AccessPoint.java revision 2412817201a39340f8f91b873fb0d1dddf3feb88
1/*
2 * Copyright (C) 2015 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.settingslib.wifi;
18
19import android.app.AppGlobals;
20import android.content.Context;
21import android.content.pm.ApplicationInfo;
22import android.content.pm.IPackageManager;
23import android.content.pm.PackageManager;
24import android.net.ConnectivityManager;
25import android.net.NetworkBadging;
26import android.net.NetworkCapabilities;
27import android.net.NetworkInfo;
28import android.net.NetworkInfo.DetailedState;
29import android.net.NetworkInfo.State;
30import android.net.NetworkScoreManager;
31import android.net.NetworkScorerAppData;
32import android.net.ScoredNetwork;
33import android.net.wifi.IWifiManager;
34import android.net.wifi.ScanResult;
35import android.net.wifi.WifiConfiguration;
36import android.net.wifi.WifiConfiguration.KeyMgmt;
37import android.net.wifi.WifiInfo;
38import android.net.wifi.WifiManager;
39import android.net.wifi.WifiNetworkScoreCache;
40import android.net.wifi.hotspot2.PasspointConfiguration;
41import android.os.Bundle;
42import android.os.RemoteException;
43import android.os.ServiceManager;
44import android.os.SystemClock;
45import android.os.UserHandle;
46import android.support.annotation.NonNull;
47import android.text.Spannable;
48import android.text.SpannableString;
49import android.text.TextUtils;
50import android.text.style.TtsSpan;
51import android.util.Log;
52
53import com.android.internal.annotations.VisibleForTesting;
54import com.android.settingslib.R;
55
56import java.util.ArrayList;
57import java.util.Iterator;
58import java.util.concurrent.ConcurrentHashMap;
59import java.util.concurrent.atomic.AtomicInteger;
60
61
62public class AccessPoint implements Comparable<AccessPoint> {
63    static final String TAG = "SettingsLib.AccessPoint";
64
65    /**
66     * Lower bound on the 2.4 GHz (802.11b/g/n) WLAN channels
67     */
68    public static final int LOWER_FREQ_24GHZ = 2400;
69
70    /**
71     * Upper bound on the 2.4 GHz (802.11b/g/n) WLAN channels
72     */
73    public static final int HIGHER_FREQ_24GHZ = 2500;
74
75    /**
76     * Lower bound on the 5.0 GHz (802.11a/h/j/n/ac) WLAN channels
77     */
78    public static final int LOWER_FREQ_5GHZ = 4900;
79
80    /**
81     * Upper bound on the 5.0 GHz (802.11a/h/j/n/ac) WLAN channels
82     */
83    public static final int HIGHER_FREQ_5GHZ = 5900;
84
85
86    /**
87     * Experimental: we should be able to show the user the list of BSSIDs and bands
88     *  for that SSID.
89     *  For now this data is used only with Verbose Logging so as to show the band and number
90     *  of BSSIDs on which that network is seen.
91     */
92    private final ConcurrentHashMap<String, ScanResult> mScanResultCache =
93            new ConcurrentHashMap<String, ScanResult>(32);
94    private static final long MAX_SCAN_RESULT_AGE_MS = 15000;
95
96    static final String KEY_NETWORKINFO = "key_networkinfo";
97    static final String KEY_WIFIINFO = "key_wifiinfo";
98    static final String KEY_SCANRESULT = "key_scanresult";
99    static final String KEY_SSID = "key_ssid";
100    static final String KEY_SECURITY = "key_security";
101    static final String KEY_PSKTYPE = "key_psktype";
102    static final String KEY_SCANRESULTCACHE = "key_scanresultcache";
103    static final String KEY_CONFIG = "key_config";
104    static final String KEY_FQDN = "key_fqdn";
105    static final String KEY_PROVIDER_FRIENDLY_NAME = "key_provider_friendly_name";
106    static final AtomicInteger sLastId = new AtomicInteger(0);
107
108    /**
109     * These values are matched in string arrays -- changes must be kept in sync
110     */
111    public static final int SECURITY_NONE = 0;
112    public static final int SECURITY_WEP = 1;
113    public static final int SECURITY_PSK = 2;
114    public static final int SECURITY_EAP = 3;
115
116    private static final int PSK_UNKNOWN = 0;
117    private static final int PSK_WPA = 1;
118    private static final int PSK_WPA2 = 2;
119    private static final int PSK_WPA_WPA2 = 3;
120
121    /**
122     * The number of distinct wifi levels.
123     *
124     * <p>Must keep in sync with {@link R.array.wifi_signal} and {@link WifiManager#RSSI_LEVELS}.
125     */
126    public static final int SIGNAL_LEVELS = 5;
127
128    public static final int UNREACHABLE_RSSI = Integer.MIN_VALUE;
129
130    private final Context mContext;
131
132    private String ssid;
133    private String bssid;
134    private int security;
135    private int networkId = WifiConfiguration.INVALID_NETWORK_ID;
136
137    private int pskType = PSK_UNKNOWN;
138
139    private WifiConfiguration mConfig;
140
141    private int mRssi = UNREACHABLE_RSSI;
142    private long mSeen = 0;
143
144    private WifiInfo mInfo;
145    private NetworkInfo mNetworkInfo;
146    AccessPointListener mAccessPointListener;
147
148    private Object mTag;
149
150    private int mRankingScore = Integer.MIN_VALUE;
151    private int mBadge = NetworkBadging.BADGING_NONE;
152    private boolean mIsScoredNetworkMetered = false;
153
154    // used to co-relate internal vs returned accesspoint.
155    int mId;
156
157    /**
158     * Information associated with the {@link PasspointConfiguration}.  Only maintaining
159     * the relevant info to preserve spaces.
