1 /* 2 * Copyright (C) 2013 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 17 package com.android.internal.telephony.imsphone; 18 19 import static android.telephony.CarrierConfigManager.ImsVoice.ALERTING_SRVCC_SUPPORT; 20 import static android.telephony.CarrierConfigManager.ImsVoice.BASIC_SRVCC_SUPPORT; 21 import static android.telephony.CarrierConfigManager.ImsVoice.MIDCALL_SRVCC_SUPPORT; 22 import static android.telephony.CarrierConfigManager.ImsVoice.PREALERTING_SRVCC_SUPPORT; 23 import static android.telephony.CarrierConfigManager.USSD_OVER_CS_PREFERRED; 24 import static android.telephony.CarrierConfigManager.USSD_OVER_IMS_ONLY; 25 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_ACTIVE; 26 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_ALERTING; 27 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_DIALING; 28 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_HOLDING; 29 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_INCOMING; 30 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_INCOMING_SETUP; 31 import static android.telephony.PreciseCallState.PRECISE_CALL_STATE_WAITING; 32 import static android.telephony.ims.ImsService.CAPABILITY_TERMINAL_BASED_CALL_WAITING; 33 import static android.telephony.ims.feature.ConnectionFailureInfo.REASON_UNSPECIFIED; 34 import static android.telephony.ims.feature.MmTelFeature.ImsTrafficSessionCallbackWrapper.INVALID_TOKEN; 35 36 import static com.android.internal.annotations.VisibleForTesting.Visibility.PRIVATE; 37 import static com.android.internal.telephony.CallWaitingController.TERMINAL_BASED_ACTIVATED; 38 import static com.android.internal.telephony.CallWaitingController.TERMINAL_BASED_NOT_SUPPORTED; 39 import static com.android.internal.telephony.CommandsInterface.IMS_MMTEL_CAPABILITY_SMS; 40 import static com.android.internal.telephony.CommandsInterface.IMS_MMTEL_CAPABILITY_VIDEO; 41 import static com.android.internal.telephony.CommandsInterface.IMS_MMTEL_CAPABILITY_VOICE; 42 import static com.android.internal.telephony.Phone.CS_FALLBACK; 43 44 import android.Manifest; 45 import android.annotation.NonNull; 46 import android.annotation.Nullable; 47 import android.app.usage.NetworkStatsManager; 48 import android.compat.annotation.UnsupportedAppUsage; 49 import android.content.BroadcastReceiver; 50 import android.content.Context; 51 import android.content.Intent; 52 import android.content.IntentFilter; 53 import android.content.SharedPreferences; 54 import android.content.pm.PackageManager; 55 import android.net.ConnectivityManager; 56 import android.net.Network; 57 import android.net.NetworkCapabilities; 58 import android.net.NetworkInfo; 59 import android.net.NetworkRequest; 60 import android.net.NetworkStats; 61 import android.net.netstats.provider.NetworkStatsProvider; 62 import android.os.AsyncResult; 63 import android.os.Build; 64 import android.os.Bundle; 65 import android.os.Handler; 66 import android.os.Message; 67 import android.os.ParcelUuid; 68 import android.os.PersistableBundle; 69 import android.os.Registrant; 70 import android.os.RegistrantList; 71 import android.os.RemoteException; 72 import android.os.SystemClock; 73 import android.preference.PreferenceManager; 74 import android.provider.Settings; 75 import android.sysprop.TelephonyProperties; 76 import android.telecom.Connection.VideoProvider; 77 import android.telecom.TelecomManager; 78 import android.telecom.VideoProfile; 79 import android.telephony.AccessNetworkConstants; 80 import android.telephony.CallQuality; 81 import android.telephony.CarrierConfigManager; 82 import android.telephony.DisconnectCause; 83 import android.telephony.PhoneNumberUtils; 84 import android.telephony.ServiceState; 85 import android.telephony.SubscriptionInfo; 86 import android.telephony.SubscriptionManager; 87 import android.telephony.TelephonyLocalConnection; 88 import android.telephony.TelephonyManager; 89 import android.telephony.TelephonyManager.DataEnabledChangedReason; 90 import android.telephony.emergency.EmergencyNumber; 91 import android.telephony.ims.ImsCallProfile; 92 import android.telephony.ims.ImsCallSession; 93 import android.telephony.ims.ImsConferenceState; 94 import android.telephony.ims.ImsMmTelManager; 95 import android.telephony.ims.ImsReasonInfo; 96 import android.telephony.ims.ImsStreamMediaProfile; 97 import android.telephony.ims.ImsSuppServiceNotification; 98 import android.telephony.ims.MediaQualityStatus; 99 import android.telephony.ims.MediaThreshold; 100 import android.telephony.ims.ProvisioningManager; 101 import android.telephony.ims.RtpHeaderExtension; 102 import android.telephony.ims.RtpHeaderExtensionType; 103 import android.telephony.ims.SrvccCall; 104 import android.telephony.ims.aidl.IImsCallSessionListener; 105 import android.telephony.ims.aidl.IImsTrafficSessionCallback; 106 import android.telephony.ims.aidl.ISrvccStartedCallback; 107 import android.telephony.ims.feature.ConnectionFailureInfo; 108 import android.telephony.ims.feature.ImsFeature; 109 import android.telephony.ims.feature.MmTelFeature; 110 import android.telephony.ims.stub.ImsRegistrationImplBase; 111 import android.text.TextUtils; 112 import android.util.ArrayMap; 113 import android.util.ArraySet; 114 import android.util.LocalLog; 115 import android.util.Log; 116 import android.util.Pair; 117 import android.util.SparseIntArray; 118 119 import com.android.ims.FeatureConnector; 120 import com.android.ims.ImsCall; 121 import com.android.ims.ImsConfig; 122 import com.android.ims.ImsEcbm; 123 import com.android.ims.ImsException; 124 import com.android.ims.ImsManager; 125 import com.android.ims.ImsUtInterface; 126 import com.android.ims.internal.ConferenceParticipant; 127 import com.android.ims.internal.IImsCallSession; 128 import com.android.ims.internal.IImsVideoCallProvider; 129 import com.android.ims.internal.ImsVideoCallProviderWrapper; 130 import com.android.ims.internal.VideoPauseTracker; 131 import com.android.internal.annotations.VisibleForTesting; 132 import com.android.internal.os.SomeArgs; 133 import com.android.internal.telephony.Call; 134 import com.android.internal.telephony.CallFailCause; 135 import com.android.internal.telephony.CallStateException; 136 import com.android.internal.telephony.CallTracker; 137 import com.android.internal.telephony.CommandException; 138 import com.android.internal.telephony.CommandsInterface; 139 import com.android.internal.telephony.Connection; 140 import com.android.internal.telephony.IccCardConstants; 141 import com.android.internal.telephony.LocaleTracker; 142 import com.android.internal.telephony.Phone; 143 import com.android.internal.telephony.PhoneConstants; 144 import com.android.internal.telephony.ServiceStateTracker; 145 import com.android.internal.telephony.SrvccConnection; 146 import com.android.internal.telephony.d2d.RtpTransport; 147 import com.android.internal.telephony.data.DataSettingsManager; 148 import com.android.internal.telephony.domainselection.DomainSelectionResolver; 149 import com.android.internal.telephony.emergency.EmergencyNumberTracker; 150 import com.android.internal.telephony.emergency.EmergencyStateTracker; 151 import com.android.internal.telephony.gsm.SuppServiceNotification; 152 import com.android.internal.telephony.imsphone.ImsPhone.ImsDialArgs; 153 import com.android.internal.telephony.metrics.CallQualityMetrics; 154 import com.android.internal.telephony.metrics.TelephonyMetrics; 155 import com.android.internal.telephony.nano.TelephonyProto.TelephonyCallSession; 156 import com.android.internal.telephony.nano.TelephonyProto.TelephonyCallSession.Event.ImsCommand; 157 import com.android.internal.telephony.subscription.SubscriptionInfoInternal; 158 import com.android.internal.telephony.subscription.SubscriptionManagerService; 159 import com.android.internal.telephony.util.TelephonyUtils; 160 import com.android.internal.util.IndentingPrintWriter; 161 import com.android.telephony.Rlog; 162 163 import java.io.FileDescriptor; 164 import java.io.PrintWriter; 165 import java.util.ArrayList; 166 import java.util.Arrays; 167 import java.util.HashMap; 168 import java.util.List; 169 import java.util.Locale; 170 import java.util.Map; 171 import java.util.Objects; 172 import java.util.Optional; 173 import java.util.Queue; 174 import java.util.Set; 175 import java.util.concurrent.CancellationException; 176 import java.util.concurrent.CompletableFuture; 177 import java.util.concurrent.CompletionException; 178 import java.util.concurrent.ConcurrentHashMap; 179 import java.util.concurrent.ConcurrentLinkedQueue; 180 import java.util.concurrent.ExecutionException; 181 import java.util.concurrent.Executor; 182 import java.util.concurrent.LinkedBlockingQueue; 183 import java.util.concurrent.atomic.AtomicInteger; 184 import java.util.function.Consumer; 185 import java.util.function.Supplier; 186 import java.util.regex.Pattern; 187 import java.util.stream.Collectors; 188 189 /** 190 * {@hide} 191 */ 192 public class ImsPhoneCallTracker extends CallTracker implements ImsPullCall { 193 static final String LOG_TAG = "ImsPhoneCallTracker"; 194 static final String VERBOSE_STATE_TAG = "IPCTState"; 195 196 /** 197 * Class which contains configuration items obtained from the config.xml in 198 * packages/services/Telephony which are injected in the ImsPhoneCallTracker at phone creation 199 * time. 200 */ 201 public static class Config { 202 /** 203 * The value for config.xml/config_use_device_to_device_communication. 204 * When {@code true}, the device supports device to device communication using both DTMF 205 * and RTP header extensions. 206 */ 207 public boolean isD2DCommunicationSupported; 208 } 209 210 public interface PhoneStateListener { onPhoneStateChanged(PhoneConstants.State oldState, PhoneConstants.State newState)211 void onPhoneStateChanged(PhoneConstants.State oldState, PhoneConstants.State newState); 212 } 213 214 public interface SharedPreferenceProxy { getDefaultSharedPreferences(Context context)215 SharedPreferences getDefaultSharedPreferences(Context context); 216 } 217 218 private static class ImsTrafficSession { 219 private final @MmTelFeature.ImsTrafficType int mTrafficType; 220 private final @MmTelFeature.ImsTrafficDirection int mTrafficDirection; 221 private final @NonNull IImsTrafficSessionCallback mCallback; 222 ImsTrafficSession(@mTelFeature.ImsTrafficType int trafficType, @MmTelFeature.ImsTrafficDirection int trafficDirection, @NonNull IImsTrafficSessionCallback callback)223 ImsTrafficSession(@MmTelFeature.ImsTrafficType int trafficType, 224 @MmTelFeature.ImsTrafficDirection int trafficDirection, 225 @NonNull IImsTrafficSessionCallback callback) { 226 mTrafficType = trafficType; 227 mTrafficDirection = trafficDirection; 228 mCallback = callback; 229 } 230 } 231 232 private static final boolean DBG = true; 233 234 // When true, dumps the state of ImsPhoneCallTracker after changes to foreground and background 235 // calls. This is helpful for debugging. It is also possible to enable this at runtime by 236 // setting the IPCTState log tag to VERBOSE. 237 private static final boolean FORCE_VERBOSE_STATE_LOGGING = false; /* stopship if true */ 238 private static final boolean VERBOSE_STATE_LOGGING = FORCE_VERBOSE_STATE_LOGGING || 239 Rlog.isLoggable(VERBOSE_STATE_TAG, Log.VERBOSE); 240 private static final int CONNECTOR_RETRY_DELAY_MS = 5000; // 5 seconds. 241 242 private MmTelFeature.MmTelCapabilities mMmTelCapabilities = 243 new MmTelFeature.MmTelCapabilities(); 244 245 private TelephonyMetrics mMetrics; 246 private final Map<String, CallQualityMetrics> mCallQualityMetrics = new ConcurrentHashMap<>(); 247 private final ConcurrentLinkedQueue<CallQualityMetrics> mCallQualityMetricsHistory = 248 new ConcurrentLinkedQueue<>(); 249 // True if there is a carrier config loaded for a specific subscription (and not the default 250 // configuration). 251 private boolean mCarrierConfigLoadedForSubscription = false; 252 // Cache the latest carrier config received for a subscription. The configuration will be 253 // applied to the ImsService when startListeningForCalls is called. 254 private Pair<Integer, PersistableBundle> mCarrierConfigForSubId = null; 255 // The subId of the last ImsService attached to this tracker or empty if there has not been 256 // an attached ImsService yet. 257 private Optional<Integer> mCurrentlyConnectedSubId = Optional.empty(); 258 259 private final MmTelFeatureListener mMmTelFeatureListener = new MmTelFeatureListener(); 260 private class MmTelFeatureListener extends MmTelFeature.Listener { 261 processIncomingCall(@onNull IImsCallSession c, @Nullable String callId, @Nullable Bundle extras)262 private IImsCallSessionListener processIncomingCall(@NonNull IImsCallSession c, 263 @Nullable String callId, @Nullable Bundle extras) { 264 if (DBG) log("processIncomingCall: incoming call intent"); 265 266 if (extras == null) extras = new Bundle(); 267 if (mImsManager == null) return null; 268 269 try { 270 IImsCallSessionListener iimsCallSessionListener; 271 // Network initiated USSD will be treated by mImsUssdListener 272 boolean isUssd = extras.getBoolean(MmTelFeature.EXTRA_IS_USSD, false); 273 // For compatibility purposes with older vendor implementations. 274 isUssd |= extras.getBoolean(ImsManager.EXTRA_USSD, false); 275 if (isUssd) { 276 if (DBG) log("processIncomingCall: USSD"); 277 mOperationLocalLog.log("processIncomingCall: USSD"); 278 mUssdSession = mImsManager.takeCall(c, mImsUssdListener); 279 if (mUssdSession != null) { 280 mUssdSession.accept(ImsCallProfile.CALL_TYPE_VOICE); 281 } 282 if (callId != null) mUssdSession.getCallSession().setCallId(callId); 283 iimsCallSessionListener = (IImsCallSessionListener) mUssdSession 284 .getCallSession().getIImsCallSessionListenerProxy(); 285 return iimsCallSessionListener; 286 } 287 288 boolean isUnknown = extras.getBoolean(MmTelFeature.EXTRA_IS_UNKNOWN_CALL, false); 289 // For compatibility purposes with older vendor implementations. 290 isUnknown |= extras.getBoolean(ImsManager.EXTRA_IS_UNKNOWN_CALL, false); 291 if (DBG) { 292 log("processIncomingCall: isUnknown = " + isUnknown 293 + " fg = " + mForegroundCall.getState() 294 + " bg = " + mBackgroundCall.getState()); 295 } 296 297 // Normal MT/Unknown call 298 ImsCall imsCall = mImsManager.takeCall(c, mImsCallListener); 299 if (callId != null) imsCall.getCallSession().setCallId(callId); 300 iimsCallSessionListener = (IImsCallSessionListener) imsCall 301 .getCallSession().getIImsCallSessionListenerProxy(); 302 ImsPhoneConnection conn = new ImsPhoneConnection(mPhone, imsCall, 303 ImsPhoneCallTracker.this, 304 (isUnknown ? mForegroundCall : mRingingCall), isUnknown); 305 306 // If there is an active call. 307 if (mForegroundCall.hasConnections()) { 308 ImsCall activeCall = mForegroundCall.getFirstConnection().getImsCall(); 309 if (activeCall != null && imsCall != null) { 310 // activeCall could be null if the foreground call is in a disconnected 311 // state. If either of the calls is null there is no need to check if 312 // one will be disconnected on answer. 313 boolean answeringWillDisconnect = 314 shouldDisconnectActiveCallOnAnswer(activeCall, imsCall); 315 conn.setActiveCallDisconnectedOnAnswer(answeringWillDisconnect); 316 } 317 } 318 conn.setAllowAddCallDuringVideoCall(mAllowAddCallDuringVideoCall); 319 conn.setAllowHoldingVideoCall(mAllowHoldingVideoCall); 320 321 if ((c != null) && (c.getCallProfile() != null) 322 && (c.getCallProfile().getCallExtras() != null) 323 && (c.getCallProfile().getCallExtras() 324 .containsKey(ImsCallProfile.EXTRA_CALL_DISCONNECT_CAUSE))) { 325 String error = c.getCallProfile() 326 .getCallExtra(ImsCallProfile.EXTRA_CALL_DISCONNECT_CAUSE, null); 327 if (error != null) { 328 try { 329 int cause = getDisconnectCauseFromReasonInfo( 330 new ImsReasonInfo(Integer.parseInt(error), 0, null), 331 conn.getState()); 332 if (cause == DisconnectCause.INCOMING_AUTO_REJECTED) { 333 conn.setDisconnectCause(cause); 334 if (DBG) log("onIncomingCall : incoming call auto rejected"); 335 mOperationLocalLog.log("processIncomingCall: auto rejected"); 336 } 337 } catch (NumberFormatException e) { 338 Rlog.e(LOG_TAG, "Exception in parsing Integer Data: " + e); 339 } 340 } 341 } 342 343 mOperationLocalLog.log("onIncomingCall: isUnknown=" + isUnknown + ", connId=" 344 + System.identityHashCode(conn)); 345 346 addConnection(conn); 347 348 setVideoCallProvider(conn, imsCall); 349 350 TelephonyMetrics.getInstance().writeOnImsCallReceive(mPhone.getPhoneId(), 351 imsCall.getSession()); 352 mPhone.getVoiceCallSessionStats().onImsCallReceived(conn); 353 354 if (isUnknown) { 355 // Check for condition where an unknown connection replaces a pending 356 // MO call. This will cause problems later in all likelihood. 357 if (mPendingMO != null 358 && Objects.equals(mPendingMO.getAddress(), conn.getAddress())) { 359 mOperationLocalLog.log("onIncomingCall: unknown call " + conn 360 + " replaces " + mPendingMO); 361 } 362 mPhone.notifyUnknownConnection(conn); 363 } else { 364 if ((mForegroundCall.getState() != ImsPhoneCall.State.IDLE) 365 || (mBackgroundCall.getState() != ImsPhoneCall.State.IDLE)) { 366 conn.update(imsCall, ImsPhoneCall.State.WAITING); 367 } 368 369 mPhone.notifyNewRingingConnection(conn); 370 mPhone.notifyIncomingRing(); 371 } 372 373 updatePhoneState(); 374 mPhone.notifyPreciseCallStateChanged(); 375 mImsCallInfoTracker.addImsCallStatus(conn); 376 return iimsCallSessionListener; 377 } catch (ImsException | RemoteException e) { 378 loge("processIncomingCall: exception " + e); 379 mOperationLocalLog.log("onIncomingCall: exception processing: " + e); 380 return null; 381 } 382 } 383 384 @Override 385 @Nullable onIncomingCall( @onNull IImsCallSession c, @Nullable String callId, @Nullable Bundle extras)386 public IImsCallSessionListener onIncomingCall( 387 @NonNull IImsCallSession c, @Nullable String callId, @Nullable Bundle extras) { 388 return executeAndWaitForReturn(()-> processIncomingCall(c, callId, extras)); 389 } 390 391 @Override onVoiceMessageCountUpdate(int count)392 public void onVoiceMessageCountUpdate(int count) { 393 TelephonyUtils.runWithCleanCallingIdentity(()-> { 394 if (mPhone != null && mPhone.mDefaultPhone != null) { 395 if (DBG) log("onVoiceMessageCountChanged :: count=" + count); 396 mPhone.mDefaultPhone.setVoiceMessageCount(count); 397 } else { 398 loge("onVoiceMessageCountUpdate: null phone"); 399 } 400 }, mExecutor); 401 } 402 403 @Override onAudioModeIsVoipChanged(int imsAudioHandler)404 public void onAudioModeIsVoipChanged(int imsAudioHandler) { 405 TelephonyUtils.runWithCleanCallingIdentity(()-> { 406 ImsCall imsCall = null; 407 if (mForegroundCall.hasConnections()) { 408 imsCall = mForegroundCall.getImsCall(); 409 } else if (mBackgroundCall.hasConnections()) { 410 imsCall = mBackgroundCall.getImsCall(); 411 } else if (mRingingCall.hasConnections()) { 412 imsCall = mRingingCall.getImsCall(); 413 } else if (mHandoverCall.hasConnections()) { 414 imsCall = mHandoverCall.getImsCall(); 415 } else { 416 Rlog.e(LOG_TAG, "onAudioModeIsVoipChanged: no Call"); 417 } 418 419 if (imsCall != null) { 420 ImsPhoneConnection conn = findConnection(imsCall); 421 if (conn != null) { 422 conn.onAudioModeIsVoipChanged(imsAudioHandler); 423 } 424 } else { 425 Rlog.e(LOG_TAG, "onAudioModeIsVoipChanged: no ImsCall"); 426 } 427 }, mExecutor); 428 } 429 430 @Override onTriggerEpsFallback(@mTelFeature.EpsFallbackReason int reason)431 public void onTriggerEpsFallback(@MmTelFeature.EpsFallbackReason int reason) { 432 TelephonyUtils.runWithCleanCallingIdentity(()-> { 433 if (DBG) log("onTriggerEpsFallback reason=" + reason); 434 mPhone.triggerEpsFallback(reason, null); 435 }, mExecutor); 436 } 437 438 @Override onStartImsTrafficSession(int token, @MmTelFeature.ImsTrafficType int trafficType, @AccessNetworkConstants.RadioAccessNetworkType int accessNetworkType, @MmTelFeature.ImsTrafficDirection int trafficDirection, IImsTrafficSessionCallback callback)439 public void onStartImsTrafficSession(int token, 440 @MmTelFeature.ImsTrafficType int trafficType, 441 @AccessNetworkConstants.RadioAccessNetworkType int accessNetworkType, 442 @MmTelFeature.ImsTrafficDirection int trafficDirection, 443 IImsTrafficSessionCallback callback) { 444 registerImsTrafficSession(token, trafficType, trafficDirection, callback); 445 TelephonyUtils.runWithCleanCallingIdentity(()-> { 446 if (DBG) { 447 log("onStartImsTrafficSession token=" + token + ", traffic=" + trafficType 448 + ", networkType=" + accessNetworkType 449 + ", direction=" + trafficDirection); 450 } 451 mPhone.startImsTraffic(token, trafficType, accessNetworkType, trafficDirection, 452 obtainMessage(EVENT_START_IMS_TRAFFIC_DONE, callback)); 453 }, mExecutor); 454 } 455 456 @Override onModifyImsTrafficSession(int token, @AccessNetworkConstants.RadioAccessNetworkType int accessNetworkType)457 public void onModifyImsTrafficSession(int token, 458 @AccessNetworkConstants.RadioAccessNetworkType int accessNetworkType) { 459 ImsTrafficSession session = getImsTrafficSession(token); 460 if (session == null) { 461 loge("onModifyImsTrafficSession unknown session, token=" + token); 462 return; 463 } 464 TelephonyUtils.runWithCleanCallingIdentity(()-> { 465 if (DBG) { 466 log("onModifyImsTrafficSession token=" + token 467 + ", networkType=" + accessNetworkType); 468 } 469 mPhone.startImsTraffic(token, session.mTrafficType, 470 accessNetworkType, session.mTrafficDirection, 471 obtainMessage(EVENT_START_IMS_TRAFFIC_DONE, session.mCallback)); 472 }, mExecutor); 473 } 474 475 @Override onStopImsTrafficSession(int token)476 public void onStopImsTrafficSession(int token) { 477 unregisterImsTrafficSession(token); 478 if (token == INVALID_TOKEN) return; 479 TelephonyUtils.runWithCleanCallingIdentity(()-> { 480 if (DBG) { 481 log("onStopImsTrafficSession token=" + token); 482 } 483 mPhone.stopImsTraffic(token, null); 484 }, mExecutor); 485 } 486 487 @Override onMediaQualityStatusChanged(MediaQualityStatus status)488 public void onMediaQualityStatusChanged(MediaQualityStatus status) { 489 TelephonyUtils.runWithCleanCallingIdentity(()-> { 490 if (mPhone != null && mPhone.mDefaultPhone != null) { 491 if (DBG) log("onMediaQualityStatusChanged " + status); 492 mPhone.onMediaQualityStatusChanged(status); 493 } else { 494 loge("onMediaQualityStatusChanged: null phone"); 495 } 496 }, mExecutor); 497 } 498 499 /** 500 * Schedule the given Runnable on mExecutor and block this thread until it finishes. 501 * @param r The Runnable to run. 502 */ executeAndWait(Runnable r)503 private void executeAndWait(Runnable r) { 504 try { 505 CompletableFuture.runAsync( 506 () -> TelephonyUtils.runWithCleanCallingIdentity(r), mExecutor).join(); 507 } catch (CancellationException | CompletionException e) { 508 logw("Binder - exception: " + e.getMessage()); 509 } 510 } 511 512 /** 513 * Schedule the given Runnable on mExecutor and block this thread until it finishes. 514 * @param r The Runnable to run. 515 */ executeAndWaitForReturn(Supplier<T> r)516 private <T> T executeAndWaitForReturn(Supplier<T> r) { 517 518 CompletableFuture<T> future = CompletableFuture.supplyAsync( 519 () -> TelephonyUtils.runWithCleanCallingIdentity(r), mExecutor); 520 521 try { 522 return future.get(); 523 } catch (ExecutionException | InterruptedException e) { 524 Log.w(LOG_TAG, "ImsPhoneCallTracker : executeAndWaitForReturn exception: " 525 + e.getMessage()); 526 return null; 527 } 528 } 529 } 530 531 /** 532 * A class implementing {@link NetworkStatsProvider} to report VT data usage to system. 533 */ 534 // TODO: Directly reports diff in updateVtDataUsage. 535 @VisibleForTesting(visibility = PRIVATE) 536 public class VtDataUsageProvider extends NetworkStatsProvider { 537 private int mToken = 0; 538 private NetworkStats mIfaceSnapshot = new NetworkStats(0L, 0); 539 private NetworkStats mUidSnapshot = new NetworkStats(0L, 0); 540 @Override onRequestStatsUpdate(int token)541 public void onRequestStatsUpdate(int token) { 542 // If there is an ongoing VT call, request the latest VT usage from the modem. The 543 // latest usage will return asynchronously so it won't be counted in this round, but it 544 // will be eventually counted when next requestStatsUpdate is called. 545 if (mState != PhoneConstants.State.IDLE) { 546 for (ImsPhoneConnection conn : mConnections) { 547 final VideoProvider videoProvider = conn.getVideoProvider(); 548 if (videoProvider != null) { 549 videoProvider.onRequestConnectionDataUsage(); 550 } 551 } 552 } 553 554 final NetworkStats ifaceDiff = mVtDataUsageSnapshot.subtract(mIfaceSnapshot); 555 final NetworkStats uidDiff = mVtDataUsageUidSnapshot.subtract(mUidSnapshot); 556 mVtDataUsageProvider.notifyStatsUpdated(mToken, ifaceDiff, uidDiff); 557 mIfaceSnapshot = mIfaceSnapshot.add(ifaceDiff); 558 mUidSnapshot = mUidSnapshot.add(uidDiff); 559 mToken = token; 560 } 561 562 @Override onSetLimit(String iface, long quotaBytes)563 public void onSetLimit(String iface, long quotaBytes) { 564 // No-op 565 } 566 567 @Override onSetAlert(long quotaBytes)568 public void onSetAlert(long quotaBytes) { 569 // No-op 570 } 571 } 572 573 private CarrierConfigManager.CarrierConfigChangeListener mCarrierConfigChangeListener = 574 new CarrierConfigManager.CarrierConfigChangeListener() { 575 @Override 576 public void onCarrierConfigChanged(int slotIndex, int subId, int carrierId, 577 int specificCarrierId) { 578 if (mPhone.getPhoneId() != slotIndex) { 579 log("onReceive: Skipping indication for other phoneId: " + slotIndex); 580 return; 581 } 582 583 PersistableBundle carrierConfig = getCarrierConfigBundle(subId); 584 mCarrierConfigForSubId = new Pair<>(subId, carrierConfig); 585 if (!mCurrentlyConnectedSubId.isEmpty() 586 && subId == mCurrentlyConnectedSubId.get()) { 587 log("onReceive: Applying carrier config for subId: " + subId); 588 updateCarrierConfiguration(subId, carrierConfig); 589 } else { 590 // cache the latest config update until ImsService connects for this subId. 591 // Once it has connected, startListeningForCalls will apply the config. 592 log("onReceive: caching carrier config until ImsService connects for " 593 + "subId: " + subId); 594 } 595 } 596 }; 597 598 private final BroadcastReceiver mReceiver = new BroadcastReceiver() { 599 @Override 600 public void onReceive(Context context, Intent intent) { 601 if (TelecomManager.ACTION_DEFAULT_DIALER_CHANGED.equals(intent.getAction())) { 602 mDefaultDialerUid.set(getPackageUid(context, intent.getStringExtra( 603 TelecomManager.EXTRA_CHANGE_DEFAULT_DIALER_PACKAGE_NAME))); 604 } 605 } 606 }; 607 608 /** 609 * Tracks whether we are currently monitoring network connectivity for the purpose of warning 610 * the user of an inability to handover from LTE to WIFI for video calls. 611 */ 612 private boolean mIsMonitoringConnectivity = false; 613 614 /** 615 * A test flag which can be used to disable processing of the conference event package data 616 * received from the network. 617 */ 618 private boolean mIsConferenceEventPackageEnabled = true; 619 620 /** 621 * The Telephony config.xml values pertinent to ImsPhoneCallTracker. 622 */ 623 private Config mConfig = null; 624 625 /** 626 * Whether D2D has been force enabled via the d2d telephony command. 627 */ 628 private boolean mDeviceToDeviceForceEnabled = false; 629 630 /** 631 * Network callback used to schedule the handover check when a wireless network connects. 632 */ 633 private ConnectivityManager.NetworkCallback mNetworkCallback = 634 new ConnectivityManager.NetworkCallback() { 635 @Override 636 public void onAvailable(Network network) { 637 Rlog.i(LOG_TAG, "Network available: " + network); 638 scheduleHandoverCheck(); 639 } 640 }; 641 642 //***** Constants 643 644 static final int MAX_CONNECTIONS = 7; 645 static final int MAX_CONNECTIONS_PER_CALL = 5; 646 647 // Max number of calls we will keep call quality history for (the history is saved in-memory and 648 // included in bug reports). 649 private static final int MAX_CALL_QUALITY_HISTORY = 10; 650 651 private static final int EVENT_HANGUP_PENDINGMO = 18; 652 private static final int EVENT_DIAL_PENDINGMO = 20; 653 private static final int EVENT_EXIT_ECBM_BEFORE_PENDINGMO = 21; 654 private static final int EVENT_VT_DATA_USAGE_UPDATE = 22; 655 private static final int EVENT_DATA_ENABLED_CHANGED = 23; 656 private static final int EVENT_CHECK_FOR_WIFI_HANDOVER = 25; 657 private static final int EVENT_ON_FEATURE_CAPABILITY_CHANGED = 26; 658 private static final int EVENT_SUPP_SERVICE_INDICATION = 27; 659 private static final int EVENT_REDIAL_WIFI_E911_CALL = 28; 660 private static final int EVENT_REDIAL_WIFI_E911_TIMEOUT = 29; 661 private static final int EVENT_ANSWER_WAITING_CALL = 30; 662 private static final int EVENT_RESUME_NOW_FOREGROUND_CALL = 31; 663 private static final int EVENT_REDIAL_WITHOUT_RTT = 32; 664 private static final int EVENT_START_IMS_TRAFFIC_DONE = 33; 665 private static final int EVENT_CONNECTION_SETUP_FAILURE = 34; 666 private static final int EVENT_NEW_ACTIVE_CALL_STARTED = 35; 667 668 private static final int TIMEOUT_HANGUP_PENDINGMO = 500; 669 670 private static final int HANDOVER_TO_WIFI_TIMEOUT_MS = 60000; // ms 671 672 private static final int TIMEOUT_REDIAL_WIFI_E911_MS = 10000; 673 674 private static final int TIMEOUT_PARTICIPANT_CONNECT_TIME_CACHE_MS = 60000; //ms 675 676 // Following values are for mHoldSwitchingState 677 private enum HoldSwapState { 678 // Not in the middle of a hold/swap operation 679 INACTIVE, 680 // Pending a single call getting held 681 PENDING_SINGLE_CALL_HOLD, 682 // Pending a single call getting unheld 683 PENDING_SINGLE_CALL_UNHOLD, 684 // Pending swapping a active and a held call 685 SWAPPING_ACTIVE_AND_HELD, 686 // Pending holding a call to answer a call-waiting call 687 HOLDING_TO_ANSWER_INCOMING, 688 // Pending resuming the foreground call after some kind of failure 689 PENDING_RESUME_FOREGROUND_AFTER_FAILURE, 690 // Pending holding a call to dial another outgoing call 691 HOLDING_TO_DIAL_OUTGOING, 692 // Pending resuming the foreground call after it has completed an ongoing hold operation. 