373            return HANDLED;
6374        }
6375    }
6376
6377    class DisconnectedState extends State {
6378        @Override
6379        public void enter() {
6380            Log.i(TAG, "disconnectedstate enter");
6381            // We dont scan frequently if this is a temporary disconnect
6382            // due to p2p
6383            if (mTemporarilyDisconnectWifi) {
6384                p2pSendMessage(WifiP2pServiceImpl.DISCONNECT_WIFI_RESPONSE);
6385                return;
6386            }
6387
6388            if (mVerboseLoggingEnabled) {
6389                logd(" Enter DisconnectedState screenOn=" + mScreenOn);
6390            }
6391
6392            /** clear the roaming state, if we were roaming, we failed */
6393            mIsAutoRoaming = false;
6394
6395            mWifiConnectivityManager.handleConnectionStateChanged(
6396                    WifiConnectivityManager.WIFI_STATE_DISCONNECTED);
6397
6398            /**
6399             * If we have no networks saved, the supplicant stops doing the periodic scan.
6400             * The scans are useful to notify the user of the presence of an open network.
6401             * Note that these are not wake up scans.
6402             */
6403            if (mNoNetworksPeriodicScan != 0 && !mP2pConnected.get()
6404                    && mWifiConfigManager.getSavedNetworks().size() == 0) {
6405                sendMessageDelayed(obtainMessage(CMD_NO_NETWORKS_PERIODIC_SCAN,
6406                        ++mPeriodicScanToken, 0), mNoNetworksPeriodicScan);
6407            }
6408
6409            mDisconnectedTimeStamp = mClock.getWallClockMillis();
6410            mWifiStateTracker.updateState(WifiStateTracker.DISCONNECTED);
6411        }
6412        @Override
6413        public boolean processMessage(Message message) {
6414            boolean ret = HANDLED;
6415
6416            logStateAndMessage(message, this);
6417
6418            switch (message.what) {
6419                case CMD_NO_NETWORKS_PERIODIC_SCAN:
6420                    if (mP2pConnected.get()) break;
6421                    if (mNoNetworksPeriodicScan != 0 && message.arg1 == mPeriodicScanToken &&
6422                            mWifiConfigManager.getSavedNetworks().size() == 0) {
6423                        startScan(UNKNOWN_SCAN_SOURCE, -1, null, WIFI_WORK_SOURCE);
6424                        sendMessageDelayed(obtainMessage(CMD_NO_NETWORKS_PERIODIC_SCAN,
6425                                    ++mPeriodicScanToken, 0), mNoNetworksPeriodicScan);
6426                    }
6427                    break;
6428                case WifiManager.FORGET_NETWORK:
6429                case CMD_REMOVE_NETWORK:
6430                case CMD_REMOVE_APP_CONFIGURATIONS:
6431                case CMD_REMOVE_USER_CONFIGURATIONS:
6432                    // Set up a delayed message here. After the forget/remove is handled
6433                    // the handled delayed message will determine if there is a need to
6434                    // scan and continue
6435                    sendMessageDelayed(obtainMessage(CMD_NO_NETWORKS_PERIODIC_SCAN,
6436                                ++mPeriodicScanToken, 0), mNoNetworksPeriodicScan);
6437                    ret = NOT_HANDLED;
6438                    break;
6439                case CMD_SET_OPERATIONAL_MODE:
6440                    if (message.arg1 != CONNECT_MODE) {
6441                        mOperationalMode = message.arg1;
6442                        if (mOperationalMode == DISABLED_MODE) {
6443                            transitionTo(mSupplicantStoppingState);
6444                        } else if (mOperationalMode == SCAN_ONLY_MODE
6445                                || mOperationalMode == SCAN_ONLY_WITH_WIFI_OFF_MODE) {
6446                            p2pSendMessage(CMD_DISABLE_P2P_REQ);
6447                            setWifiState(WIFI_STATE_DISABLED);
6448                            transitionTo(mScanModeState);
6449                        }
6450                    }
6451                    break;
6452                case CMD_DISCONNECT:
6453                    mWifiMetrics.logStaEvent(StaEvent.TYPE_FRAMEWORK_DISCONNECT,
6454                            StaEvent.DISCONNECT_UNKNOWN);
6455                    mWifiNative.disconnect();