160     */
161    private String mFqdn;
162    private String mProviderFriendlyName;
163
164    public AccessPoint(Context context, Bundle savedState) {
165        mContext = context;
166        mConfig = savedState.getParcelable(KEY_CONFIG);
167        if (mConfig != null) {
168            loadConfig(mConfig);
169        }
170        if (savedState.containsKey(KEY_SSID)) {
171            ssid = savedState.getString(KEY_SSID);
172        }
173        if (savedState.containsKey(KEY_SECURITY)) {
174            security = savedState.getInt(KEY_SECURITY);
175        }
176        if (savedState.containsKey(KEY_PSKTYPE)) {
177            pskType = savedState.getInt(KEY_PSKTYPE);
178        }
179        mInfo = (WifiInfo) savedState.getParcelable(KEY_WIFIINFO);
180        if (savedState.containsKey(KEY_NETWORKINFO)) {
181            mNetworkInfo = savedState.getParcelable(KEY_NETWORKINFO);
182        }
183        if (savedState.containsKey(KEY_SCANRESULTCACHE)) {
184            ArrayList<ScanResult> scanResultArrayList =
185                    savedState.getParcelableArrayList(KEY_SCANRESULTCACHE);
186            mScanResultCache.clear();
187            for (ScanResult result : scanResultArrayList) {
188                mScanResultCache.put(result.BSSID, result);
189            }
190        }
191        if (savedState.containsKey(KEY_FQDN)) {
192            mFqdn = savedState.getString(KEY_FQDN);
193        }
194        if (savedState.containsKey(KEY_PROVIDER_FRIENDLY_NAME)) {
195            mProviderFriendlyName = savedState.getString(KEY_PROVIDER_FRIENDLY_NAME);
196        }
197        update(mConfig, mInfo, mNetworkInfo);
198        updateRssi();
199        updateSeen();
200        mId = sLastId.incrementAndGet();
201    }
202
203    public AccessPoint(Context context, WifiConfiguration config) {
204        mContext = context;
205        loadConfig(config);
206        mId = sLastId.incrementAndGet();
207    }
208
209    /**
210     * Initialize an AccessPoint object for a {@link PasspointConfiguration}.  This is mainly
211     * used by "Saved Networks" page for managing the saved {@link PasspointConfiguration}.
212     */
213    public AccessPoint(Context context, PasspointConfiguration config) {
214        mContext = context;
215        mFqdn = config.getHomeSp().getFqdn();
216        mProviderFriendlyName = config.getHomeSp().getFriendlyName();
217        mId = sLastId.incrementAndGet();
218    }
219
220    AccessPoint(Context context, AccessPoint other) {
221        mContext = context;
222        copyFrom(other);
223    }
224
225    AccessPoint(Context context, ScanResult result) {
226        mContext = context;
227        initWithScanResult(result);
228        mId = sLastId.incrementAndGet();
229    }
230
231    /**
232     * Copy accesspoint information. NOTE: We do not copy tag information because that is never
233     * set on the internal copy.
234     * @param that
235     */
236    void copyFrom(AccessPoint that) {
237        that.evictOldScanResults();
238        this.ssid = that.ssid;
239        this.bssid = that.bssid;
240        this.security = that.security;
241        this.networkId = that.networkId;
242        this.pskType = that.pskType;
243        this.mConfig = that.mConfig; //TODO: Watch out, this object is mutated.
244        this.mRssi = that.mRssi;
245        this.mSeen = that.mSeen;
246        this.mInfo = that.mInfo;
247        this.mNetworkInfo = that.mNetworkInfo;
248        this.mScanResultCache.clear();
249        this.mScanResultCache.putAll(that.mScanResultCache);
250        this.mId = that.mId;
251        this.mBadge = that.mBadge;
252        this.mIsScoredNetworkMetered = that.mIsScoredNetworkMetered;
253        this.mRankingScore = that.mRankingScore;
254    }
255
256    /**
257    * Returns a negative integer, zero, or a positive integer if this AccessPoint is less than,
258    * equal to, or greater than the other AccessPoint.
259    *
260    * Sort order rules for AccessPoints:
261    *   1. Active before inactive
262    *   2. Reachable before unreachable
263    *   3. Saved before unsaved
264    *   4. (Internal only) Network ranking score
265    *   5. Stronger signal before weaker signal
266    *   6. SSID alphabetically
267    *
268    * Note that AccessPoints with a signal are usually also Reachable,
269    * and will thus appear before unreachable saved AccessPoints.
270    */
271    @Override
272    public int compareTo(@NonNull AccessPoint other) {
273        // Active one goes first.
274        if (isActive() && !other.isActive()) return -1;
275        if (!isActive() && other.isActive()) return 1;
276
277        // Reachable one goes before unreachable one.
278        if (isReachable() && !other.isReachable()) return -1;
279        if (!isReachable() && other.isReachable()) return 1;
280
281        // Configured (saved) one goes before unconfigured one.
282        if (isSaved() && !other.isSaved()) return -1;
283        if (!isSaved() && other.isSaved()) return 1;
284
285        // Higher scores go before lower scores
286        if (getRankingScore() != other.getRankingScore()) {
287            return (getRankingScore() > other.getRankingScore()) ? -1 : 1;
288        }
289
290        // Sort by signal strength, bucketed by level
291        int difference = WifiManager.calculateSignalLevel(other.mRssi, SIGNAL_LEVELS)
292                - WifiManager.calculateSignalLevel(mRssi, SIGNAL_LEVELS);
293        if (difference != 0) {
294            return difference;
295        }
296        // Sort by ssid.