693 PENDING_RESUME_FOREGROUND_AFTER_HOLD 694 } 695 696 //***** Instance Variables 697 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 698 private ArrayList<ImsPhoneConnection> mConnections = new ArrayList<ImsPhoneConnection>(); 699 private RegistrantList mVoiceCallEndedRegistrants = new RegistrantList(); 700 private RegistrantList mVoiceCallStartedRegistrants = new RegistrantList(); 701 702 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 703 public ImsPhoneCall mRingingCall = new ImsPhoneCall(this, ImsPhoneCall.CONTEXT_RINGING); 704 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 705 public ImsPhoneCall mForegroundCall = new ImsPhoneCall(this, 706 ImsPhoneCall.CONTEXT_FOREGROUND); 707 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 708 public ImsPhoneCall mBackgroundCall = new ImsPhoneCall(this, 709 ImsPhoneCall.CONTEXT_BACKGROUND); 710 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 711 public ImsPhoneCall mHandoverCall = new ImsPhoneCall(this, ImsPhoneCall.CONTEXT_HANDOVER); 712 713 // Hold aggregated video call data usage for each video call since boot. 714 // The ImsCall's call id is the key of the map. 715 private final HashMap<Integer, Long> mVtDataUsageMap = new HashMap<>(); 716 private final Map<String, CacheEntry> mPhoneNumAndConnTime = new ConcurrentHashMap<>(); 717 private final Queue<CacheEntry> mUnknownPeerConnTime = new LinkedBlockingQueue<>(); 718 719 private static class CacheEntry { 720 private long mCachedTime; 721 private long mConnectTime; 722 private long mConnectElapsedTime; 723 /** 724 * The direction of the call; 725 * {@link android.telecom.Call.Details#DIRECTION_INCOMING} for incoming calls, or 726 * {@link android.telecom.Call.Details#DIRECTION_OUTGOING} for outgoing calls. 727 */ 728 private int mCallDirection; 729 CacheEntry(long cachedTime, long connectTime, long connectElapsedTime, int callDirection)730 CacheEntry(long cachedTime, long connectTime, long connectElapsedTime, int callDirection) { 731 mCachedTime = cachedTime; 732 mConnectTime = connectTime; 733 mConnectElapsedTime = connectElapsedTime; 734 mCallDirection = callDirection; 735 } 736 } 737 738 private class SrvccStartedCallback extends ISrvccStartedCallback.Stub { 739 @Override onSrvccCallNotified(List<SrvccCall> profiles)740 public void onSrvccCallNotified(List<SrvccCall> profiles) { 741 handleSrvccConnectionInfo(profiles); 742 } 743 } 744 745 private volatile NetworkStats mVtDataUsageSnapshot = null; 746 private volatile NetworkStats mVtDataUsageUidSnapshot = null; 747 private final VtDataUsageProvider mVtDataUsageProvider = new VtDataUsageProvider(); 748 749 private final AtomicInteger mDefaultDialerUid = new AtomicInteger(NetworkStats.UID_ALL); 750 751 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 752 private ImsPhoneConnection mPendingMO; 753 private int mClirMode = CommandsInterface.CLIR_DEFAULT; 754 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 755 private Object mSyncHold = new Object(); 756 757 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 758 private ImsCall mUssdSession = null; 759 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 760 private Message mPendingUssd = null; 761 762 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 763 ImsPhone mPhone; 764 765 private boolean mDesiredMute = false; // false = mute off 766 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 767 private boolean mOnHoldToneStarted = false; 768 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 769 private int mOnHoldToneId = -1; 770 771 private PhoneConstants.State mState = PhoneConstants.State.IDLE; 772 773 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 774 private ImsManager mImsManager; 775 private ImsUtInterface mUtInterface; 776 777 private Call.SrvccState mSrvccState = Call.SrvccState.NONE; 778 779 private boolean mIsInEmergencyCall = false; 780 private boolean mIsDataEnabled = false; 781 782 private int pendingCallClirMode; 783 private int mPendingCallVideoState; 784 private Bundle mPendingIntentExtras; 785 private boolean pendingCallInEcm = false; 786 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 787 private boolean mSwitchingFgAndBgCalls = false; 788 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 789 private ImsCall mCallExpectedToResume = null; 790 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 791 private boolean mAllowEmergencyVideoCalls = false; 792 private boolean mIgnoreDataEnabledChangedForVideoCalls = false; 793 private boolean mIsViLteDataMetered = false; 794 private boolean mAlwaysPlayRemoteHoldTone = false; 795 private boolean mAutoRetryFailedWifiEmergencyCall = false; 796 private boolean mSupportCepOnPeer = true; 797 private boolean mSupportD2DUsingRtp = false; 798 private boolean mSupportSdpForRtpHeaderExtensions = false; 799 private int mThresholdRtpPacketLoss; 800 private int mThresholdRtpJitter; 801 private long mThresholdRtpInactivityTime; 802 private final List<Integer> mSrvccTypeSupported = new ArrayList<>(); 803 private final SrvccStartedCallback mSrvccStartedCallback = new SrvccStartedCallback(); 804 // Tracks the state of our background/foreground calls while a call hold/swap operation is 805 // in progress. Values listed above. 806 private HoldSwapState mHoldSwitchingState = HoldSwapState.INACTIVE; 807 private MediaThreshold mMediaThreshold; 808 809 private String mLastDialString = null; 810 private ImsDialArgs mLastDialArgs = null; 811 private Executor mExecutor = Runnable::run; 812 813 private final ImsCallInfoTracker mImsCallInfoTracker; 814 815 /** 816 * Listeners to changes in the phone state. Intended for use by other interested IMS components 817 * without the need to register a full blown {@link android.telephony.PhoneStateListener}. 818 */ 819 private List<PhoneStateListener> mPhoneStateListeners = new ArrayList<>(); 820 821 /** 822 * Carrier configuration option which determines if video calls which have been downgraded to an 823 * audio call should be treated as if they are still video calls. 824 */ 825 private boolean mTreatDowngradedVideoCallsAsVideoCalls = false; 826 827 /** 828 * Carrier configuration option which determines if an ongoing video call over wifi should be 829 * dropped when an audio call is answered. 830 */ 831 private boolean mDropVideoCallWhenAnsweringAudioCall = false; 832 833 /** 834 * Carrier configuration option which determines whether adding a call during a video call 835 * should be allowed. 836 */ 837 private boolean mAllowAddCallDuringVideoCall = true; 838 839 /** 840 * Carrier configuration option which determines whether holding a video call 841 * should be allowed. 842 */ 843 private boolean mAllowHoldingVideoCall = true; 844 845 /** 846 * Carrier configuration option which determines whether to notify the connection if a handover 847 * to wifi fails. 848 */ 849 private boolean mNotifyVtHandoverToWifiFail = false; 850 851 /** 852 * Carrier configuration option which determines whether the carrier supports downgrading a 853 * TX/RX/TX-RX video call directly to an audio-only call. 854 */ 855 private boolean mSupportDowngradeVtToAudio = false; 856 857 /** 858 * Stores the mapping of {@code ImsReasonInfo#CODE_*} to {@code CallFailCause#*} 859 */ 860 private static final SparseIntArray PRECISE_CAUSE_MAP = new SparseIntArray(); 861 static { PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ILLEGAL_ARGUMENT, CallFailCause.LOCAL_ILLEGAL_ARGUMENT)862 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ILLEGAL_ARGUMENT, 863 CallFailCause.LOCAL_ILLEGAL_ARGUMENT); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ILLEGAL_STATE, CallFailCause.LOCAL_ILLEGAL_STATE)864 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ILLEGAL_STATE, 865 CallFailCause.LOCAL_ILLEGAL_STATE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_INTERNAL_ERROR, CallFailCause.LOCAL_INTERNAL_ERROR)866 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_INTERNAL_ERROR, 867 CallFailCause.LOCAL_INTERNAL_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_IMS_SERVICE_DOWN, CallFailCause.LOCAL_IMS_SERVICE_DOWN)868 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_IMS_SERVICE_DOWN, 869 CallFailCause.LOCAL_IMS_SERVICE_DOWN); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NO_PENDING_CALL, CallFailCause.LOCAL_NO_PENDING_CALL)870 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NO_PENDING_CALL, 871 CallFailCause.LOCAL_NO_PENDING_CALL); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ENDED_BY_CONFERENCE_MERGE, CallFailCause.NORMAL_CLEARING)872 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_ENDED_BY_CONFERENCE_MERGE, 873 CallFailCause.NORMAL_CLEARING); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_POWER_OFF, CallFailCause.LOCAL_POWER_OFF)874 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_POWER_OFF, 875 CallFailCause.LOCAL_POWER_OFF); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_LOW_BATTERY, CallFailCause.LOCAL_LOW_BATTERY)876 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_LOW_BATTERY, 877 CallFailCause.LOCAL_LOW_BATTERY); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_NO_SERVICE, CallFailCause.LOCAL_NETWORK_NO_SERVICE)878 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_NO_SERVICE, 879 CallFailCause.LOCAL_NETWORK_NO_SERVICE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_NO_LTE_COVERAGE, CallFailCause.LOCAL_NETWORK_NO_LTE_COVERAGE)880 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_NO_LTE_COVERAGE, 881 CallFailCause.LOCAL_NETWORK_NO_LTE_COVERAGE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_ROAMING, CallFailCause.LOCAL_NETWORK_ROAMING)882 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_ROAMING, 883 CallFailCause.LOCAL_NETWORK_ROAMING); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_IP_CHANGED, CallFailCause.LOCAL_NETWORK_IP_CHANGED)884 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NETWORK_IP_CHANGED, 885 CallFailCause.LOCAL_NETWORK_IP_CHANGED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_SERVICE_UNAVAILABLE, CallFailCause.LOCAL_SERVICE_UNAVAILABLE)886 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_SERVICE_UNAVAILABLE, 887 CallFailCause.LOCAL_SERVICE_UNAVAILABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NOT_REGISTERED, CallFailCause.LOCAL_NOT_REGISTERED)888 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_NOT_REGISTERED, 889 CallFailCause.LOCAL_NOT_REGISTERED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_EXCEEDED, CallFailCause.LOCAL_MAX_CALL_EXCEEDED)890 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_EXCEEDED, 891 CallFailCause.LOCAL_MAX_CALL_EXCEEDED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_DECLINE, CallFailCause.LOCAL_CALL_DECLINE)892 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_DECLINE, 893 CallFailCause.LOCAL_CALL_DECLINE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_VCC_ON_PROGRESSING, CallFailCause.LOCAL_CALL_VCC_ON_PROGRESSING)894 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_VCC_ON_PROGRESSING, 895 CallFailCause.LOCAL_CALL_VCC_ON_PROGRESSING); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_RESOURCE_RESERVATION_FAILED, CallFailCause.LOCAL_CALL_RESOURCE_RESERVATION_FAILED)896 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_RESOURCE_RESERVATION_FAILED, 897 CallFailCause.LOCAL_CALL_RESOURCE_RESERVATION_FAILED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED, CallFailCause.LOCAL_CALL_CS_RETRY_REQUIRED)898 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED, 899 CallFailCause.LOCAL_CALL_CS_RETRY_REQUIRED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_VOLTE_RETRY_REQUIRED, CallFailCause.LOCAL_CALL_VOLTE_RETRY_REQUIRED)900 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_VOLTE_RETRY_REQUIRED, 901 CallFailCause.LOCAL_CALL_VOLTE_RETRY_REQUIRED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_TERMINATED, CallFailCause.LOCAL_CALL_TERMINATED)902 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_CALL_TERMINATED, 903 CallFailCause.LOCAL_CALL_TERMINATED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_HO_NOT_FEASIBLE, CallFailCause.LOCAL_HO_NOT_FEASIBLE)904 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOCAL_HO_NOT_FEASIBLE, 905 CallFailCause.LOCAL_HO_NOT_FEASIBLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_1XX_WAITING, CallFailCause.TIMEOUT_1XX_WAITING)906 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_1XX_WAITING, 907 CallFailCause.TIMEOUT_1XX_WAITING); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER, CallFailCause.TIMEOUT_NO_ANSWER)908 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER, 909 CallFailCause.TIMEOUT_NO_ANSWER); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER_CALL_UPDATE, CallFailCause.TIMEOUT_NO_ANSWER_CALL_UPDATE)910 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER_CALL_UPDATE, 911 CallFailCause.TIMEOUT_NO_ANSWER_CALL_UPDATE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_FDN_BLOCKED, CallFailCause.FDN_BLOCKED)912 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_FDN_BLOCKED, 913 CallFailCause.FDN_BLOCKED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REDIRECTED, CallFailCause.SIP_REDIRECTED)914 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REDIRECTED, 915 CallFailCause.SIP_REDIRECTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BAD_REQUEST, CallFailCause.SIP_BAD_REQUEST)916 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BAD_REQUEST, 917 CallFailCause.SIP_BAD_REQUEST); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_FORBIDDEN, CallFailCause.SIP_FORBIDDEN)918 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_FORBIDDEN, 919 CallFailCause.SIP_FORBIDDEN); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_FOUND, CallFailCause.SIP_NOT_FOUND)920 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_FOUND, 921 CallFailCause.SIP_NOT_FOUND); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_SUPPORTED, CallFailCause.SIP_NOT_SUPPORTED)922 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_SUPPORTED, 923 CallFailCause.SIP_NOT_SUPPORTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REQUEST_TIMEOUT, CallFailCause.SIP_REQUEST_TIMEOUT)924 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REQUEST_TIMEOUT, 925 CallFailCause.SIP_REQUEST_TIMEOUT); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_TEMPRARILY_UNAVAILABLE, CallFailCause.SIP_TEMPRARILY_UNAVAILABLE)926 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_TEMPRARILY_UNAVAILABLE, 927 CallFailCause.SIP_TEMPRARILY_UNAVAILABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BAD_ADDRESS, CallFailCause.SIP_BAD_ADDRESS)928 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BAD_ADDRESS, 929 CallFailCause.SIP_BAD_ADDRESS); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BUSY, CallFailCause.SIP_BUSY)930 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_BUSY, 931 CallFailCause.SIP_BUSY); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REQUEST_CANCELLED, CallFailCause.SIP_REQUEST_CANCELLED)932 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_REQUEST_CANCELLED, 933 CallFailCause.SIP_REQUEST_CANCELLED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_ACCEPTABLE, CallFailCause.SIP_NOT_ACCEPTABLE)934 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_ACCEPTABLE, 935 CallFailCause.SIP_NOT_ACCEPTABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_REACHABLE, CallFailCause.SIP_NOT_REACHABLE)936 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_NOT_REACHABLE, 937 CallFailCause.SIP_NOT_REACHABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_CLIENT_ERROR, CallFailCause.SIP_CLIENT_ERROR)938 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_CLIENT_ERROR, 939 CallFailCause.SIP_CLIENT_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_TRANSACTION_DOES_NOT_EXIST, CallFailCause.SIP_TRANSACTION_DOES_NOT_EXIST)940 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_TRANSACTION_DOES_NOT_EXIST, 941 CallFailCause.SIP_TRANSACTION_DOES_NOT_EXIST); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_INTERNAL_ERROR, CallFailCause.SIP_SERVER_INTERNAL_ERROR)942 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_INTERNAL_ERROR, 943 CallFailCause.SIP_SERVER_INTERNAL_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVICE_UNAVAILABLE, CallFailCause.SIP_SERVICE_UNAVAILABLE)944 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVICE_UNAVAILABLE, 945 CallFailCause.SIP_SERVICE_UNAVAILABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_TIMEOUT, CallFailCause.SIP_SERVER_TIMEOUT)946 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_TIMEOUT, 947 CallFailCause.SIP_SERVER_TIMEOUT); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_ERROR, CallFailCause.SIP_SERVER_ERROR)948 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_SERVER_ERROR, 949 CallFailCause.SIP_SERVER_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_USER_REJECTED, CallFailCause.SIP_USER_REJECTED)950 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_USER_REJECTED, 951 CallFailCause.SIP_USER_REJECTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_GLOBAL_ERROR, CallFailCause.SIP_GLOBAL_ERROR)952 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SIP_GLOBAL_ERROR, 953 CallFailCause.SIP_GLOBAL_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EMERGENCY_TEMP_FAILURE, CallFailCause.IMS_EMERGENCY_TEMP_FAILURE)954 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EMERGENCY_TEMP_FAILURE, 955 CallFailCause.IMS_EMERGENCY_TEMP_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EMERGENCY_PERM_FAILURE, CallFailCause.IMS_EMERGENCY_PERM_FAILURE)956 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EMERGENCY_PERM_FAILURE, 957 CallFailCause.IMS_EMERGENCY_PERM_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_INIT_FAILED, CallFailCause.MEDIA_INIT_FAILED)958 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_INIT_FAILED, 959 CallFailCause.MEDIA_INIT_FAILED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_NO_DATA, CallFailCause.MEDIA_NO_DATA)960 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_NO_DATA, 961 CallFailCause.MEDIA_NO_DATA); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_NOT_ACCEPTABLE, CallFailCause.MEDIA_NOT_ACCEPTABLE)962 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_NOT_ACCEPTABLE, 963 CallFailCause.MEDIA_NOT_ACCEPTABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_UNSPECIFIED, CallFailCause.MEDIA_UNSPECIFIED)964 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MEDIA_UNSPECIFIED, 965 CallFailCause.MEDIA_UNSPECIFIED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_TERMINATED, CallFailCause.USER_TERMINATED)966 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_TERMINATED, 967 CallFailCause.USER_TERMINATED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_NOANSWER, CallFailCause.USER_NOANSWER)968 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_NOANSWER, 969 CallFailCause.USER_NOANSWER); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_IGNORE, CallFailCause.USER_IGNORE)970 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_IGNORE, 971 CallFailCause.USER_IGNORE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_DECLINE, CallFailCause.USER_DECLINE)972 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_DECLINE, 973 CallFailCause.USER_DECLINE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOW_BATTERY, CallFailCause.LOW_BATTERY)974 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_LOW_BATTERY, 975 CallFailCause.LOW_BATTERY); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_BLACKLISTED_CALL_ID, CallFailCause.BLACKLISTED_CALL_ID)976 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_BLACKLISTED_CALL_ID, 977 CallFailCause.BLACKLISTED_CALL_ID); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_TERMINATED_BY_REMOTE, CallFailCause.USER_TERMINATED_BY_REMOTE)978 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_USER_TERMINATED_BY_REMOTE, 979 CallFailCause.USER_TERMINATED_BY_REMOTE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_NOT_SUPPORTED, CallFailCause.UT_NOT_SUPPORTED)980 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_NOT_SUPPORTED, 981 CallFailCause.UT_NOT_SUPPORTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_SERVICE_UNAVAILABLE, CallFailCause.UT_SERVICE_UNAVAILABLE)982 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_SERVICE_UNAVAILABLE, 983 CallFailCause.UT_SERVICE_UNAVAILABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_OPERATION_NOT_ALLOWED, CallFailCause.UT_OPERATION_NOT_ALLOWED)984 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_OPERATION_NOT_ALLOWED, 985 CallFailCause.UT_OPERATION_NOT_ALLOWED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_NETWORK_ERROR, CallFailCause.UT_NETWORK_ERROR)986 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_NETWORK_ERROR, 987 CallFailCause.UT_NETWORK_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_CB_PASSWORD_MISMATCH, CallFailCause.UT_CB_PASSWORD_MISMATCH)988 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UT_CB_PASSWORD_MISMATCH, 989 CallFailCause.UT_CB_PASSWORD_MISMATCH); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ECBM_NOT_SUPPORTED, CallFailCause.ECBM_NOT_SUPPORTED)990 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ECBM_NOT_SUPPORTED, 991 CallFailCause.ECBM_NOT_SUPPORTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MULTIENDPOINT_NOT_SUPPORTED, CallFailCause.MULTIENDPOINT_NOT_SUPPORTED)992 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MULTIENDPOINT_NOT_SUPPORTED, 993 CallFailCause.MULTIENDPOINT_NOT_SUPPORTED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_DROP_IWLAN_TO_LTE_UNAVAILABLE, CallFailCause.CALL_DROP_IWLAN_TO_LTE_UNAVAILABLE)994 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_DROP_IWLAN_TO_LTE_UNAVAILABLE, 995 CallFailCause.CALL_DROP_IWLAN_TO_LTE_UNAVAILABLE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ANSWERED_ELSEWHERE, CallFailCause.ANSWERED_ELSEWHERE)996 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ANSWERED_ELSEWHERE, 997 CallFailCause.ANSWERED_ELSEWHERE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_PULL_OUT_OF_SYNC, CallFailCause.CALL_PULL_OUT_OF_SYNC)998 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_PULL_OUT_OF_SYNC, 999 CallFailCause.CALL_PULL_OUT_OF_SYNC); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_END_CAUSE_CALL_PULL, CallFailCause.CALL_PULLED)1000 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_CALL_END_CAUSE_CALL_PULL, 1001 CallFailCause.CALL_PULLED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_FAILED, CallFailCause.SUPP_SVC_FAILED)1002 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_FAILED, 1003 CallFailCause.SUPP_SVC_FAILED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_CANCELLED, CallFailCause.SUPP_SVC_CANCELLED)1004 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_CANCELLED, 1005 CallFailCause.SUPP_SVC_CANCELLED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_REINVITE_COLLISION, CallFailCause.SUPP_SVC_REINVITE_COLLISION)1006 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_SUPP_SVC_REINVITE_COLLISION, 1007 CallFailCause.SUPP_SVC_REINVITE_COLLISION); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_IWLAN_DPD_FAILURE, CallFailCause.IWLAN_DPD_FAILURE)1008 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_IWLAN_DPD_FAILURE, 1009 CallFailCause.IWLAN_DPD_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_ESTABLISH_FAILURE, CallFailCause.EPDG_TUNNEL_ESTABLISH_FAILURE)1010 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_ESTABLISH_FAILURE, 1011 CallFailCause.EPDG_TUNNEL_ESTABLISH_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_REKEY_FAILURE, CallFailCause.EPDG_TUNNEL_REKEY_FAILURE)1012 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_REKEY_FAILURE, 1013 CallFailCause.EPDG_TUNNEL_REKEY_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_LOST_CONNECTION, CallFailCause.EPDG_TUNNEL_LOST_CONNECTION)1014 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_EPDG_TUNNEL_LOST_CONNECTION, 1015 CallFailCause.EPDG_TUNNEL_LOST_CONNECTION); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MAXIMUM_NUMBER_OF_CALLS_REACHED, CallFailCause.MAXIMUM_NUMBER_OF_CALLS_REACHED)1016 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_MAXIMUM_NUMBER_OF_CALLS_REACHED, 1017 CallFailCause.MAXIMUM_NUMBER_OF_CALLS_REACHED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_REMOTE_CALL_DECLINE, CallFailCause.REMOTE_CALL_DECLINE)1018 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_REMOTE_CALL_DECLINE, 1019 CallFailCause.REMOTE_CALL_DECLINE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_DATA_LIMIT_REACHED, CallFailCause.DATA_LIMIT_REACHED)1020 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_DATA_LIMIT_REACHED, 1021 CallFailCause.DATA_LIMIT_REACHED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_DATA_DISABLED, CallFailCause.DATA_DISABLED)1022 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_DATA_DISABLED, 1023 CallFailCause.DATA_DISABLED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_WIFI_LOST, CallFailCause.WIFI_LOST)1024 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_WIFI_LOST, 1025 CallFailCause.WIFI_LOST); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_OFF, CallFailCause.RADIO_OFF)1026 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_OFF, 1027 CallFailCause.RADIO_OFF); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NO_VALID_SIM, CallFailCause.NO_VALID_SIM)1028 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NO_VALID_SIM, 1029 CallFailCause.NO_VALID_SIM); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_INTERNAL_ERROR, CallFailCause.RADIO_INTERNAL_ERROR)1030 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_INTERNAL_ERROR, 1031 CallFailCause.RADIO_INTERNAL_ERROR); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_RESP_TIMEOUT, CallFailCause.NETWORK_RESP_TIMEOUT)1032 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_RESP_TIMEOUT, 1033 CallFailCause.NETWORK_RESP_TIMEOUT); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_REJECT, CallFailCause.NETWORK_REJECT)1034 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_REJECT, 1035 CallFailCause.NETWORK_REJECT); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_ACCESS_FAILURE, CallFailCause.RADIO_ACCESS_FAILURE)1036 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_ACCESS_FAILURE, 1037 CallFailCause.RADIO_ACCESS_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_LINK_FAILURE, CallFailCause.RADIO_LINK_FAILURE)1038 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_LINK_FAILURE, 1039 CallFailCause.RADIO_LINK_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_LINK_LOST, CallFailCause.RADIO_LINK_LOST)1040 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_LINK_LOST, 1041 CallFailCause.RADIO_LINK_LOST); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_UPLINK_FAILURE, CallFailCause.RADIO_UPLINK_FAILURE)1042 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_UPLINK_FAILURE, 1043 CallFailCause.RADIO_UPLINK_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_SETUP_FAILURE, CallFailCause.RADIO_SETUP_FAILURE)1044 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_SETUP_FAILURE, 1045 CallFailCause.RADIO_SETUP_FAILURE); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_RELEASE_NORMAL, CallFailCause.RADIO_RELEASE_NORMAL)1046 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_RELEASE_NORMAL, 1047 CallFailCause.RADIO_RELEASE_NORMAL); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_RELEASE_ABNORMAL, CallFailCause.RADIO_RELEASE_ABNORMAL)1048 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_RADIO_RELEASE_ABNORMAL, 1049 CallFailCause.RADIO_RELEASE_ABNORMAL); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ACCESS_CLASS_BLOCKED, CallFailCause.ACCESS_CLASS_BLOCKED)1050 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_ACCESS_CLASS_BLOCKED, 1051 CallFailCause.ACCESS_CLASS_BLOCKED); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_DETACH, CallFailCause.NETWORK_DETACH)1052 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_NETWORK_DETACH, 1053 CallFailCause.NETWORK_DETACH); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UNOBTAINABLE_NUMBER, CallFailCause.UNOBTAINABLE_NUMBER)1054 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_UNOBTAINABLE_NUMBER, 1055 CallFailCause.UNOBTAINABLE_NUMBER); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_1, CallFailCause.OEM_CAUSE_1)1056 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_1, 1057 CallFailCause.OEM_CAUSE_1); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_2, CallFailCause.OEM_CAUSE_2)1058 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_2, 1059 CallFailCause.OEM_CAUSE_2); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_3, CallFailCause.OEM_CAUSE_3)1060 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_3, 1061 CallFailCause.OEM_CAUSE_3); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_4, CallFailCause.OEM_CAUSE_4)1062 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_4, 1063 CallFailCause.OEM_CAUSE_4); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_5, CallFailCause.OEM_CAUSE_5)1064 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_5, 1065 CallFailCause.OEM_CAUSE_5); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_6, CallFailCause.OEM_CAUSE_6)1066 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_6, 1067 CallFailCause.OEM_CAUSE_6); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_7, CallFailCause.OEM_CAUSE_7)1068 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_7, 1069 CallFailCause.OEM_CAUSE_7); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_8, CallFailCause.OEM_CAUSE_8)1070 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_8, 1071 CallFailCause.OEM_CAUSE_8); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_9, CallFailCause.OEM_CAUSE_9)1072 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_9, 1073 CallFailCause.OEM_CAUSE_9); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_10, CallFailCause.OEM_CAUSE_10)1074 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_10, 1075 CallFailCause.OEM_CAUSE_10); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_11, CallFailCause.OEM_CAUSE_11)1076 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_11, 1077 CallFailCause.OEM_CAUSE_11); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_12, CallFailCause.OEM_CAUSE_12)1078 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_12, 1079 CallFailCause.OEM_CAUSE_12); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_13, CallFailCause.OEM_CAUSE_13)1080 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_13, 1081 CallFailCause.OEM_CAUSE_13); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_14, CallFailCause.OEM_CAUSE_14)1082 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_14, 1083 CallFailCause.OEM_CAUSE_14); PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_15, CallFailCause.OEM_CAUSE_15)1084 PRECISE_CAUSE_MAP.append(ImsReasonInfo.CODE_OEM_CAUSE_15, 1085 CallFailCause.OEM_CAUSE_15); 1086 } 1087 1088 /** 1089 * Carrier configuration option which determines whether the carrier wants to inform the user 1090 * when a video call is handed over from WIFI to LTE. 1091 * See {@link CarrierConfigManager#KEY_NOTIFY_HANDOVER_VIDEO_FROM_WIFI_TO_LTE_BOOL} for more 1092 * information. 