6456                    break;
6457                /* Ignore network disconnect */
6458                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
6459                    // Interpret this as an L2 connection failure
6460                    break;
6461                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
6462                    StateChangeResult stateChangeResult = (StateChangeResult) message.obj;
6463                    if (mVerboseLoggingEnabled) {
6464                        logd("SUPPLICANT_STATE_CHANGE_EVENT state=" + stateChangeResult.state +
6465                                " -> state= " + WifiInfo.getDetailedStateOf(stateChangeResult.state)
6466                                + " debouncing=" + isLinkDebouncing());
6467                    }
6468                    setNetworkDetailedState(WifiInfo.getDetailedStateOf(stateChangeResult.state));
6469                    /* ConnectModeState does the rest of the handling */
6470                    ret = NOT_HANDLED;
6471                    break;
6472                case CMD_START_SCAN:
6473                    if (!checkOrDeferScanAllowed(message)) {
6474                        // The scan request was rescheduled
6475                        messageHandlingStatus = MESSAGE_HANDLING_STATUS_REFUSED;
6476                        return HANDLED;
6477                    }
6478
6479                    ret = NOT_HANDLED;
6480                    break;
6481                case WifiP2pServiceImpl.P2P_CONNECTION_CHANGED:
6482                    NetworkInfo info = (NetworkInfo) message.obj;
6483                    mP2pConnected.set(info.isConnected());
6484                    if (!mP2pConnected.get() && mWifiConfigManager.getSavedNetworks().size() == 0) {
6485                        if (mVerboseLoggingEnabled) log("Turn on scanning after p2p disconnected");
6486                        sendMessageDelayed(obtainMessage(CMD_NO_NETWORKS_PERIODIC_SCAN,
6487                                    ++mPeriodicScanToken, 0), mNoNetworksPeriodicScan);
6488                    }
6489                    break;
6490                case CMD_RECONNECT:
6491                case CMD_REASSOCIATE:
6492                    if (mTemporarilyDisconnectWifi) {
6493                        // Drop a third party reconnect/reassociate if STA is
6494                        // temporarily disconnected for p2p
6495                        break;
6496                    } else {
6497                        // ConnectModeState handles it
6498                        ret = NOT_HANDLED;
6499                    }
6500                    break;
6501                case CMD_SCREEN_STATE_CHANGED:
6502                    handleScreenStateChanged(message.arg1 != 0);
6503                    break;
6504                default:
6505                    ret = NOT_HANDLED;
6506            }
6507            return ret;
6508        }
6509
6510        @Override
6511        public void exit() {
6512            mWifiConnectivityManager.handleConnectionStateChanged(
6513                     WifiConnectivityManager.WIFI_STATE_TRANSITIONING);
6514        }
6515    }
6516
6517    /**
6518     * WPS connection flow:
6519     * 1. WifiStateMachine receive WPS_START message from WifiManager API.
6520     * 2. WifiStateMachine initiates the appropriate WPS operation using WifiNative methods:
6521     * {@link WifiNative#startWpsPbc(String)}, {@link WifiNative#startWpsPinDisplay(String)}, etc.
6522     * 3. WifiStateMachine then transitions to this WpsRunningState.
6523     * 4a. Once WifiStateMachine receive the connected event:
6524     * {@link WifiMonitor#NETWORK_CONNECTION_EVENT},
6525     * 4a.1 Load the network params out of wpa_supplicant.
6526     * 4a.2 Add the network with params to WifiConfigManager.
6527     * 4a.3 Enable the network with |disableOthers| set to true.
6528     * 4a.4 Send a response to the original source of WifiManager API using {@link #mSourceMessage}.
6529     * 4b. Any failures are notified to the original source of WifiManager API
6530     * using {@link #mSourceMessage}.
6531     * 5. We then transition to disconnected state and let network selection reconnect to the newly
6532     * added network.