297        return getSsidStr().compareToIgnoreCase(other.getSsidStr());
298    }
299
300    @Override
301    public boolean equals(Object other) {
302        if (!(other instanceof AccessPoint)) return false;
303        return (this.compareTo((AccessPoint) other) == 0);
304    }
305
306    @Override
307    public int hashCode() {
308        int result = 0;
309        if (mInfo != null) result += 13 * mInfo.hashCode();
310        result += 19 * mRssi;
311        result += 23 * networkId;
312        result += 29 * ssid.hashCode();
313        return result;
314    }
315
316    @Override
317    public String toString() {
318        StringBuilder builder = new StringBuilder().append("AccessPoint(")
319                .append(ssid);
320        if (bssid != null) {
321            builder.append(":").append(bssid);
322        }
323        if (isSaved()) {
324            builder.append(',').append("saved");
325        }
326        if (isActive()) {
327            builder.append(',').append("active");
328        }
329        if (isEphemeral()) {
330            builder.append(',').append("ephemeral");
331        }
332        if (isConnectable()) {
333            builder.append(',').append("connectable");
334        }
335        if (security != SECURITY_NONE) {
336            builder.append(',').append(securityToString(security, pskType));
337        }
338        builder.append(",mRssi=").append(mRssi);
339        builder.append(",level=").append(getLevel());
340        if (mRankingScore != Integer.MIN_VALUE) {
341            builder.append(",rankingScore=").append(mRankingScore);
342        }
343        if (mBadge != NetworkBadging.BADGING_NONE) {
344            builder.append(",badge=").append(mBadge);
345        }
346        builder.append(",metered=").append(isMetered());
347
348        return builder.append(')').toString();
349    }
350
351    /**
352     * Updates the AccessPoint rankingScore, metering, and badge, returning true if the data has
353     * changed.
354     *
355     * @param scoreCache The score cache to use to retrieve scores.
356     * @param scoringUiEnabled Whether to show scoring and badging UI.
357     */
358    boolean update(WifiNetworkScoreCache scoreCache, boolean scoringUiEnabled) {
359        boolean scoreChanged = false;
360        if (scoringUiEnabled) {
361            scoreChanged = updateScores(scoreCache);
362        }
363        return updateMetered(scoreCache) || scoreChanged;
364    }
365
366    /**
367     * Updates the AccessPoint rankingScore and badge, returning true if the data has changed.
368     *
369     * @param scoreCache The score cache to use to retrieve scores.
370     */
371    private boolean updateScores(WifiNetworkScoreCache scoreCache) {
372        int oldBadge = mBadge;
373        int oldRankingScore = mRankingScore;
374        mBadge = NetworkBadging.BADGING_NONE;
375        mRankingScore = Integer.MIN_VALUE;
376
377        for (ScanResult result : mScanResultCache.values()) {
378            ScoredNetwork score = scoreCache.getScoredNetwork(result);
379            if (score == null) {
380                continue;
381            }
382
383            if (score.hasRankingScore()) {
384                mRankingScore = Math.max(mRankingScore, score.calculateRankingScore(result.level));
385            }
386            mBadge = Math.max(mBadge, score.calculateBadge(result.level));
387        }
388
389        return (oldBadge != mBadge || oldRankingScore != mRankingScore);
390    }
391
392    /**
393     * Updates the AccessPoint's metering based on {@link ScoredNetwork#meteredHint}, returning
394     * true if the metering changed.
395     */
396    private boolean updateMetered(WifiNetworkScoreCache scoreCache) {
397        boolean oldMetering = mIsScoredNetworkMetered;
398        mIsScoredNetworkMetered = false;
399        for (ScanResult result : mScanResultCache.values()) {
400            ScoredNetwork score = scoreCache.getScoredNetwork(result);
401            if (score == null) {
402                continue;
403            }
404            mIsScoredNetworkMetered |= score.meteredHint;
405        }
406        return oldMetering == mIsScoredNetworkMetered;
407    }
408
409    private void evictOldScanResults() {
410        long nowMs = SystemClock.elapsedRealtime();
411        for (Iterator<ScanResult> iter = mScanResultCache.values().iterator(); iter.hasNext(); ) {
412            ScanResult result = iter.next();
413            // result timestamp is in microseconds
414            if (nowMs - result.timestamp / 1000 > MAX_SCAN_RESULT_AGE_MS) {
415                iter.remove();
416            }
417        }
418    }
419
420    public boolean matches(ScanResult result) {
421        return ssid.equals(result.SSID) && security == getSecurity(result);
422    }
423
424    public boolean matches(WifiConfiguration config) {
425        if (config.isPasspoint() && mConfig != null && mConfig.isPasspoint()) {
426            return ssid.equals(removeDoubleQuotes(config.SSID)) && config.FQDN.equals(mConfig.FQDN);
427        } else {
428            return ssid.equals(removeDoubleQuotes(config.SSID))
429                    && security == getSecurity(config)
430                    && (mConfig == null || mConfig.shared == config.shared);
431        }
432    }
433
434    public WifiConfiguration getConfig() {
435        return mConfig;
436    }
437
438    public String getPasspointFqdn() {
439        return mFqdn;
440    }
441
442    public void clearConfig() {
443        mConfig = null;
444        networkId = WifiConfiguration.INVALID_NETWORK_ID;
445    }
446
447    public WifiInfo getInfo() {
448        return mInfo;
449    }
450
451    /**
452     * Returns the number of levels to show for a Wifi icon, from 0 to {@link #SIGNAL_LEVELS}-1.
453     *
454     * <p>Use {@#isReachable()} to determine if an AccessPoint is in range, as this method will
455     * always return at least 0.
456     */
457    public int getLevel() {
458        return WifiManager.calculateSignalLevel(mRssi, SIGNAL_LEVELS);
459    }
460
461    public int getRssi() {
462        return mRssi;
463    }
464
465    /**
466     * Updates {@link #mRssi}.
467     *
468     * <p>If the given connection is active, the existing value of {@link #mRssi} will be returned.