1093 */ 1094 private boolean mNotifyHandoverVideoFromWifiToLTE = false; 1095 1096 /** 1097 * Carrier configuration option which determines whether the carrier wants to inform the user 1098 * when a video call is handed over from LTE to WIFI. 1099 * See {@link CarrierConfigManager#KEY_NOTIFY_HANDOVER_VIDEO_FROM_LTE_TO_WIFI_BOOL} for more 1100 * information. 1101 */ 1102 private boolean mNotifyHandoverVideoFromLTEToWifi = false; 1103 1104 /** 1105 * When {@code} false, indicates that no handover from LTE to WIFI has been attempted during the 1106 * start of the call. 1107 * When {@code true}, indicates that the start of call handover from LTE to WIFI has been 1108 * attempted (it may have succeeded or failed). 1109 */ 1110 private boolean mHasAttemptedStartOfCallHandover = false; 1111 1112 /** 1113 * Carrier configuration option which determines whether the carrier supports the 1114 * {@link VideoProfile#STATE_PAUSED} signalling. 1115 * See {@link CarrierConfigManager#KEY_SUPPORT_PAUSE_IMS_VIDEO_CALLS_BOOL} for more information. 1116 */ 1117 private boolean mSupportPauseVideo = false; 1118 1119 /** 1120 * Carrier configuration option which defines a mapping from pairs of 1121 * {@link ImsReasonInfo#getCode()} and {@link ImsReasonInfo#getExtraMessage()} values to a new 1122 * {@code ImsReasonInfo#CODE_*} value. 1123 * 1124 * See {@link CarrierConfigManager#KEY_IMS_REASONINFO_MAPPING_STRING_ARRAY}. 1125 * This ImsReasonInfoKeyPair with this key stating will consider getExtraMessage a match 1126 * if the carrier config messages starts with getExtraMessage result. 1127 */ 1128 private Map<ImsReasonInfoKeyPair, Integer> mImsReasonCodeMap = new ArrayMap<>(); 1129 1130 1131 /** 1132 * Carrier configuration option which specifies how the carrier handles USSD request. 1133 * See {@link CarrierConfigManager#KEY_CARRIER_USSD_METHOD_INT} for more information. 1134 */ 1135 private int mUssdMethod = USSD_OVER_CS_PREFERRED; 1136 1137 /** 1138 * TODO: Remove this code; it is a workaround. 1139 * When {@code true}, forces {@link ImsManager#updateImsServiceConfig} to 1140 * be called when an ongoing video call is disconnected. In some cases, where video pause is 1141 * supported by the carrier, when {@link #onDataEnabledChanged(boolean, int)} reports that data 1142 * has been disabled we will pause the video rather than disconnecting the call. When this 1143 * happens we need to prevent the IMS service config from being updated, as this will cause VT 1144 * to be disabled mid-call, resulting in an inability to un-pause the video. 1145 */ 1146 private boolean mShouldUpdateImsConfigOnDisconnect = false; 1147 1148 private Pair<Boolean, Integer> mPendingSilentRedialInfo = null; 1149 1150 /** 1151 * Default implementation for retrieving shared preferences; uses the actual PreferencesManager. 1152 */ 1153 private SharedPreferenceProxy mSharedPreferenceProxy = (Context context) -> { 1154 return PreferenceManager.getDefaultSharedPreferences(context); 1155 }; 1156 1157 private Runnable mConnectorRunnable = new Runnable() { 1158 @Override 1159 public void run() { 1160 mImsManagerConnector.connect(); 1161 } 1162 }; 1163 1164 private @NonNull DataSettingsManager.DataSettingsManagerCallback mSettingsCallback; 1165 1166 /** 1167 * Allows the FeatureConnector used to be swapped for easier testing. 1168 */ 1169 @VisibleForTesting 1170 public interface ConnectorFactory { 1171 /** 1172 * Create a FeatureConnector for this class to use to connect to an ImsManager. 1173 */ create(Context context, int phoneId, String logPrefix, FeatureConnector.Listener<ImsManager> listener, Executor executor)1174 FeatureConnector<ImsManager> create(Context context, int phoneId, 1175 String logPrefix, FeatureConnector.Listener<ImsManager> listener, 1176 Executor executor); 1177 } 1178 private final ConnectorFactory mConnectorFactory; 1179 private final FeatureConnector<ImsManager> mImsManagerConnector; 1180 1181 // Used exclusively for IMS Registration related events for logging. 1182 private final LocalLog mRegLocalLog = new LocalLog(64); 1183 // Used for important operational related events for logging. 1184 private final LocalLog mOperationLocalLog = new LocalLog(64); 1185 1186 private final ConcurrentHashMap<Integer, ImsTrafficSession> mImsTrafficSessions = 1187 new ConcurrentHashMap<>(); 1188 1189 /** 1190 * Container to ease passing around a tuple of two objects. This object provides a sensible 1191 * implementation of equals(), returning true/false using equals() for one object (Integer) 1192 * and startsWith() for another object (String). Also the startsWith() in this equals() method 1193 * will return true for A.startsWith(B) if B.second starts with A.second. 1194 */ 1195 private static class ImsReasonInfoKeyPair extends Pair<Integer, String> { 1196 1197 /** 1198 * Constructor for a ImsReasonInfoKeyPair. 1199 * 1200 * @param first Integer in the ImsReasonInfoKeyPair 1201 * @param second String in the ImsReasonInfoKeyPair 1202 */ ImsReasonInfoKeyPair(Integer first, String second)1203 private ImsReasonInfoKeyPair(Integer first, String second) { 1204 super(first, second); 1205 } 1206 1207 /** 1208 * Checks the two objects for equality by delegating to their respective 1209 * {@link Object#equals(Object)} methods. 1210 * 1211 * @param o the {@link com.android.internal.telephony.imsphone.ImsReasonInfoKeyPair} to 1212 * which this one is to be checked for equality 1213 * @return true if the underlying objects of the ImsReasonInfoKeyPair are 1214 * considered equal and startsWith 1215 */ 1216 @Override equals(@ullable Object o)1217 public boolean equals(@Nullable Object o) { 1218 if (!(o instanceof ImsReasonInfoKeyPair)) { 1219 return false; 1220 } 1221 ImsReasonInfoKeyPair p = (ImsReasonInfoKeyPair) o; 1222 1223 return Objects.equals(p.first, first) 1224 && Objects.toString(second).startsWith(Objects.toString(p.second)); 1225 } 1226 1227 /** 1228 * Compute a hash code using the hash code of the Integer key 1229 * 1230 * @return a hashcode of the first 1231 */ 1232 @Override hashCode()1233 public int hashCode() { 1234 return (first == null ? 0 : first.hashCode()); 1235 } 1236 } 1237 1238 //***** Events 1239 1240 1241 //***** Constructors ImsPhoneCallTracker(ImsPhone phone, ConnectorFactory factory)1242 public ImsPhoneCallTracker(ImsPhone phone, ConnectorFactory factory) { 1243 this(phone, factory, phone.getContext().getMainExecutor()); 1244 } 1245 1246 @VisibleForTesting ImsPhoneCallTracker(ImsPhone phone, ConnectorFactory factory, Executor executor)1247 public ImsPhoneCallTracker(ImsPhone phone, ConnectorFactory factory, Executor executor) { 1248 this.mPhone = phone; 1249 mConnectorFactory = factory; 1250 if (executor != null) { 1251 mExecutor = executor; 1252 } 1253 1254 mMetrics = TelephonyMetrics.getInstance(); 1255 1256 IntentFilter intentfilter = new IntentFilter(); 1257 intentfilter.addAction(TelecomManager.ACTION_DEFAULT_DIALER_CHANGED); 1258 mPhone.getContext().registerReceiver(mReceiver, intentfilter); 1259 1260 CarrierConfigManager ccm = mPhone.getContext().getSystemService(CarrierConfigManager.class); 1261 // Callback of listener directly access global states which are limited on main thread. 1262 // The callback can only be executed on main thread. 1263 if (ccm != null) { 1264 ccm.registerCarrierConfigChangeListener( 1265 mPhone.getContext().getMainExecutor(), mCarrierConfigChangeListener); 1266 updateCarrierConfiguration( 1267 mPhone.getSubId(), getCarrierConfigBundle(mPhone.getSubId())); 1268 } else { 1269 loge("CarrierConfigManager is not available."); 1270 } 1271 1272 mSettingsCallback = new DataSettingsManager.DataSettingsManagerCallback(this::post) { 1273 @Override 1274 public void onDataEnabledChanged(boolean enabled, 1275 @DataEnabledChangedReason int reason, 1276 @NonNull String callingPackage) { 1277 ImsPhoneCallTracker.this.onDataEnabledChanged(enabled, reason); 1278 }}; 1279 mPhone.getDefaultPhone().getDataSettingsManager().registerCallback(mSettingsCallback); 1280 1281 final TelecomManager telecomManager = 1282 (TelecomManager) mPhone.getContext().getSystemService(Context.TELECOM_SERVICE); 1283 mDefaultDialerUid.set( 1284 getPackageUid(mPhone.getContext(), telecomManager.getDefaultDialerPackage())); 1285 1286 long currentTime = SystemClock.elapsedRealtime(); 1287 mVtDataUsageSnapshot = new NetworkStats(currentTime, 1); 1288 mVtDataUsageUidSnapshot = new NetworkStats(currentTime, 1); 1289 final NetworkStatsManager statsManager = 1290 (NetworkStatsManager) mPhone.getContext().getSystemService( 1291 Context.NETWORK_STATS_SERVICE); 1292 statsManager.registerNetworkStatsProvider(LOG_TAG, mVtDataUsageProvider); 1293 1294 mImsManagerConnector = mConnectorFactory.create(mPhone.getContext(), mPhone.getPhoneId(), 1295 LOG_TAG, new FeatureConnector.Listener<ImsManager>() { 1296 public void connectionReady(ImsManager manager, int subId) throws ImsException { 1297 mImsManager = manager; 1298 log("connectionReady for subId = " + subId); 1299 startListeningForCalls(subId); 1300 } 1301 1302 @Override 1303 public void connectionUnavailable(int reason) { 1304 logi("connectionUnavailable: " + reason); 1305 if (reason == FeatureConnector.UNAVAILABLE_REASON_SERVER_UNAVAILABLE) { 1306 postDelayed(mConnectorRunnable, CONNECTOR_RETRY_DELAY_MS); 1307 } 1308 stopListeningForCalls(); 1309 stopAllImsTrafficTypes(); 1310 } 1311 }, executor); 1312 // It can take some time for ITelephony to get published, so defer connecting. 1313 post(mConnectorRunnable); 1314 1315 mImsCallInfoTracker = new ImsCallInfoTracker(phone); 1316 1317 mPhone.registerForConnectionSetupFailure(this, EVENT_CONNECTION_SETUP_FAILURE, null); 1318 } 1319 1320 /** 1321 * Test-only method used to mock out access to the shared preferences through the 1322 * {@link PreferenceManager}. 1323 * @param sharedPreferenceProxy 1324 */ 1325 @VisibleForTesting setSharedPreferenceProxy(SharedPreferenceProxy sharedPreferenceProxy)1326 public void setSharedPreferenceProxy(SharedPreferenceProxy sharedPreferenceProxy) { 1327 mSharedPreferenceProxy = sharedPreferenceProxy; 1328 } 1329 getPackageUid(Context context, String pkg)1330 private int getPackageUid(Context context, String pkg) { 1331 if (pkg == null) { 1332 return NetworkStats.UID_ALL; 1333 } 1334 1335 // Initialize to UID_ALL so at least it can be counted to overall data usage if 1336 // the dialer's package uid is not available. 1337 int uid = NetworkStats.UID_ALL; 1338 try { 1339 uid = context.getPackageManager().getPackageUid(pkg, 0); 1340 } catch (PackageManager.NameNotFoundException e) { 1341 loge("Cannot find package uid. pkg = " + pkg); 1342 } 1343 return uid; 1344 } 1345 1346 @VisibleForTesting startListeningForCalls(int subId)1347 public void startListeningForCalls(int subId) throws ImsException { 1348 log("startListeningForCalls"); 1349 mOperationLocalLog.log("startListeningForCalls - Connecting to ImsService"); 1350 ImsExternalCallTracker externalCallTracker = mPhone.getExternalCallTracker(); 1351 ImsExternalCallTracker.ExternalCallStateListener externalCallStateListener = 1352 externalCallTracker != null 1353 ? externalCallTracker.getExternalCallStateListener() : null; 1354 1355 mImsManager.open(mMmTelFeatureListener, mPhone.getImsEcbmStateListener(), 1356 externalCallStateListener); 1357 mImsManager.addRegistrationCallback(mPhone.getImsMmTelRegistrationCallback(), this::post); 1358 mImsManager.addCapabilitiesCallback(mImsCapabilityCallback, this::post); 1359 1360 ImsManager.setImsStatsCallback(mPhone.getPhoneId(), mImsStatsCallback); 1361 1362 mImsManager.getConfigInterface().addConfigCallback(mConfigCallback); 1363 1364 if (mPhone.isInEcm()) { 1365 // Call exit ECBM which will invoke onECBMExited 1366 mPhone.exitEmergencyCallbackMode(); 1367 } 1368 int mPreferredTtyMode = Settings.Secure.getInt( 1369 mPhone.getContext().getContentResolver(), 1370 Settings.Secure.PREFERRED_TTY_MODE, 1371 Phone.TTY_MODE_OFF); 1372 mImsManager.setUiTTYMode(mPhone.getContext(), mPreferredTtyMode, null); 1373 1374 // Set UT interface listener to receive UT indications & keep track of the interface so the 1375 // handler reference can be cleared. 1376 mUtInterface = getUtInterface(); 1377 if (mUtInterface != null) { 1378 mUtInterface.registerForSuppServiceIndication(this, EVENT_SUPP_SERVICE_INDICATION, 1379 null); 1380 } 1381 1382 if (mCarrierConfigForSubId != null && mCarrierConfigForSubId.first == subId) { 1383 // The carrier configuration was received by CarrierConfigManager before the indication 1384 // that the ImsService was connected or ImsService has restarted and we need to re-apply 1385 // the configuration. 1386 updateCarrierConfiguration(subId, mCarrierConfigForSubId.second); 1387 } else { 1388 log("startListeningForCalls - waiting for the first carrier config indication for this " 1389 + "subscription"); 1390 } 1391 // For compatibility with apps that still use deprecated intent 1392 sendImsServiceStateIntent(ImsManager.ACTION_IMS_SERVICE_UP); 1393 mCurrentlyConnectedSubId = Optional.of(subId); 1394 1395 initializeTerminalBasedCallWaiting(); 1396 } 1397 1398 /** 1399 * Configures RTP header extension types used during SDP negotiation. 1400 */ maybeConfigureRtpHeaderExtensions()1401 private void maybeConfigureRtpHeaderExtensions() { 1402 // Where device to device communication is available, ensure that the 1403 // supported RTP header extension types defined in {@link RtpTransport} are 1404 // set as the offered RTP header extensions for this device. 1405 if (mDeviceToDeviceForceEnabled 1406 || (mConfig != null && mConfig.isD2DCommunicationSupported 1407 && mSupportD2DUsingRtp)) { 1408 ArraySet<RtpHeaderExtensionType> types = new ArraySet<>(); 1409 if (mSupportSdpForRtpHeaderExtensions) { 1410 types.add(RtpTransport.CALL_STATE_RTP_HEADER_EXTENSION_TYPE); 1411 types.add(RtpTransport.DEVICE_STATE_RTP_HEADER_EXTENSION_TYPE); 1412 logi("maybeConfigureRtpHeaderExtensions: set offered RTP header extension types"); 1413 1414 } else { 1415 logi("maybeConfigureRtpHeaderExtensions: SDP negotiation not supported; not " 1416 + "setting offered RTP header extension types"); 1417 } 1418 try { 1419 mImsManager.setOfferedRtpHeaderExtensionTypes(types); 1420 } catch (ImsException e) { 1421 loge("maybeConfigureRtpHeaderExtensions: failed to set extensions; " + e); 1422 } 1423 } 1424 } 1425 1426 /** 1427 * Used via the telephony shell command to force D2D to be enabled. 1428 * @param isEnabled {@code true} if D2D is force enabled. 1429 */ setDeviceToDeviceForceEnabled(boolean isEnabled)1430 public void setDeviceToDeviceForceEnabled(boolean isEnabled) { 1431 mDeviceToDeviceForceEnabled = isEnabled; 1432 maybeConfigureRtpHeaderExtensions(); 1433 } 1434 stopListeningForCalls()1435 private void stopListeningForCalls() { 1436 log("stopListeningForCalls"); 1437 mOperationLocalLog.log("stopListeningForCalls - Disconnecting from ImsService"); 1438 // Only close on valid session. 1439 if (mImsManager != null) { 1440 mImsManager.removeRegistrationListener(mPhone.getImsMmTelRegistrationCallback()); 1441 mImsManager.removeCapabilitiesCallback(mImsCapabilityCallback); 1442 try { 1443 ImsManager.setImsStatsCallback(mPhone.getPhoneId(), null); 1444 mImsManager.getConfigInterface().removeConfigCallback(mConfigCallback.getBinder()); 1445 } catch (ImsException e) { 1446 Log.w(LOG_TAG, "stopListeningForCalls: unable to remove config callback."); 1447 } 1448 // Will release other listeners for MMTEL/ECBM/UT/MultiEndpoint Indications set in #open 1449 mImsManager.close(); 1450 } 1451 if (mUtInterface != null) { 1452 mUtInterface.unregisterForSuppServiceIndication(this); 1453 mUtInterface = null; 1454 } 1455 mCurrentlyConnectedSubId = Optional.empty(); 1456 mMediaThreshold = null; 1457 resetImsCapabilities(); 1458 hangupAllOrphanedConnections(DisconnectCause.LOST_SIGNAL); 1459 // For compatibility with apps that still use deprecated intent 1460 sendImsServiceStateIntent(ImsManager.ACTION_IMS_SERVICE_DOWN); 1461 } 1462 1463 /** 1464 * Hang up all ongoing connections in the case that the ImsService has been disconnected and the 1465 * existing calls have been orphaned. This method assumes that there is no connection to the 1466 * ImsService and DOES NOT try to terminate the connections on the service side before 1467 * disconnecting here, as it assumes they have already been disconnected when we lost the 1468 * connection to the ImsService. 1469 */ 1470 @VisibleForTesting hangupAllOrphanedConnections(int disconnectCause)1471 public void hangupAllOrphanedConnections(int disconnectCause) { 1472 Log.w(LOG_TAG, "hangupAllOngoingConnections called for cause " + disconnectCause); 1473 // Send a call terminate request to all available connections. 1474 // In the ImsPhoneCallTrackerTest, when the hangup() of the connection call, 1475 // onCallTerminated() is called immediately and the connection is removed. 1476 // As a result, an IndexOutOfBoundsException is thrown. 1477 // This is why it counts backwards. 1478 int size = getConnections().size(); 1479 for (int index = size - 1; index > -1; index--) { 1480 try { 1481 getConnections().get(index).hangup(); 1482 } catch (CallStateException e) { 1483 loge("Failed to disconnet call..."); 1484 } 1485 } 1486 // Move connections to disconnected and notify the reason why. 1487 for (ImsPhoneConnection connection : mConnections) { 1488 connection.update(connection.getImsCall(), ImsPhoneCall.State.DISCONNECTED); 1489 connection.onDisconnect(disconnectCause); 1490 connection.getCall().detach(connection); 1491 } 1492 mConnections.clear(); 1493 // Pending MO was added to mConnections previously, so it has already been disconnected 1494 // above. Remove all references to it. 1495 mPendingMO = null; 1496 updatePhoneState(); 1497 mImsCallInfoTracker.clearAllOrphanedConnections(); 1498 } 1499 1500 /** 1501 * Requests modem to hang up all connections. 1502 */ hangupAllConnections()1503 public void hangupAllConnections() { 1504 getConnections().stream().forEach(c -> { 1505 logi("Disconnecting callId = " + c.getTelecomCallId()); 1506 try { 1507 c.hangup(); 1508 } catch (CallStateException e) { 1509 loge("Failed to disconnet call..."); 1510 } 1511 }); 1512 } 1513 sendImsServiceStateIntent(String intentAction)1514 private void sendImsServiceStateIntent(String intentAction) { 1515 Intent intent = new Intent(intentAction); 1516 intent.putExtra(ImsManager.EXTRA_PHONE_ID, mPhone.getPhoneId()); 1517 if (mPhone != null && mPhone.getContext() != null) { 1518 mPhone.getContext().sendBroadcast(intent); 1519 } 1520 } 1521 dispose()1522 public void dispose() { 1523 if (DBG) log("dispose"); 1524 mRingingCall.dispose(); 1525 mBackgroundCall.dispose(); 1526 mForegroundCall.dispose(); 1527 mHandoverCall.dispose(); 1528 1529 clearDisconnected(); 1530 mPhone.getContext().unregisterReceiver(mReceiver); 1531 CarrierConfigManager ccm = mPhone.getContext().getSystemService(CarrierConfigManager.class); 1532 if (ccm != null && mCarrierConfigChangeListener != null) { 1533 ccm.unregisterCarrierConfigChangeListener(mCarrierConfigChangeListener); 1534 } 1535 mPhone.getDefaultPhone().getDataSettingsManager().unregisterCallback(mSettingsCallback); 1536 mImsManagerConnector.disconnect(); 1537 1538 final NetworkStatsManager statsManager = 1539 (NetworkStatsManager) mPhone.getContext().getSystemService( 1540 Context.NETWORK_STATS_SERVICE); 1541 statsManager.unregisterNetworkStatsProvider(mVtDataUsageProvider); 1542 1543 mPhone.unregisterForConnectionSetupFailure(this); 1544 } 1545 1546 @Override finalize()1547 protected void finalize() { 1548 log("ImsPhoneCallTracker finalized"); 1549 } 1550 1551 //***** Instance Methods 1552 1553 //***** Public Methods 1554 @Override registerForVoiceCallStarted(Handler h, int what, Object obj)1555 public void registerForVoiceCallStarted(Handler h, int what, Object obj) { 1556 Registrant r = new Registrant(h, what, obj); 1557 mVoiceCallStartedRegistrants.add(r); 1558 } 1559 1560 @Override unregisterForVoiceCallStarted(Handler h)1561 public void unregisterForVoiceCallStarted(Handler h) { 1562 mVoiceCallStartedRegistrants.remove(h); 1563 } 1564 1565 @Override registerForVoiceCallEnded(Handler h, int what, Object obj)1566 public void registerForVoiceCallEnded(Handler h, int what, Object obj) { 1567 Registrant r = new Registrant(h, what, obj); 1568 mVoiceCallEndedRegistrants.add(r); 1569 } 1570 1571 @Override unregisterForVoiceCallEnded(Handler h)1572 public void unregisterForVoiceCallEnded(Handler h) { 1573 mVoiceCallEndedRegistrants.remove(h); 1574 } 1575 getClirMode()1576 public int getClirMode() { 1577 if (mSharedPreferenceProxy != null && mPhone.getDefaultPhone() != null) { 1578 SharedPreferences sp = mSharedPreferenceProxy.getDefaultSharedPreferences( 1579 mPhone.getContext()); 1580 return sp.getInt(Phone.CLIR_KEY + mPhone.getSubId(), 1581 CommandsInterface.CLIR_DEFAULT); 1582 } else { 1583 loge("dial; could not get default CLIR mode."); 1584 return CommandsInterface.CLIR_DEFAULT; 1585 } 1586 } 1587 prepareForDialing(ImsPhone.ImsDialArgs dialArgs)1588 private boolean prepareForDialing(ImsPhone.ImsDialArgs dialArgs) throws CallStateException { 1589 boolean holdBeforeDial = false; 1590 // note that this triggers call state changed notif 1591 clearDisconnected(); 1592 if (mImsManager == null) { 1593 throw new CallStateException("service not available"); 1594 } 1595 // See if there are any issues which preclude placing a call; throw a CallStateException 1596 // if there is. 1597 checkForDialIssues(); 1598 int videoState = dialArgs.videoState; 1599 if (!canAddVideoCallDuringImsAudioCall(videoState)) { 1600 throw new CallStateException("cannot dial in current state"); 1601 } 1602 1603 // The new call must be assigned to the foreground call. 1604 // That call must be idle, so place anything that's 1605 // there on hold 1606 if (mForegroundCall.getState() == ImsPhoneCall.State.ACTIVE) { 1607 if (mBackgroundCall.getState() != ImsPhoneCall.State.IDLE) { 1608 //we should have failed in checkForDialIssues above before we get here 1609 throw new CallStateException(CallStateException.ERROR_TOO_MANY_CALLS, 1610 "Already too many ongoing calls."); 1611 } 1612 // foreground call is empty for the newly dialed connection 1613 holdBeforeDial = true; 1614 mPendingCallVideoState = videoState; 1615 mPendingIntentExtras = dialArgs.intentExtras; 1616 holdActiveCallForPendingMo(); 1617 } 1618 1619 ImsPhoneCall.State fgState = ImsPhoneCall.State.IDLE; 1620 ImsPhoneCall.State bgState = ImsPhoneCall.State.IDLE; 1621 1622 synchronized (mSyncHold) { 1623 if (holdBeforeDial) { 1624 fgState = mForegroundCall.getState(); 1625 bgState = mBackgroundCall.getState(); 1626 //holding foreground call failed 1627 if (fgState == ImsPhoneCall.State.ACTIVE) { 1628 throw new CallStateException("cannot dial in current state"); 1629 } 1630 //holding foreground call succeeded 1631 if (bgState == ImsPhoneCall.State.HOLDING) { 1632 holdBeforeDial = false; 1633 } 1634 } 1635 } 1636 return holdBeforeDial; 1637 } 1638 startConference(String[] participantsToDial, ImsPhone.ImsDialArgs dialArgs)1639 public Connection startConference(String[] participantsToDial, ImsPhone.ImsDialArgs dialArgs) 1640 throws CallStateException { 1641 1642 int clirMode = dialArgs.clirMode; 1643 int videoState = dialArgs.videoState; 1644 1645 if (DBG) log("dial clirMode=" + clirMode); 1646 boolean holdBeforeDial = prepareForDialing(dialArgs); 1647 1648 mClirMode = clirMode; 1649 ImsPhoneConnection pendingConnection; 1650 synchronized (mSyncHold) { 1651 mLastDialArgs = dialArgs; 1652 pendingConnection = new ImsPhoneConnection(mPhone, 1653 participantsToDial, this, mForegroundCall, 1654 false); 1655 // Don't rely on the mPendingMO in this method; if the modem calls back through 1656 // onCallProgressing, we'll end up nulling out mPendingMO, which means that 1657 // TelephonyConnectionService would treat this call as an MMI code, which it is not, 1658 // which would mean that the MMI code dialog would crash. 1659 mPendingMO = pendingConnection; 1660 pendingConnection.setVideoState(videoState); 1661 if (dialArgs.rttTextStream != null) { 1662 log("startConference: setting RTT stream on mPendingMO"); 1663 pendingConnection.setCurrentRttTextStream(dialArgs.rttTextStream); 1664 } 1665 } 1666 addConnection(pendingConnection); 1667 1668 if (!holdBeforeDial) { 1669 dialInternal(pendingConnection, clirMode, videoState, dialArgs.intentExtras); 1670 } 1671 1672 updatePhoneState(); 1673 mPhone.notifyPreciseCallStateChanged(); 1674 1675 return pendingConnection; 1676 } 1677 1678 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) dial(String dialString, int videoState, Bundle intentExtras)1679 public Connection dial(String dialString, int videoState, Bundle intentExtras) throws 1680 CallStateException { 1681 ImsPhone.ImsDialArgs dialArgs = new ImsPhone.ImsDialArgs.Builder() 1682 .setIntentExtras(intentExtras) 1683 .setVideoState(videoState) 1684 .setClirMode(getClirMode()) 1685 .build(); 1686 return dial(dialString, dialArgs); 1687 } 1688 dial(String dialString, ImsPhone.ImsDialArgs dialArgs)1689 public synchronized Connection dial(String dialString, ImsPhone.ImsDialArgs dialArgs) 1690 throws CallStateException { 1691 boolean isPhoneInEcmMode = isPhoneInEcbMode(); 1692 boolean isEmergencyNumber = dialArgs.isEmergency; 1693 boolean isWpsCall = dialArgs.isWpsCall; 1694 1695 if (!shouldNumberBePlacedOnIms(isEmergencyNumber, dialString)) { 1696 Rlog.i(LOG_TAG, "dial: shouldNumberBePlacedOnIms = false"); 1697 mOperationLocalLog.log("dial: shouldNumberBePlacedOnIms = false"); 1698 throw new CallStateException(CS_FALLBACK); 1699 } 1700 1701 int clirMode = dialArgs.clirMode; 1702 int videoState = dialArgs.videoState; 1703 1704 if (DBG) log("dial clirMode=" + clirMode); 1705 String origNumber = dialString; 1706 if (isEmergencyNumber) { 1707 clirMode = CommandsInterface.CLIR_SUPPRESSION; 1708 if (DBG) log("dial emergency call, set clirModIe=" + clirMode); 1709 } else { 1710 dialString = convertNumberIfNecessary(mPhone, dialString); 1711 } 1712 1713 mClirMode = clirMode; 1714 boolean holdBeforeDial = prepareForDialing(dialArgs); 1715 1716 if (isPhoneInEcmMode && isEmergencyNumber) { 1717 mPhone.handleTimerInEmergencyCallbackMode(ImsPhone.CANCEL_ECM_TIMER); 1718 } 1719 1720 // If the call is to an emergency number and the carrier does not support video emergency 1721 // calls, dial as an audio-only call. 1722 if (isEmergencyNumber && VideoProfile.isVideo(videoState) && 1723 !mAllowEmergencyVideoCalls) { 1724 loge("dial: carrier does not support video emergency calls; downgrade to audio-only"); 1725 videoState = VideoProfile.STATE_AUDIO_ONLY; 1726 } 1727 1728 // Cache the video state for pending MO call. 1729 mPendingCallVideoState = videoState; 1730 1731 synchronized (mSyncHold) { 1732 mLastDialString = dialString; 1733 mLastDialArgs = dialArgs; 1734 mPendingMO = new ImsPhoneConnection(mPhone, dialString, this, mForegroundCall, 1735 isEmergencyNumber, isWpsCall, dialArgs); 1736 mOperationLocalLog.log("dial requested. connId=" + System.identityHashCode(mPendingMO)); 1737 if (isEmergencyNumber && dialArgs != null && dialArgs.intentExtras != null) { 1738 Rlog.i(LOG_TAG, "dial ims emergency dialer: " + dialArgs.intentExtras.getBoolean( 1739 TelecomManager.EXTRA_IS_USER_INTENT_EMERGENCY_CALL)); 1740 mPendingMO.setHasKnownUserIntentEmergency(dialArgs.intentExtras.getBoolean( 1741 TelecomManager.EXTRA_IS_USER_INTENT_EMERGENCY_CALL)); 1742 } 1743 mPendingMO.setVideoState(videoState); 1744 if (dialArgs.rttTextStream != null) { 1745 log("dial: setting RTT stream on mPendingMO"); 1746 mPendingMO.setCurrentRttTextStream(dialArgs.rttTextStream); 1747 } 1748 } 1749 addConnection(mPendingMO); 1750 1751 if (!holdBeforeDial) { 1752 // In Ecm mode, if another emergency call is dialed, Ecm mode will not exit. 1753 if ((!isPhoneInEcmMode) || (isPhoneInEcmMode && isEmergencyNumber)) { 1754 dialInternal(mPendingMO, clirMode, videoState, dialArgs.retryCallFailCause, 1755 dialArgs.retryCallFailNetworkType, dialArgs.intentExtras); 1756 } else if (DomainSelectionResolver.getInstance().isDomainSelectionSupported()) { 1757 final int finalClirMode = clirMode; 1758 final int finalVideoState = videoState; 1759 Runnable onComplete = new Runnable() { 1760 @Override 1761 public void run() { 1762 dialInternal(mPendingMO, finalClirMode, finalVideoState, 1763 dialArgs.retryCallFailCause, dialArgs.retryCallFailNetworkType, 1764 dialArgs.intentExtras); 1765 } 1766 }; 1767 EmergencyStateTracker.getInstance().exitEmergencyCallbackMode(onComplete); 1768 } else { 1769 try { 1770 getEcbmInterface().exitEmergencyCallbackMode(); 1771 } catch (ImsException e) { 1772 e.printStackTrace(); 1773 throw new CallStateException("service not available"); 1774 } 1775 mPhone.setOnEcbModeExitResponse(this, EVENT_EXIT_ECM_RESPONSE_CDMA, null); 1776 pendingCallClirMode = clirMode; 1777 mPendingCallVideoState = videoState; 1778 mPendingIntentExtras = dialArgs.intentExtras; 1779 pendingCallInEcm = true; 1780 } 1781 } 1782 1783 if (mNumberConverted) { 1784 mPendingMO.restoreDialedNumberAfterConversion(origNumber); 1785 mNumberConverted = false; 1786 } 1787 1788 updatePhoneState(); 1789 mPhone.notifyPreciseCallStateChanged(); 1790 1791 return mPendingMO; 1792 } 1793 isImsServiceReady()1794 boolean isImsServiceReady() { 1795 if (mImsManager == null) { 1796 return false; 1797 } 1798 1799 return mImsManager.isServiceReady(); 1800 } 1801 shouldNumberBePlacedOnIms(boolean isEmergency, String number)1802 private boolean shouldNumberBePlacedOnIms(boolean isEmergency, String number) { 1803 int processCallResult; 1804 try { 1805 if (mImsManager != null) { 1806 processCallResult = mImsManager.shouldProcessCall(isEmergency, 1807 new String[]{number}); 1808 Rlog.i(LOG_TAG, "shouldProcessCall: number: " + Rlog.pii(LOG_TAG, number) 1809 + ", result: " + processCallResult); 1810 } else { 1811 Rlog.w(LOG_TAG, "ImsManager unavailable, shouldProcessCall returning false."); 1812 return false; 1813 } 1814 } catch (ImsException e) { 1815 Rlog.w(LOG_TAG, "ImsService unavailable, shouldProcessCall returning false."); 1816 return false; 1817 } 1818 switch(processCallResult) { 1819 case MmTelFeature.PROCESS_CALL_IMS: { 1820 // The ImsService wishes to place the call over IMS 1821 return true; 1822 } 1823 case MmTelFeature.PROCESS_CALL_CSFB: { 1824 Rlog.i(LOG_TAG, "shouldProcessCall: place over CSFB instead."); 1825 return false; 1826 } 1827 default: { 1828 Rlog.w(LOG_TAG, "shouldProcessCall returned unknown result."); 1829 return false; 1830 } 1831 } 1832 } 1833 1834 /** 1835 * Caches frequently used carrier configuration items locally and notifies ImsService of new 1836 * configuration if the subId is valid (there is an active sub ID loaded). 