6533     */
6534    class WpsRunningState extends State {
6535        // Tracks the source to provide a reply
6536        private Message mSourceMessage;
6537        @Override
6538        public void enter() {
6539            mSourceMessage = Message.obtain(getCurrentMessage());
6540        }
6541        @Override
6542        public boolean processMessage(Message message) {
6543            logStateAndMessage(message, this);
6544
6545            switch (message.what) {
6546                case WifiMonitor.WPS_SUCCESS_EVENT:
6547                    // Ignore intermediate success, wait for full connection
6548                    break;
6549                case WifiMonitor.NETWORK_CONNECTION_EVENT:
6550                    if (loadNetworksFromSupplicantAfterWps()) {
6551                        replyToMessage(mSourceMessage, WifiManager.WPS_COMPLETED);
6552                    } else {
6553                        replyToMessage(mSourceMessage, WifiManager.WPS_FAILED,
6554                                WifiManager.ERROR);
6555                    }
6556                    mSourceMessage.recycle();
6557                    mSourceMessage = null;
6558                    deferMessage(message);
6559                    transitionTo(mDisconnectedState);
6560                    break;
6561                case WifiMonitor.WPS_OVERLAP_EVENT:
6562                    replyToMessage(mSourceMessage, WifiManager.WPS_FAILED,
6563                            WifiManager.WPS_OVERLAP_ERROR);
6564                    mSourceMessage.recycle();
6565                    mSourceMessage = null;
6566                    transitionTo(mDisconnectedState);
6567                    break;
6568                case WifiMonitor.WPS_FAIL_EVENT:
6569                    // Arg1 has the reason for the failure
6570                    if ((message.arg1 != WifiManager.ERROR) || (message.arg2 != 0)) {
6571                        replyToMessage(mSourceMessage, WifiManager.WPS_FAILED, message.arg1);
6572                        mSourceMessage.recycle();
6573                        mSourceMessage = null;
6574                        transitionTo(mDisconnectedState);
6575                    } else {
6576                        if (mVerboseLoggingEnabled) {
6577                            log("Ignore unspecified fail event during WPS connection");
6578                        }
6579                    }
6580                    break;
6581                case WifiMonitor.WPS_TIMEOUT_EVENT:
6582                    replyToMessage(mSourceMessage, WifiManager.WPS_FAILED,
6583                            WifiManager.WPS_TIMED_OUT);
6584                    mSourceMessage.recycle();
6585                    mSourceMessage = null;
6586                    transitionTo(mDisconnectedState);
6587                    break;
6588                case WifiManager.START_WPS:
6589                    replyToMessage(message, WifiManager.WPS_FAILED, WifiManager.IN_PROGRESS);
6590                    break;
6591                case WifiManager.CANCEL_WPS:
6592                    if (mWifiNative.cancelWps()) {
6593                        replyToMessage(message, WifiManager.CANCEL_WPS_SUCCEDED);
6594                    } else {
6595                        replyToMessage(message, WifiManager.CANCEL_WPS_FAILED, WifiManager.ERROR);
6596                    }
6597                    transitionTo(mDisconnectedState);
6598                    break;
6599                /**
6600                 * Defer all commands that can cause connections to a different network
6601                 * or put the state machine out of connect mode
6602                 */
6603                case CMD_SET_OPERATIONAL_MODE:
6604                case WifiManager.CONNECT_NETWORK:
6605                case CMD_ENABLE_NETWORK:
6606                case CMD_RECONNECT:
6607                case CMD_REASSOCIATE:
6608                    deferMessage(message);
6609                    break;
6610                case CMD_START_CONNECT:
6611                case CMD_START_ROAM:
6612                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
6613                    return HANDLED;
6614                case CMD_START_SCAN:
6615                    messageHandlingStatus = MESSAGE_HANDLING_STATUS_DISCARD;
6616                    return HANDLED;
6617                case WifiMonitor.NETWORK_DISCONNECTION_EVENT:
6618                    if (mVerboseLoggingEnabled) log("Network connection lost");
6619                    handleNetworkDisconnect();
6620                    break;
6621                case WifiMonitor.ASSOCIATION_REJECTION_EVENT:
6622                    if (mVerboseLoggingEnabled) {
6623                        log("Ignore Assoc reject event during WPS Connection");
6624                    }
6625                    break;
6626                case WifiMonitor.AUTHENTICATION_FAILURE_EVENT:
6627                    // Disregard auth failure events during WPS connection. The
6628                    // EAP sequence is retried several times, and there might be
6629                    // failures (especially for wps pin). We will get a WPS_XXX
6630                    // event at the end of the sequence anyway.