469     * If the given AccessPoint is not active, a value will be calculated from previous scan
470     * results, returning the best RSSI for all matching AccessPoints averaged with the previous
471     * value. If the access point is not connected and there are no scan results, the rssi will be
472     * set to {@link #UNREACHABLE_RSSI}.
473     *
474     * <p>Old scan results will be evicted from the cache when this method is invoked.
475     */
476    private void updateRssi() {
477        evictOldScanResults();
478
479        if (this.isActive()) {
480            return;
481        }
482
483        int rssi = UNREACHABLE_RSSI;
484        for (ScanResult result : mScanResultCache.values()) {
485            if (result.level > rssi) {
486                rssi = result.level;
487            }
488        }
489
490        if (rssi != UNREACHABLE_RSSI && mRssi != UNREACHABLE_RSSI) {
491            mRssi = (mRssi + rssi) / 2; // half-life previous value
492        } else {
493            mRssi = rssi;
494        }
495    }
496
497    /**
498     * Updates {@link #mSeen} based on the scan result cache.
499     *
500     * <p>Old scan results will be evicted from the cache when this method is invoked.
501     */
502    private void updateSeen() {
503        evictOldScanResults();
504
505        // TODO(sghuman): Set to now if connected
506
507        long seen = 0;
508        for (ScanResult result : mScanResultCache.values()) {
509            if (result.timestamp > seen) {
510                seen = result.timestamp;
511            }
512        }
513
514        // Only replace the previous value if we have a recent scan result to use
515        if (seen != 0) {
516            mSeen = seen;
517        }
518    }
519
520    /**
521     * Returns if the network is marked metered. Metering can be marked through its config in
522     * {@link WifiConfiguration}, after connection in {@link WifiInfo}, or from a score config in
523     * {@link ScoredNetwork}.
524     */
525    public boolean isMetered() {
526        return mIsScoredNetworkMetered
527                || (mConfig != null && mConfig.meteredHint)
528                || (mInfo != null && mInfo.getMeteredHint()
529                || (mNetworkInfo != null && mNetworkInfo.isMetered()));
530    }
531
532    public NetworkInfo getNetworkInfo() {
533        return mNetworkInfo;
534    }
535
536    public int getSecurity() {
537        return security;
538    }
539
540    public String getSecurityString(boolean concise) {
541        Context context = mContext;
542        if (mConfig != null && mConfig.isPasspoint()) {
543            return concise ? context.getString(R.string.wifi_security_short_eap) :
544                context.getString(R.string.wifi_security_eap);
545        }
546        switch(security) {
547            case SECURITY_EAP:
548                return concise ? context.getString(R.string.wifi_security_short_eap) :
549                    context.getString(R.string.wifi_security_eap);
550            case SECURITY_PSK:
551                switch (pskType) {
552                    case PSK_WPA:
553                        return concise ? context.getString(R.string.wifi_security_short_wpa) :
554                            context.getString(R.string.wifi_security_wpa);
555                    case PSK_WPA2:
556                        return concise ? context.getString(R.string.wifi_security_short_wpa2) :
557                            context.getString(R.string.wifi_security_wpa2);
558                    case PSK_WPA_WPA2:
559                        return concise ? context.getString(R.string.wifi_security_short_wpa_wpa2) :
560                            context.getString(R.string.wifi_security_wpa_wpa2);
561                    case PSK_UNKNOWN:
562                    default:
563                        return concise ? context.getString(R.string.wifi_security_short_psk_generic)
564                                : context.getString(R.string.wifi_security_psk_generic);
565                }
566            case SECURITY_WEP:
567                return concise ? context.getString(R.string.wifi_security_short_wep) :
568                    context.getString(R.string.wifi_security_wep);
569            case SECURITY_NONE:
570            default:
571                return concise ? "" : context.getString(R.string.wifi_security_none);
572        }
573    }
574
575    public String getSsidStr() {
576        return ssid;
577    }
578
579    public String getBssid() {
580        return bssid;
581    }
582
583    public CharSequence getSsid() {
584        final SpannableString str = new SpannableString(ssid);
585        str.setSpan(new TtsSpan.TelephoneBuilder(ssid).build(), 0, ssid.length(),
586                Spannable.SPAN_INCLUSIVE_INCLUSIVE);
587        return str;
588    }
589
590    public String getConfigName() {
591        if (mConfig != null && mConfig.isPasspoint()) {
592            return mConfig.providerFriendlyName;
593        } else if (mFqdn != null) {
594            return mProviderFriendlyName;
595        } else {
596            return ssid;
597        }
598    }
599
600    public DetailedState getDetailedState() {
601        if (mNetworkInfo != null) {
602            return mNetworkInfo.getDetailedState();
603        }
604        Log.w(TAG, "NetworkInfo is null, cannot return detailed state");
605        return null;
606    }
607
608    public String getSavedNetworkSummary() {
609        WifiConfiguration config = mConfig;
610        if (config != null) {
611            PackageManager pm = mContext.getPackageManager();
612            String systemName = pm.getNameForUid(android.os.Process.SYSTEM_UID);
613            int userId = UserHandle.getUserId(config.creatorUid);
614            ApplicationInfo appInfo = null;
615            if (config.creatorName != null && config.creatorName.equals(systemName)) {
616                appInfo = mContext.getApplicationInfo();
617            } else {
618                try {
619                    IPackageManager ipm = AppGlobals.getPackageManager();
620                    appInfo = ipm.getApplicationInfo(config.creatorName, 0 /* flags */, userId);