1837 * 1838 * @param subId The sub id to use to update configuration, may be invalid if a SIM has been 1839 * removed. 1840 */ updateCarrierConfiguration(int subId, PersistableBundle carrierConfig)1841 private void updateCarrierConfiguration(int subId, PersistableBundle carrierConfig) { 1842 // start by assuming the carrier config is not loaded for the provided subscription. 1843 mCarrierConfigLoadedForSubscription = false; 1844 1845 if (carrierConfig == null) { 1846 loge("updateCarrierConfiguration: carrier config is null, skipping."); 1847 return; 1848 } 1849 1850 // Ensure the local cache is up to date first (including default config for no SIM case) in 1851 // ImsPhoneCallTracker to ensure we do not carry over settings from the previously inserted 1852 // SIM for things like emergency calling. 1853 updateCarrierConfigCache(carrierConfig); 1854 log("updateCarrierConfiguration: Updating mAllowEmergencyVideoCalls = " 1855 + mAllowEmergencyVideoCalls); 1856 // Check for changes due to carrier config. 1857 maybeConfigureRtpHeaderExtensions(); 1858 1859 SubscriptionInfoInternal subInfo = SubscriptionManagerService.getInstance() 1860 .getSubscriptionInfoInternal(subId); 1861 if (subInfo == null || !subInfo.isActive()) { 1862 loge("updateCarrierConfiguration: skipping notification to ImsService, non" 1863 + "active subId = " + subId); 1864 return; 1865 } 1866 1867 Phone defaultPhone = getPhone().getDefaultPhone(); 1868 if (defaultPhone != null && defaultPhone.getIccCard() != null) { 1869 IccCardConstants.State state = defaultPhone.getIccCard().getState(); 1870 // Bypass until PIN/PUK lock is removed as to ensure that we do not push a config down 1871 // when the device is still locked. A CARRIER_CONFIG_CHANGED indication will be sent 1872 // once the device moves to ready. 1873 if (state != null && (!state.iccCardExist() || state.isPinLocked())) { 1874 loge("updateCarrierConfiguration: card state is not ready, skipping " 1875 + "notification to ImsService. State= " + state); 1876 return; 1877 } 1878 } 1879 1880 if (!CarrierConfigManager.isConfigForIdentifiedCarrier(carrierConfig)) { 1881 logi("updateCarrierConfiguration: Empty or default carrier config, skipping " 1882 + "notification to ImsService."); 1883 return; 1884 } 1885 1886 // Only update the ImsService configurations for the case where a new subscription has been 1887 // loaded and is active. 1888 logi("updateCarrierConfiguration: Updating ImsService configs."); 1889 mCarrierConfigLoadedForSubscription = true; 1890 updateImsServiceConfig(); 1891 updateMediaThreshold( 1892 mThresholdRtpPacketLoss, mThresholdRtpJitter, mThresholdRtpInactivityTime); 1893 } 1894 1895 /** 1896 * Updates the local carrier config cache from a bundle obtained from the carrier config 1897 * manager. Also supports unit testing by injecting configuration at test time. 1898 * @param carrierConfig The config bundle. 1899 */ 1900 @VisibleForTesting updateCarrierConfigCache(PersistableBundle carrierConfig)1901 public void updateCarrierConfigCache(PersistableBundle carrierConfig) { 1902 mAllowEmergencyVideoCalls = 1903 carrierConfig.getBoolean(CarrierConfigManager.KEY_ALLOW_EMERGENCY_VIDEO_CALLS_BOOL); 1904 mTreatDowngradedVideoCallsAsVideoCalls = 1905 carrierConfig.getBoolean( 1906 CarrierConfigManager.KEY_TREAT_DOWNGRADED_VIDEO_CALLS_AS_VIDEO_CALLS_BOOL); 1907 mDropVideoCallWhenAnsweringAudioCall = 1908 carrierConfig.getBoolean( 1909 CarrierConfigManager.KEY_DROP_VIDEO_CALL_WHEN_ANSWERING_AUDIO_CALL_BOOL); 1910 mAllowAddCallDuringVideoCall = 1911 carrierConfig.getBoolean( 1912 CarrierConfigManager.KEY_ALLOW_ADD_CALL_DURING_VIDEO_CALL_BOOL); 1913 mAllowHoldingVideoCall = 1914 carrierConfig.getBoolean( 1915 CarrierConfigManager.KEY_ALLOW_HOLD_VIDEO_CALL_BOOL); 1916 mNotifyVtHandoverToWifiFail = carrierConfig.getBoolean( 1917 CarrierConfigManager.KEY_NOTIFY_VT_HANDOVER_TO_WIFI_FAILURE_BOOL); 1918 mSupportDowngradeVtToAudio = carrierConfig.getBoolean( 1919 CarrierConfigManager.KEY_SUPPORT_DOWNGRADE_VT_TO_AUDIO_BOOL); 1920 mNotifyHandoverVideoFromWifiToLTE = carrierConfig.getBoolean( 1921 CarrierConfigManager.KEY_NOTIFY_HANDOVER_VIDEO_FROM_WIFI_TO_LTE_BOOL); 1922 mNotifyHandoverVideoFromLTEToWifi = carrierConfig.getBoolean( 1923 CarrierConfigManager.KEY_NOTIFY_HANDOVER_VIDEO_FROM_LTE_TO_WIFI_BOOL); 1924 mIgnoreDataEnabledChangedForVideoCalls = carrierConfig.getBoolean( 1925 CarrierConfigManager.KEY_IGNORE_DATA_ENABLED_CHANGED_FOR_VIDEO_CALLS); 1926 mIsViLteDataMetered = carrierConfig.getBoolean( 1927 CarrierConfigManager.KEY_VILTE_DATA_IS_METERED_BOOL); 1928 mSupportPauseVideo = carrierConfig.getBoolean( 1929 CarrierConfigManager.KEY_SUPPORT_PAUSE_IMS_VIDEO_CALLS_BOOL); 1930 mAlwaysPlayRemoteHoldTone = carrierConfig.getBoolean( 1931 CarrierConfigManager.KEY_ALWAYS_PLAY_REMOTE_HOLD_TONE_BOOL); 1932 mAutoRetryFailedWifiEmergencyCall = carrierConfig.getBoolean( 1933 CarrierConfigManager.KEY_AUTO_RETRY_FAILED_WIFI_EMERGENCY_CALL); 1934 mSupportCepOnPeer = carrierConfig.getBoolean( 1935 CarrierConfigManager.KEY_SUPPORT_IMS_CONFERENCE_EVENT_PACKAGE_ON_PEER_BOOL); 1936 mSupportD2DUsingRtp = carrierConfig.getBoolean( 1937 CarrierConfigManager.KEY_SUPPORTS_DEVICE_TO_DEVICE_COMMUNICATION_USING_RTP_BOOL); 1938 mSupportSdpForRtpHeaderExtensions = carrierConfig.getBoolean( 1939 CarrierConfigManager 1940 .KEY_SUPPORTS_SDP_NEGOTIATION_OF_D2D_RTP_HEADER_EXTENSIONS_BOOL); 1941 mThresholdRtpPacketLoss = carrierConfig.getInt( 1942 CarrierConfigManager.ImsVoice.KEY_VOICE_RTP_PACKET_LOSS_RATE_THRESHOLD_INT); 1943 mThresholdRtpInactivityTime = carrierConfig.getLong( 1944 CarrierConfigManager.ImsVoice 1945 .KEY_VOICE_RTP_INACTIVITY_TIME_THRESHOLD_MILLIS_LONG); 1946 mThresholdRtpJitter = carrierConfig.getInt( 1947 CarrierConfigManager.ImsVoice.KEY_VOICE_RTP_JITTER_THRESHOLD_MILLIS_INT); 1948 1949 if (mPhone.getContext().getResources().getBoolean( 1950 com.android.internal.R.bool.config_allow_ussd_over_ims)) { 1951 mUssdMethod = carrierConfig.getInt(CarrierConfigManager.KEY_CARRIER_USSD_METHOD_INT); 1952 } 1953 1954 if (!mImsReasonCodeMap.isEmpty()) { 1955 mImsReasonCodeMap.clear(); 1956 } 1957 String[] mappings = carrierConfig 1958 .getStringArray(CarrierConfigManager.KEY_IMS_REASONINFO_MAPPING_STRING_ARRAY); 1959 if (mappings != null && mappings.length > 0) { 1960 for (String mapping : mappings) { 1961 String[] values = mapping.split(Pattern.quote("|")); 1962 if (values.length != 3) { 1963 continue; 1964 } 1965 1966 try { 1967 Integer fromCode; 1968 if (values[0].equals("*")) { 1969 fromCode = null; 1970 } else { 1971 fromCode = Integer.parseInt(values[0]); 1972 } 1973 String message = values[1]; 1974 if (message == null) { 1975 message = ""; 1976 } 1977 else if (message.equals("*")) { 1978 message = null; 1979 } 1980 int toCode = Integer.parseInt(values[2]); 1981 1982 addReasonCodeRemapping(fromCode, message, toCode); 1983 log("Loaded ImsReasonInfo mapping :" + 1984 " fromCode = " + (fromCode == null ? "any" : fromCode) + 1985 " ; message = " + (message == null ? "any" : message) + 1986 " ; toCode = " + toCode); 1987 } catch (NumberFormatException nfe) { 1988 loge("Invalid ImsReasonInfo mapping found: " + mapping); 1989 } 1990 } 1991 } else { 1992 log("No carrier ImsReasonInfo mappings defined."); 1993 } 1994 1995 mSrvccTypeSupported.clear(); 1996 int[] srvccType = 1997 carrierConfig.getIntArray(CarrierConfigManager.ImsVoice.KEY_SRVCC_TYPE_INT_ARRAY); 1998 if (srvccType != null && srvccType.length > 0) { 1999 mSrvccTypeSupported.addAll( 2000 Arrays.stream(srvccType).boxed().collect(Collectors.toList())); 2001 } 2002 } 2003 updateMediaThreshold( int thresholdPacketLoss, int thresholdJitter, long thresholdInactivityTime)2004 private void updateMediaThreshold( 2005 int thresholdPacketLoss, int thresholdJitter, long thresholdInactivityTime) { 2006 if (!MediaThreshold.isValidRtpInactivityTimeMillis(thresholdInactivityTime) 2007 && !MediaThreshold.isValidJitterMillis(thresholdJitter) 2008 && !MediaThreshold.isValidRtpPacketLossRate(thresholdPacketLoss)) { 2009 logi("There is no valid RTP threshold value"); 2010 return; 2011 } 2012 int[] thPacketLosses = {thresholdPacketLoss}; 2013 long[] thInactivityTimesMillis = {thresholdInactivityTime}; 2014 int[] thJitters = {thresholdJitter}; 2015 MediaThreshold threshold = new MediaThreshold.Builder() 2016 .setThresholdsRtpPacketLossRate(thPacketLosses) 2017 .setThresholdsRtpInactivityTimeMillis(thInactivityTimesMillis) 2018 .setThresholdsRtpJitterMillis(thJitters).build(); 2019 if (mMediaThreshold == null || !mMediaThreshold.equals(threshold)) { 2020 logi("setMediaThreshold :" + threshold); 2021 try { 2022 mImsManager.setMediaThreshold(MediaQualityStatus.MEDIA_SESSION_TYPE_AUDIO, 2023 threshold); 2024 mMediaThreshold = threshold; 2025 } catch (ImsException e) { 2026 loge("setMediaThreshold Failed: " + e); 2027 } 2028 } 2029 } 2030 2031 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) handleEcmTimer(int action)2032 private void handleEcmTimer(int action) { 2033 mPhone.handleTimerInEmergencyCallbackMode(action); 2034 } 2035 dialInternal(ImsPhoneConnection conn, int clirMode, int videoState, Bundle intentExtras)2036 private void dialInternal(ImsPhoneConnection conn, int clirMode, int videoState, 2037 Bundle intentExtras) { 2038 dialInternal(conn, clirMode, videoState, ImsReasonInfo.CODE_UNSPECIFIED, 2039 TelephonyManager.NETWORK_TYPE_UNKNOWN, intentExtras); 2040 } 2041 dialInternal(ImsPhoneConnection conn, int clirMode, int videoState, int retryCallFailCause, int retryCallFailNetworkType, Bundle intentExtras)2042 private void dialInternal(ImsPhoneConnection conn, int clirMode, int videoState, 2043 int retryCallFailCause, int retryCallFailNetworkType, Bundle intentExtras) { 2044 2045 if (conn == null) { 2046 return; 2047 } 2048 2049 if (!conn.isAdhocConference() && 2050 (conn.getAddress()== null || conn.getAddress().length() == 0 2051 || conn.getAddress().indexOf(PhoneNumberUtils.WILD) >= 0)) { 2052 // Phone number is invalid 2053 conn.setDisconnectCause(DisconnectCause.INVALID_NUMBER); 2054 sendEmptyMessageDelayed(EVENT_HANGUP_PENDINGMO, TIMEOUT_HANGUP_PENDINGMO); 2055 return; 2056 } 2057 2058 // Always unmute when initiating a new call 2059 setMute(false); 2060 boolean isEmergencyCall = conn.isEmergency(); 2061 int serviceType = isEmergencyCall 2062 ? ImsCallProfile.SERVICE_TYPE_EMERGENCY : ImsCallProfile.SERVICE_TYPE_NORMAL; 2063 int callType = ImsCallProfile.getCallTypeFromVideoState(videoState); 2064 //TODO(vt): Is this sufficient? At what point do we know the video state of the call? 2065 conn.setVideoState(videoState); 2066 2067 try { 2068 String[] callees = new String[] { conn.getAddress() }; 2069 ImsCallProfile profile = mImsManager.createCallProfile(serviceType, callType); 2070 if (conn.isAdhocConference()) { 2071 profile.setCallExtraBoolean(ImsCallProfile.EXTRA_CONFERENCE, true); 2072 // Also set value for EXTRA_CONFERENCE_DEPRECATED in case receivers are using old 2073 // values. 2074 profile.setCallExtraBoolean(ImsCallProfile.EXTRA_CONFERENCE_DEPRECATED, true); 2075 } 2076 profile.setCallExtraInt(ImsCallProfile.EXTRA_OIR, clirMode); 2077 profile.setCallExtraInt(ImsCallProfile.EXTRA_RETRY_CALL_FAIL_REASON, 2078 retryCallFailCause); 2079 profile.setCallExtraInt(ImsCallProfile.EXTRA_RETRY_CALL_FAIL_NETWORKTYPE, 2080 retryCallFailNetworkType); 2081 2082 if (isEmergencyCall) { 2083 // Set emergency call information in ImsCallProfile 2084 setEmergencyCallInfo(profile, conn); 2085 } 2086 2087 // Translate call subject intent-extra from Telecom-specific extra key to the 2088 // ImsCallProfile key. 2089 if (intentExtras != null) { 2090 if (intentExtras.containsKey(android.telecom.TelecomManager.EXTRA_CALL_SUBJECT)) { 2091 intentExtras.putString(ImsCallProfile.EXTRA_DISPLAY_TEXT, 2092 cleanseInstantLetteringMessage(intentExtras.getString( 2093 android.telecom.TelecomManager.EXTRA_CALL_SUBJECT)) 2094 ); 2095 profile.setCallExtra(ImsCallProfile.EXTRA_CALL_SUBJECT, 2096 intentExtras.getString(TelecomManager.EXTRA_CALL_SUBJECT)); 2097 } 2098 2099 if (intentExtras.containsKey(android.telecom.TelecomManager.EXTRA_PRIORITY)) { 2100 profile.setCallExtraInt(ImsCallProfile.EXTRA_PRIORITY, intentExtras.getInt( 2101 android.telecom.TelecomManager.EXTRA_PRIORITY)); 2102 } 2103 2104 if (intentExtras.containsKey(android.telecom.TelecomManager.EXTRA_LOCATION)) { 2105 profile.setCallExtraParcelable(ImsCallProfile.EXTRA_LOCATION, 2106 intentExtras.getParcelable( 2107 android.telecom.TelecomManager.EXTRA_LOCATION)); 2108 } 2109 2110 if (intentExtras.containsKey( 2111 android.telecom.TelecomManager.EXTRA_OUTGOING_PICTURE)) { 2112 String url = TelephonyLocalConnection.getCallComposerServerUrlForHandle( 2113 mPhone.getSubId(), ((ParcelUuid) intentExtras.getParcelable( 2114 TelecomManager.EXTRA_OUTGOING_PICTURE)).getUuid()); 2115 profile.setCallExtra(ImsCallProfile.EXTRA_PICTURE_URL, url); 2116 } 2117 2118 if (conn.hasRttTextStream()) { 2119 profile.mMediaProfile.mRttMode = ImsStreamMediaProfile.RTT_MODE_FULL; 2120 } 2121 2122 if (intentExtras.containsKey(ImsCallProfile.EXTRA_IS_CALL_PULL)) { 2123 profile.mCallExtras.putBoolean(ImsCallProfile.EXTRA_IS_CALL_PULL, 2124 intentExtras.getBoolean(ImsCallProfile.EXTRA_IS_CALL_PULL)); 2125 int dialogId = intentExtras.getInt( 2126 ImsExternalCallTracker.EXTRA_IMS_EXTERNAL_CALL_ID); 2127 conn.setIsPulledCall(true); 2128 conn.setPulledDialogId(dialogId); 2129 } 2130 2131 if (intentExtras.containsKey(ImsCallProfile.EXTRA_CALL_RAT_TYPE)) { 2132 logi("dialInternal containing EXTRA_CALL_RAT_TYPE, " 2133 + intentExtras.getString(ImsCallProfile.EXTRA_CALL_RAT_TYPE)); 2134 } 2135 2136 // Pack the OEM-specific call extras. 2137 profile.mCallExtras.putBundle(ImsCallProfile.EXTRA_OEM_EXTRAS, intentExtras); 2138 2139 // NOTE: Extras to be sent over the network are packed into the 2140 // intentExtras individually, with uniquely defined keys. 2141 // These key-value pairs are processed by IMS Service before 2142 // being sent to the lower layers/to the network. 2143 } 2144 2145 mPhone.getVoiceCallSessionStats().onImsDial(conn); 2146 2147 ImsCall imsCall = mImsManager.makeCall(profile, 2148 conn.isAdhocConference() ? conn.getParticipantsToDial() : callees, 2149 mImsCallListener); 2150 conn.setImsCall(imsCall); 2151 2152 mMetrics.writeOnImsCallStart(mPhone.getPhoneId(), imsCall.getSession()); 2153 2154 setVideoCallProvider(conn, imsCall); 2155 conn.setAllowAddCallDuringVideoCall(mAllowAddCallDuringVideoCall); 2156 conn.setAllowHoldingVideoCall(mAllowHoldingVideoCall); 2157 mImsCallInfoTracker.addImsCallStatus(conn); 2158 } catch (ImsException e) { 2159 loge("dialInternal : " + e); 2160 mOperationLocalLog.log("dialInternal exception: " + e); 2161 conn.setDisconnectCause(DisconnectCause.ERROR_UNSPECIFIED); 2162 sendEmptyMessageDelayed(EVENT_HANGUP_PENDINGMO, TIMEOUT_HANGUP_PENDINGMO); 2163 } catch (RemoteException e) { 2164 } 2165 } 2166 2167 /** 2168 * Accepts a call with the specified video state. The video state is the video state that the 2169 * user has agreed upon in the InCall UI. 2170 * 2171 * @param videoState The video State 2172 * @throws CallStateException 2173 */ acceptCall(int videoState)2174 public void acceptCall(int videoState) throws CallStateException { 2175 if (DBG) log("acceptCall"); 2176 mOperationLocalLog.log("accepted incoming call"); 2177 2178 if (mForegroundCall.getState().isAlive() 2179 && mBackgroundCall.getState().isAlive()) { 2180 throw new CallStateException("cannot accept call"); 2181 } 2182 2183 if ((mRingingCall.getState() == ImsPhoneCall.State.WAITING) 2184 && mForegroundCall.getState().isAlive()) { 2185 setMute(false); 2186 2187 boolean answeringWillDisconnect = false; 2188 ImsCall activeCall = mForegroundCall.getImsCall(); 2189 ImsCall ringingCall = mRingingCall.getImsCall(); 2190 if (mForegroundCall.hasConnections() && mRingingCall.hasConnections()) { 2191 answeringWillDisconnect = 2192 shouldDisconnectActiveCallOnAnswer(activeCall, ringingCall); 2193 } 2194 2195 // Cache video state for pending MT call. 2196 mPendingCallVideoState = videoState; 2197 2198 if (answeringWillDisconnect) { 2199 // We need to disconnect the foreground call before answering the background call. 2200 mForegroundCall.hangup(); 2201 mPhone.getVoiceCallSessionStats().onImsAcceptCall(mRingingCall.getConnections()); 2202 try { 2203 ringingCall.accept(ImsCallProfile.getCallTypeFromVideoState(videoState)); 2204 } catch (ImsException e) { 2205 throw new CallStateException("cannot accept call"); 2206 } 2207 } else { 2208 holdActiveCallForWaitingCall(); 2209 } 2210 } else if (mRingingCall.getState().isRinging()) { 2211 if (DBG) log("acceptCall: incoming..."); 2212 // Always unmute when answering a new call 2213 setMute(false); 2214 try { 2215 ImsCall imsCall = mRingingCall.getImsCall(); 2216 if (imsCall != null) { 2217 mPhone.getVoiceCallSessionStats().onImsAcceptCall( 2218 mRingingCall.getConnections()); 2219 imsCall.accept(ImsCallProfile.getCallTypeFromVideoState(videoState)); 2220 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2221 ImsCommand.IMS_CMD_ACCEPT); 2222 } else { 2223 throw new CallStateException("no valid ims call"); 2224 } 2225 } catch (ImsException e) { 2226 throw new CallStateException("cannot accept call"); 2227 } 2228 } else { 2229 throw new CallStateException("phone not ringing"); 2230 } 2231 } 2232 rejectCall()2233 public void rejectCall () throws CallStateException { 2234 if (DBG) log("rejectCall"); 2235 mOperationLocalLog.log("rejected incoming call"); 2236 2237 if (mRingingCall.getState().isRinging()) { 2238 hangup(mRingingCall); 2239 } else { 2240 throw new CallStateException("phone not ringing"); 2241 } 2242 } 2243 2244 /** 2245 * Set the emergency call information if it is an emergency call. 2246 */ setEmergencyCallInfo(ImsCallProfile profile, Connection conn)2247 private void setEmergencyCallInfo(ImsCallProfile profile, Connection conn) { 2248 EmergencyNumber num = conn.getEmergencyNumberInfo(); 2249 if (num != null) { 2250 profile.setEmergencyCallInfo(num, conn.hasKnownUserIntentEmergency()); 2251 } 2252 } 2253 2254 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) switchAfterConferenceSuccess()2255 private void switchAfterConferenceSuccess() { 2256 if (DBG) log("switchAfterConferenceSuccess fg =" + mForegroundCall.getState() + 2257 ", bg = " + mBackgroundCall.getState()); 2258 2259 if (mBackgroundCall.getState() == ImsPhoneCall.State.HOLDING) { 2260 log("switchAfterConferenceSuccess"); 2261 mForegroundCall.switchWith(mBackgroundCall); 2262 } 2263 } 2264 holdActiveCallForPendingMo()2265 private void holdActiveCallForPendingMo() throws CallStateException { 2266 if (mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_HOLD 2267 || mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD) { 2268 logi("Ignoring hold request while already holding or swapping"); 2269 return; 2270 } 2271 HoldSwapState oldHoldState = mHoldSwitchingState; 2272 ImsCall callToHold = mForegroundCall.getImsCall(); 2273 2274 mHoldSwitchingState = HoldSwapState.HOLDING_TO_DIAL_OUTGOING; 2275 logHoldSwapState("holdActiveCallForPendingMo"); 2276 2277 mForegroundCall.switchWith(mBackgroundCall); 2278 try { 2279 callToHold.hold(); 2280 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), callToHold.getSession(), 2281 ImsCommand.IMS_CMD_HOLD); 2282 } catch (ImsException e) { 2283 mForegroundCall.switchWith(mBackgroundCall); 2284 mHoldSwitchingState = oldHoldState; 2285 logHoldSwapState("holdActiveCallForPendingMo - fail"); 2286 throw new CallStateException(e.getMessage()); 2287 } 2288 } 2289 2290 /** 2291 * Holds the active call, possibly resuming the already-held background call if it exists. 2292 */ holdActiveCall()2293 public void holdActiveCall() throws CallStateException { 2294 if (mForegroundCall.getState() == ImsPhoneCall.State.ACTIVE) { 2295 if (mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_HOLD 2296 || mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD) { 2297 logi("Ignoring hold request while already holding or swapping"); 2298 return; 2299 } 2300 HoldSwapState oldHoldState = mHoldSwitchingState; 2301 ImsCall callToHold = mForegroundCall.getImsCall(); 2302 if (mBackgroundCall.getState().isAlive()) { 2303 mCallExpectedToResume = mBackgroundCall.getImsCall(); 2304 mHoldSwitchingState = HoldSwapState.SWAPPING_ACTIVE_AND_HELD; 2305 } else { 2306 mHoldSwitchingState = HoldSwapState.PENDING_SINGLE_CALL_HOLD; 2307 } 2308 logHoldSwapState("holdActiveCall"); 2309 mForegroundCall.switchWith(mBackgroundCall); 2310 try { 2311 callToHold.hold(); 2312 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), callToHold.getSession(), 2313 ImsCommand.IMS_CMD_HOLD); 2314 } catch (ImsException | NullPointerException e) { 2315 mForegroundCall.switchWith(mBackgroundCall); 2316 mHoldSwitchingState = oldHoldState; 2317 logHoldSwapState("holdActiveCall - fail"); 2318 throw new CallStateException(e.getMessage()); 2319 } 2320 } 2321 } 2322 2323 /** 2324 * Hold the currently active call in order to answer the waiting call. 2325 */ holdActiveCallForWaitingCall()2326 public void holdActiveCallForWaitingCall() throws CallStateException { 2327 boolean switchingWithWaitingCall = !mBackgroundCall.getState().isAlive() 2328 && mRingingCall.getState() == ImsPhoneCall.State.WAITING; 2329 if (switchingWithWaitingCall) { 2330 ImsCall callToHold = mForegroundCall.getImsCall(); 2331 HoldSwapState oldHoldState = mHoldSwitchingState; 2332 mHoldSwitchingState = HoldSwapState.HOLDING_TO_ANSWER_INCOMING; 2333 ImsCall callExpectedToResume = mCallExpectedToResume; 2334 mCallExpectedToResume = mRingingCall.getImsCall(); 2335 mForegroundCall.switchWith(mBackgroundCall); 2336 logHoldSwapState("holdActiveCallForWaitingCall"); 2337 try { 2338 callToHold.hold(); 2339 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), callToHold.getSession(), 2340 ImsCommand.IMS_CMD_HOLD); 2341 } catch (ImsException e) { 2342 mForegroundCall.switchWith(mBackgroundCall); 2343 mHoldSwitchingState = oldHoldState; 2344 mCallExpectedToResume = callExpectedToResume; 2345 logHoldSwapState("holdActiveCallForWaitingCall - fail"); 2346 throw new CallStateException(e.getMessage()); 2347 } 2348 } 2349 } 2350 2351 /** 2352 * Unhold the currently held call. 2353 */ unholdHeldCall()2354 public void unholdHeldCall() throws CallStateException { 2355 ImsCall imsCall = mBackgroundCall.getImsCall(); 2356 if (mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_UNHOLD 2357 || mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD) { 2358 logi("Ignoring unhold request while already unholding or swapping"); 2359 return; 2360 } 2361 if (imsCall != null) { 2362 mCallExpectedToResume = imsCall; 2363 HoldSwapState oldHoldState = mHoldSwitchingState; 2364 mHoldSwitchingState = HoldSwapState.PENDING_SINGLE_CALL_UNHOLD; 2365 mForegroundCall.switchWith(mBackgroundCall); 2366 logHoldSwapState("unholdCurrentCall"); 2367 try { 2368 imsCall.resume(); 2369 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2370 ImsCommand.IMS_CMD_RESUME); 2371 } catch (ImsException e) { 2372 mForegroundCall.switchWith(mBackgroundCall); 2373 mHoldSwitchingState = oldHoldState; 2374 logHoldSwapState("unholdCurrentCall - fail"); 2375 throw new CallStateException(e.getMessage()); 2376 } 2377 } 2378 } 2379 resumeForegroundCall()2380 private void resumeForegroundCall() throws ImsException { 2381 //resume foreground call after holding background call 2382 //they were switched before holding 2383 ImsCall imsCall = mForegroundCall.getImsCall(); 2384 if (imsCall != null) { 2385 if (!imsCall.isPendingHold()) { 2386 imsCall.resume(); 2387 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2388 ImsCommand.IMS_CMD_RESUME); 2389 } else { 2390 mHoldSwitchingState = 2391 HoldSwapState.PENDING_RESUME_FOREGROUND_AFTER_HOLD; 2392 logHoldSwapState("resumeForegroundCall - unhold pending; resume request again"); 2393 } 2394 } 2395 } 2396 answerWaitingCall()2397 private void answerWaitingCall() throws ImsException { 2398 //accept waiting call after holding background call 2399 ImsCall imsCall = mRingingCall.getImsCall(); 2400 if (imsCall != null) { 2401 mPhone.getVoiceCallSessionStats().onImsAcceptCall(mRingingCall.getConnections()); 2402 imsCall.accept( 2403 ImsCallProfile.getCallTypeFromVideoState(mPendingCallVideoState)); 2404 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2405 ImsCommand.IMS_CMD_ACCEPT); 2406 } 2407 } 2408 2409 // Clean up expired cache entries. maintainConnectTimeCache()2410 private void maintainConnectTimeCache() { 2411 long threshold = SystemClock.elapsedRealtime() - TIMEOUT_PARTICIPANT_CONNECT_TIME_CACHE_MS; 2412 // The cached time is the system elapsed millisecond when the CacheEntry is created. 2413 mPhoneNumAndConnTime.entrySet().removeIf(e -> e.getValue().mCachedTime < threshold); 2414 // Remove all the cached records which are older than current caching threshold. Since the 2415 // queue is FIFO, keep polling records until the queue is empty or the head of the queue is 2416 // fresh enough. 2417 while (!mUnknownPeerConnTime.isEmpty() 2418 && mUnknownPeerConnTime.peek().mCachedTime < threshold) { 2419 mUnknownPeerConnTime.poll(); 2420 } 2421 } 2422 cacheConnectionTimeWithPhoneNumber(@onNull ImsPhoneConnection connection)2423 private void cacheConnectionTimeWithPhoneNumber(@NonNull ImsPhoneConnection connection) { 2424 int callDirection = 2425 connection.isIncoming() ? android.telecom.Call.Details.DIRECTION_INCOMING 2426 : android.telecom.Call.Details.DIRECTION_OUTGOING; 2427 CacheEntry cachedConnectTime = new CacheEntry(SystemClock.elapsedRealtime(), 2428 connection.getConnectTime(), connection.getConnectTimeReal(), callDirection); 2429 maintainConnectTimeCache(); 2430 if (PhoneConstants.PRESENTATION_ALLOWED == connection.getNumberPresentation()) { 2431 // In case of merging calls with the same number, use the latest connect time. Since 2432 // that call might be dropped and re-connected. So if the connectTime is earlier than 2433 // the cache, skip. 2434 String phoneNumber = getFormattedPhoneNumber(connection.getAddress()); 2435 if (mPhoneNumAndConnTime.containsKey(phoneNumber) 2436 && connection.getConnectTime() 2437 <= mPhoneNumAndConnTime.get(phoneNumber).mConnectTime) { 2438 // Use the latest connect time. 2439 return; 2440 } 2441 mPhoneNumAndConnTime.put(phoneNumber, cachedConnectTime); 2442 } else { 2443 mUnknownPeerConnTime.add(cachedConnectTime); 2444 } 2445 } 2446 findConnectionTimeUsePhoneNumber( @onNull ConferenceParticipant participant)2447 private CacheEntry findConnectionTimeUsePhoneNumber( 2448 @NonNull ConferenceParticipant participant) { 2449 maintainConnectTimeCache(); 2450 if (PhoneConstants.PRESENTATION_ALLOWED == participant.getParticipantPresentation()) { 2451 if (participant.getHandle() == null 2452 || participant.getHandle().getSchemeSpecificPart() == null) { 2453 return null; 2454 } 2455 2456 String number = ConferenceParticipant.getParticipantAddress(participant.getHandle(), 2457 getCountryIso()).getSchemeSpecificPart(); 2458 if (TextUtils.isEmpty(number)) { 2459 return null; 2460 } 2461 String formattedNumber = getFormattedPhoneNumber(number); 2462 return mPhoneNumAndConnTime.get(formattedNumber); 2463 } else { 2464 return mUnknownPeerConnTime.poll(); 2465 } 2466 } 2467 getFormattedPhoneNumber(String number)2468 private String getFormattedPhoneNumber(String number) { 2469 String countryIso = getCountryIso(); 2470 if (countryIso == null) { 2471 return number; 2472 } 2473 String phoneNumber = PhoneNumberUtils.formatNumberToE164(number, countryIso); 2474 return phoneNumber == null ? number : phoneNumber; 2475 } 2476 getCountryIso()2477 private String getCountryIso() { 2478 int subId = mPhone.getSubId(); 2479 SubscriptionInfo info = 2480 SubscriptionManager.from(mPhone.getContext()).getActiveSubscriptionInfo(subId); 2481 return info == null ? null : info.getCountryIso(); 2482 } 2483 2484 public void conference()2485 conference() { 2486 ImsCall fgImsCall = mForegroundCall.getImsCall(); 2487 if (fgImsCall == null) { 2488 log("conference no foreground ims call"); 2489 return; 2490 } 2491 2492 ImsCall bgImsCall = mBackgroundCall.getImsCall(); 2493 if (bgImsCall == null) { 2494 log("conference no background ims call"); 2495 return; 2496 } 2497 2498 if (fgImsCall.isCallSessionMergePending()) { 2499 log("conference: skip; foreground call already in process of merging."); 2500 return; 2501 } 2502 2503 if (bgImsCall.isCallSessionMergePending()) { 2504 log("conference: skip; background call already in process of merging."); 2505 return; 2506 } 2507 2508 // Keep track of the connect time of the earliest call so that it can be set on the 2509 // {@code ImsConference} when it is created. 