6631                    if (mVerboseLoggingEnabled) log("Ignore auth failure during WPS connection");
6632                    break;
6633                case WifiMonitor.SUPPLICANT_STATE_CHANGE_EVENT:
6634                    // Throw away supplicant state changes when WPS is running.
6635                    // We will start getting supplicant state changes once we get
6636                    // a WPS success or failure
6637                    break;
6638                default:
6639                    return NOT_HANDLED;
6640            }
6641            return HANDLED;
6642        }
6643
6644        /**
6645         * Load network config from wpa_supplicant after WPS is complete.
6646         */
6647        private boolean loadNetworksFromSupplicantAfterWps() {
6648            Map<String, WifiConfiguration> configs = new HashMap<>();
6649            SparseArray<Map<String, String>> extras = new SparseArray<>();
6650            if (!mWifiNative.migrateNetworksFromSupplicant(configs, extras)) {
6651                loge("Failed to load networks from wpa_supplicant after Wps");
6652                return false;
6653            }
6654            for (Map.Entry<String, WifiConfiguration> entry : configs.entrySet()) {
6655                WifiConfiguration config = entry.getValue();
6656                // Reset the network ID retrieved from wpa_supplicant, since we want to treat
6657                // this as a new network addition in framework.
6658                config.networkId = WifiConfiguration.INVALID_NETWORK_ID;
6659                NetworkUpdateResult result = mWifiConfigManager.addOrUpdateNetwork(
6660                        config, mSourceMessage.sendingUid);
6661                if (!result.isSuccess()) {
6662                    loge("Failed to add network after WPS: " + entry.getValue());
6663                    return false;
6664                }
6665                if (!mWifiConfigManager.enableNetwork(
6666                        result.getNetworkId(), true, mSourceMessage.sendingUid)) {
6667                    loge("Failed to enable network after WPS: " + entry.getValue());
6668                    return false;
6669                }
6670            }
6671            return true;
6672        }
6673    }
6674
6675    class SoftApState extends State {
6676        private SoftApManager mSoftApManager;
6677        private String mIfaceName;
6678        private int mMode;
6679
6680        private class SoftApListener implements SoftApManager.Listener {
6681            @Override
6682            public void onStateChanged(int state, int reason) {
6683                if (state == WIFI_AP_STATE_DISABLED) {
6684                    sendMessage(CMD_AP_STOPPED);
6685                } else if (state == WIFI_AP_STATE_FAILED) {
6686                    sendMessage(CMD_START_AP_FAILURE);
6687                }
6688
6689                setWifiApState(state, reason, mIfaceName, mMode);
6690            }
6691        }
6692
6693        @Override
6694        public void enter() {
6695            final Message message = getCurrentMessage();
6696            if (message.what != CMD_START_AP) {
6697                throw new RuntimeException("Illegal transition to SoftApState: " + message);
6698            }
6699            SoftApModeConfiguration config = (SoftApModeConfiguration) message.obj;
6700            mMode = config.getTargetMode();
6701
6702            IApInterface apInterface = mWifiNative.setupForSoftApMode();
6703            if (apInterface == null) {
6704                setWifiApState(WIFI_AP_STATE_FAILED,
6705                        WifiManager.SAP_START_FAILURE_GENERAL, null, mMode);
6706                /**
6707                 * Transition to InitialState to reset the
6708                 * driver/HAL back to the initial state.
6709                 */
6710                transitionTo(mInitialState);
6711                return;
6712            }
6713
6714            try {
6715                mIfaceName = apInterface.getInterfaceName();
6716            } catch (RemoteException e) {
6717                // Failed to get the interface name. The name will not be available for
6718                // the enabled broadcast, but since we had an error getting the name, we most likely
6719                // won't be able to fully start softap mode.