621                } catch (RemoteException rex) {
622                }
623            }
624            if (appInfo != null &&
625                    !appInfo.packageName.equals(mContext.getString(R.string.settings_package)) &&
626                    !appInfo.packageName.equals(
627                    mContext.getString(R.string.certinstaller_package))) {
628                return mContext.getString(R.string.saved_network, appInfo.loadLabel(pm));
629            }
630        }
631        return "";
632    }
633
634    public String getSummary() {
635        return getSettingsSummary(mConfig);
636    }
637
638    public String getSettingsSummary() {
639        return getSettingsSummary(mConfig);
640    }
641
642    private String getSettingsSummary(WifiConfiguration config) {
643        // Update to new summary
644        StringBuilder summary = new StringBuilder();
645
646        if (isActive() && config != null && config.isPasspoint()) {
647            // This is the active connection on passpoint
648            summary.append(getSummary(mContext, getDetailedState(),
649                    false, config.providerFriendlyName));
650        } else if (isActive()) {
651            // This is the active connection on non-passpoint network
652            summary.append(getSummary(mContext, getDetailedState(),
653                    mInfo != null && mInfo.isEphemeral()));
654        } else if (config != null && config.isPasspoint()
655                && config.getNetworkSelectionStatus().isNetworkEnabled()) {
656            String format = mContext.getString(R.string.available_via_passpoint);
657            summary.append(String.format(format, config.providerFriendlyName));
658        } else if (config != null && config.hasNoInternetAccess()) {
659            int messageID = config.getNetworkSelectionStatus().isNetworkPermanentlyDisabled()
660                    ? R.string.wifi_no_internet_no_reconnect
661                    : R.string.wifi_no_internet;
662            summary.append(mContext.getString(messageID));
663        } else if (config != null && !config.getNetworkSelectionStatus().isNetworkEnabled()) {
664            WifiConfiguration.NetworkSelectionStatus networkStatus =
665                    config.getNetworkSelectionStatus();
666            switch (networkStatus.getNetworkSelectionDisableReason()) {
667                case WifiConfiguration.NetworkSelectionStatus.DISABLED_AUTHENTICATION_FAILURE:
668                    summary.append(mContext.getString(R.string.wifi_disabled_password_failure));
669                    break;
670                case WifiConfiguration.NetworkSelectionStatus.DISABLED_DHCP_FAILURE:
671                case WifiConfiguration.NetworkSelectionStatus.DISABLED_DNS_FAILURE:
672                    summary.append(mContext.getString(R.string.wifi_disabled_network_failure));
673                    break;
674                case WifiConfiguration.NetworkSelectionStatus.DISABLED_ASSOCIATION_REJECTION:
675                    summary.append(mContext.getString(R.string.wifi_disabled_generic));
676                    break;
677            }
678        } else if (config != null && config.getNetworkSelectionStatus().isNotRecommended()) {
679            summary.append(mContext.getString(R.string.wifi_disabled_by_recommendation_provider));
680        } else if (!isReachable()) { // Wifi out of range
681            summary.append(mContext.getString(R.string.wifi_not_in_range));
682        } else { // In range, not disabled.
683            if (config != null) { // Is saved network
684                summary.append(mContext.getString(R.string.wifi_remembered));
685            }
686        }
687
688        if (WifiTracker.sVerboseLogging > 0) {
689            // Add RSSI/band information for this config, what was seen up to 6 seconds ago
690            // verbose WiFi Logging is only turned on thru developers settings
691            if (mInfo != null && mNetworkInfo != null) { // This is the active connection
692                summary.append(" f=" + Integer.toString(mInfo.getFrequency()));
693            }
694            summary.append(" " + getVisibilityStatus());
695            if (config != null && !config.getNetworkSelectionStatus().isNetworkEnabled()) {
696                summary.append(" (" + config.getNetworkSelectionStatus().getNetworkStatusString());
697                if (config.getNetworkSelectionStatus().getDisableTime() > 0) {
698                    long now = System.currentTimeMillis();
699                    long diff = (now - config.getNetworkSelectionStatus().getDisableTime()) / 1000;
700                    long sec = diff%60; //seconds
701                    long min = (diff/60)%60; //minutes
702                    long hour = (min/60)%60; //hours
703                    summary.append(", ");
704                    if (hour > 0) summary.append(Long.toString(hour) + "h ");
705                    summary.append( Long.toString(min) + "m ");
706                    summary.append( Long.toString(sec) + "s ");
707                }
708                summary.append(")");
709            }
710
711            if (config != null) {
712                WifiConfiguration.NetworkSelectionStatus networkStatus =
713                        config.getNetworkSelectionStatus();
714                for (int index = WifiConfiguration.NetworkSelectionStatus.NETWORK_SELECTION_ENABLE;
715                        index < WifiConfiguration.NetworkSelectionStatus
716                        .NETWORK_SELECTION_DISABLED_MAX; index++) {
717                    if (networkStatus.getDisableReasonCounter(index) != 0) {
718                        summary.append(" " + WifiConfiguration.NetworkSelectionStatus
719                                .getNetworkDisableReasonString(index) + "="
720                                + networkStatus.getDisableReasonCounter(index));
721                    }
722                }
723            }
724        }
725        return summary.toString();
726    }
727
728    /**
729     * Returns the visibility status of the WifiConfiguration.