2510 long foregroundConnectTime = mForegroundCall.getEarliestConnectTime(); 2511 long backgroundConnectTime = mBackgroundCall.getEarliestConnectTime(); 2512 long conferenceConnectTime; 2513 if (foregroundConnectTime > 0 && backgroundConnectTime > 0) { 2514 conferenceConnectTime = Math.min(mForegroundCall.getEarliestConnectTime(), 2515 mBackgroundCall.getEarliestConnectTime()); 2516 log("conference - using connect time = " + conferenceConnectTime); 2517 } else if (foregroundConnectTime > 0) { 2518 log("conference - bg call connect time is 0; using fg = " + foregroundConnectTime); 2519 conferenceConnectTime = foregroundConnectTime; 2520 } else { 2521 log("conference - fg call connect time is 0; using bg = " + backgroundConnectTime); 2522 conferenceConnectTime = backgroundConnectTime; 2523 } 2524 2525 String foregroundId = ""; 2526 ImsPhoneConnection foregroundConnection = mForegroundCall.getFirstConnection(); 2527 if (foregroundConnection != null) { 2528 foregroundConnection.setConferenceConnectTime(conferenceConnectTime); 2529 foregroundConnection.handleMergeStart(); 2530 foregroundId = foregroundConnection.getTelecomCallId(); 2531 cacheConnectionTimeWithPhoneNumber(foregroundConnection); 2532 } 2533 String backgroundId = ""; 2534 ImsPhoneConnection backgroundConnection = findConnection(bgImsCall); 2535 if (backgroundConnection != null) { 2536 backgroundConnection.handleMergeStart(); 2537 backgroundId = backgroundConnection.getTelecomCallId(); 2538 cacheConnectionTimeWithPhoneNumber(backgroundConnection); 2539 } 2540 log("conference: fgCallId=" + foregroundId + ", bgCallId=" + backgroundId); 2541 mOperationLocalLog.log("conference: fgCallId=" + foregroundId + ", bgCallId=" 2542 + backgroundId); 2543 2544 try { 2545 fgImsCall.merge(bgImsCall); 2546 } catch (ImsException e) { 2547 log("conference " + e.getMessage()); 2548 handleConferenceFailed(foregroundConnection, backgroundConnection); 2549 } 2550 } 2551 2552 /** 2553 * Connects the two calls and disconnects the subscriber from both calls. Throws a 2554 * {@link CallStateException} if there is an issue. 2555 * @throws CallStateException 2556 */ explicitCallTransfer()2557 public void explicitCallTransfer() throws CallStateException { 2558 ImsCall fgImsCall = mForegroundCall.getImsCall(); 2559 ImsCall bgImsCall = mBackgroundCall.getImsCall(); 2560 if ((fgImsCall == null) || (bgImsCall == null) || !canTransfer()) { 2561 throw new CallStateException("cannot transfer"); 2562 } 2563 2564 try { 2565 // Per 3GPP TS 24.629 - A.2, the signalling for a consultative transfer should send the 2566 // REFER on the background held call with the foreground call specified as the 2567 // destination. 2568 bgImsCall.consultativeTransfer(fgImsCall); 2569 } catch (ImsException e) { 2570 throw new CallStateException(e.getMessage()); 2571 } 2572 } 2573 2574 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 2575 public void clearDisconnected()2576 clearDisconnected() { 2577 if (DBG) log("clearDisconnected"); 2578 2579 internalClearDisconnected(); 2580 2581 updatePhoneState(); 2582 mPhone.notifyPreciseCallStateChanged(); 2583 } 2584 2585 public boolean canConference()2586 canConference() { 2587 return mForegroundCall.getState() == ImsPhoneCall.State.ACTIVE 2588 && mBackgroundCall.getState() == ImsPhoneCall.State.HOLDING 2589 && !mBackgroundCall.isFull() 2590 && !mForegroundCall.isFull(); 2591 } 2592 canAddVideoCallDuringImsAudioCall(int videoState)2593 private boolean canAddVideoCallDuringImsAudioCall(int videoState) { 2594 if (mAllowHoldingVideoCall) { 2595 return true; 2596 } 2597 2598 ImsCall call = mForegroundCall.getImsCall(); 2599 if (call == null) { 2600 call = mBackgroundCall.getImsCall(); 2601 } 2602 2603 boolean isImsAudioCallActiveOrHolding = (mForegroundCall.getState() == Call.State.ACTIVE || 2604 mBackgroundCall.getState() == Call.State.HOLDING) && call != null && 2605 !call.isVideoCall(); 2606 2607 /* return TRUE if there doesn't exist ims audio call in either active 2608 or hold states */ 2609 return !isImsAudioCallActiveOrHolding || !VideoProfile.isVideo(videoState); 2610 } 2611 2612 2613 /** 2614 * Determines if there are issues which would preclude dialing an outgoing call. Throws a 2615 * {@link CallStateException} if there is an issue. 2616 * @throws CallStateException 2617 */ checkForDialIssues()2618 public void checkForDialIssues() throws CallStateException { 2619 boolean disableCall = TelephonyProperties.disable_call().orElse(false); 2620 if (disableCall) { 2621 throw new CallStateException(CallStateException.ERROR_CALLING_DISABLED, 2622 "ro.telephony.disable-call has been used to disable calling."); 2623 } 2624 if (mPendingMO != null) { 2625 throw new CallStateException(CallStateException.ERROR_ALREADY_DIALING, 2626 "Another outgoing call is already being dialed."); 2627 } 2628 if (mRingingCall.isRinging()) { 2629 throw new CallStateException(CallStateException.ERROR_CALL_RINGING, 2630 "Can't place a call while another is ringing."); 2631 } 2632 if (mForegroundCall.getState().isAlive() & mBackgroundCall.getState().isAlive()) { 2633 throw new CallStateException(CallStateException.ERROR_TOO_MANY_CALLS, 2634 "Already an active foreground and background call."); 2635 } 2636 } 2637 2638 public boolean canTransfer()2639 canTransfer() { 2640 return mForegroundCall.getState() == ImsPhoneCall.State.ACTIVE 2641 && mBackgroundCall.getState() == ImsPhoneCall.State.HOLDING; 2642 } 2643 2644 //***** Private Instance Methods 2645 2646 private void internalClearDisconnected()2647 internalClearDisconnected() { 2648 mRingingCall.clearDisconnected(); 2649 mForegroundCall.clearDisconnected(); 2650 mBackgroundCall.clearDisconnected(); 2651 mHandoverCall.clearDisconnected(); 2652 } 2653 2654 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 2655 private void updatePhoneState()2656 updatePhoneState() { 2657 PhoneConstants.State oldState = mState; 2658 2659 boolean isPendingMOIdle = mPendingMO == null || !mPendingMO.getState().isAlive(); 2660 2661 if (mRingingCall.isRinging()) { 2662 mState = PhoneConstants.State.RINGING; 2663 } else if (!isPendingMOIdle || !mForegroundCall.isIdle() || !mBackgroundCall.isIdle()) { 2664 // There is a non-idle call, so we're off the hook. 2665 mState = PhoneConstants.State.OFFHOOK; 2666 } else { 2667 mState = PhoneConstants.State.IDLE; 2668 } 2669 2670 if (mState == PhoneConstants.State.IDLE && oldState != mState) { 2671 mVoiceCallEndedRegistrants.notifyRegistrants( 2672 new AsyncResult(null, null, null)); 2673 } else if (oldState == PhoneConstants.State.IDLE && oldState != mState) { 2674 mVoiceCallStartedRegistrants.notifyRegistrants ( 2675 new AsyncResult(null, null, null)); 2676 } 2677 2678 if (DBG) { 2679 log("updatePhoneState pendingMo = " + (mPendingMO == null ? "null" 2680 : mPendingMO.getState() + "(" + mPendingMO.getTelecomCallId() + "/objId:" 2681 + System.identityHashCode(mPendingMO) + ")") 2682 + ", rng= " + mRingingCall.getState() + "(" 2683 + mRingingCall.getConnectionSummary() 2684 + "), fg= " + mForegroundCall.getState() + "(" 2685 + mForegroundCall.getConnectionSummary() 2686 + "), bg= " + mBackgroundCall.getState() 2687 + "(" + mBackgroundCall.getConnectionSummary() + ")"); 2688 log("updatePhoneState oldState=" + oldState + ", newState=" + mState); 2689 } 2690 2691 if (mState != oldState) { 2692 mPhone.notifyPhoneStateChanged(); 2693 mMetrics.writePhoneState(mPhone.getPhoneId(), mState); 2694 notifyPhoneStateChanged(oldState, mState); 2695 } 2696 } 2697 2698 private void handleRadioNotAvailable()2699 handleRadioNotAvailable() { 2700 // handlePollCalls will clear out its 2701 // call list when it gets the CommandException 2702 // error result from this 2703 pollCallsWhenSafe(); 2704 } 2705 2706 private void dumpState()2707 dumpState() { 2708 List l; 2709 2710 log("Phone State:" + mState); 2711 2712 log("Ringing call: " + mRingingCall.toString()); 2713 2714 l = mRingingCall.getConnections(); 2715 for (int i = 0, s = l.size(); i < s; i++) { 2716 log(l.get(i).toString()); 2717 } 2718 2719 log("Foreground call: " + mForegroundCall.toString()); 2720 2721 l = mForegroundCall.getConnections(); 2722 for (int i = 0, s = l.size(); i < s; i++) { 2723 log(l.get(i).toString()); 2724 } 2725 2726 log("Background call: " + mBackgroundCall.toString()); 2727 2728 l = mBackgroundCall.getConnections(); 2729 for (int i = 0, s = l.size(); i < s; i++) { 2730 log(l.get(i).toString()); 2731 } 2732 2733 } 2734 2735 //***** Called from ImsPhone 2736 /** 2737 * Set the TTY mode. This is the actual tty mode (varies depending on peripheral status) 2738 */ setTtyMode(int ttyMode)2739 public void setTtyMode(int ttyMode) { 2740 if (mImsManager == null) { 2741 Log.w(LOG_TAG, "ImsManager is null when setting TTY mode"); 2742 return; 2743 } 2744 2745 try { 2746 mImsManager.setTtyMode(ttyMode); 2747 } catch (ImsException e) { 2748 loge("setTtyMode : " + e); 2749 } 2750 } 2751 2752 /** 2753 * Sets the UI TTY mode. This is the preferred TTY mode that the user sets in the call 2754 * settings screen. 2755 */ setUiTTYMode(int uiTtyMode, Message onComplete)2756 public void setUiTTYMode(int uiTtyMode, Message onComplete) { 2757 if (mImsManager == null) { 2758 mPhone.sendErrorResponse(onComplete, getImsManagerIsNullException()); 2759 return; 2760 } 2761 2762 try { 2763 mImsManager.setUiTTYMode(mPhone.getContext(), uiTtyMode, onComplete); 2764 } catch (ImsException e) { 2765 loge("setUITTYMode : " + e); 2766 mPhone.sendErrorResponse(onComplete, e); 2767 } 2768 } 2769 setMute(boolean mute)2770 public void setMute(boolean mute) { 2771 mDesiredMute = mute; 2772 mForegroundCall.setMute(mute); 2773 } 2774 getMute()2775 public boolean getMute() { 2776 return mDesiredMute; 2777 } 2778 2779 /** 2780 * Sends a DTMF code. According to <a href="http://tools.ietf.org/html/rfc2833">RFC 2833</a>, 2781 * event 0 ~ 9 maps to decimal value 0 ~ 9, '*' to 10, '#' to 11, event 'A' ~ 'D' to 12 ~ 15, 2782 * and event flash to 16. Currently, event flash is not supported. 2783 * 2784 * @param c that represents the DTMF to send. '0' ~ '9', 'A' ~ 'D', '*', '#' are valid inputs. 2785 * @param result the result message to send when done. If non-null, the {@link Message} must 2786 * contain a valid {@link android.os.Messenger} in the {@link Message#replyTo} field, 2787 * since this can be used across IPC boundaries. 2788 */ sendDtmf(char c, Message result)2789 public void sendDtmf(char c, Message result) { 2790 if (DBG) log("sendDtmf"); 2791 2792 ImsCall imscall = mForegroundCall.getImsCall(); 2793 if (imscall != null) { 2794 imscall.sendDtmf(c, result); 2795 } 2796 } 2797 2798 public void startDtmf(char c)2799 startDtmf(char c) { 2800 if (DBG) log("startDtmf"); 2801 2802 ImsCall imscall = mForegroundCall.getImsCall(); 2803 if (imscall != null) { 2804 imscall.startDtmf(c); 2805 } else { 2806 loge("startDtmf : no foreground call"); 2807 } 2808 } 2809 2810 public void stopDtmf()2811 stopDtmf() { 2812 if (DBG) log("stopDtmf"); 2813 2814 ImsCall imscall = mForegroundCall.getImsCall(); 2815 if (imscall != null) { 2816 imscall.stopDtmf(); 2817 } else { 2818 loge("stopDtmf : no foreground call"); 2819 } 2820 } 2821 2822 //***** Called from ImsPhoneConnection 2823 hangup(ImsPhoneConnection conn)2824 public void hangup (ImsPhoneConnection conn) throws CallStateException { 2825 if (DBG) log("hangup connection"); 2826 2827 if (conn.getOwner() != this) { 2828 throw new CallStateException ("ImsPhoneConnection " + conn 2829 + "does not belong to ImsPhoneCallTracker " + this); 2830 } 2831 2832 hangup(conn.getCall()); 2833 } 2834 2835 //***** Called from ImsPhoneCall 2836 hangup(ImsPhoneCall call)2837 public void hangup (ImsPhoneCall call) throws CallStateException { 2838 hangup(call, android.telecom.Call.REJECT_REASON_DECLINED); 2839 } 2840 hangup(ImsPhoneCall call, @android.telecom.Call.RejectReason int rejectReason)2841 public void hangup (ImsPhoneCall call, @android.telecom.Call.RejectReason int rejectReason) 2842 throws CallStateException { 2843 if (DBG) log("hangup call - reason=" + rejectReason); 2844 2845 if (call.getConnectionsCount() == 0) { 2846 throw new CallStateException("no connections"); 2847 } 2848 2849 ImsCall imsCall = call.getImsCall(); 2850 ImsPhoneConnection conn = findConnection(imsCall); 2851 boolean rejectCall = false; 2852 2853 String logResult = "(undefined)"; 2854 if (call == mRingingCall) { 2855 logResult = "(ringing) hangup incoming"; 2856 rejectCall = true; 2857 } else if (call == mForegroundCall) { 2858 if (call.isDialingOrAlerting()) { 2859 logResult = "(foregnd) hangup dialing or alerting..."; 2860 } else { 2861 logResult = "(foregnd) hangup foreground"; 2862 //held call will be resumed by onCallTerminated 2863 } 2864 } else if (call == mBackgroundCall) { 2865 logResult = "(backgnd) hangup waiting or background"; 2866 } else if (call == mHandoverCall) { 2867 logResult = "(handover) hangup handover (SRVCC) call"; 2868 } else { 2869 mOperationLocalLog.log("hangup: ImsPhoneCall " + System.identityHashCode(conn) 2870 + " does not belong to ImsPhoneCallTracker " + this); 2871 throw new CallStateException ("ImsPhoneCall " + call + 2872 "does not belong to ImsPhoneCallTracker " + this); 2873 } 2874 if (Phone.DEBUG_PHONE) log(logResult); 2875 mOperationLocalLog.log("hangup: " + logResult + ", connId=" 2876 + System.identityHashCode(conn)); 2877 2878 call.onHangupLocal(); 2879 mImsCallInfoTracker.updateImsCallStatus(conn); 2880 2881 try { 2882 if (imsCall != null) { 2883 if (rejectCall) { 2884 if (rejectReason == android.telecom.Call.REJECT_REASON_UNWANTED) { 2885 imsCall.reject(ImsReasonInfo.CODE_SIP_USER_MARKED_UNWANTED); 2886 } else { 2887 imsCall.reject(ImsReasonInfo.CODE_USER_DECLINE); 2888 } 2889 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2890 ImsCommand.IMS_CMD_REJECT); 2891 } else { 2892 imsCall.terminate(ImsReasonInfo.CODE_USER_TERMINATED); 2893 mMetrics.writeOnImsCommand(mPhone.getPhoneId(), imsCall.getSession(), 2894 ImsCommand.IMS_CMD_TERMINATE); 2895 } 2896 } else if (mPendingMO != null && call == mForegroundCall) { 2897 // is holding a foreground call 2898 mPendingMO.update(null, ImsPhoneCall.State.DISCONNECTED); 2899 mPendingMO.onDisconnect(); 2900 removeConnection(mPendingMO); 2901 mPendingMO = null; 2902 updatePhoneState(); 2903 removeMessages(EVENT_DIAL_PENDINGMO); 2904 } 2905 } catch (ImsException e) { 2906 mOperationLocalLog.log("hangup: ImsException=" + e); 2907 throw new CallStateException(e.getMessage()); 2908 } 2909 2910 mPhone.notifyPreciseCallStateChanged(); 2911 } 2912 callEndCleanupHandOverCallIfAny()2913 void callEndCleanupHandOverCallIfAny() { 2914 List<Connection> connections = mHandoverCall.getConnections(); 2915 if (connections.size() > 0) { 2916 if (DBG) log("callEndCleanupHandOverCallIfAny, mHandoverCall.mConnections=" 2917 + mHandoverCall.getConnections()); 2918 mHandoverCall.clearConnections(); 2919 mConnections.clear(); 2920 mState = PhoneConstants.State.IDLE; 2921 } 2922 } 2923 2924 sendUSSD(String ussdString, Message response)2925 public void sendUSSD (String ussdString, Message response) { 2926 if (DBG) log("sendUSSD"); 2927 2928 try { 2929 if (mUssdSession != null) { 2930 // Doesn't need mPendingUssd here. Listeners would use it if not null. 2931 mPendingUssd = null; 2932 mUssdSession.sendUssd(ussdString); 2933 AsyncResult.forMessage(response, null, null); 2934 response.sendToTarget(); 2935 return; 2936 } 2937 2938 if (mImsManager == null) { 2939 mPhone.sendErrorResponse(response, getImsManagerIsNullException()); 2940 return; 2941 } 2942 2943 String[] callees = new String[] { ussdString }; 2944 ImsCallProfile profile = mImsManager.createCallProfile( 2945 ImsCallProfile.SERVICE_TYPE_NORMAL, ImsCallProfile.CALL_TYPE_VOICE); 2946 profile.setCallExtraInt(ImsCallProfile.EXTRA_DIALSTRING, 2947 ImsCallProfile.DIALSTRING_USSD); 2948 2949 mUssdSession = mImsManager.makeCall(profile, callees, mImsUssdListener); 2950 mPendingUssd = response; 2951 if (DBG) log("pending ussd updated, " + mPendingUssd); 2952 } catch (ImsException e) { 2953 loge("sendUSSD : " + e); 2954 mPhone.sendErrorResponse(response, e); 2955 } 2956 } 2957 2958 /** 2959 * Cancel USSD session. 2960 * 2961 * @param msg The message to dispatch when the USSD session terminated. 2962 */ cancelUSSD(Message msg)2963 public void cancelUSSD(Message msg) { 2964 if (mUssdSession == null) return; 2965 mPendingUssd = msg; 2966 mUssdSession.terminate(ImsReasonInfo.CODE_USER_TERMINATED); 2967 } 2968 2969 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) findConnection(final ImsCall imsCall)2970 private synchronized ImsPhoneConnection findConnection(final ImsCall imsCall) { 2971 for (ImsPhoneConnection conn : mConnections) { 2972 if (conn.getImsCall() == imsCall) { 2973 return conn; 2974 } 2975 } 2976 return null; 2977 } 2978 2979 /** 2980 * Given a connection, detach it from any {@link ImsPhoneCall} it is associated with, remove it 2981 * from the connections lists, and ensure if it was the pending MO connection it gets removed 2982 * from there as well. 2983 * @param conn The connection to cleanup and remove. 2984 */ cleanupAndRemoveConnection(ImsPhoneConnection conn)2985 public synchronized void cleanupAndRemoveConnection(ImsPhoneConnection conn) { 2986 mOperationLocalLog.log("cleanupAndRemoveConnection: " + conn); 2987 // If the connection is attached to a call, detach it. 2988 if (conn.getCall() != null) { 2989 conn.getCall().detach(conn); 2990 } 2991 // Remove it from the connection list. 2992 removeConnection(conn); 2993 2994 // Finally, if it was the pending MO, then ensure that connection gets cleaned up as well. 2995 if (conn == mPendingMO) { 2996 mPendingMO.finalize(); 2997 mPendingMO = null; 2998 } 2999 // Ensure aggregate state for this tracker is also updated to reflect the new state. 3000 updatePhoneState(); 3001 mPhone.notifyPreciseCallStateChanged(); 3002 } 3003 3004 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) removeConnection(ImsPhoneConnection conn)3005 public synchronized void removeConnection(ImsPhoneConnection conn) { 3006 mConnections.remove(conn); 3007 3008 // If not emergency call is remaining, notify emergency call registrants 3009 if (mIsInEmergencyCall) { 3010 boolean isEmergencyCallInList = false; 3011 // if no emergency calls pending, set this to false 3012 for (ImsPhoneConnection imsPhoneConnection : mConnections) { 3013 if (imsPhoneConnection != null && imsPhoneConnection.isEmergency() == true) { 3014 isEmergencyCallInList = true; 3015 break; 3016 } 3017 } 3018 3019 if (!isEmergencyCallInList) { 3020 if (mPhone.isEcmCanceledForEmergency()) { 3021 mPhone.handleTimerInEmergencyCallbackMode(ImsPhone.RESTART_ECM_TIMER); 3022 } 3023 mIsInEmergencyCall = false; 3024 mPhone.sendEmergencyCallStateChange(false); 3025 } 3026 } 3027 } 3028 3029 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) addConnection(ImsPhoneConnection conn)3030 private synchronized void addConnection(ImsPhoneConnection conn) { 3031 mConnections.add(conn); 3032 if (conn.isEmergency()) { 3033 mIsInEmergencyCall = true; 3034 mPhone.sendEmergencyCallStateChange(true); 3035 } 3036 } 3037 3038 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) processCallStateChange(ImsCall imsCall, ImsPhoneCall.State state, int cause)3039 private void processCallStateChange(ImsCall imsCall, ImsPhoneCall.State state, int cause) { 3040 if (DBG) log("processCallStateChange " + imsCall + " state=" + state + " cause=" + cause); 3041 // This method is called on onCallUpdate() where there is not necessarily a call state 3042 // change. In these situations, we'll ignore the state related updates and only process 3043 // the change in media capabilities (as expected). The default is to not ignore state 3044 // changes so we do not change existing behavior. 3045 processCallStateChange(imsCall, state, cause, false /* do not ignore state update */); 3046 } 3047 3048 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) processCallStateChange(ImsCall imsCall, ImsPhoneCall.State state, int cause, boolean ignoreState)3049 private void processCallStateChange(ImsCall imsCall, ImsPhoneCall.State state, int cause, 3050 boolean ignoreState) { 3051 if (DBG) { 3052 log("processCallStateChange state=" + state + " cause=" + cause 3053 + " ignoreState=" + ignoreState); 3054 } 3055 3056 if (imsCall == null) return; 3057 3058 boolean changed = false; 3059 ImsPhoneConnection conn = findConnection(imsCall); 3060 3061 if (conn == null) { 3062 // TODO : what should be done? 3063 return; 3064 } 3065 3066 // processCallStateChange is triggered for onCallUpdated as well. 3067 // onCallUpdated should not modify the state of the call 3068 // It should modify only other capabilities of call through updateMediaCapabilities 3069 // State updates will be triggered through individual callbacks 3070 // i.e. onCallHeld, onCallResume, etc and conn.update will be responsible for the update 3071 conn.updateMediaCapabilities(imsCall); 3072 if (ignoreState) { 3073 conn.updateAddressDisplay(imsCall); 3074 conn.updateExtras(imsCall); 3075 // Some devices will change the audio direction between major call state changes, so we 3076 // need to check whether to start or stop ringback 3077 conn.maybeChangeRingbackState(); 3078 3079 maybeSetVideoCallProvider(conn, imsCall); 3080 // IMS call profile might be changed while call state is maintained. In this case, it's 3081 // required to notify to CallAttributesListener. 3082 // Since call state is not changed, TelephonyRegistry will not notify to 3083 // PreciseCallStateListener. 3084 mPhone.notifyPreciseCallStateToNotifier(); 3085 return; 3086 } 3087 3088 // Do not log operations that do not change the state 3089 mOperationLocalLog.log("processCallStateChange: state=" + state + " cause=" + cause 3090 + " connId=" + System.identityHashCode(conn)); 3091 boolean noActiveCall = false; 3092 if (mForegroundCall.getState() != ImsPhoneCall.State.ACTIVE 3093 && mBackgroundCall.getState() != ImsPhoneCall.State.ACTIVE) { 3094 noActiveCall = true; 3095 } 3096 changed = conn.update(imsCall, state); 3097 if (noActiveCall && changed && state == ImsPhoneCall.State.ACTIVE) { 3098 sendMessage(obtainMessage(EVENT_NEW_ACTIVE_CALL_STARTED)); 3099 } 3100 if (state == ImsPhoneCall.State.DISCONNECTED) { 3101 changed = conn.onDisconnect(cause) || changed; 3102 //detach the disconnected connections 3103 conn.getCall().detach(conn); 3104 removeConnection(conn); 3105 3106 // If the call being disconnected was the pending MO call we should clear it. 3107 if (mPendingMO == conn) { 3108 mPendingMO.finalize(); 3109 mPendingMO = null; 3110 } 3111 3112 // remove conference participants from the cached list when call is disconnected 3113 List<ConferenceParticipant> cpList = imsCall.getConferenceParticipants(); 3114 if (cpList != null) { 3115 for (ConferenceParticipant cp : cpList) { 3116 String number = ConferenceParticipant.getParticipantAddress(cp.getHandle(), 3117 getCountryIso()).getSchemeSpecificPart(); 3118 if (!TextUtils.isEmpty(number)) { 3119 String formattedNumber = getFormattedPhoneNumber(number); 3120 mPhoneNumAndConnTime.remove(formattedNumber); 3121 } 3122 } 3123 } 3124 } else { 3125 mPhone.getVoiceCallSessionStats().onCallStateChanged(conn.getCall()); 3126 } 3127 3128 if (changed) { 3129 mImsCallInfoTracker.updateImsCallStatus(conn); 3130 if (conn.getCall() == mHandoverCall) return; 3131 updatePhoneState(); 3132 mPhone.notifyPreciseCallStateChanged(); 3133 } 3134 } 3135 maybeSetVideoCallProvider(ImsPhoneConnection conn, ImsCall imsCall)3136 private void maybeSetVideoCallProvider(ImsPhoneConnection conn, ImsCall imsCall) { 3137 android.telecom.Connection.VideoProvider connVideoProvider = conn.getVideoProvider(); 3138 ImsCallSession callSession = imsCall.getCallSession(); 3139 if (connVideoProvider != null || callSession == null 3140 || callSession.getVideoCallProvider() == null) { 3141 return; 3142 } 3143 3144 try { 3145 setVideoCallProvider(conn, imsCall); 3146 } catch (RemoteException e) { 3147 loge("maybeSetVideoCallProvider: exception " + e); 3148 } 3149 } 3150 3151 /** 3152 * Adds a reason code remapping, for test purposes. 3153 * 3154 * @param fromCode The from code, or {@code null} if all. 3155 * @param message The message to map. 3156 * @param toCode The code to remap to. 3157 */ 3158 @VisibleForTesting addReasonCodeRemapping(Integer fromCode, String message, Integer toCode)3159 public void addReasonCodeRemapping(Integer fromCode, String message, Integer toCode) { 3160 if (message != null) { 3161 message = message.toLowerCase(Locale.ROOT); 3162 } 3163 mImsReasonCodeMap.put(new ImsReasonInfoKeyPair(fromCode, message), toCode); 3164 } 3165 3166 /** 3167 * Returns the {@link ImsReasonInfo#getCode()}, potentially remapping to a new value based on 3168 * the {@link ImsReasonInfo#getCode()} and {@link ImsReasonInfo#getExtraMessage()}. 3169 * 3170 * See {@link #mImsReasonCodeMap}. 3171 * 3172 * @param reasonInfo The {@link ImsReasonInfo}. 3173 * @return The remapped code. 3174 */ 3175 @VisibleForTesting maybeRemapReasonCode(ImsReasonInfo reasonInfo)3176 public @ImsReasonInfo.ImsCode int maybeRemapReasonCode(ImsReasonInfo reasonInfo) { 3177 int code = reasonInfo.getCode(); 3178 String reason = reasonInfo.getExtraMessage(); 3179 if (reason == null) { 3180 reason = ""; 3181 } else { 3182 reason = reason.toLowerCase(Locale.ROOT); 3183 } 3184 log("maybeRemapReasonCode : fromCode = " + reasonInfo.getCode() + " ; message = " 3185 + reason); 3186 ImsReasonInfoKeyPair toCheck = new ImsReasonInfoKeyPair(code, reason); 3187 ImsReasonInfoKeyPair wildcardToCheck = new ImsReasonInfoKeyPair(null, reason); 3188 ImsReasonInfoKeyPair wildcardMessageToCheck = new ImsReasonInfoKeyPair(code, null); 3189 3190 if (mImsReasonCodeMap.containsKey(toCheck)) { 3191 int toCode = mImsReasonCodeMap.get(toCheck); 3192 3193 log("maybeRemapReasonCode : fromCode = " + reasonInfo.getCode() + " ; message = " 3194 + reason + " ; toCode = " + toCode); 3195 return toCode; 3196 } else if (!reason.isEmpty() && mImsReasonCodeMap.containsKey(wildcardToCheck)) { 3197 // Handle the case where a wildcard is specified for the fromCode; in this case we will 3198 // match without caring about the fromCode. 3199 // If the reason is empty, we won't do wildcard remapping; otherwise we'd basically be 3200 // able to remap all ImsReasonInfo codes to a single code, which is not desirable. 3201 int toCode = mImsReasonCodeMap.get(wildcardToCheck); 3202 3203 log("maybeRemapReasonCode : fromCode(wildcard) = " + reasonInfo.getCode() + 3204 " ; message = " + reason + " ; toCode = " + toCode); 3205 return toCode; 3206 } 3207 else if (mImsReasonCodeMap.containsKey(wildcardMessageToCheck)) { 3208 // Handle the case where a wildcard is specified for the reason. 3209 // For example, we can set these two strings in 3210 // CarrierConfigManager.KEY_IMS_REASONINFO_MAPPING_STRING_ARRAY: 3211 // - "1014|call completed elsewhere|1014" 3212 // - "1014|*|510" 3213 // to remap CODE_ANSWERED_ELSEWHERE to CODE_USER_TERMINATED_BY_REMOTE 3214 // when reason is NOT "call completed elsewhere". 3215 int toCode = mImsReasonCodeMap.get(wildcardMessageToCheck); 3216 log("maybeRemapReasonCode : fromCode = " + reasonInfo.getCode() + 3217 " ; message(wildcard) = " + reason + " ; toCode = " + toCode); 3218 return toCode; 3219 } 3220 return code; 3221 } 3222 3223 /** 3224 * Maps an {@link ImsReasonInfo} reason code to a {@link DisconnectCause} cause code. 3225 * The {@link Call.State} provided is the state of the call prior to disconnection. 3226 * @param reasonInfo the {@link ImsReasonInfo} for the disconnection. 3227 * @param callState The {@link Call.State} prior to disconnection. 3228 * @return The {@link DisconnectCause} code. 3229 */ 3230 @VisibleForTesting getDisconnectCauseFromReasonInfo(ImsReasonInfo reasonInfo, Call.State callState)3231 public int getDisconnectCauseFromReasonInfo(ImsReasonInfo reasonInfo, Call.State callState) { 3232 int cause = DisconnectCause.ERROR_UNSPECIFIED; 3233 3234 int code = maybeRemapReasonCode(reasonInfo); 3235 switch (code) { 3236 case ImsReasonInfo.CODE_SIP_ALTERNATE_EMERGENCY_CALL: 3237 return DisconnectCause.IMS_SIP_ALTERNATE_EMERGENCY_CALL; 3238 case ImsReasonInfo.CODE_SIP_BAD_ADDRESS: 3239 case ImsReasonInfo.CODE_SIP_NOT_REACHABLE: 3240 return DisconnectCause.NUMBER_UNREACHABLE; 3241 3242 case ImsReasonInfo.CODE_SIP_BUSY: 3243 return DisconnectCause.BUSY; 3244 3245 case ImsReasonInfo.CODE_USER_TERMINATED: 3246 return DisconnectCause.LOCAL; 3247 3248 case ImsReasonInfo.CODE_LOCAL_ENDED_BY_CONFERENCE_MERGE: 3249 return DisconnectCause.IMS_MERGED_SUCCESSFULLY; 3250 3251 case ImsReasonInfo.CODE_LOCAL_CALL_DECLINE: 3252 case ImsReasonInfo.CODE_REMOTE_CALL_DECLINE: 3253 case ImsReasonInfo.CODE_REJECTED_ELSEWHERE: 3254 // If the call has been declined locally (on this device), or on remotely (on 3255 // another device using multiendpoint functionality), mark it as rejected. 