6720            }
6721
6722            checkAndSetConnectivityInstance();
6723            mSoftApManager = mWifiInjector.makeSoftApManager(mNwService,
6724                                                             new SoftApListener(),
6725                                                             apInterface,
6726                                                             config.getWifiConfiguration());
6727            mSoftApManager.start();
6728            mWifiStateTracker.updateState(WifiStateTracker.SOFT_AP);
6729        }
6730
6731        @Override
6732        public void exit() {
6733            mSoftApManager = null;
6734            mIfaceName = null;
6735            mMode = WifiManager.IFACE_IP_MODE_UNSPECIFIED;
6736        }
6737
6738        @Override
6739        public boolean processMessage(Message message) {
6740            logStateAndMessage(message, this);
6741
6742            switch(message.what) {
6743                case CMD_START_AP:
6744                    /* Ignore start command when it is starting/started. */
6745                    break;
6746                case CMD_STOP_AP:
6747                    mSoftApManager.stop();
6748                    break;
6749                case CMD_START_AP_FAILURE:
6750                    transitionTo(mInitialState);
6751                    break;
6752                case CMD_AP_STOPPED:
6753                    transitionTo(mInitialState);
6754                    break;
6755                default:
6756                    return NOT_HANDLED;
6757            }
6758            return HANDLED;
6759        }
6760    }
6761
6762    /**
6763     * State machine initiated requests can have replyTo set to null indicating
6764     * there are no recepients, we ignore those reply actions.
6765     */
6766    private void replyToMessage(Message msg, int what) {
6767        if (msg.replyTo == null) return;
6768        Message dstMsg = obtainMessageWithWhatAndArg2(msg, what);
6769        mReplyChannel.replyToMessage(msg, dstMsg);
6770    }
6771
6772    private void replyToMessage(Message msg, int what, int arg1) {
6773        if (msg.replyTo == null) return;
6774        Message dstMsg = obtainMessageWithWhatAndArg2(msg, what);
6775        dstMsg.arg1 = arg1;
6776        mReplyChannel.replyToMessage(msg, dstMsg);
6777    }
6778
6779    private void replyToMessage(Message msg, int what, Object obj) {
6780        if (msg.replyTo == null) return;
6781        Message dstMsg = obtainMessageWithWhatAndArg2(msg, what);
6782        dstMsg.obj = obj;
6783        mReplyChannel.replyToMessage(msg, dstMsg);
6784    }
6785
6786    /**
6787     * arg2 on the source message has a unique id that needs to be retained in replies
6788     * to match the request
6789     * <p>see WifiManager for details
6790     */
6791    private Message obtainMessageWithWhatAndArg2(Message srcMsg, int what) {
6792        Message msg = Message.obtain();
6793        msg.what = what;
6794        msg.arg2 = srcMsg.arg2;
6795        return msg;
6796    }
6797
6798    /**
6799     * Notify interested parties if a wifi config has been changed.
6800     *
6801     * @param wifiCredentialEventType WIFI_CREDENTIAL_SAVED or WIFI_CREDENTIAL_FORGOT
6802     * @param config Must have a WifiConfiguration object to succeed
6803     * TODO: b/35258354 investigate if this can be removed.  Is the broadcast sent by
6804     * WifiConfigManager sufficient?
6805     */
6806    private void broadcastWifiCredentialChanged(int wifiCredentialEventType,
6807            WifiConfiguration config) {
6808        if (config != null && config.preSharedKey != null) {
6809            Intent intent = new Intent(WifiManager.WIFI_CREDENTIAL_CHANGED_ACTION);
6810            intent.putExtra(WifiManager.EXTRA_WIFI_CREDENTIAL_SSID, config.SSID);
6811            intent.putExtra(WifiManager.EXTRA_WIFI_CREDENTIAL_EVENT_TYPE,
6812                    wifiCredentialEventType);
6813            mContext.sendBroadcastAsUser(intent, UserHandle.CURRENT,
6814                    android.Manifest.permission.RECEIVE_WIFI_CREDENTIAL_CHANGE);
6815        }
6816    }
6817
6818    void handleGsmAuthRequest(SimAuthRequestData requestData) {
6819        if (targetWificonfiguration == null
6820                || targetWificonfiguration.networkId
6821                == lookupFrameworkNetworkId(requestData.networkId)) {
6822            logd("id matches targetWifiConfiguration");
6823        } else {