730     *
731     * @return autojoin debugging information
732     * TODO: use a string formatter
733     * ["rssi 5Ghz", "num results on 5GHz" / "rssi 5Ghz", "num results on 5GHz"]
734     * For instance [-40,5/-30,2]
735     */
736    private String getVisibilityStatus() {
737        StringBuilder visibility = new StringBuilder();
738        StringBuilder scans24GHz = null;
739        StringBuilder scans5GHz = null;
740        String bssid = null;
741
742        long now = System.currentTimeMillis();
743
744        if (mInfo != null) {
745            bssid = mInfo.getBSSID();
746            if (bssid != null) {
747                visibility.append(" ").append(bssid);
748            }
749            visibility.append(" rssi=").append(mInfo.getRssi());
750            visibility.append(" ");
751            visibility.append(" score=").append(mInfo.score);
752            if (mRankingScore != Integer.MIN_VALUE) {
753              visibility.append(" rankingScore=").append(getRankingScore());
754            }
755            if (mBadge != NetworkBadging.BADGING_NONE) {
756              visibility.append(" badge=").append(getBadge());
757            }
758            visibility.append(String.format(" tx=%.1f,", mInfo.txSuccessRate));
759            visibility.append(String.format("%.1f,", mInfo.txRetriesRate));
760            visibility.append(String.format("%.1f ", mInfo.txBadRate));
761            visibility.append(String.format("rx=%.1f", mInfo.rxSuccessRate));
762        }
763
764        int rssi5 = WifiConfiguration.INVALID_RSSI;
765        int rssi24 = WifiConfiguration.INVALID_RSSI;
766        int num5 = 0;
767        int num24 = 0;
768        int numBlackListed = 0;
769        int n24 = 0; // Number scan results we included in the string
770        int n5 = 0; // Number scan results we included in the string
771        evictOldScanResults();
772        // TODO: sort list by RSSI or age
773        for (ScanResult result : mScanResultCache.values()) {
774
775            if (result.frequency >= LOWER_FREQ_5GHZ
776                    && result.frequency <= HIGHER_FREQ_5GHZ) {
777                // Strictly speaking: [4915, 5825]
778                // number of known BSSID on 5GHz band
779                num5 = num5 + 1;
780            } else if (result.frequency >= LOWER_FREQ_24GHZ
781                    && result.frequency <= HIGHER_FREQ_24GHZ) {
782                // Strictly speaking: [2412, 2482]
783                // number of known BSSID on 2.4Ghz band
784                num24 = num24 + 1;
785            }
786
787
788            if (result.frequency >= LOWER_FREQ_5GHZ
789                    && result.frequency <= HIGHER_FREQ_5GHZ) {
790                if (result.level > rssi5) {
791                    rssi5 = result.level;
792                }
793                if (n5 < 4) {
794                    if (scans5GHz == null) scans5GHz = new StringBuilder();
795                    scans5GHz.append(" \n{").append(result.BSSID);
796                    if (bssid != null && result.BSSID.equals(bssid)) scans5GHz.append("*");
797                    scans5GHz.append("=").append(result.frequency);
798                    scans5GHz.append(",").append(result.level);
799                    scans5GHz.append("}");
800                    n5++;
801                }
802            } else if (result.frequency >= LOWER_FREQ_24GHZ
803                    && result.frequency <= HIGHER_FREQ_24GHZ) {
804                if (result.level > rssi24) {
805                    rssi24 = result.level;
806                }
807                if (n24 < 4) {
808                    if (scans24GHz == null) scans24GHz = new StringBuilder();
809                    scans24GHz.append(" \n{").append(result.BSSID);
810                    if (bssid != null && result.BSSID.equals(bssid)) scans24GHz.append("*");
811                    scans24GHz.append("=").append(result.frequency);
812                    scans24GHz.append(",").append(result.level);
813                    scans24GHz.append("}");
814                    n24++;
815                }
816            }
817        }
818        visibility.append(" [");
819        if (num24 > 0) {
820            visibility.append("(").append(num24).append(")");
821            if (n24 <= 4) {
822                if (scans24GHz != null) {
823                    visibility.append(scans24GHz.toString());
824                }
825            } else {
826                visibility.append("max=").append(rssi24);
827                if (scans24GHz != null) {
828                    visibility.append(",").append(scans24GHz.toString());
829                }
830            }
831        }
832        visibility.append(";");
833        if (num5 > 0) {
834            visibility.append("(").append(num5).append(")");
835            if (n5 <= 4) {
836                if (scans5GHz != null) {
837                    visibility.append(scans5GHz.toString());
838                }
839            } else {
840                visibility.append("max=").append(rssi5);
841                if (scans5GHz != null) {
842                    visibility.append(",").append(scans5GHz.toString());
843                }
844            }
845        }
846        if (numBlackListed > 0)
847            visibility.append("!").append(numBlackListed);
848        visibility.append("]");
849
850        return visibility.toString();
851    }
852
853    /**
854     * Return whether this is the active connection.
855     * For ephemeral connections (networkId is invalid), this returns false if the network is
856     * disconnected.
857     */
858    public boolean isActive() {
859        return mNetworkInfo != null &&
860                (networkId != WifiConfiguration.INVALID_NETWORK_ID ||
861                 mNetworkInfo.getState() != State.DISCONNECTED);
862    }
863
864    public boolean isConnectable() {
865        return getLevel() != -1 && getDetailedState() == null;
866    }
867
868    public boolean isEphemeral() {
869        return mInfo != null && mInfo.isEphemeral() &&
870                mNetworkInfo != null && mNetworkInfo.getState() != State.DISCONNECTED;
871    }
872
873    /**
874     * Return true if this AccessPoint represents a Passpoint AP.
875     */
876    public boolean isPasspoint() {
877        return mConfig != null && mConfig.isPasspoint();
878    }
879
880    /**
881     * Return true if this AccessPoint represents a Passpoint provider configuration.
882     */
883    public boolean isPasspointConfig() {
884        return mFqdn != null;
885    }
886
887    /**
888     * Return whether the given {@link WifiInfo} is for this access point.
889     * If the current AP does not have a network Id then the config is used to
890     * match based on SSID and security.
891     */
892    private boolean isInfoForThisAccessPoint(WifiConfiguration config, WifiInfo info) {
893        if (isPasspoint() == false && networkId != WifiConfiguration.INVALID_NETWORK_ID) {
894            return networkId == info.getNetworkId();
895        } else if (config != null) {
896            return matches(config);
897        }
898        else {
899            // Might be an ephemeral connection with no WifiConfiguration. Try matching on SSID.