3256 return DisconnectCause.INCOMING_REJECTED; 3257 3258 case ImsReasonInfo.CODE_USER_TERMINATED_BY_REMOTE: 3259 case ImsReasonInfo.CODE_SIP_USER_REJECTED: 3260 return DisconnectCause.NORMAL; 3261 3262 case ImsReasonInfo.CODE_SIP_FORBIDDEN: 3263 return DisconnectCause.SERVER_ERROR; 3264 3265 case ImsReasonInfo.CODE_SIP_REDIRECTED: 3266 case ImsReasonInfo.CODE_SIP_NOT_ACCEPTABLE: 3267 case ImsReasonInfo.CODE_SIP_GLOBAL_ERROR: 3268 return DisconnectCause.SERVER_ERROR; 3269 3270 case ImsReasonInfo.CODE_EMERGENCY_CALL_OVER_WFC_NOT_AVAILABLE: 3271 return DisconnectCause.EMERGENCY_CALL_OVER_WFC_NOT_AVAILABLE; 3272 3273 case ImsReasonInfo.CODE_WFC_SERVICE_NOT_AVAILABLE_IN_THIS_LOCATION: 3274 return DisconnectCause.WFC_SERVICE_NOT_AVAILABLE_IN_THIS_LOCATION; 3275 3276 case ImsReasonInfo.CODE_SIP_SERVICE_UNAVAILABLE: 3277 case ImsReasonInfo.CODE_SIP_SERVER_ERROR: 3278 return DisconnectCause.SERVER_UNREACHABLE; 3279 3280 case ImsReasonInfo.CODE_SIP_NOT_FOUND: 3281 return DisconnectCause.INVALID_NUMBER; 3282 3283 case ImsReasonInfo.CODE_LOCAL_NETWORK_ROAMING: 3284 case ImsReasonInfo.CODE_LOCAL_NETWORK_IP_CHANGED: 3285 case ImsReasonInfo.CODE_LOCAL_IMS_SERVICE_DOWN: 3286 case ImsReasonInfo.CODE_LOCAL_SERVICE_UNAVAILABLE: 3287 case ImsReasonInfo.CODE_LOCAL_NOT_REGISTERED: 3288 case ImsReasonInfo.CODE_LOCAL_NETWORK_NO_LTE_COVERAGE: 3289 case ImsReasonInfo.CODE_LOCAL_NETWORK_NO_SERVICE: 3290 case ImsReasonInfo.CODE_LOCAL_CALL_VCC_ON_PROGRESSING: 3291 return DisconnectCause.OUT_OF_SERVICE; 3292 3293 case ImsReasonInfo.CODE_SIP_REQUEST_TIMEOUT: 3294 case ImsReasonInfo.CODE_TIMEOUT_1XX_WAITING: 3295 case ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER: 3296 case ImsReasonInfo.CODE_TIMEOUT_NO_ANSWER_CALL_UPDATE: 3297 return DisconnectCause.TIMED_OUT; 3298 3299 case ImsReasonInfo.CODE_LOCAL_POWER_OFF: 3300 case ImsReasonInfo.CODE_RADIO_OFF: 3301 return DisconnectCause.POWER_OFF; 3302 3303 case ImsReasonInfo.CODE_LOCAL_LOW_BATTERY: 3304 case ImsReasonInfo.CODE_LOW_BATTERY: { 3305 if (callState == Call.State.DIALING) { 3306 return DisconnectCause.DIAL_LOW_BATTERY; 3307 } else { 3308 return DisconnectCause.LOW_BATTERY; 3309 } 3310 } 3311 3312 case ImsReasonInfo.CODE_CALL_BARRED: 3313 return DisconnectCause.CALL_BARRED; 3314 3315 case ImsReasonInfo.CODE_FDN_BLOCKED: 3316 return DisconnectCause.FDN_BLOCKED; 3317 3318 case ImsReasonInfo.CODE_IMEI_NOT_ACCEPTED: 3319 return DisconnectCause.IMEI_NOT_ACCEPTED; 3320 3321 case ImsReasonInfo.CODE_ANSWERED_ELSEWHERE: 3322 return DisconnectCause.ANSWERED_ELSEWHERE; 3323 3324 case ImsReasonInfo.CODE_CALL_END_CAUSE_CALL_PULL: 3325 return DisconnectCause.CALL_PULLED; 3326 3327 case ImsReasonInfo.CODE_MAXIMUM_NUMBER_OF_CALLS_REACHED: 3328 return DisconnectCause.MAXIMUM_NUMBER_OF_CALLS_REACHED; 3329 3330 case ImsReasonInfo.CODE_DATA_DISABLED: 3331 return DisconnectCause.DATA_DISABLED; 3332 3333 case ImsReasonInfo.CODE_DATA_LIMIT_REACHED: 3334 return DisconnectCause.DATA_LIMIT_REACHED; 3335 3336 case ImsReasonInfo.CODE_WIFI_LOST: 3337 return DisconnectCause.WIFI_LOST; 3338 3339 case ImsReasonInfo.CODE_ACCESS_CLASS_BLOCKED: 3340 return DisconnectCause.IMS_ACCESS_BLOCKED; 3341 3342 case ImsReasonInfo.CODE_EMERGENCY_TEMP_FAILURE: 3343 return DisconnectCause.EMERGENCY_TEMP_FAILURE; 3344 3345 case ImsReasonInfo.CODE_EMERGENCY_PERM_FAILURE: 3346 return DisconnectCause.EMERGENCY_PERM_FAILURE; 3347 3348 case ImsReasonInfo.CODE_DIAL_MODIFIED_TO_USSD: 3349 return DisconnectCause.DIAL_MODIFIED_TO_USSD; 3350 3351 case ImsReasonInfo.CODE_DIAL_MODIFIED_TO_SS: 3352 return DisconnectCause.DIAL_MODIFIED_TO_SS; 3353 3354 case ImsReasonInfo.CODE_DIAL_MODIFIED_TO_DIAL: 3355 return DisconnectCause.DIAL_MODIFIED_TO_DIAL; 3356 3357 case ImsReasonInfo.CODE_DIAL_MODIFIED_TO_DIAL_VIDEO: 3358 return DisconnectCause.DIAL_MODIFIED_TO_DIAL_VIDEO; 3359 3360 case ImsReasonInfo.CODE_DIAL_VIDEO_MODIFIED_TO_DIAL: 3361 return DisconnectCause.DIAL_VIDEO_MODIFIED_TO_DIAL; 3362 3363 case ImsReasonInfo.CODE_DIAL_VIDEO_MODIFIED_TO_DIAL_VIDEO: 3364 return DisconnectCause.DIAL_VIDEO_MODIFIED_TO_DIAL_VIDEO; 3365 3366 case ImsReasonInfo.CODE_DIAL_VIDEO_MODIFIED_TO_SS: 3367 return DisconnectCause.DIAL_VIDEO_MODIFIED_TO_SS; 3368 3369 case ImsReasonInfo.CODE_DIAL_VIDEO_MODIFIED_TO_USSD: 3370 return DisconnectCause.DIAL_VIDEO_MODIFIED_TO_USSD; 3371 3372 case ImsReasonInfo.CODE_UNOBTAINABLE_NUMBER: 3373 return DisconnectCause.UNOBTAINABLE_NUMBER; 3374 3375 case ImsReasonInfo.CODE_MEDIA_NO_DATA: 3376 return DisconnectCause.MEDIA_TIMEOUT; 3377 3378 case ImsReasonInfo.CODE_UNSPECIFIED: 3379 if (mPhone.getDefaultPhone().getServiceStateTracker().mRestrictedState 3380 .isCsRestricted()) { 3381 return DisconnectCause.CS_RESTRICTED; 3382 } else if (mPhone.getDefaultPhone().getServiceStateTracker().mRestrictedState 3383 .isCsEmergencyRestricted()) { 3384 return DisconnectCause.CS_RESTRICTED_EMERGENCY; 3385 } else if (mPhone.getDefaultPhone().getServiceStateTracker().mRestrictedState 3386 .isCsNormalRestricted()) { 3387 return DisconnectCause.CS_RESTRICTED_NORMAL; 3388 } 3389 break; 3390 3391 case ImsReasonInfo.CODE_SIP_BAD_REQUEST: 3392 // Auto-missed/rejected calls can sometimes use this reason cause, but if we see it 3393 // for outgoing calls it is just a server error. 3394 if (callState == Call.State.DIALING || callState == Call.State.ALERTING) { 3395 return DisconnectCause.SERVER_ERROR; 3396 } else { 3397 return DisconnectCause.INCOMING_AUTO_REJECTED; 3398 } 3399 case ImsReasonInfo.CODE_REJECT_CALL_ON_OTHER_SUB: 3400 case ImsReasonInfo.CODE_REJECT_ONGOING_E911_CALL: 3401 case ImsReasonInfo.CODE_REJECT_ONGOING_CALL_SETUP: 3402 case ImsReasonInfo.CODE_REJECT_MAX_CALL_LIMIT_REACHED: 3403 case ImsReasonInfo.CODE_REJECT_ONGOING_CALL_TRANSFER: 3404 case ImsReasonInfo.CODE_REJECT_ONGOING_CONFERENCE_CALL: 3405 case ImsReasonInfo.CODE_REJECT_ONGOING_HANDOVER: 3406 case ImsReasonInfo.CODE_REJECT_ONGOING_CALL_UPGRADE: 3407 return DisconnectCause.INCOMING_AUTO_REJECTED; 3408 3409 default: 3410 } 3411 3412 return cause; 3413 } 3414 getPreciseDisconnectCauseFromReasonInfo(ImsReasonInfo reasonInfo)3415 private int getPreciseDisconnectCauseFromReasonInfo(ImsReasonInfo reasonInfo) { 3416 return PRECISE_CAUSE_MAP.get(maybeRemapReasonCode(reasonInfo), 3417 CallFailCause.ERROR_UNSPECIFIED); 3418 } 3419 3420 /** 3421 * @return true if the phone is in Emergency Callback mode, otherwise false 3422 */ isPhoneInEcbMode()3423 private boolean isPhoneInEcbMode() { 3424 return mPhone != null && mPhone.isInEcm(); 3425 } 3426 3427 /** 3428 * Before dialing pending MO request, check for the Emergency Callback mode. 3429 * If device is in Emergency callback mode, then exit the mode before dialing pending MO. 3430 */ 3431 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) dialPendingMO()3432 private void dialPendingMO() { 3433 boolean isPhoneInEcmMode = isPhoneInEcbMode(); 3434 boolean isEmergencyNumber = mPendingMO.isEmergency(); 3435 if ((!isPhoneInEcmMode) || (isPhoneInEcmMode && isEmergencyNumber)) { 3436 sendEmptyMessage(EVENT_DIAL_PENDINGMO); 3437 } else { 3438 sendEmptyMessage(EVENT_EXIT_ECBM_BEFORE_PENDINGMO); 3439 } 3440 } 3441 3442 /** 3443 * Listen to the IMS call state change 3444 */ 3445 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 3446 private ImsCall.Listener mImsCallListener = new ImsCall.Listener() { 3447 @Override 3448 public void onCallInitiating(ImsCall imsCall) { 3449 if (DBG) log("onCallInitiating"); 3450 mPendingMO = null; 3451 processCallStateChange(imsCall, ImsPhoneCall.State.DIALING, 3452 DisconnectCause.NOT_DISCONNECTED, true); 3453 mMetrics.writeOnImsCallInitiating(mPhone.getPhoneId(), imsCall.getCallSession()); 3454 } 3455 3456 @Override 3457 public void onCallProgressing(ImsCall imsCall) { 3458 if (DBG) log("onCallProgressing"); 3459 3460 mPendingMO = null; 3461 processCallStateChange(imsCall, ImsPhoneCall.State.ALERTING, 3462 DisconnectCause.NOT_DISCONNECTED); 3463 mMetrics.writeOnImsCallProgressing(mPhone.getPhoneId(), imsCall.getCallSession()); 3464 } 3465 3466 @Override 3467 public void onCallStarted(ImsCall imsCall) { 3468 if (DBG) log("onCallStarted"); 3469 3470 if (mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3471 // If we put a call on hold to answer an incoming call, we should reset the 3472 // variables that keep track of the switch here. 3473 if (mCallExpectedToResume != null && mCallExpectedToResume == imsCall) { 3474 if (DBG) log("onCallStarted: starting a call as a result of a switch."); 3475 mHoldSwitchingState = HoldSwapState.INACTIVE; 3476 mCallExpectedToResume = null; 3477 logHoldSwapState("onCallStarted"); 3478 } 3479 } 3480 3481 mPendingMO = null; 3482 processCallStateChange(imsCall, ImsPhoneCall.State.ACTIVE, 3483 DisconnectCause.NOT_DISCONNECTED); 3484 3485 if (mNotifyVtHandoverToWifiFail && imsCall.isVideoCall() && !imsCall.isWifiCall()) { 3486 if (isWifiConnected()) { 3487 // Schedule check to see if handover succeeded. 3488 sendMessageDelayed(obtainMessage(EVENT_CHECK_FOR_WIFI_HANDOVER, imsCall), 3489 HANDOVER_TO_WIFI_TIMEOUT_MS); 3490 mHasAttemptedStartOfCallHandover = false; 3491 } else { 3492 // No wifi connectivity, so keep track of network availability for potential 3493 // handover. 3494 registerForConnectivityChanges(); 3495 // No WIFI, so assume we've already attempted a handover. 3496 mHasAttemptedStartOfCallHandover = true; 3497 } 3498 } 3499 mMetrics.writeOnImsCallStarted(mPhone.getPhoneId(), imsCall.getCallSession()); 3500 } 3501 3502 @Override 3503 public void onCallUpdated(ImsCall imsCall) { 3504 if (DBG) log("onCallUpdated"); 3505 if (imsCall == null) { 3506 return; 3507 } 3508 ImsPhoneConnection conn = findConnection(imsCall); 3509 if (conn != null) { 3510 if (DBG) log("onCallUpdated: profile is " + imsCall.getCallProfile()); 3511 processCallStateChange(imsCall, conn.getCall().mState, 3512 DisconnectCause.NOT_DISCONNECTED, true /*ignore state update*/); 3513 mMetrics.writeImsCallState(mPhone.getPhoneId(), 3514 imsCall.getCallSession(), conn.getCall().mState); 3515 } 3516 } 3517 3518 /** 3519 * onCallStartFailed will be invoked when: 3520 * case 1) Dialing fails 3521 * case 2) Ringing call is disconnected by local or remote user 3522 */ 3523 @Override 3524 public void onCallStartFailed(ImsCall imsCall, ImsReasonInfo reasonInfo) { 3525 if (DBG) log("onCallStartFailed reasonCode=" + reasonInfo.getCode()); 3526 3527 int eccCategory = EmergencyNumber.EMERGENCY_SERVICE_CATEGORY_UNSPECIFIED; 3528 if (imsCall != null && imsCall.getCallProfile() != null) { 3529 eccCategory = imsCall.getCallProfile().getEmergencyServiceCategories(); 3530 } 3531 3532 if (mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3533 // If we put a call on hold to answer an incoming call, we should reset the 3534 // variables that keep track of the switch here. 3535 if (mCallExpectedToResume != null && mCallExpectedToResume == imsCall) { 3536 if (DBG) log("onCallStarted: starting a call as a result of a switch."); 3537 mHoldSwitchingState = HoldSwapState.INACTIVE; 3538 mCallExpectedToResume = null; 3539 logHoldSwapState("onCallStartFailed"); 3540 } 3541 } 3542 3543 mPhone.getVoiceCallSessionStats() 3544 .onImsCallStartFailed( 3545 findConnection(imsCall), 3546 new ImsReasonInfo( 3547 maybeRemapReasonCode(reasonInfo), 3548 reasonInfo.mExtraCode, 3549 reasonInfo.mExtraMessage)); 3550 3551 if (DomainSelectionResolver.getInstance().isDomainSelectionSupported()) { 3552 ImsPhoneConnection conn = findConnection(imsCall); 3553 // Since onCallInitiating and onCallProgressing reset mPendingMO, 3554 // we can't depend on mPendingMO. 3555 if ((reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_ALTERNATE_EMERGENCY_CALL 3556 || reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_NOT_REGISTERED 3557 || reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED) 3558 && conn != null) { 3559 logi("onCallStartFailed eccCategory=" + eccCategory); 3560 if (reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_ALTERNATE_EMERGENCY_CALL 3561 || reasonInfo.getExtraCode() 3562 == ImsReasonInfo.EXTRA_CODE_CALL_RETRY_EMERGENCY) { 3563 conn.setNonDetectableEmergencyCallInfo(eccCategory); 3564 } 3565 conn.setImsReasonInfo(reasonInfo); 3566 sendCallStartFailedDisconnect(imsCall, reasonInfo); 3567 mMetrics.writeOnImsCallStartFailed(mPhone.getPhoneId(), 3568 imsCall.getCallSession(), reasonInfo); 3569 return; 3570 } 3571 } 3572 3573 if (mPendingMO != null) { 3574 // To initiate dialing circuit-switched call 3575 if (reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED 3576 && mRingingCall.getState() == ImsPhoneCall.State.IDLE 3577 && isForegroundHigherPriority()) { 3578 mForegroundCall.detach(mPendingMO); 3579 removeConnection(mPendingMO); 3580 mImsCallInfoTracker.updateImsCallStatus(mPendingMO); 3581 mPendingMO.finalize(); 3582 mPendingMO = null; 3583 // if we need to perform CSFB of call, hang up any background call 3584 // before redialing if it is a lower priority. 3585 if (mBackgroundCall.getState().isAlive()) { 3586 try { 3587 hangup(mBackgroundCall); 3588 mPendingSilentRedialInfo = new Pair<>(reasonInfo.getExtraCode() == 3589 ImsReasonInfo.EXTRA_CODE_CALL_RETRY_EMERGENCY, eccCategory); 3590 } catch (CallStateException ex) { 3591 mPendingSilentRedialInfo = null; 3592 } 3593 } else { 3594 updatePhoneState(); 3595 mPhone.initiateSilentRedial(reasonInfo.getExtraCode() == 3596 ImsReasonInfo.EXTRA_CODE_CALL_RETRY_EMERGENCY, eccCategory); 3597 } 3598 return; 3599 } else { 3600 sendCallStartFailedDisconnect(imsCall, reasonInfo); 3601 } 3602 mMetrics.writeOnImsCallStartFailed(mPhone.getPhoneId(), imsCall.getCallSession(), 3603 reasonInfo); 3604 } else if (reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED 3605 && mForegroundCall.getState() == ImsPhoneCall.State.ALERTING) { 3606 if (DBG) log("onCallStartFailed: Initiated call by silent redial" 3607 + " under ALERTING state."); 3608 ImsPhoneConnection conn = findConnection(imsCall); 3609 if (conn != null) { 3610 mForegroundCall.detach(conn); 3611 removeConnection(conn); 3612 mImsCallInfoTracker.updateImsCallStatus(conn); 3613 } 3614 updatePhoneState(); 3615 mPhone.initiateSilentRedial(reasonInfo.getExtraCode() == 3616 ImsReasonInfo.EXTRA_CODE_CALL_RETRY_EMERGENCY, eccCategory); 3617 } 3618 } 3619 3620 @Override 3621 public void onCallTerminated(ImsCall imsCall, ImsReasonInfo reasonInfo) { 3622 if (DBG) log("onCallTerminated reasonCode=" + reasonInfo.getCode()); 3623 3624 ImsPhoneConnection conn = findConnection(imsCall); 3625 Call.State callState; 3626 if (conn != null) { 3627 callState = conn.getState(); 3628 } else { 3629 // Connection shouldn't be null, but if it is, we can assume the call was active. 3630 // This call state is only used for determining which disconnect message to show in 3631 // the case of the device's battery being low resulting in a call drop. 3632 callState = Call.State.ACTIVE; 3633 } 3634 int cause = getDisconnectCauseFromReasonInfo(reasonInfo, callState); 3635 3636 if (DBG) log("cause = " + cause + " conn = " + conn); 3637 3638 if (conn != null) { 3639 android.telecom.Connection.VideoProvider videoProvider = conn.getVideoProvider(); 3640 if (videoProvider instanceof ImsVideoCallProviderWrapper) { 3641 ImsVideoCallProviderWrapper wrapper = (ImsVideoCallProviderWrapper) 3642 videoProvider; 3643 wrapper.unregisterForDataUsageUpdate(ImsPhoneCallTracker.this); 3644 wrapper.removeImsVideoProviderCallback(conn); 3645 } 3646 } 3647 if (mOnHoldToneId == System.identityHashCode(conn)) { 3648 if (conn != null && mOnHoldToneStarted) { 3649 mPhone.stopOnHoldTone(conn); 3650 } 3651 mOnHoldToneStarted = false; 3652 mOnHoldToneId = -1; 3653 } 3654 if (conn != null) { 3655 if (conn.isPulledCall() && ( 3656 reasonInfo.getCode() == ImsReasonInfo.CODE_CALL_PULL_OUT_OF_SYNC || 3657 reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_TEMPRARILY_UNAVAILABLE || 3658 reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_FORBIDDEN) && 3659 mPhone != null && mPhone.getExternalCallTracker() != null) { 3660 3661 log("Call pull failed."); 3662 // Call was being pulled, but the call pull has failed -- inform the associated 3663 // TelephonyConnection that the pull failed, and provide it with the original 3664 // external connection which was pulled so that it can be swapped back. 3665 conn.onCallPullFailed(mPhone.getExternalCallTracker() 3666 .getConnectionById(conn.getPulledDialogId())); 3667 // Do not mark as disconnected; the call will just change from being a regular 3668 // call to being an external call again. 3669 cause = DisconnectCause.NOT_DISCONNECTED; 3670 3671 } else if (conn.isIncoming() && conn.getConnectTime() == 0 3672 && cause != DisconnectCause.ANSWERED_ELSEWHERE) { 3673 // Two cases where the call is declared as rejected. 3674 // 1. The disconnect was initiated by the user. I.e. the connection's 3675 // disconnect cause is LOCAL at this point. 3676 // 2. The network provided disconnect cause is INCOMING_REJECTED. This will be 3677 // the case for ImsReasonInfo.CODE_USER_TERMINATED_BY_REMOTE and 3678 // ImsReasonInfo.CODE_REJECTED_ELSEWHERE. 3679 if (conn.getDisconnectCause() == DisconnectCause.LOCAL 3680 || cause == DisconnectCause.INCOMING_REJECTED) { 3681 // If the user initiated a disconnect of this connection, then we will treat 3682 // this is a rejected call. 3683 // Note; we record the fact that this is a local disconnect in 3684 // ImsPhoneConnection#onHangupLocal 3685 // Alternatively, the network can specify INCOMING_REJECTED as a result of 3686 // remote reject on another device; we'll still treat as rejected. 3687 cause = DisconnectCause.INCOMING_REJECTED; 3688 } else { 3689 // Otherwise in all other cases consider it missed. 3690 cause = DisconnectCause.INCOMING_MISSED; 3691 } 3692 if (DBG) log("Incoming connection of 0 connect time detected - translated " + 3693 "cause = " + cause); 3694 } 3695 } 3696 3697 if (cause == DisconnectCause.NORMAL && conn != null && conn.getImsCall().isMerged()) { 3698 // Call was terminated while it is merged instead of a remote disconnect. 3699 cause = DisconnectCause.IMS_MERGED_SUCCESSFULLY; 3700 } 3701 3702 // Ensure the background call is correctly marked as MERGE_COMPLETE before it is 3703 // disconnected as part of the IMS merge conference process: 3704 if (cause == DisconnectCause.IMS_MERGED_SUCCESSFULLY && conn != null) { 3705 conn.onConnectionEvent(android.telecom.Connection.EVENT_MERGE_COMPLETE, null); 3706 } 3707 3708 EmergencyNumberTracker emergencyNumberTracker = null; 3709 EmergencyNumber num = null; 3710 3711 if (conn != null && imsCall.getSession() != null) { 3712 String callId = imsCall.getSession().getCallId(); 3713 emergencyNumberTracker = conn.getEmergencyNumberTracker(); 3714 num = conn.getEmergencyNumberInfo(); 3715 mMetrics.writeOnImsCallTerminated(mPhone.getPhoneId(), imsCall.getCallSession(), 3716 reasonInfo, mCallQualityMetrics.get(callId), num, 3717 getNetworkCountryIso(), emergencyNumberTracker != null 3718 ? emergencyNumberTracker.getEmergencyNumberDbVersion() 3719 : TelephonyManager.INVALID_EMERGENCY_NUMBER_DB_VERSION); 3720 mPhone.getVoiceCallSessionStats().onImsCallTerminated(conn, new ImsReasonInfo( 3721 maybeRemapReasonCode(reasonInfo), 3722 reasonInfo.mExtraCode, reasonInfo.mExtraMessage)); 3723 // Remove info for the callId from the current calls and add it to the history 3724 CallQualityMetrics lastCallMetrics = mCallQualityMetrics.remove(callId); 3725 if (lastCallMetrics != null) { 3726 mCallQualityMetricsHistory.add(lastCallMetrics); 3727 } 3728 pruneCallQualityMetricsHistory(); 3729 } 3730 mPhone.notifyImsReason(reasonInfo); 3731 3732 if (conn != null) { 3733 conn.setPreciseDisconnectCause(getPreciseDisconnectCauseFromReasonInfo(reasonInfo)); 3734 conn.setImsReasonInfo(reasonInfo); 3735 } 3736 3737 if (reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_ALTERNATE_EMERGENCY_CALL 3738 && DomainSelectionResolver.getInstance().isDomainSelectionSupported()) { 3739 if (conn != null) { 3740 int eccCategory = EmergencyNumber.EMERGENCY_SERVICE_CATEGORY_UNSPECIFIED; 3741 if (imsCall != null && imsCall.getCallProfile() != null) { 3742 eccCategory = imsCall.getCallProfile().getEmergencyServiceCategories(); 3743 logi("onCallTerminated eccCategory=" + eccCategory); 3744 } 3745 conn.setNonDetectableEmergencyCallInfo(eccCategory); 3746 } 3747 processCallStateChange(imsCall, ImsPhoneCall.State.DISCONNECTED, cause); 3748 return; 3749 } else if (reasonInfo.getCode() == ImsReasonInfo.CODE_SIP_ALTERNATE_EMERGENCY_CALL 3750 && mAutoRetryFailedWifiEmergencyCall) { 3751 Pair<ImsCall, ImsReasonInfo> callInfo = new Pair<>(imsCall, reasonInfo); 3752 mPhone.getDefaultPhone().mCi.registerForOn(ImsPhoneCallTracker.this, 3753 EVENT_REDIAL_WIFI_E911_CALL, callInfo); 3754 sendMessageDelayed(obtainMessage(EVENT_REDIAL_WIFI_E911_TIMEOUT, callInfo), 3755 TIMEOUT_REDIAL_WIFI_E911_MS); 3756 final ConnectivityManager mgr = (ConnectivityManager) mPhone.getContext() 3757 .getSystemService(Context.CONNECTIVITY_SERVICE); 3758 mgr.setAirplaneMode(false); 3759 return; 3760 } else if (reasonInfo.getCode() == ImsReasonInfo.CODE_RETRY_ON_IMS_WITHOUT_RTT) { 3761 Pair<ImsCall, ImsReasonInfo> callInfo = new Pair<>(imsCall, reasonInfo); 3762 sendMessage(obtainMessage(EVENT_REDIAL_WITHOUT_RTT, callInfo)); 3763 return; 3764 } else { 3765 processCallStateChange(imsCall, ImsPhoneCall.State.DISCONNECTED, cause); 3766 } 3767 3768 if (mForegroundCall.getState() != ImsPhoneCall.State.ACTIVE) { 3769 if (mRingingCall.getState().isRinging()) { 3770 // Drop pending MO. We should address incoming call first 3771 mPendingMO = null; 3772 } 3773 } 3774 3775 if (mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD) { 3776 if (DBG) { 3777 log("onCallTerminated: Call terminated in the midst of Switching " + 3778 "Fg and Bg calls."); 3779 } 3780 // If we are the in midst of swapping FG and BG calls and the call that was 3781 // terminated was the one that we expected to resume, we need to swap the FG and 3782 // BG calls back. 3783 if (imsCall == mCallExpectedToResume) { 3784 if (DBG) { 3785 log("onCallTerminated: switching " + mForegroundCall + " with " 3786 + mBackgroundCall); 3787 } 3788 mForegroundCall.switchWith(mBackgroundCall); 3789 } 3790 // This call terminated in the midst of a switch after the other call was held, so 3791 // resume it back to ACTIVE state since the switch failed. 3792 log("onCallTerminated: foreground call in state " + mForegroundCall.getState() + 3793 " and ringing call in state " + (mRingingCall == null ? "null" : 3794 mRingingCall.getState().toString())); 3795 3796 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 3797 mHoldSwitchingState = HoldSwapState.INACTIVE; 3798 mCallExpectedToResume = null; 3799 logHoldSwapState("onCallTerminated swap active and hold case"); 3800 } else if (mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_UNHOLD 3801 || mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_HOLD) { 3802 mCallExpectedToResume = null; 3803 mHoldSwitchingState = HoldSwapState.INACTIVE; 3804 logHoldSwapState("onCallTerminated single call case"); 3805 } else if (mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3806 // Check to see which call got terminated. If it's the one that was gonna get held, 3807 // ignore it. If it's the one that was gonna get answered, restore the one that 3808 // possibly got held. 3809 if (imsCall == mCallExpectedToResume) { 3810 mForegroundCall.switchWith(mBackgroundCall); 3811 mCallExpectedToResume = null; 3812 mHoldSwitchingState = HoldSwapState.INACTIVE; 3813 logHoldSwapState("onCallTerminated hold to answer case"); 3814 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 3815 } 3816 } else if (mHoldSwitchingState == HoldSwapState.HOLDING_TO_DIAL_OUTGOING) { 3817 // The call that we were gonna hold might've gotten terminated. If that's the case, 3818 // dial mPendingMo if present. 3819 if (mPendingMO == null 3820 || mPendingMO.getDisconnectCause() != DisconnectCause.NOT_DISCONNECTED) { 3821 mHoldSwitchingState = HoldSwapState.INACTIVE; 3822 logHoldSwapState("onCallTerminated hold to dial but no pendingMo"); 3823 } else if (imsCall != mPendingMO.getImsCall()) { 3824 sendEmptyMessage(EVENT_DIAL_PENDINGMO); 3825 mHoldSwitchingState = HoldSwapState.INACTIVE; 3826 logHoldSwapState("onCallTerminated hold to dial, dial pendingMo"); 3827 } 3828 } 3829 3830 if (mShouldUpdateImsConfigOnDisconnect) { 3831 // Ensure we update the IMS config when the call is disconnected; we delayed this 3832 // because a video call was paused. 3833 updateImsServiceConfig(); 3834 mShouldUpdateImsConfigOnDisconnect = false; 3835 } 3836 3837 if (mPendingSilentRedialInfo != null) { 3838 mPhone.initiateSilentRedial(mPendingSilentRedialInfo.first, 3839 mPendingSilentRedialInfo.second); 3840 mPendingSilentRedialInfo = null; 3841 } 3842 } 3843 3844 @Override 3845 public void onCallHeld(ImsCall imsCall) { 3846 if (DBG) { 3847 if (mForegroundCall.getImsCall() == imsCall) { 3848 log("onCallHeld (fg) " + imsCall); 3849 } else if (mBackgroundCall.getImsCall() == imsCall) { 3850 log("onCallHeld (bg) " + imsCall); 3851 } 3852 } 3853 3854 synchronized (mSyncHold) { 3855 ImsPhoneCall.State oldState = mBackgroundCall.getState(); 3856 processCallStateChange(imsCall, ImsPhoneCall.State.HOLDING, 3857 DisconnectCause.NOT_DISCONNECTED); 3858 3859 // Note: If we're performing a switchWaitingOrHoldingAndActive, the call to 3860 // processCallStateChange above may have caused the mBackgroundCall and 3861 // mForegroundCall references below to change meaning. Watch out for this if you 3862 // are reading through this code. 3863 if (mHoldSwitchingState 3864 == HoldSwapState.PENDING_RESUME_FOREGROUND_AFTER_HOLD) { 3865 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 3866 mHoldSwitchingState = HoldSwapState.INACTIVE; 3867 mCallExpectedToResume = null; 3868 } else if (oldState == ImsPhoneCall.State.ACTIVE) { 3869 // Note: This case comes up when we have just held a call in response to a 3870 // switchWaitingOrHoldingAndActive. We now need to resume the background call. 3871 if (mForegroundCall.getState() == ImsPhoneCall.State.HOLDING 3872 && mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD) { 3873 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 3874 } else if (mRingingCall.getState() == ImsPhoneCall.State.WAITING 3875 && mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3876 sendEmptyMessage(EVENT_ANSWER_WAITING_CALL); 3877 } else if (mPendingMO != null 3878 && mHoldSwitchingState == HoldSwapState.HOLDING_TO_DIAL_OUTGOING) { 3879 dialPendingMO(); 3880 mHoldSwitchingState = HoldSwapState.INACTIVE; 3881 logHoldSwapState("onCallHeld hold to dial"); 3882 } else { 3883 // In this case there will be no call resumed, so we can assume that we 3884 // are done switching fg and bg calls now. 3885 // This may happen if there is no BG call and we are holding a call so that 3886 // we can dial another one. 3887 mHoldSwitchingState = HoldSwapState.INACTIVE; 3888 logHoldSwapState("onCallHeld normal case"); 3889 } 3890 } else if (oldState == ImsPhoneCall.State.IDLE 3891 && (mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD 3892 || mHoldSwitchingState 3893 == HoldSwapState.HOLDING_TO_ANSWER_INCOMING)) { 3894 // The other call terminated in the midst of a switch before this call was held, 3895 // so resume the foreground call back to ACTIVE state since the switch failed. 3896 if (mForegroundCall.getState() == ImsPhoneCall.State.HOLDING) { 3897 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 3898 mHoldSwitchingState = HoldSwapState.INACTIVE; 3899 mCallExpectedToResume = null; 3900 logHoldSwapState("onCallHeld premature termination of other call"); 3901 } 3902 } 3903 } 3904 mMetrics.writeOnImsCallHeld(mPhone.getPhoneId(), imsCall.getCallSession()); 3905 } 3906 3907 @Override 3908 public void onCallHoldFailed(ImsCall imsCall, ImsReasonInfo reasonInfo) { 3909 if (DBG) log("onCallHoldFailed reasonCode=" + reasonInfo.getCode()); 3910 3911 synchronized (mSyncHold) { 3912 ImsPhoneCall.State bgState = mBackgroundCall.getState(); 3913 if (mHoldSwitchingState 3914 == HoldSwapState.PENDING_RESUME_FOREGROUND_AFTER_HOLD) { 3915 mHoldSwitchingState = HoldSwapState.INACTIVE; 3916 } else if (reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_CALL_TERMINATED) { 3917 // disconnected while processing hold 3918 if (mPendingMO != null) { 3919 dialPendingMO(); 3920 } else if (mRingingCall.getState() == ImsPhoneCall.State.WAITING 3921 && mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3922 sendEmptyMessage(EVENT_ANSWER_WAITING_CALL); 3923 } 3924 mHoldSwitchingState = HoldSwapState.INACTIVE; 3925 } else if (mPendingMO != null && mPendingMO.isEmergency()) { 3926 // If mPendingMO is an emergency call, disconnect the call that we tried to 3927 // hold. 3928 mBackgroundCall.getImsCall().terminate(ImsReasonInfo.CODE_UNSPECIFIED); 3929 if (imsCall != mCallExpectedToResume) { 3930 mCallExpectedToResume = null; 3931 } 3932 // Leave mHoldSwitchingState as is for now -- we'll reset it 3933 // in onCallTerminated, which will also dial the outgoing emergency call. 3934 } else if (mRingingCall.getState() == ImsPhoneCall.State.WAITING 3935 && mHoldSwitchingState == HoldSwapState.HOLDING_TO_ANSWER_INCOMING) { 3936 // If we issued a hold request in order to answer an incoming call, we need 3937 // to tell Telecom that we can't actually answer the incoming call. 3938 mHoldSwitchingState = HoldSwapState.INACTIVE; 3939 mForegroundCall.switchWith(mBackgroundCall); 3940 logHoldSwapState("onCallHoldFailed unable to answer waiting call"); 3941 } else if (bgState == ImsPhoneCall.State.ACTIVE) { 3942 mForegroundCall.switchWith(mBackgroundCall); 3943 3944 if (mPendingMO != null) { 3945 mPendingMO.setDisconnectCause(DisconnectCause.ERROR_UNSPECIFIED); 3946 sendEmptyMessageDelayed(EVENT_HANGUP_PENDINGMO, TIMEOUT_HANGUP_PENDINGMO); 3947 } 3948 if (imsCall != mCallExpectedToResume) { 3949 mCallExpectedToResume = null; 3950 } 3951 mHoldSwitchingState = HoldSwapState.INACTIVE; 3952 } 3953 ImsPhoneConnection conn = findConnection(imsCall); 3954 if (conn != null && conn.getState() != ImsPhoneCall.State.DISCONNECTED) { 3955 conn.onConnectionEvent(android.telecom.Connection.EVENT_CALL_HOLD_FAILED, null); 3956 } 3957 mPhone.notifySuppServiceFailed(Phone.SuppService.HOLD); 3958 } 3959 mMetrics.writeOnImsCallHoldFailed(mPhone.getPhoneId(), imsCall.getCallSession(), 3960 reasonInfo); 3961 } 3962 3963 @Override 3964 public void onCallResumed(ImsCall imsCall) { 3965 if (DBG) log("onCallResumed"); 3966 3967 // If we are the in midst of swapping FG and BG calls and the call we end up resuming 3968 // is not the one we expected, we likely had a resume failure and we need to swap the 3969 // FG and BG calls back. 3970 if (mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD 3971 || mHoldSwitchingState == HoldSwapState.PENDING_RESUME_FOREGROUND_AFTER_FAILURE 3972 || mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_UNHOLD) { 3973 if (imsCall != mCallExpectedToResume) { 3974 // If the call which resumed isn't as expected, we need to swap back to the 3975 // previous configuration; the swap has failed. 3976 if (DBG) { 3977 log("onCallResumed : switching " + mForegroundCall + " with " 3978 + mBackgroundCall); 3979 } 3980 mForegroundCall.switchWith(mBackgroundCall); 3981 } else { 3982 // The call which resumed is the one we expected to resume, so we can clear out 3983 // the mSwitchingFgAndBgCalls flag. 3984 if (DBG) { 3985 log("onCallResumed : expected call resumed."); 3986 } 3987 } 3988 mHoldSwitchingState = HoldSwapState.INACTIVE; 3989 mCallExpectedToResume = null; 3990 logHoldSwapState("onCallResumed"); 3991 } 3992 processCallStateChange(imsCall, ImsPhoneCall.State.ACTIVE, 3993 DisconnectCause.NOT_DISCONNECTED); 3994 mMetrics.writeOnImsCallResumed(mPhone.getPhoneId(), imsCall.getCallSession()); 3995 } 3996 3997 @Override 3998 public void onCallResumeFailed(ImsCall imsCall, ImsReasonInfo reasonInfo) { 3999 if (mHoldSwitchingState == HoldSwapState.SWAPPING_ACTIVE_AND_HELD 4000 || mHoldSwitchingState 4001 == HoldSwapState.PENDING_RESUME_FOREGROUND_AFTER_FAILURE) { 4002 // If we are in the midst of swapping the FG and BG calls and 4003 // we got a resume fail, we need to swap back the FG and BG calls. 