6824            logd("id does not match targetWifiConfiguration");
6825            return;
6826        }
6827
6828        String response =
6829                TelephonyUtil.getGsmSimAuthResponse(requestData.data, getTelephonyManager());
6830        if (response == null) {
6831            mWifiNative.simAuthFailedResponse(requestData.networkId);
6832        } else {
6833            logv("Supplicant Response -" + response);
6834            mWifiNative.simAuthResponse(requestData.networkId,
6835                    WifiNative.SIM_AUTH_RESP_TYPE_GSM_AUTH, response);
6836        }
6837    }
6838
6839    void handle3GAuthRequest(SimAuthRequestData requestData) {
6840        if (targetWificonfiguration == null
6841                || targetWificonfiguration.networkId
6842                == lookupFrameworkNetworkId(requestData.networkId)) {
6843            logd("id matches targetWifiConfiguration");
6844        } else {
6845            logd("id does not match targetWifiConfiguration");
6846            return;
6847        }
6848
6849        SimAuthResponseData response =
6850                TelephonyUtil.get3GAuthResponse(requestData, getTelephonyManager());
6851        if (response != null) {
6852            mWifiNative.simAuthResponse(requestData.networkId, response.type, response.response);
6853        } else {
6854            mWifiNative.umtsAuthFailedResponse(requestData.networkId);
6855        }
6856    }
6857
6858    /**
6859     * Automatically connect to the network specified
6860     *
6861     * @param networkId ID of the network to connect to
6862     * @param bssid BSSID of the network
6863     */
6864    public void startConnectToNetwork(int networkId, String bssid) {
6865        synchronized (mWifiReqCountLock) {
6866            if (hasConnectionRequests()) {
6867                sendMessage(CMD_START_CONNECT, networkId, 0, bssid);
6868            }
6869        }
6870    }
6871
6872    /**
6873     * Automatically roam to the network specified
6874     *
6875     * @param networkId ID of the network to roam to
6876     * @param scanResult scan result which identifies the network to roam to
6877     */
6878    public void startRoamToNetwork(int networkId, ScanResult scanResult) {
6879        sendMessage(CMD_START_ROAM, networkId, 0, scanResult);
6880    }
6881
6882    /**
6883     * Dynamically turn on/off WifiConnectivityManager
6884     *
6885     * @param enabled true-enable; false-disable
6886     */
6887    public void enableWifiConnectivityManager(boolean enabled) {
6888        sendMessage(CMD_ENABLE_WIFI_CONNECTIVITY_MANAGER, enabled ? 1 : 0);
6889    }
6890
6891    /**
6892     * @param reason reason code from supplicant on network disconnected event
6893     * @return true if this is a suspicious disconnect
6894     */
6895    static boolean unexpectedDisconnectedReason(int reason) {
6896        return reason == 2              // PREV_AUTH_NOT_VALID
6897                || reason == 6          // CLASS2_FRAME_FROM_NONAUTH_STA
6898                || reason == 7          // FRAME_FROM_NONASSOC_STA
6899                || reason == 8          // STA_HAS_LEFT
6900                || reason == 9          // STA_REQ_ASSOC_WITHOUT_AUTH
6901                || reason == 14         // MICHAEL_MIC_FAILURE
6902                || reason == 15         // 4WAY_HANDSHAKE_TIMEOUT
6903                || reason == 16         // GROUP_KEY_UPDATE_TIMEOUT
6904                || reason == 18         // GROUP_CIPHER_NOT_VALID
6905                || reason == 19         // PAIRWISE_CIPHER_NOT_VALID
6906                || reason == 23         // IEEE_802_1X_AUTH_FAILED
6907                || reason == 34;        // DISASSOC_LOW_ACK
6908    }
6909
6910    /**
6911     * Update WifiMetrics before dumping
6912     */
6913    public void updateWifiMetrics() {
6914        mWifiMetrics.updateSavedNetworks(mWifiConfigManager.getSavedNetworks());
6915    }
6916
6917    /**
6918     * Private method to handle calling WifiConfigManager to forget/remove network configs and reply
6919     * to the message from the sender of the outcome.
6920     *
6921     * The current implementation requires that forget and remove be handled in different ways
6922     * (responses are handled differently).  In the interests of organization, the handling is all
6923     * now in this helper method.  TODO: b/35257965 is filed to track the possibility of merging
6924     * the two call paths.