900            // (Note that we only do this if the WifiConfiguration explicitly equals INVALID).
901            // TODO: Handle hex string SSIDs.
902            return ssid.equals(removeDoubleQuotes(info.getSSID()));
903        }
904    }
905
906    public boolean isSaved() {
907        return networkId != WifiConfiguration.INVALID_NETWORK_ID;
908    }
909
910    public Object getTag() {
911        return mTag;
912    }
913
914    public void setTag(Object tag) {
915        mTag = tag;
916    }
917
918    /**
919     * Generate and save a default wifiConfiguration with common values.
920     * Can only be called for unsecured networks.
921     */
922    public void generateOpenNetworkConfig() {
923        if (security != SECURITY_NONE)
924            throw new IllegalStateException();
925        if (mConfig != null)
926            return;
927        mConfig = new WifiConfiguration();
928        mConfig.SSID = AccessPoint.convertToQuotedString(ssid);
929        mConfig.allowedKeyManagement.set(KeyMgmt.NONE);
930    }
931
932    void loadConfig(WifiConfiguration config) {
933        ssid = (config.SSID == null ? "" : removeDoubleQuotes(config.SSID));
934        bssid = config.BSSID;
935        security = getSecurity(config);
936        networkId = config.networkId;
937        mConfig = config;
938    }
939
940    private void initWithScanResult(ScanResult result) {
941        ssid = result.SSID;
942        bssid = result.BSSID;
943        security = getSecurity(result);
944        if (security == SECURITY_PSK)
945            pskType = getPskType(result);
946
947        mScanResultCache.put(result.BSSID, result);
948        updateRssi();
949        mSeen = result.timestamp; // even if the timestamp is old it is still valid
950    }
951
952    public void saveWifiState(Bundle savedState) {
953        if (ssid != null) savedState.putString(KEY_SSID, getSsidStr());
954        savedState.putInt(KEY_SECURITY, security);
955        savedState.putInt(KEY_PSKTYPE, pskType);
956        if (mConfig != null) savedState.putParcelable(KEY_CONFIG, mConfig);
957        savedState.putParcelable(KEY_WIFIINFO, mInfo);
958        evictOldScanResults();
959        savedState.putParcelableArrayList(KEY_SCANRESULTCACHE,
960                new ArrayList<ScanResult>(mScanResultCache.values()));
961        if (mNetworkInfo != null) {
962            savedState.putParcelable(KEY_NETWORKINFO, mNetworkInfo);
963        }
964        if (mFqdn != null) {
965            savedState.putString(KEY_FQDN, mFqdn);
966        }
967        if (mProviderFriendlyName != null) {
968            savedState.putString(KEY_PROVIDER_FRIENDLY_NAME, mProviderFriendlyName);
969        }
970    }
971
972    public void setListener(AccessPointListener listener) {
973        mAccessPointListener = listener;
974    }
975
976    boolean update(ScanResult result) {
977        if (matches(result)) {
978            int oldLevel = getLevel();
979
980            /* Add or update the scan result for the BSSID */
981            mScanResultCache.put(result.BSSID, result);
982            updateSeen();
983            updateRssi();
984            int newLevel = getLevel();
985
986            if (newLevel > 0 && newLevel != oldLevel && mAccessPointListener != null) {
987                mAccessPointListener.onLevelChanged(this);
988            }
989            // This flag only comes from scans, is not easily saved in config
990            if (security == SECURITY_PSK) {
991                pskType = getPskType(result);
992            }
993
994            if (mAccessPointListener != null) {
995                mAccessPointListener.onAccessPointChanged(this);
996            }
997
998            return true;
999        }
1000        return false;
1001    }
1002
1003    /** Attempt to update the AccessPoint and return true if an update occurred. */
1004    public boolean update(WifiConfiguration config, WifiInfo info, NetworkInfo networkInfo) {
1005        boolean updated = false;
1006        final int oldLevel = getLevel();
1007        if (info != null && isInfoForThisAccessPoint(config, info)) {
1008            updated = (mInfo == null);
1009            if (mRssi != info.getRssi()) {
1010                mRssi = info.getRssi();
1011                updated = true;
1012            } else if (mNetworkInfo != null && networkInfo != null
1013                    && mNetworkInfo.getDetailedState() != networkInfo.getDetailedState()) {
1014                updated = true;
1015            }
1016            mInfo = info;
1017            mNetworkInfo = networkInfo;
1018        } else if (mInfo != null) {
1019            updated = true;
1020            mInfo = null;
1021            mNetworkInfo = null;
1022        }
1023        if (updated && mAccessPointListener != null) {
1024            mAccessPointListener.onAccessPointChanged(this);
1025
1026            if (oldLevel != getLevel() /* current level */) {
1027                mAccessPointListener.onLevelChanged(this);
1028            }
1029        }
1030        return updated;
1031    }
1032
1033    void update(WifiConfiguration config) {
1034        mConfig = config;
1035        networkId = config.networkId;
1036        if (mAccessPointListener != null) {
1037            mAccessPointListener.onAccessPointChanged(this);
1038        }
1039    }
1040
1041    @VisibleForTesting
1042    void setRssi(int rssi) {
1043        mRssi = rssi;
1044    }
1045
1046    /** Sets the rssi to {@link #UNREACHABLE_RSSI}. */
1047    void setUnreachable() {
1048        setRssi(AccessPoint.UNREACHABLE_RSSI);
1049    }
1050
1051    int getRankingScore() {
1052        return mRankingScore;
1053    }
1054
1055    int getBadge() {
1056        return mBadge;
1057    }
1058
1059    /** Return true if the current RSSI is reachable, and false otherwise. */
1060    public boolean isReachable() {
1061        return mRssi != UNREACHABLE_RSSI;
1062    }
1063
1064    public static String getSummary(Context context, String ssid, DetailedState state,
1065            boolean isEphemeral, String passpointProvider) {
1066        if (state == DetailedState.CONNECTED && ssid == null) {
1067            if (TextUtils.isEmpty(passpointProvider) == false) {
1068                // Special case for connected + passpoint networks.