4004 // Since the FG call was held, will also try to resume the same. 4005 if (imsCall == mCallExpectedToResume) { 4006 if (DBG) { 4007 log("onCallResumeFailed : switching " + mForegroundCall + " with " 4008 + mBackgroundCall); 4009 } 4010 mForegroundCall.switchWith(mBackgroundCall); 4011 if (mForegroundCall.getState() == ImsPhoneCall.State.HOLDING) { 4012 sendEmptyMessage(EVENT_RESUME_NOW_FOREGROUND_CALL); 4013 } 4014 } 4015 4016 //Call swap is done, reset the relevant variables 4017 mCallExpectedToResume = null; 4018 mHoldSwitchingState = HoldSwapState.INACTIVE; 4019 logHoldSwapState("onCallResumeFailed: multi calls"); 4020 } else if (mHoldSwitchingState == HoldSwapState.PENDING_SINGLE_CALL_UNHOLD) { 4021 if (imsCall == mCallExpectedToResume) { 4022 if (DBG) { 4023 log("onCallResumeFailed: single call unhold case"); 4024 } 4025 mForegroundCall.switchWith(mBackgroundCall); 4026 4027 mCallExpectedToResume = null; 4028 mHoldSwitchingState = HoldSwapState.INACTIVE; 4029 logHoldSwapState("onCallResumeFailed: single call"); 4030 } else { 4031 Rlog.w(LOG_TAG, "onCallResumeFailed: got a resume failed for a different call" 4032 + " in the single call unhold case"); 4033 } 4034 } 4035 mPhone.notifySuppServiceFailed(Phone.SuppService.RESUME); 4036 mMetrics.writeOnImsCallResumeFailed(mPhone.getPhoneId(), imsCall.getCallSession(), 4037 reasonInfo); 4038 } 4039 4040 @Override 4041 public void onCallResumeReceived(ImsCall imsCall) { 4042 if (DBG) log("onCallResumeReceived"); 4043 ImsPhoneConnection conn = findConnection(imsCall); 4044 if (conn != null) { 4045 if (mOnHoldToneStarted) { 4046 mPhone.stopOnHoldTone(conn); 4047 mOnHoldToneStarted = false; 4048 } 4049 conn.setRemotelyUnheld(); 4050 mImsCallInfoTracker.updateImsCallStatus(conn, false, true); 4051 } 4052 4053 boolean useVideoPauseWorkaround = mPhone.getContext().getResources().getBoolean( 4054 com.android.internal.R.bool.config_useVideoPauseWorkaround); 4055 if (useVideoPauseWorkaround && mSupportPauseVideo && 4056 VideoProfile.isVideo(conn.getVideoState())) { 4057 // If we are using the video pause workaround, the vendor IMS code has issues 4058 // with video pause signalling. In this case, when a call is remotely 4059 // held, the modem does not reliably change the video state of the call to be 4060 // paused. 4061 // As a workaround, we will turn on that bit now. 4062 conn.changeToUnPausedState(); 4063 } 4064 4065 SuppServiceNotification supp = new SuppServiceNotification(); 4066 // Type of notification: 0 = MO; 1 = MT 4067 // Refer SuppServiceNotification class documentation. 4068 supp.notificationType = 1; 4069 supp.code = SuppServiceNotification.CODE_2_CALL_RETRIEVED; 4070 mPhone.notifySuppSvcNotification(supp); 4071 mMetrics.writeOnImsCallResumeReceived(mPhone.getPhoneId(), imsCall.getCallSession()); 4072 } 4073 4074 @Override 4075 public void onCallHoldReceived(ImsCall imsCall) { 4076 ImsPhoneCallTracker.this.onCallHoldReceived(imsCall); 4077 } 4078 4079 @Override 4080 public void onCallSuppServiceReceived(ImsCall call, 4081 ImsSuppServiceNotification suppServiceInfo) { 4082 if (DBG) log("onCallSuppServiceReceived: suppServiceInfo=" + suppServiceInfo); 4083 4084 SuppServiceNotification supp = new SuppServiceNotification(); 4085 supp.notificationType = suppServiceInfo.notificationType; 4086 supp.code = suppServiceInfo.code; 4087 supp.index = suppServiceInfo.index; 4088 supp.number = suppServiceInfo.number; 4089 supp.history = suppServiceInfo.history; 4090 4091 mPhone.notifySuppSvcNotification(supp); 4092 } 4093 4094 @Override 4095 public void onCallMerged(final ImsCall call, final ImsCall peerCall, boolean swapCalls) { 4096 if (DBG) log("onCallMerged"); 4097 4098 ImsPhoneCall foregroundImsPhoneCall = findConnection(call).getCall(); 4099 ImsPhoneConnection peerConnection = findConnection(peerCall); 4100 ImsPhoneCall peerImsPhoneCall = peerConnection == null ? null 4101 : peerConnection.getCall(); 4102 4103 if (swapCalls) { 4104 switchAfterConferenceSuccess(); 4105 } 4106 foregroundImsPhoneCall.merge(peerImsPhoneCall, ImsPhoneCall.State.ACTIVE); 4107 4108 final ImsPhoneConnection conn = findConnection(call); 4109 try { 4110 log("onCallMerged: ImsPhoneConnection=" + conn); 4111 log("onCallMerged: CurrentVideoProvider=" + conn.getVideoProvider()); 4112 setVideoCallProvider(conn, call); 4113 log("onCallMerged: CurrentVideoProvider=" + conn.getVideoProvider()); 4114 } catch (Exception e) { 4115 loge("onCallMerged: exception " + e); 4116 } 4117 4118 // After merge complete, update foreground as Active 4119 // and background call as Held, if background call exists 4120 processCallStateChange(mForegroundCall.getImsCall(), ImsPhoneCall.State.ACTIVE, 4121 DisconnectCause.NOT_DISCONNECTED); 4122 if (peerConnection != null) { 4123 processCallStateChange(mBackgroundCall.getImsCall(), ImsPhoneCall.State.HOLDING, 4124 DisconnectCause.NOT_DISCONNECTED); 4125 } 4126 4127 // Check if the merge was requested by an existing conference call. In that 4128 // case, no further action is required. 4129 if (!call.isMergeRequestedByConf()) { 4130 log("onCallMerged :: calling onMultipartyStateChanged()"); 4131 onMultipartyStateChanged(call, true); 4132 } else { 4133 log("onCallMerged :: Merge requested by existing conference."); 4134 // Reset the flag. 4135 call.resetIsMergeRequestedByConf(false); 4136 } 4137 4138 // Notify completion of merge 4139 if (conn != null) { 4140 conn.handleMergeComplete(); 4141 } 4142 logState(); 4143 } 4144 4145 @Override 4146 public void onCallMergeFailed(ImsCall call, ImsReasonInfo reasonInfo) { 4147 if (DBG) log("onCallMergeFailed reasonInfo=" + reasonInfo); 4148 4149 // TODO: the call to notifySuppServiceFailed throws up the "merge failed" dialog 4150 // We should move this into the InCallService so that it is handled appropriately 4151 // based on the user facing UI. 4152 mPhone.notifySuppServiceFailed(Phone.SuppService.CONFERENCE); 4153 4154 call.resetIsMergeRequestedByConf(false); 4155 4156 // Start plumbing this even through Telecom so other components can take 4157 // appropriate action. 4158 ImsPhoneConnection foregroundConnection = mForegroundCall.getFirstConnection(); 4159 if (foregroundConnection != null) { 4160 foregroundConnection.onConferenceMergeFailed(); 4161 foregroundConnection.handleMergeComplete(); 4162 } 4163 4164 ImsPhoneConnection backgroundConnection = mBackgroundCall.getFirstConnection(); 4165 if (backgroundConnection != null) { 4166 backgroundConnection.onConferenceMergeFailed(); 4167 backgroundConnection.handleMergeComplete(); 4168 } 4169 } 4170 4171 private void updateConferenceParticipantsTiming(List<ConferenceParticipant> participants) { 4172 for (ConferenceParticipant participant : participants) { 4173 // Every time participants are newly created from parcel, update their connect time. 4174 CacheEntry cachedConnectTime = findConnectionTimeUsePhoneNumber(participant); 4175 if (cachedConnectTime != null) { 4176 participant.setConnectTime(cachedConnectTime.mConnectTime); 4177 participant.setConnectElapsedTime(cachedConnectTime.mConnectElapsedTime); 4178 participant.setCallDirection(cachedConnectTime.mCallDirection); 4179 } 4180 } 4181 } 4182 4183 /** 4184 * Called when the state of IMS conference participant(s) has changed. 4185 * 4186 * @param call the call object that carries out the IMS call. 4187 * @param participants the participant(s) and their new state information. 4188 */ 4189 @Override 4190 public void onConferenceParticipantsStateChanged(ImsCall call, 4191 List<ConferenceParticipant> participants) { 4192 if (DBG) log("onConferenceParticipantsStateChanged"); 4193 4194 if (!mIsConferenceEventPackageEnabled) { 4195 logi("onConferenceParticipantsStateChanged - CEP handling disabled"); 4196 return; 4197 } 4198 4199 if (!mSupportCepOnPeer && !call.isConferenceHost()) { 4200 logi("onConferenceParticipantsStateChanged - ignore CEP on peer"); 4201 return; 4202 } 4203 4204 ImsPhoneConnection conn = findConnection(call); 4205 if (conn != null) { 4206 updateConferenceParticipantsTiming(participants); 4207 conn.updateConferenceParticipants(participants); 4208 } 4209 } 4210 4211 @Override 4212 public void onCallSessionTtyModeReceived(ImsCall call, int mode) { 4213 mPhone.onTtyModeReceived(mode); 4214 } 4215 4216 @Override 4217 public void onCallHandover(ImsCall imsCall, int srcAccessTech, int targetAccessTech, 4218 ImsReasonInfo reasonInfo) { 4219 // Check if data is enabled; there may be a case when 4220 // ImsPhoneCallTracker isn't being informed of the right data enabled state via its 4221 // registration, so we'll refresh now. 4222 boolean isDataEnabled; 4223 isDataEnabled = mPhone.getDefaultPhone().getDataSettingsManager().isDataEnabled(); 4224 4225 if (DBG) { 4226 log("onCallHandover :: srcAccessTech=" + srcAccessTech + ", targetAccessTech=" 4227 + targetAccessTech + ", reasonInfo=" + reasonInfo + ", dataEnabled=" 4228 + mIsDataEnabled + "/" + isDataEnabled + ", dataMetered=" 4229 + mIsViLteDataMetered); 4230 } 4231 if (mIsDataEnabled != isDataEnabled) { 4232 loge("onCallHandover: data enabled state doesn't match! (was=" + mIsDataEnabled 4233 + ", actually=" + isDataEnabled); 4234 mIsDataEnabled = isDataEnabled; 4235 } 4236 4237 // Only consider it a valid handover to WIFI if the source radio tech is known. 4238 boolean isHandoverToWifi = srcAccessTech != ServiceState.RIL_RADIO_TECHNOLOGY_UNKNOWN 4239 && srcAccessTech != ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN 4240 && targetAccessTech == ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN; 4241 // Only consider it a handover from WIFI if the source and target radio tech is known. 4242 boolean isHandoverFromWifi = 4243 srcAccessTech == ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN 4244 && targetAccessTech != ServiceState.RIL_RADIO_TECHNOLOGY_UNKNOWN 4245 && targetAccessTech != ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN; 4246 4247 ImsPhoneConnection conn = findConnection(imsCall); 4248 if (conn != null) { 4249 if (conn.getDisconnectCause() == DisconnectCause.NOT_DISCONNECTED) { 4250 if (isHandoverToWifi) { 4251 removeMessages(EVENT_CHECK_FOR_WIFI_HANDOVER); 4252 4253 if (mNotifyHandoverVideoFromLTEToWifi && mHasAttemptedStartOfCallHandover) { 4254 // This is a handover which happened mid-call (ie not the start of call 4255 // handover from LTE to WIFI), so we'll notify the InCall UI. 4256 conn.onConnectionEvent( 4257 TelephonyManager.EVENT_HANDOVER_VIDEO_FROM_LTE_TO_WIFI, null); 4258 } 4259 4260 // We are on WIFI now so no need to get notified of network availability. 4261 unregisterForConnectivityChanges(); 4262 } else if (isHandoverFromWifi && imsCall.isVideoCall()) { 4263 // A video call just dropped from WIFI to LTE; we want to be informed if a 4264 // new WIFI 4265 // network comes into range. 4266 registerForConnectivityChanges(); 4267 } 4268 } 4269 4270 if (isHandoverToWifi && mIsViLteDataMetered) { 4271 conn.setLocalVideoCapable(true); 4272 } 4273 4274 if (isHandoverFromWifi && imsCall.isVideoCall()) { 4275 if (mIsViLteDataMetered) { 4276 conn.setLocalVideoCapable(mIsDataEnabled); 4277 } 4278 4279 if (mNotifyHandoverVideoFromWifiToLTE && mIsDataEnabled) { 4280 if (conn.getDisconnectCause() == DisconnectCause.NOT_DISCONNECTED) { 4281 log("onCallHandover :: notifying of WIFI to LTE handover."); 4282 conn.onConnectionEvent( 4283 TelephonyManager.EVENT_HANDOVER_VIDEO_FROM_WIFI_TO_LTE, null); 4284 } else { 4285 // Call has already had a disconnect request issued by the user or is 4286 // in the process of disconnecting; do not inform the UI of this as it 4287 // is not relevant. 4288 log("onCallHandover :: skip notify of WIFI to LTE handover for " 4289 + "disconnected call."); 4290 } 4291 } 4292 4293 if (!mIsDataEnabled && mIsViLteDataMetered) { 4294 // Call was downgraded from WIFI to LTE and data is metered; downgrade the 4295 // call now. 4296 log("onCallHandover :: data is not enabled; attempt to downgrade."); 4297 downgradeVideoCall(ImsReasonInfo.CODE_WIFI_LOST, conn); 4298 } 4299 } 4300 } else { 4301 loge("onCallHandover :: connection null."); 4302 } 4303 // If there's a handover, then we're not in the "start of call" handover phase. 4304 if (!mHasAttemptedStartOfCallHandover) { 4305 mHasAttemptedStartOfCallHandover = true; 4306 } 4307 mMetrics.writeOnImsCallHandoverEvent(mPhone.getPhoneId(), 4308 TelephonyCallSession.Event.Type.IMS_CALL_HANDOVER, imsCall.getCallSession(), 4309 srcAccessTech, targetAccessTech, reasonInfo); 4310 } 4311 4312 @Override 4313 public void onCallHandoverFailed(ImsCall imsCall, int srcAccessTech, int targetAccessTech, 4314 ImsReasonInfo reasonInfo) { 4315 if (DBG) { 4316 log("onCallHandoverFailed :: srcAccessTech=" + srcAccessTech + 4317 ", targetAccessTech=" + targetAccessTech + ", reasonInfo=" + reasonInfo); 4318 } 4319 mMetrics.writeOnImsCallHandoverEvent(mPhone.getPhoneId(), 4320 TelephonyCallSession.Event.Type.IMS_CALL_HANDOVER_FAILED, 4321 imsCall.getCallSession(), srcAccessTech, targetAccessTech, reasonInfo); 4322 4323 boolean isHandoverToWifi = srcAccessTech != ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN && 4324 targetAccessTech == ServiceState.RIL_RADIO_TECHNOLOGY_IWLAN; 4325 ImsPhoneConnection conn = findConnection(imsCall); 4326 if (conn != null && isHandoverToWifi) { 4327 log("onCallHandoverFailed - handover to WIFI Failed"); 4328 4329 // If we know we failed to handover, don't check for failure in the future. 4330 removeMessages(EVENT_CHECK_FOR_WIFI_HANDOVER); 4331 4332 if (imsCall.isVideoCall() 4333 && conn.getDisconnectCause() == DisconnectCause.NOT_DISCONNECTED) { 4334 // Start listening for a WIFI network to come into range for potential handover. 4335 registerForConnectivityChanges(); 4336 } 4337 4338 if (mNotifyVtHandoverToWifiFail) { 4339 // Only notify others if carrier config indicates to do so. 4340 conn.onHandoverToWifiFailed(); 4341 } 4342 } 4343 if (!mHasAttemptedStartOfCallHandover) { 4344 mHasAttemptedStartOfCallHandover = true; 4345 } 4346 } 4347 4348 @Override 4349 public void onRttModifyRequestReceived(ImsCall imsCall) { 4350 ImsPhoneConnection conn = findConnection(imsCall); 4351 if (conn != null) { 4352 conn.onRttModifyRequestReceived(); 4353 } 4354 } 4355 4356 @Override 4357 public void onRttModifyResponseReceived(ImsCall imsCall, int status) { 4358 ImsPhoneConnection conn = findConnection(imsCall); 4359 if (conn != null) { 4360 conn.onRttModifyResponseReceived(status); 4361 } 4362 } 4363 4364 @Override 4365 public void onRttMessageReceived(ImsCall imsCall, String message) { 4366 ImsPhoneConnection conn = findConnection(imsCall); 4367 if (conn != null) { 4368 conn.onRttMessageReceived(message); 4369 } 4370 } 4371 4372 @Override 4373 public void onRttAudioIndicatorChanged(ImsCall imsCall, ImsStreamMediaProfile profile) { 4374 ImsPhoneConnection conn = findConnection(imsCall); 4375 if (conn != null) { 4376 conn.onRttAudioIndicatorChanged(profile); 4377 } 4378 } 4379 4380 @Override 4381 public void onCallSessionTransferred(ImsCall imsCall) { 4382 if (DBG) log("onCallSessionTransferred success"); 4383 } 4384 4385 @Override 4386 public void onCallSessionTransferFailed(ImsCall imsCall, ImsReasonInfo reasonInfo) { 4387 if (DBG) log("onCallSessionTransferFailed reasonInfo=" + reasonInfo); 4388 mPhone.notifySuppServiceFailed(Phone.SuppService.TRANSFER); 4389 } 4390 4391 @Override 4392 public void onCallSessionDtmfReceived(ImsCall imsCall, char digit) { 4393 log("onCallSessionDtmfReceived digit=" + digit); 4394 ImsPhoneConnection conn = findConnection(imsCall); 4395 if (conn != null) { 4396 conn.receivedDtmfDigit(digit); 4397 } 4398 } 4399 4400 /** 4401 * Handles a change to the multiparty state for an {@code ImsCall}. Notifies the associated 4402 * {@link ImsPhoneConnection} of the change. 4403 * 4404 * @param imsCall The IMS call. 4405 * @param isMultiParty {@code true} if the call became multiparty, {@code false} 4406 * otherwise. 4407 */ 4408 @Override 4409 public void onMultipartyStateChanged(ImsCall imsCall, boolean isMultiParty) { 4410 if (DBG) log("onMultipartyStateChanged to " + (isMultiParty ? "Y" : "N")); 4411 4412 ImsPhoneConnection conn = findConnection(imsCall); 4413 if (conn != null) { 4414 conn.updateMultipartyState(isMultiParty); 4415 mPhone.getVoiceCallSessionStats().onMultipartyChange(conn, isMultiParty); 4416 } 4417 } 4418 4419 /** 4420 * Handles a change to the call quality for an {@code ImsCall}. 4421 * Notifies apps through the System API {@link PhoneStateListener#onCallAttributesChanged}. 4422 */ 4423 @Override 4424 public void onCallQualityChanged(ImsCall imsCall, CallQuality callQuality) { 4425 // convert ServiceState.radioTech to TelephonyManager.NetworkType constant 4426 mPhone.onCallQualityChanged(callQuality, imsCall.getNetworkType()); 4427 String callId = imsCall.getSession().getCallId(); 4428 CallQualityMetrics cqm = mCallQualityMetrics.get(callId); 4429 if (cqm == null) { 4430 cqm = new CallQualityMetrics(mPhone); 4431 } 4432 cqm.saveCallQuality(callQuality); 4433 mCallQualityMetrics.put(callId, cqm); 4434 4435 ImsPhoneConnection conn = findConnection(imsCall); 4436 if (conn != null) { 4437 Bundle report = new Bundle(); 4438 report.putParcelable(android.telecom.Connection.EXTRA_CALL_QUALITY_REPORT, 4439 callQuality); 4440 conn.onConnectionEvent(android.telecom.Connection.EVENT_CALL_QUALITY_REPORT, 4441 report); 4442 } 4443 } 4444 4445 /** 4446 * Handles reception of RTP header extension data from the network. 4447 * @param imsCall The ImsCall the data was received on. 4448 * @param rtpHeaderExtensionData The RTP extension data received. 4449 */ 4450 @Override 4451 public void onCallSessionRtpHeaderExtensionsReceived(ImsCall imsCall, 4452 @NonNull Set<RtpHeaderExtension> rtpHeaderExtensionData) { 4453 log("onCallSessionRtpHeaderExtensionsReceived numExtensions=" 4454 + rtpHeaderExtensionData.size()); 4455 ImsPhoneConnection conn = findConnection(imsCall); 4456 if (conn != null) { 4457 conn.receivedRtpHeaderExtensions(rtpHeaderExtensionData); 4458 } 4459 } 4460 4461 /** 4462 * Access Network Bitrate Recommendation Query (ANBRQ), see 3GPP TS 26.114. 4463 * This API triggers radio to send ANBRQ message to the access network to query the desired 4464 * bitrate. 4465 * 4466 * @param imsCall The ImsCall the data was received on. 4467 * @param mediaType MediaType is used to identify media stream such as audio or video. 4468 * @param direction Direction of this packet stream (e.g. uplink or downlink). 4469 * @param bitsPerSecond This value is the bitrate requested by the other party UE through 4470 * RTP CMR, RTCPAPP or TMMBR, and ImsStack converts this value to the MAC bitrate 4471 * (defined in TS36.321, range: 0 ~ 8000 kbit/s). 4472 */ 4473 @Override 4474 public void onCallSessionSendAnbrQuery(ImsCall imsCall, int mediaType, int direction, 4475 int bitsPerSecond) { 4476 if (DBG) { 4477 log("onCallSessionSendAnbrQuery mediaType=" + mediaType + ", direction=" 4478 + direction + ", bitPerSecond=" + bitsPerSecond); 4479 } 4480 handleSendAnbrQuery(mediaType, direction, bitsPerSecond); 4481 } 4482 }; 4483 4484 /** 4485 * Listen to the IMS call state change 4486 */ 4487 private ImsCall.Listener mImsUssdListener = new ImsCall.Listener() { 4488 @Override 4489 public void onCallStarted(ImsCall imsCall) { 4490 if (DBG) log("mImsUssdListener onCallStarted"); 4491 4492 if (imsCall == mUssdSession) { 4493 if (mPendingUssd != null) { 4494 AsyncResult.forMessage(mPendingUssd); 4495 mPendingUssd.sendToTarget(); 4496 mPendingUssd = null; 4497 } 4498 } 4499 } 4500 4501 @Override 4502 public void onCallStartFailed(ImsCall imsCall, ImsReasonInfo reasonInfo) { 4503 if (DBG) log("mImsUssdListener onCallStartFailed reasonCode=" + reasonInfo.getCode()); 4504 4505 if (mUssdSession != null) { 4506 if (DBG) log("mUssdSession is not null"); 4507 // To initiate sending Ussd under circuit-switched call 4508 if (reasonInfo.getCode() == ImsReasonInfo.CODE_LOCAL_CALL_CS_RETRY_REQUIRED 4509 && mUssdMethod != USSD_OVER_IMS_ONLY) { 4510 mUssdSession = null; 4511 mPhone.getPendingMmiCodes().clear(); 4512 mPhone.initiateSilentRedial(); 4513 if (DBG) log("Initiated sending ussd by using silent redial."); 4514 return; 4515 } else { 4516 if (DBG) log("Failed to start sending ussd by using silent resendUssd.!!"); 4517 } 4518 } 4519 4520 onCallTerminated(imsCall, reasonInfo); 4521 } 4522 4523 @Override 4524 public void onCallTerminated(ImsCall imsCall, ImsReasonInfo reasonInfo) { 4525 if (DBG) log("mImsUssdListener onCallTerminated reasonCode=" + reasonInfo.getCode()); 4526 removeMessages(EVENT_CHECK_FOR_WIFI_HANDOVER); 4527 mHasAttemptedStartOfCallHandover = false; 4528 unregisterForConnectivityChanges(); 4529 4530 if (imsCall == mUssdSession) { 4531 mUssdSession = null; 4532 if (mPendingUssd != null) { 4533 CommandException ex = 4534 new CommandException(CommandException.Error.GENERIC_FAILURE); 4535 AsyncResult.forMessage(mPendingUssd, null, ex); 4536 mPendingUssd.sendToTarget(); 4537 mPendingUssd = null; 4538 } 4539 } 4540 imsCall.close(); 4541 } 4542 4543 @Override 4544 public void onCallUssdMessageReceived(ImsCall call, 4545 int mode, String ussdMessage) { 4546 if (DBG) log("mImsUssdListener onCallUssdMessageReceived mode=" + mode); 4547 4548 int ussdMode = -1; 4549 4550 switch(mode) { 4551 case ImsCall.USSD_MODE_REQUEST: 4552 ussdMode = CommandsInterface.USSD_MODE_REQUEST; 4553 break; 4554 4555 case ImsCall.USSD_MODE_NOTIFY: 4556 ussdMode = CommandsInterface.USSD_MODE_NOTIFY; 4557 break; 4558 } 4559 4560 mPhone.onIncomingUSSD(ussdMode, ussdMessage); 4561 } 4562 }; 4563 4564 private final ImsMmTelManager.CapabilityCallback mImsCapabilityCallback = 4565 new ImsMmTelManager.CapabilityCallback() { 4566 @Override 4567 public void onCapabilitiesStatusChanged( 4568 MmTelFeature.MmTelCapabilities capabilities) { 4569 if (DBG) log("onCapabilitiesStatusChanged: " + capabilities); 4570 SomeArgs args = SomeArgs.obtain(); 4571 args.arg1 = capabilities; 4572 // Remove any pending updates; they're already stale, so no need to process 4573 // them. 4574 removeMessages(EVENT_ON_FEATURE_CAPABILITY_CHANGED); 4575 obtainMessage(EVENT_ON_FEATURE_CAPABILITY_CHANGED, args).sendToTarget(); 4576 } 4577 }; 4578 4579 private final ImsManager.ImsStatsCallback mImsStatsCallback = 4580 new ImsManager.ImsStatsCallback() { 4581 @Override 4582 public void onEnabledMmTelCapabilitiesChanged(int capability, int regTech, 4583 boolean isEnabled) { 4584 int enabledVal = isEnabled ? ProvisioningManager.PROVISIONING_VALUE_ENABLED 4585 : ProvisioningManager.PROVISIONING_VALUE_DISABLED; 4586 mMetrics.writeImsSetFeatureValue(mPhone.getPhoneId(), capability, regTech, enabledVal); 4587 mPhone.getImsStats().onSetFeatureResponse(capability, regTech, enabledVal); 4588 } 4589 }; 4590 4591 private final ProvisioningManager.Callback mConfigCallback = 4592 new ProvisioningManager.Callback() { 4593 @Override 4594 public void onProvisioningIntChanged(int item, int value) { 4595 sendConfigChangedIntent(item, Integer.toString(value)); 4596 if ((mImsManager != null) 4597 && (item == ImsConfig.ConfigConstants.VOICE_OVER_WIFI_SETTING_ENABLED 4598 || item == ImsConfig.ConfigConstants.VLT_SETTING_ENABLED 4599 || item == ImsConfig.ConfigConstants.LVC_SETTING_ENABLED)) { 4600 // Update Ims Service state to make sure updated provisioning values take effect 4601 // immediately. 4602 updateImsServiceConfig(); 4603 } 4604 } 4605 4606 @Override 4607 public void onProvisioningStringChanged(int item, String value) { 4608 sendConfigChangedIntent(item, value); 4609 } 4610 4611 // send IMS_CONFIG_CHANGED intent for older services that do not implement the new callback 4612 // interface. 4613 private void sendConfigChangedIntent(int item, String value) { 4614 log("sendConfigChangedIntent - [" + item + ", " + value + "]"); 4615 Intent configChangedIntent = new Intent(ImsConfig.ACTION_IMS_CONFIG_CHANGED); 4616 configChangedIntent.putExtra(ImsConfig.EXTRA_CHANGED_ITEM, item); 4617 configChangedIntent.putExtra(ImsConfig.EXTRA_NEW_VALUE, value); 4618 if (mPhone != null && mPhone.getContext() != null) { 4619 mPhone.getContext().sendBroadcast( 4620 configChangedIntent, Manifest.permission.READ_PRIVILEGED_PHONE_STATE); 4621 } 4622 } 4623 }; 4624 sendCallStartFailedDisconnect(ImsCall imsCall, ImsReasonInfo reasonInfo)4625 public void sendCallStartFailedDisconnect(ImsCall imsCall, ImsReasonInfo reasonInfo) { 4626 mPendingMO = null; 4627 ImsPhoneConnection conn = findConnection(imsCall); 4628 Call.State callState; 4629 if (conn != null) { 4630 callState = conn.getState(); 4631 } else { 4632 // Need to fall back in case connection is null; it shouldn't be, but a sane 4633 // fallback is to assume we're dialing. This state is only used to 4634 // determine which disconnect string to show in the case of a low battery 4635 // disconnect. 4636 callState = Call.State.DIALING; 4637 } 4638 int cause = getDisconnectCauseFromReasonInfo(reasonInfo, callState); 4639 4640 processCallStateChange(imsCall, ImsPhoneCall.State.DISCONNECTED, cause); 4641 4642 if (conn != null) { 4643 conn.setPreciseDisconnectCause( 4644 getPreciseDisconnectCauseFromReasonInfo(reasonInfo)); 4645 } 4646 4647 mPhone.notifyImsReason(reasonInfo); 4648 } 4649 4650 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) getUtInterface()4651 public ImsUtInterface getUtInterface() throws ImsException { 4652 if (mImsManager == null) { 4653 throw getImsManagerIsNullException(); 4654 } 4655 4656 ImsUtInterface ut = mImsManager.createOrGetSupplementaryServiceConfiguration(); 4657 return ut; 4658 } 4659 transferHandoverConnections(ImsPhoneCall call)4660 private void transferHandoverConnections(ImsPhoneCall call) { 4661 if (call.getConnections() != null) { 4662 for (Connection c : call.getConnections()) { 4663 c.mPreHandoverState = call.mState; 4664 log ("Connection state before handover is " + c.getStateBeforeHandover()); 4665 } 4666 } 4667 if (mHandoverCall.getConnections() == null) { 4668 mHandoverCall.mConnections = call.mConnections; 4669 } else { // Multi-call SRVCC 4670 mHandoverCall.mConnections.addAll(call.mConnections); 4671 } 4672 mHandoverCall.copyConnectionFrom(call); 4673 if (mHandoverCall.getConnections() != null) { 4674 if (call.getImsCall() != null) { 4675 call.getImsCall().close(); 4676 } 4677 for (Connection c : mHandoverCall.getConnections()) { 4678 ((ImsPhoneConnection)c).changeParent(mHandoverCall); 4679 ((ImsPhoneConnection)c).releaseWakeLock(); 4680 } 4681 } 4682 if (call.getState().isAlive()) { 4683 log ("Call is alive and state is " + call.mState); 4684 mHandoverCall.mState = call.mState; 4685 } 4686 call.clearConnections(); 4687 call.mState = ImsPhoneCall.State.IDLE; 4688 if (mPendingMO != null) { 4689 // If the call is handed over before moving to alerting (i.e. e911 CSFB redial), clear 4690 // pending MO here. 4691 logi("pending MO on handover, clearing..."); 4692 mPendingMO = null; 4693 } 4694 } 4695 4696 /** 4697 * Notify of a change to SRVCC state 4698 * @param state the new SRVCC state. 4699 */ notifySrvccState(int state)4700 public void notifySrvccState(int state) { 4701 if (DBG) log("notifySrvccState state=" + state); 4702 4703 if (mImsManager != null) { 4704 try { 4705 if (state == TelephonyManager.SRVCC_STATE_HANDOVER_STARTED) { 4706 mImsManager.notifySrvccStarted(mSrvccStartedCallback); 4707 } else if (state == TelephonyManager.SRVCC_STATE_HANDOVER_COMPLETED) { 4708 mImsManager.notifySrvccCompleted(); 4709 } else if (state == TelephonyManager.SRVCC_STATE_HANDOVER_FAILED) { 4710 mImsManager.notifySrvccFailed(); 4711 } else if (state == TelephonyManager.SRVCC_STATE_HANDOVER_CANCELED) { 4712 mImsManager.notifySrvccCanceled(); 4713 } 4714 } catch (ImsException e) { 4715 loge("notifySrvccState : exception " + e); 4716 } 4717 } 4718 4719 switch(state) { 4720 case TelephonyManager.SRVCC_STATE_HANDOVER_STARTED: 4721 mSrvccState = Call.SrvccState.STARTED; 4722 break; 4723 4724 case TelephonyManager.SRVCC_STATE_HANDOVER_COMPLETED: 4725 mSrvccState = Call.SrvccState.COMPLETED; 4726 4727 // If the dialing call had ringback, ensure it stops now, 4728 // otherwise it'll keep playing afer the SRVCC completes. 