6925     */
6926    private boolean deleteNetworkConfigAndSendReply(Message message, boolean calledFromForget) {
6927        boolean success = mWifiConfigManager.removeNetwork(message.arg1, message.sendingUid);
6928        if (!success) {
6929            loge("Failed to remove network");
6930        }
6931
6932        if (calledFromForget) {
6933            if (success) {
6934                replyToMessage(message, WifiManager.FORGET_NETWORK_SUCCEEDED);
6935                broadcastWifiCredentialChanged(WifiManager.WIFI_CREDENTIAL_FORGOT,
6936                                               (WifiConfiguration) message.obj);
6937                return true;
6938            }
6939            replyToMessage(message, WifiManager.FORGET_NETWORK_FAILED, WifiManager.ERROR);
6940            return false;
6941        } else {
6942            // Remaining calls are from the removeNetwork path
6943            if (success) {
6944                replyToMessage(message, message.what, SUCCESS);
6945                return true;
6946            }
6947            messageHandlingStatus = MESSAGE_HANDLING_STATUS_FAIL;
6948            replyToMessage(message, message.what, FAILURE);
6949            return false;
6950        }
6951    }
6952
6953    private static String getLinkPropertiesSummary(LinkProperties lp) {
6954        List<String> attributes = new ArrayList<>(6);
6955        if (lp.hasIPv4Address()) {
6956            attributes.add("v4");
6957        }
6958        if (lp.hasIPv4DefaultRoute()) {
6959            attributes.add("v4r");
6960        }
6961        if (lp.hasIPv4DnsServer()) {
6962            attributes.add("v4dns");
6963        }
6964        if (lp.hasGlobalIPv6Address()) {
6965            attributes.add("v6");
6966        }
6967        if (lp.hasIPv6DefaultRoute()) {
6968            attributes.add("v6r");
6969        }
6970        if (lp.hasIPv6DnsServer()) {
6971            attributes.add("v6dns");
6972        }
6973
6974        return TextUtils.join(" ", attributes);
6975    }
6976
6977    /**
6978     * Gets the SSID from the WifiConfiguration pointed at by 'mTargetNetworkId'
6979     * This should match the network config framework is attempting to connect to.
6980     */
6981    private String getTargetSsid() {
6982        WifiConfiguration currentConfig = mWifiConfigManager.getConfiguredNetwork(mTargetNetworkId);
6983        if (currentConfig != null) {
6984            return currentConfig.SSID;
6985        }
6986        return null;
6987    }
6988
6989    /**
6990     * Send message to WifiP2pServiceImpl.
6991     * @return true if message is sent.
6992     *         false if there is no channel configured for WifiP2pServiceImpl.
6993     */
6994    private boolean p2pSendMessage(int what) {
6995        if (mWifiP2pChannel != null) {
6996            mWifiP2pChannel.sendMessage(what);
6997            return true;
6998        }
6999        return false;
7000    }
7001
7002    /**
7003     * Send message to WifiP2pServiceImpl with an additional param |arg1|.
7004     * @return true if message is sent.
7005     *         false if there is no channel configured for WifiP2pServiceImpl.
7006     */
7007    private boolean p2pSendMessage(int what, int arg1) {
7008        if (mWifiP2pChannel != null) {
7009            mWifiP2pChannel.sendMessage(what, arg1);
7010            return true;
7011        }
7012        return false;
7013    }
7014
7015    /**
7016     * Check if there is any connection request for WiFi network.
7017     * Note, caller of this helper function must acquire mWifiReqCountLock.
7018     */
7019    private boolean hasConnectionRequests() {
7020        return mConnectionReqCount > 0 || mUntrustedReqCount > 0;
7021    }
7022
7023    /**
7024     * Returns whether CMD_IP_REACHABILITY_LOST events should trigger disconnects.
7025     */
7026    public boolean getIpReachabilityDisconnectEnabled() {
7027        return mIpReachabilityDisconnectEnabled;
7028    }
7029
7030    /**
7031     * Sets whether CMD_IP_REACHABILITY_LOST events should trigger disconnects.
7032     */
7033    public void setIpReachabilityDisconnectEnabled(boolean enabled) {
7034        mIpReachabilityDisconnectEnabled = enabled;
7035    }
7036
7037    /**
7038     * Sends a message to initialize the WifiStateMachine.
7039     *
7040     * @return true if succeeded, false otherwise.
7041     */
7042    public boolean syncInitialize(AsyncChannel channel) {
7043        Message resultMsg = channel.sendMessageSynchronously(CMD_INITIALIZE);
7044        boolean result = (resultMsg.arg1 != FAILURE);
7045        resultMsg.recycle();
7046        return result;
7047    }
7048}
7049