1069                String format = context.getString(R.string.connected_via_passpoint);
1070                return String.format(format, passpointProvider);
1071            } else if (isEphemeral) {
1072                // Special case for connected + ephemeral networks.
1073                final NetworkScoreManager networkScoreManager = context.getSystemService(
1074                        NetworkScoreManager.class);
1075                NetworkScorerAppData scorer = networkScoreManager.getActiveScorer();
1076                if (scorer != null && scorer.getRecommendationServiceLabel() != null) {
1077                    String format = context.getString(R.string.connected_via_network_scorer);
1078                    return String.format(format, scorer.getRecommendationServiceLabel());
1079                } else {
1080                    return context.getString(R.string.connected_via_network_scorer_default);
1081                }
1082            }
1083        }
1084
1085        // Case when there is wifi connected without internet connectivity.
1086        final ConnectivityManager cm = (ConnectivityManager)
1087                context.getSystemService(Context.CONNECTIVITY_SERVICE);
1088        if (state == DetailedState.CONNECTED) {
1089            IWifiManager wifiManager = IWifiManager.Stub.asInterface(
1090                    ServiceManager.getService(Context.WIFI_SERVICE));
1091            NetworkCapabilities nc = null;
1092
1093            try {
1094                nc = cm.getNetworkCapabilities(wifiManager.getCurrentNetwork());
1095            } catch (RemoteException e) {}
1096
1097            if (nc != null) {
1098                if (nc.hasCapability(nc.NET_CAPABILITY_CAPTIVE_PORTAL)) {
1099                    return context.getString(
1100                        com.android.internal.R.string.network_available_sign_in);
1101                } else if (!nc.hasCapability(NetworkCapabilities.NET_CAPABILITY_VALIDATED)) {
1102                    return context.getString(R.string.wifi_connected_no_internet);
1103                }
1104            }
1105        }
1106        if (state == null) {
1107            Log.w(TAG, "state is null, returning empty summary");
1108            return "";
1109        }
1110        String[] formats = context.getResources().getStringArray((ssid == null)
1111                ? R.array.wifi_status : R.array.wifi_status_with_ssid);
1112        int index = state.ordinal();
1113
1114        if (index >= formats.length || formats[index].length() == 0) {
1115            return "";
1116        }
1117        return String.format(formats[index], ssid);
1118    }
1119
1120    public static String getSummary(Context context, DetailedState state, boolean isEphemeral) {
1121        return getSummary(context, null, state, isEphemeral, null);
1122    }
1123
1124    public static String getSummary(Context context, DetailedState state, boolean isEphemeral,
1125            String passpointProvider) {
1126        return getSummary(context, null, state, isEphemeral, passpointProvider);
1127    }
1128
1129    public static String convertToQuotedString(String string) {
1130        return "\"" + string + "\"";
1131    }
1132
1133    private static int getPskType(ScanResult result) {
1134        boolean wpa = result.capabilities.contains("WPA-PSK");
1135        boolean wpa2 = result.capabilities.contains("WPA2-PSK");
1136        if (wpa2 && wpa) {
1137            return PSK_WPA_WPA2;
1138        } else if (wpa2) {
1139            return PSK_WPA2;
1140        } else if (wpa) {
1141            return PSK_WPA;
1142        } else {
1143            Log.w(TAG, "Received abnormal flag string: " + result.capabilities);
1144            return PSK_UNKNOWN;
1145        }
1146    }
1147
1148    private static int getSecurity(ScanResult result) {
1149        if (result.capabilities.contains("WEP")) {
1150            return SECURITY_WEP;
1151        } else if (result.capabilities.contains("PSK")) {
1152            return SECURITY_PSK;
1153        } else if (result.capabilities.contains("EAP")) {
1154            return SECURITY_EAP;
1155        }
1156        return SECURITY_NONE;
1157    }
1158
1159    static int getSecurity(WifiConfiguration config) {
1160        if (config.allowedKeyManagement.get(KeyMgmt.WPA_PSK)) {
1161            return SECURITY_PSK;
1162        }
1163        if (config.allowedKeyManagement.get(KeyMgmt.WPA_EAP) ||
1164                config.allowedKeyManagement.get(KeyMgmt.IEEE8021X)) {
1165            return SECURITY_EAP;
1166        }
1167        return (config.wepKeys[0] != null) ? SECURITY_WEP : SECURITY_NONE;
1168    }
1169
1170    public static String securityToString(int security, int pskType) {
1171        if (security == SECURITY_WEP) {
1172            return "WEP";
1173        } else if (security == SECURITY_PSK) {
1174            if (pskType == PSK_WPA) {
1175                return "WPA";
1176            } else if (pskType == PSK_WPA2) {
1177                return "WPA2";
1178            } else if (pskType == PSK_WPA_WPA2) {
1179                return "WPA_WPA2";
1180            }
1181            return "PSK";
1182        } else if (security == SECURITY_EAP) {
1183            return "EAP";
1184        }
1185        return "NONE";
1186    }
1187
1188    static String removeDoubleQuotes(String string) {
1189        if (TextUtils.isEmpty(string)) {
1190            return "";
1191        }
1192        int length = string.length();
1193        if ((length > 1) && (string.charAt(0) == '"')
1194                && (string.charAt(length - 1) == '"')) {
1195            return string.substring(1, length - 1);
1196        }
1197        return string;
1198    }
1199
1200    public interface AccessPointListener {
1201        void onAccessPointChanged(AccessPoint accessPoint);
1202        void onLevelChanged(AccessPoint accessPoint);
1203    }
1204}
1205