4729 mForegroundCall.maybeStopRingback(); 4730 mForegroundCall.maybeClearRemotelyHeldStatus(); 4731 mBackgroundCall.maybeClearRemotelyHeldStatus(); 4732 4733 resetState(); 4734 transferHandoverConnections(mForegroundCall); 4735 transferHandoverConnections(mBackgroundCall); 4736 transferHandoverConnections(mRingingCall); 4737 updatePhoneState(); 4738 mImsCallInfoTracker.notifySrvccCompleted(); 4739 break; 4740 4741 case TelephonyManager.SRVCC_STATE_HANDOVER_FAILED: 4742 mSrvccState = Call.SrvccState.FAILED; 4743 break; 4744 4745 case TelephonyManager.SRVCC_STATE_HANDOVER_CANCELED: 4746 mSrvccState = Call.SrvccState.CANCELED; 4747 break; 4748 4749 default: 4750 //ignore invalid state 4751 return; 4752 } 4753 } 4754 resetState()4755 private void resetState() { 4756 mIsInEmergencyCall = false; 4757 mPhone.setEcmCanceledForEmergency(false); 4758 mHoldSwitchingState = HoldSwapState.INACTIVE; 4759 } 4760 4761 @VisibleForTesting isHoldOrSwapInProgress()4762 public boolean isHoldOrSwapInProgress() { 4763 return mHoldSwitchingState != HoldSwapState.INACTIVE; 4764 } 4765 4766 //****** Overridden from Handler 4767 4768 @Override 4769 public void handleMessage(Message msg)4770 handleMessage (Message msg) { 4771 AsyncResult ar; 4772 if (DBG) log("handleMessage what=" + msg.what); 4773 4774 switch (msg.what) { 4775 case EVENT_HANGUP_PENDINGMO: 4776 if (mPendingMO != null) { 4777 mPendingMO.onDisconnect(); 4778 removeConnection(mPendingMO); 4779 mPendingMO = null; 4780 } 4781 mPendingIntentExtras = null; 4782 updatePhoneState(); 4783 mPhone.notifyPreciseCallStateChanged(); 4784 break; 4785 case EVENT_RESUME_NOW_FOREGROUND_CALL: 4786 try { 4787 resumeForegroundCall(); 4788 } catch (ImsException e) { 4789 if (Phone.DEBUG_PHONE) { 4790 loge("handleMessage EVENT_RESUME_NOW_FOREGROUND_CALL exception=" + e); 4791 } 4792 } 4793 break; 4794 case EVENT_ANSWER_WAITING_CALL: 4795 try { 4796 answerWaitingCall(); 4797 } catch (ImsException e) { 4798 if (Phone.DEBUG_PHONE) { 4799 loge("handleMessage EVENT_ANSWER_WAITING_CALL exception=" + e); 4800 } 4801 } 4802 break; 4803 case EVENT_DIAL_PENDINGMO: 4804 dialInternal(mPendingMO, mClirMode, mPendingCallVideoState, mPendingIntentExtras); 4805 mPendingIntentExtras = null; 4806 break; 4807 4808 case EVENT_EXIT_ECBM_BEFORE_PENDINGMO: 4809 if (mPendingMO != null) { 4810 //Send ECBM exit request 4811 try { 4812 getEcbmInterface().exitEmergencyCallbackMode(); 4813 mPhone.setOnEcbModeExitResponse(this, EVENT_EXIT_ECM_RESPONSE_CDMA, null); 4814 pendingCallClirMode = mClirMode; 4815 pendingCallInEcm = true; 4816 } catch (ImsException e) { 4817 e.printStackTrace(); 4818 mPendingMO.setDisconnectCause(DisconnectCause.ERROR_UNSPECIFIED); 4819 sendEmptyMessageDelayed(EVENT_HANGUP_PENDINGMO, TIMEOUT_HANGUP_PENDINGMO); 4820 } 4821 } 4822 break; 4823 4824 case EVENT_EXIT_ECM_RESPONSE_CDMA: 4825 // no matter the result, we still do the same here 4826 if (pendingCallInEcm) { 4827 dialInternal(mPendingMO, pendingCallClirMode, 4828 mPendingCallVideoState, mPendingIntentExtras); 4829 mPendingIntentExtras = null; 4830 pendingCallInEcm = false; 4831 } 4832 mPhone.unsetOnEcbModeExitResponse(this); 4833 break; 4834 case EVENT_VT_DATA_USAGE_UPDATE: 4835 ar = (AsyncResult) msg.obj; 4836 ImsCall call = (ImsCall) ar.userObj; 4837 Long usage = (long) ar.result; 4838 log("VT data usage update. usage = " + usage + ", imsCall = " + call); 4839 if (usage > 0) { 4840 updateVtDataUsage(call, usage); 4841 } 4842 break; 4843 case EVENT_DATA_ENABLED_CHANGED: 4844 ar = (AsyncResult) msg.obj; 4845 if (ar.result instanceof Pair) { 4846 Pair<Boolean, Integer> p = (Pair<Boolean, Integer>) ar.result; 4847 onDataEnabledChanged(p.first, p.second); 4848 } 4849 break; 4850 case EVENT_CHECK_FOR_WIFI_HANDOVER: 4851 if (msg.obj instanceof ImsCall) { 4852 ImsCall imsCall = (ImsCall) msg.obj; 4853 if (imsCall != mForegroundCall.getImsCall()) { 4854 Rlog.i(LOG_TAG, "handoverCheck: no longer FG; check skipped."); 4855 unregisterForConnectivityChanges(); 4856 // Handover check and its not the foreground call any more. 4857 return; 4858 } 4859 if (!mHasAttemptedStartOfCallHandover) { 4860 mHasAttemptedStartOfCallHandover = true; 4861 } 4862 if (!imsCall.isWifiCall()) { 4863 // Call did not handover to wifi, notify of handover failure. 4864 ImsPhoneConnection conn = findConnection(imsCall); 4865 if (conn != null) { 4866 Rlog.i(LOG_TAG, "handoverCheck: handover failed."); 4867 conn.onHandoverToWifiFailed(); 4868 } 4869 4870 if (imsCall.isVideoCall() 4871 && conn.getDisconnectCause() == DisconnectCause.NOT_DISCONNECTED) { 4872 registerForConnectivityChanges(); 4873 } 4874 } 4875 } 4876 break; 4877 case EVENT_ON_FEATURE_CAPABILITY_CHANGED: { 4878 SomeArgs args = (SomeArgs) msg.obj; 4879 try { 4880 ImsFeature.Capabilities capabilities = (ImsFeature.Capabilities) args.arg1; 4881 handleFeatureCapabilityChanged(capabilities); 4882 updateImsRegistrationInfo(); 4883 } finally { 4884 args.recycle(); 4885 } 4886 break; 4887 } 4888 case EVENT_SUPP_SERVICE_INDICATION: { 4889 ar = (AsyncResult) msg.obj; 4890 ImsPhoneMmiCode mmiCode = new ImsPhoneMmiCode(mPhone); 4891 try { 4892 mmiCode.setIsSsInfo(true); 4893 mmiCode.processImsSsData(ar); 4894 } catch (ImsException e) { 4895 Rlog.e(LOG_TAG, "Exception in parsing SS Data: " + e); 4896 } 4897 break; 4898 } 4899 case EVENT_REDIAL_WIFI_E911_CALL: { 4900 Pair<ImsCall, ImsReasonInfo> callInfo = 4901 (Pair<ImsCall, ImsReasonInfo>) ((AsyncResult) msg.obj).userObj; 4902 removeMessages(EVENT_REDIAL_WIFI_E911_TIMEOUT); 4903 mPhone.getDefaultPhone().mCi.unregisterForOn(this); 4904 ImsPhoneConnection oldConnection = findConnection(callInfo.first); 4905 if (oldConnection == null) { 4906 sendCallStartFailedDisconnect(callInfo.first, callInfo.second); 4907 break; 4908 } 4909 mForegroundCall.detach(oldConnection); 4910 removeConnection(oldConnection); 4911 try { 4912 Connection newConnection = 4913 mPhone.getDefaultPhone().dial(mLastDialString, mLastDialArgs); 4914 oldConnection.onOriginalConnectionReplaced(newConnection); 4915 4916 final ImsCall imsCall = mForegroundCall.getImsCall(); 4917 final ImsCallProfile callProfile = imsCall.getCallProfile(); 4918 /* update EXTRA_EMERGENCY_CALL for clients to infer 4919 from this extra that the call is emergency call */ 4920 callProfile.setCallExtraBoolean( 4921 ImsCallProfile.EXTRA_EMERGENCY_CALL, true); 4922 ImsPhoneConnection conn = findConnection(imsCall); 4923 conn.updateExtras(imsCall); 4924 } catch (CallStateException e) { 4925 sendCallStartFailedDisconnect(callInfo.first, callInfo.second); 4926 } 4927 break; 4928 } 4929 case EVENT_REDIAL_WIFI_E911_TIMEOUT: { 4930 Pair<ImsCall, ImsReasonInfo> callInfo = (Pair<ImsCall, ImsReasonInfo>) msg.obj; 4931 mPhone.getDefaultPhone().mCi.unregisterForOn(this); 4932 removeMessages(EVENT_REDIAL_WIFI_E911_CALL); 4933 sendCallStartFailedDisconnect(callInfo.first, callInfo.second); 4934 break; 4935 } 4936 4937 case EVENT_REDIAL_WITHOUT_RTT: { 4938 Pair<ImsCall, ImsReasonInfo> callInfo = (Pair<ImsCall, ImsReasonInfo>) msg.obj; 4939 removeMessages(EVENT_REDIAL_WITHOUT_RTT); 4940 ImsPhoneConnection oldConnection = findConnection(callInfo.first); 4941 if (oldConnection == null) { 4942 sendCallStartFailedDisconnect(callInfo.first, callInfo.second); 4943 break; 4944 } 4945 mForegroundCall.detach(oldConnection); 4946 removeConnection(oldConnection); 4947 try { 4948 mPendingMO = null; 4949 ImsDialArgs newDialArgs = ImsDialArgs.Builder.from(mLastDialArgs) 4950 .setRttTextStream(null) 4951 .setRetryCallFailCause(ImsReasonInfo.CODE_RETRY_ON_IMS_WITHOUT_RTT) 4952 .setRetryCallFailNetworkType( 4953 ServiceState.rilRadioTechnologyToNetworkType( 4954 oldConnection.getCallRadioTech())) 4955 .build(); 4956 4957 Connection newConnection = 4958 mPhone.getDefaultPhone().dial(mLastDialString, newDialArgs); 4959 oldConnection.onOriginalConnectionReplaced(newConnection); 4960 } catch (CallStateException e) { 4961 sendCallStartFailedDisconnect(callInfo.first, callInfo.second); 4962 } 4963 break; 4964 } 4965 4966 case EVENT_START_IMS_TRAFFIC_DONE: // fallthrough 4967 case EVENT_CONNECTION_SETUP_FAILURE: { 4968 ar = (AsyncResult) msg.obj; 4969 // Not-null with EVENT_START_IMS_TRAFFIC_DONE 4970 IImsTrafficSessionCallback callback = (IImsTrafficSessionCallback) ar.userObj; 4971 try { 4972 if (ar.exception == null) { 4973 Object[] result = (Object[]) ar.result; 4974 if (result != null && result.length > 1) { 4975 if (callback == null) { 4976 //EVENT_CONNECTION_SETUP_FAILURE 4977 ImsTrafficSession session = 4978 getImsTrafficSession((int) result[0]); 4979 if (session != null) callback = session.mCallback; 4980 } 4981 if (callback == null) break; 4982 4983 if (result[1] == null) callback.onReady(); 4984 else callback.onError((ConnectionFailureInfo) result[1]); 4985 break; 4986 } 4987 } 4988 if (callback != null) { 4989 callback.onError(new ConnectionFailureInfo(REASON_UNSPECIFIED, 0, -1)); 4990 } 4991 } catch (RemoteException e) { 4992 Rlog.e(LOG_TAG, "Exception: " + e); 4993 } 4994 break; 4995 } 4996 4997 case EVENT_NEW_ACTIVE_CALL_STARTED: { 4998 try { 4999 MediaQualityStatus status = mImsManager 5000 .queryMediaQualityStatus(MediaQualityStatus.MEDIA_SESSION_TYPE_AUDIO); 5001 if (status != null) { 5002 if (mPhone != null && mPhone.mDefaultPhone != null) { 5003 if (DBG) log("notify media quality status: " + status); 5004 mPhone.onMediaQualityStatusChanged(status); 5005 } else { 5006 loge("onMediaQualityStatusChanged: null phone"); 5007 } 5008 } 5009 } catch (ImsException e) { 5010 Rlog.e(LOG_TAG, "Exception in queryMediaQualityStatus: " + e); 5011 } 5012 break; 5013 } 5014 } 5015 } 5016 5017 /** 5018 * Update video call data usage 5019 * 5020 * @param call The IMS call 5021 * @param dataUsage The aggregated data usage for the call 5022 */ 5023 @VisibleForTesting(visibility = PRIVATE) updateVtDataUsage(ImsCall call, long dataUsage)5024 public void updateVtDataUsage(ImsCall call, long dataUsage) { 5025 long oldUsage = 0L; 5026 if (mVtDataUsageMap.containsKey(call.uniqueId)) { 5027 oldUsage = mVtDataUsageMap.get(call.uniqueId); 5028 } 5029 5030 long delta = dataUsage - oldUsage; 5031 mVtDataUsageMap.put(call.uniqueId, dataUsage); 5032 5033 log("updateVtDataUsage: call=" + call + ", delta=" + delta); 5034 5035 long currentTime = SystemClock.elapsedRealtime(); 5036 int isRoaming = mPhone.getServiceState().getDataRoaming() ? 1 : 0; 5037 5038 // Create the snapshot of total video call data usage. 5039 NetworkStats vtDataUsageSnapshot = new NetworkStats(currentTime, 1); 5040 vtDataUsageSnapshot = vtDataUsageSnapshot.add(mVtDataUsageSnapshot); 5041 // Since the modem only reports the total vt data usage rather than rx/tx separately, 5042 // the only thing we can do here is splitting the usage into half rx and half tx. 5043 // Uid -1 indicates this is for the overall device data usage. 5044 mVtDataUsageSnapshot = vtDataUsageSnapshot.addEntry(new NetworkStats.Entry( 5045 getVtInterface(), -1, NetworkStats.SET_FOREGROUND, 5046 NetworkStats.TAG_NONE, NetworkStats.METERED_YES, isRoaming, 5047 NetworkStats.DEFAULT_NETWORK_YES, delta / 2, 0, delta / 2, 0, 0)); 5048 5049 // Create the snapshot of video call data usage per dialer. combineValues will create 5050 // a separate entry if uid is different from the previous snapshot. 5051 NetworkStats vtDataUsageUidSnapshot = new NetworkStats(currentTime, 1); 5052 vtDataUsageUidSnapshot = vtDataUsageUidSnapshot.add(mVtDataUsageUidSnapshot); 5053 5054 // The dialer uid might not be initialized correctly during boot up due to telecom service 5055 // not ready or its default dialer cache not ready. So we double check again here to see if 5056 // default dialer uid is really not available. 5057 if (mDefaultDialerUid.get() == NetworkStats.UID_ALL) { 5058 final TelecomManager telecomManager = 5059 (TelecomManager) mPhone.getContext().getSystemService(Context.TELECOM_SERVICE); 5060 mDefaultDialerUid.set( 5061 getPackageUid(mPhone.getContext(), telecomManager.getDefaultDialerPackage())); 5062 } 5063 5064 // Since the modem only reports the total vt data usage rather than rx/tx separately, 5065 // the only thing we can do here is splitting the usage into half rx and half tx. 5066 mVtDataUsageUidSnapshot = vtDataUsageUidSnapshot.addEntry(new NetworkStats.Entry( 5067 getVtInterface(), mDefaultDialerUid.get(), 5068 NetworkStats.SET_FOREGROUND, NetworkStats.TAG_NONE, NetworkStats.METERED_YES, 5069 isRoaming, NetworkStats.DEFAULT_NETWORK_YES, delta / 2, 0, delta / 2, 0, 0)); 5070 } 5071 5072 @VisibleForTesting(visibility = PRIVATE) getVtInterface()5073 public String getVtInterface() { 5074 return NetworkStats.IFACE_VT + mPhone.getSubId(); 5075 } 5076 5077 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 5078 @Override log(String msg)5079 protected void log(String msg) { 5080 Rlog.d(LOG_TAG, "[" + mPhone.getPhoneId() + "] " + msg); 5081 } 5082 5083 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) loge(String msg)5084 protected void loge(String msg) { 5085 Rlog.e(LOG_TAG, "[" + mPhone.getPhoneId() + "] " + msg); 5086 } 5087 logw(String msg)5088 void logw(String msg) { 5089 Rlog.w(LOG_TAG, "[" + mPhone.getPhoneId() + "] " + msg); 5090 } 5091 logi(String msg)5092 void logi(String msg) { 5093 Rlog.i(LOG_TAG, "[" + mPhone.getPhoneId() + "] " + msg); 5094 } 5095 logHoldSwapState(String loc)5096 void logHoldSwapState(String loc) { 5097 String holdSwapState = "???"; 5098 switch (mHoldSwitchingState) { 5099 case INACTIVE: 5100 holdSwapState = "INACTIVE"; 5101 break; 5102 case PENDING_SINGLE_CALL_HOLD: 5103 holdSwapState = "PENDING_SINGLE_CALL_HOLD"; 5104 break; 5105 case PENDING_SINGLE_CALL_UNHOLD: 5106 holdSwapState = "PENDING_SINGLE_CALL_UNHOLD"; 5107 break; 5108 case SWAPPING_ACTIVE_AND_HELD: 5109 holdSwapState = "SWAPPING_ACTIVE_AND_HELD"; 5110 break; 5111 case HOLDING_TO_ANSWER_INCOMING: 5112 holdSwapState = "HOLDING_TO_ANSWER_INCOMING"; 5113 break; 5114 case PENDING_RESUME_FOREGROUND_AFTER_FAILURE: 5115 holdSwapState = "PENDING_RESUME_FOREGROUND_AFTER_FAILURE"; 5116 break; 5117 case HOLDING_TO_DIAL_OUTGOING: 5118 holdSwapState = "HOLDING_TO_DIAL_OUTGOING"; 5119 break; 5120 case PENDING_RESUME_FOREGROUND_AFTER_HOLD: 5121 holdSwapState = "PENDING_RESUME_FOREGROUND_AFTER_HOLD"; 5122 break; 5123 } 5124 logi("holdSwapState set to " + holdSwapState + " at " + loc); 5125 } 5126 5127 /** 5128 * Logs the current state of the ImsPhoneCallTracker. Useful for debugging issues with 5129 * call tracking. 5130 */ 5131 /* package */ logState()5132 void logState() { 5133 if (!VERBOSE_STATE_LOGGING) { 5134 return; 5135 } 5136 5137 StringBuilder sb = new StringBuilder(); 5138 sb.append("Current IMS PhoneCall State:\n"); 5139 sb.append(" Foreground: "); 5140 sb.append(mForegroundCall); 5141 sb.append("\n"); 5142 sb.append(" Background: "); 5143 sb.append(mBackgroundCall); 5144 sb.append("\n"); 5145 sb.append(" Ringing: "); 5146 sb.append(mRingingCall); 5147 sb.append("\n"); 5148 sb.append(" Handover: "); 5149 sb.append(mHandoverCall); 5150 sb.append("\n"); 5151 Rlog.v(LOG_TAG, sb.toString()); 5152 } 5153 5154 @Override dump(FileDescriptor fd, PrintWriter printWriter, String[] args)5155 public void dump(FileDescriptor fd, PrintWriter printWriter, String[] args) { 5156 IndentingPrintWriter pw = new IndentingPrintWriter(printWriter, " "); 5157 pw.println("ImsPhoneCallTracker extends:"); 5158 pw.increaseIndent(); 5159 super.dump(fd, pw, args); 5160 pw.decreaseIndent(); 5161 pw.println(" mVoiceCallEndedRegistrants=" + mVoiceCallEndedRegistrants); 5162 pw.println(" mVoiceCallStartedRegistrants=" + mVoiceCallStartedRegistrants); 5163 pw.println(" mRingingCall=" + mRingingCall); 5164 pw.println(" mForegroundCall=" + mForegroundCall); 5165 pw.println(" mBackgroundCall=" + mBackgroundCall); 5166 pw.println(" mHandoverCall=" + mHandoverCall); 5167 pw.println(" mPendingMO=" + mPendingMO); 5168 pw.println(" mPhone=" + mPhone); 5169 pw.println(" mDesiredMute=" + mDesiredMute); 5170 pw.println(" mState=" + mState); 5171 pw.println(" mMmTelCapabilities=" + mMmTelCapabilities); 5172 pw.println(" mDefaultDialerUid=" + mDefaultDialerUid.get()); 5173 pw.println(" mVtDataUsageSnapshot=" + mVtDataUsageSnapshot); 5174 pw.println(" mVtDataUsageUidSnapshot=" + mVtDataUsageUidSnapshot); 5175 pw.println(" mCallQualityMetrics=" + mCallQualityMetrics); 5176 pw.println(" mCallQualityMetricsHistory=" + mCallQualityMetricsHistory); 5177 pw.println(" mIsConferenceEventPackageHandlingEnabled=" + mIsConferenceEventPackageEnabled); 5178 pw.println(" mSupportCepOnPeer=" + mSupportCepOnPeer); 5179 if (mConfig != null) { 5180 pw.print(" isDeviceToDeviceCommsSupported= " + mConfig.isD2DCommunicationSupported); 5181 pw.println("(forceEnabled=" + mDeviceToDeviceForceEnabled + ")"); 5182 if (mConfig.isD2DCommunicationSupported) { 5183 pw.println(" mSupportD2DUsingRtp= " + mSupportD2DUsingRtp); 5184 pw.println(" mSupportSdpForRtpHeaderExtensions= " 5185 + mSupportSdpForRtpHeaderExtensions); 5186 } 5187 } 5188 pw.println(" mSrvccTypeSupported=" + mSrvccTypeSupported); 5189 pw.println(" Event Log:"); 5190 pw.increaseIndent(); 5191 mOperationLocalLog.dump(pw); 5192 pw.decreaseIndent(); 5193 pw.flush(); 5194 pw.println("++++++++++++++++++++++++++++++++"); 5195 5196 try { 5197 if (mImsManager != null) { 5198 mImsManager.dump(fd, pw, args); 5199 } 5200 } catch (Exception e) { 5201 e.printStackTrace(); 5202 } 5203 5204 if (mConnections != null && mConnections.size() > 0) { 5205 pw.println("mConnections:"); 5206 for (int i = 0; i < mConnections.size(); i++) { 5207 pw.println(" [" + i + "]: " + mConnections.get(i)); 5208 } 5209 } 5210 } 5211 5212 @Override handlePollCalls(AsyncResult ar)5213 protected void handlePollCalls(AsyncResult ar) { 5214 } 5215 5216 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) 5217 /* package */ getEcbmInterface()5218 ImsEcbm getEcbmInterface() throws ImsException { 5219 if (mImsManager == null) { 5220 throw getImsManagerIsNullException(); 5221 } 5222 5223 ImsEcbm ecbm = mImsManager.getEcbmInterface(); 5224 return ecbm; 5225 } 5226 isInEmergencyCall()5227 public boolean isInEmergencyCall() { 5228 return mIsInEmergencyCall; 5229 } 5230 5231 /** 5232 * Contacts the ImsService directly for capability information. May be slow. 5233 * @return true if the IMS capability for the specified registration technology is currently 5234 * available. 5235 */ isImsCapabilityAvailable(int capability, int regTech)5236 public boolean isImsCapabilityAvailable(int capability, int regTech) throws ImsException { 5237 if (mImsManager != null) { 5238 return mImsManager.queryMmTelCapabilityStatus(capability, regTech); 5239 } else { 5240 return false; 5241 } 5242 } 5243 5244 /** 5245 * @return {@code true} if voice over cellular is enabled. 5246 */ isVoiceOverCellularImsEnabled()5247 public boolean isVoiceOverCellularImsEnabled() { 5248 return isImsCapabilityInCacheAvailable(MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VOICE, 5249 ImsRegistrationImplBase.REGISTRATION_TECH_LTE) 5250 || isImsCapabilityInCacheAvailable( 5251 MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VOICE, 5252 ImsRegistrationImplBase.REGISTRATION_TECH_NR); 5253 } 5254 isVowifiEnabled()5255 public boolean isVowifiEnabled() { 5256 return isImsCapabilityInCacheAvailable(MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VOICE, 5257 ImsRegistrationImplBase.REGISTRATION_TECH_IWLAN) 5258 || isImsCapabilityInCacheAvailable( 5259 MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VOICE, 5260 ImsRegistrationImplBase.REGISTRATION_TECH_CROSS_SIM); 5261 } 5262 isVideoCallEnabled()5263 public boolean isVideoCallEnabled() { 5264 // Currently no reliance on transport technology. 5265 return mMmTelCapabilities.isCapable(MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VIDEO); 5266 } 5267 isImsCapabilityInCacheAvailable(int capability, int regTech)5268 private boolean isImsCapabilityInCacheAvailable(int capability, int regTech) { 5269 return (getImsRegistrationTech() == regTech) && mMmTelCapabilities.isCapable(capability); 5270 } 5271 5272 @Override getState()5273 public PhoneConstants.State getState() { 5274 return mState; 5275 } 5276 getImsRegistrationTech()5277 public int getImsRegistrationTech() { 5278 if (mImsManager != null) { 5279 return mImsManager.getRegistrationTech(); 5280 } 5281 return ImsRegistrationImplBase.REGISTRATION_TECH_NONE; 5282 } 5283 5284 /** 5285 * Asynchronously gets the IMS registration technology for MMTEL. 5286 */ getImsRegistrationTech(Consumer<Integer> callback)5287 public void getImsRegistrationTech(Consumer<Integer> callback) { 5288 if (mImsManager != null) { 5289 mImsManager.getRegistrationTech(callback); 5290 } else { 5291 callback.accept(ImsRegistrationImplBase.REGISTRATION_TECH_NONE); 5292 } 5293 } 5294 5295 @UnsupportedAppUsage(maxTargetSdk = Build.VERSION_CODES.R, trackingBug = 170729553) setVideoCallProvider(ImsPhoneConnection conn, ImsCall imsCall)5296 private void setVideoCallProvider(ImsPhoneConnection conn, ImsCall imsCall) 5297 throws RemoteException { 5298 IImsVideoCallProvider imsVideoCallProvider = 5299 imsCall.getCallSession().getVideoCallProvider(); 5300 if (imsVideoCallProvider != null) { 5301 // TODO: Remove this when we can better formalize the format of session modify requests. 5302 boolean useVideoPauseWorkaround = mPhone.getContext().getResources().getBoolean( 5303 com.android.internal.R.bool.config_useVideoPauseWorkaround); 5304 5305 ImsVideoCallProviderWrapper imsVideoCallProviderWrapper = 5306 new ImsVideoCallProviderWrapper(imsVideoCallProvider); 5307 if (useVideoPauseWorkaround) { 5308 imsVideoCallProviderWrapper.setUseVideoPauseWorkaround(useVideoPauseWorkaround); 5309 } 5310 conn.setVideoProvider(imsVideoCallProviderWrapper); 5311 imsVideoCallProviderWrapper.registerForDataUsageUpdate 5312 (this, EVENT_VT_DATA_USAGE_UPDATE, imsCall); 5313 imsVideoCallProviderWrapper.addImsVideoProviderCallback(conn); 5314 } 5315 } 5316 isUtEnabled()5317 public boolean isUtEnabled() { 5318 // Currently no reliance on transport technology 5319 return mMmTelCapabilities.isCapable(MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_UT); 5320 } 5321 5322 /** 5323 * 5324 * @param subId The subId to get the carrier config for. 5325 * @return The PersistableBundle containing the carrier config from 5326 * {@link CarrierConfigManager} for the subId specified. 5327 */ getCarrierConfigBundle(int subId)5328 private PersistableBundle getCarrierConfigBundle(int subId) { 5329 CarrierConfigManager carrierConfigManager = (CarrierConfigManager) 5330 mPhone.getContext().getSystemService(Context.CARRIER_CONFIG_SERVICE); 5331 if (carrierConfigManager == null) { 5332 loge("getCarrierConfigBundle: No carrier config service found"); 5333 return null; 5334 } 5335 PersistableBundle carrierConfig = carrierConfigManager.getConfigForSubId(subId); 5336 if (carrierConfig == null) { 5337 loge("getCarrierConfigBundle: carrier config is null, skipping."); 5338 return null; 5339 } 5340 return carrierConfig; 5341 } 5342 5343 /** 5344 * Given a call subject, removes any characters considered by the current carrier to be 5345 * invalid, as well as escaping (using \) any characters which the carrier requires to be 5346 * escaped. 5347 * 5348 * @param callSubject The call subject. 5349 * @return The call subject with invalid characters removed and escaping applied as required. 5350 */ cleanseInstantLetteringMessage(String callSubject)5351 private String cleanseInstantLetteringMessage(String callSubject) { 5352 if (TextUtils.isEmpty(callSubject)) { 5353 return callSubject; 5354 } 5355 5356 PersistableBundle carrierConfig = getCarrierConfigBundle(mPhone.getSubId()); 5357 // Bail if no carrier config found. 5358 if (carrierConfig == null) { 5359 return callSubject; 5360 } 5361 5362 // Try to replace invalid characters 5363 String invalidCharacters = carrierConfig.getString( 5364 CarrierConfigManager.KEY_CARRIER_INSTANT_LETTERING_INVALID_CHARS_STRING); 5365 if (!TextUtils.isEmpty(invalidCharacters)) { 5366 callSubject = callSubject.replaceAll(invalidCharacters, ""); 5367 } 5368 5369 // Try to escape characters which need to be escaped. 5370 String escapedCharacters = carrierConfig.getString( 5371 CarrierConfigManager.KEY_CARRIER_INSTANT_LETTERING_ESCAPED_CHARS_STRING); 5372 if (!TextUtils.isEmpty(escapedCharacters)) { 5373 callSubject = escapeChars(escapedCharacters, callSubject); 5374 } 5375 return callSubject; 5376 } 5377 5378 /** 5379 * Given a source string, return a string where a set of characters are escaped using the 5380 * backslash character. 5381 * 5382 * @param toEscape The characters to escape with a backslash. 5383 * @param source The source string. 5384 * @return The source string with characters escaped. 5385 */ escapeChars(String toEscape, String source)5386 private String escapeChars(String toEscape, String source) { 5387 StringBuilder escaped = new StringBuilder(); 5388 for (char c : source.toCharArray()) { 5389 if (toEscape.contains(Character.toString(c))) { 5390 escaped.append("\\"); 5391 } 5392 escaped.append(c); 5393 } 5394 5395 return escaped.toString(); 5396 } 5397 5398 /** 5399 * Initiates a pull of an external call. 5400 * 5401 * Initiates a pull by making a dial request with the {@link ImsCallProfile#EXTRA_IS_CALL_PULL} 5402 * extra specified. We call {@link ImsPhone#notifyUnknownConnection(Connection)} which notifies 5403 * Telecom of the new dialed connection. The 5404 * {@code PstnIncomingCallNotifier#maybeSwapWithUnknownConnection} logic ensures that the new 5405 * {@link ImsPhoneConnection} resulting from the dial gets swapped with the 5406 * {@link ImsExternalConnection}, which effectively makes the external call become a regular 5407 * call. Magic! 5408 * 5409 * @param number The phone number of the call to be pulled. 5410 * @param videoState The desired video state of the pulled call. 5411 * @param dialogId The {@link ImsExternalConnection#getCallId()} dialog id associated with the 5412 * call which is being pulled. 5413 */ 5414 @Override pullExternalCall(String number, int videoState, int dialogId)5415 public void pullExternalCall(String number, int videoState, int dialogId) { 5416 Bundle extras = new Bundle(); 5417 extras.putBoolean(ImsCallProfile.EXTRA_IS_CALL_PULL, true); 5418 extras.putInt(ImsExternalCallTracker.EXTRA_IMS_EXTERNAL_CALL_ID, dialogId); 5419 try { 5420 Connection connection = dial(number, videoState, extras); 5421 mPhone.notifyUnknownConnection(connection); 5422 } catch (CallStateException e) { 5423 loge("pullExternalCall failed - " + e); 5424 } 5425 } 5426 getImsManagerIsNullException()5427 private ImsException getImsManagerIsNullException() { 5428 return new ImsException("no ims manager", ImsReasonInfo.CODE_LOCAL_ILLEGAL_STATE); 5429 } 5430 5431 /** 5432 * Determines if answering an incoming call will cause the active call to be disconnected. 5433 * <p> 5434 * This will be the case if 5435 * {@link CarrierConfigManager#KEY_DROP_VIDEO_CALL_WHEN_ANSWERING_AUDIO_CALL_BOOL} is 5436 * {@code true} for the carrier, the active call is a video call over WIFI, and the incoming 5437 * call is an audio call. 5438 * 5439 * @param activeCall The active call. 5440 * @param incomingCall The incoming call. 5441 * @return {@code true} if answering the incoming call will cause the active call to be 5442 * disconnected, {@code false} otherwise. 5443 */ shouldDisconnectActiveCallOnAnswer(ImsCall activeCall, ImsCall incomingCall)5444 private boolean shouldDisconnectActiveCallOnAnswer(ImsCall activeCall, 5445 ImsCall incomingCall) { 5446 5447 if (activeCall == null || incomingCall == null) { 5448 return false; 5449 } 5450 5451 if (!mDropVideoCallWhenAnsweringAudioCall) { 5452 return false; 5453 } 5454 5455 boolean isActiveCallVideo = activeCall.isVideoCall() || 5456 (mTreatDowngradedVideoCallsAsVideoCalls && activeCall.wasVideoCall()); 5457 boolean isActiveCallOnWifi = activeCall.isWifiCall(); 5458 boolean isVoWifiEnabled = mImsManager.isWfcEnabledByPlatform() 5459 && mImsManager.isWfcEnabledByUser(); 5460 boolean isIncomingCallAudio = !incomingCall.isVideoCall(); 5461 log("shouldDisconnectActiveCallOnAnswer : isActiveCallVideo=" + isActiveCallVideo + 5462 " isActiveCallOnWifi=" + isActiveCallOnWifi + " isIncomingCallAudio=" + 5463 isIncomingCallAudio + " isVowifiEnabled=" + isVoWifiEnabled); 5464 5465 return isActiveCallVideo && isActiveCallOnWifi && isIncomingCallAudio && !isVoWifiEnabled; 5466 } 5467 registerPhoneStateListener(PhoneStateListener listener)5468 public void registerPhoneStateListener(PhoneStateListener listener) { 5469 mPhoneStateListeners.add(listener); 5470 } 5471 unregisterPhoneStateListener(PhoneStateListener listener)5472 public void unregisterPhoneStateListener(PhoneStateListener listener) { 5473 mPhoneStateListeners.remove(listener); 5474 } 5475 5476 /** 5477 * Notifies local telephony listeners of changes to the IMS phone state. 5478 * 5479 * @param oldState The old state. 5480 * @param newState The new state. 5481 */ notifyPhoneStateChanged(PhoneConstants.State oldState, PhoneConstants.State newState)5482 private void notifyPhoneStateChanged(PhoneConstants.State oldState, 5483 PhoneConstants.State newState) { 5484 5485 for (PhoneStateListener listener : mPhoneStateListeners) { 5486 listener.onPhoneStateChanged(oldState, newState); 5487 } 5488 } 5489 5490 /** Modify video call to a new video state. 5491 * 5492 * @param imsCall IMS call to be modified 5493 * @param newVideoState New video state. (Refer to VideoProfile) 5494 */ modifyVideoCall(ImsCall imsCall, int newVideoState)5495 private void modifyVideoCall(ImsCall imsCall, int newVideoState) { 5496 ImsPhoneConnection conn = findConnection(imsCall); 5497 if (conn != null) { 5498 int oldVideoState = conn.getVideoState(); 5499 if (conn.getVideoProvider() != null) { 5500 conn.getVideoProvider().onSendSessionModifyRequest( 5501 new VideoProfile(oldVideoState), new VideoProfile(newVideoState)); 5502 } 5503 } 5504 } 5505 isViLteDataMetered()5506 public boolean isViLteDataMetered() { 5507 return mIsViLteDataMetered; 5508 } 5509 5510 /** 5511 * Handler of data enabled changed event 5512 * @param enabled True if data is enabled, otherwise disabled. 5513 * @param reason Reason for data enabled/disabled. 5514 */ onDataEnabledChanged(boolean enabled, @DataEnabledChangedReason int reason)5515 private void onDataEnabledChanged(boolean enabled, @DataEnabledChangedReason int reason) { 5516 log("onDataEnabledChanged: enabled=" + enabled + ", reason=" + reason); 5517 5518 mIsDataEnabled = enabled; 5519 5520 if (!mIsViLteDataMetered) { 5521 log("Ignore data " + ((enabled) ? "enabled" : "disabled") + " - carrier policy " 5522 + "indicates that data is not metered for ViLTE calls."); 5523 return; 5524 } 5525 5526 // Inform connections that data has been disabled to ensure we turn off video capability 5527 // if this is an LTE call. 5528 for (ImsPhoneConnection conn : mConnections) { 5529 ImsCall imsCall = conn.getImsCall(); 5530 boolean isLocalVideoCapable = enabled || (imsCall != null && imsCall.isWifiCall()); 5531 conn.setLocalVideoCapable(isLocalVideoCapable); 5532 } 5533 5534 int reasonCode; 5535 if (reason == TelephonyManager.DATA_ENABLED_REASON_POLICY) { 5536 reasonCode = ImsReasonInfo.CODE_DATA_LIMIT_REACHED; 5537 } else if (reason == TelephonyManager.DATA_ENABLED_REASON_USER) { 5538 reasonCode = ImsReasonInfo.CODE_DATA_DISABLED; 5539 } else { 5540 // Unexpected code, default to data disabled. 5541 reasonCode = ImsReasonInfo.CODE_DATA_DISABLED; 5542 } 5543 5544 // Potentially send connection events so the InCall UI knows that video calls are being 5545 // downgraded due to data being enabled/disabled. 5546 maybeNotifyDataDisabled(enabled, reasonCode); 5547 // Handle video state changes required as a result of data being enabled/disabled. 5548 handleDataEnabledChange(enabled, reasonCode); 5549 5550 // We do not want to update the ImsConfig for REASON_UNKNOWN, since it can happen before 5551 // the carrier config has loaded and will deregister IMS. 5552 if (!mShouldUpdateImsConfigOnDisconnect 5553 && reason != TelephonyManager.DATA_ENABLED_REASON_UNKNOWN 5554 && mCarrierConfigLoadedForSubscription) { 5555 // This will call into updateVideoCallFeatureValue and eventually all clients will be 5556 // asynchronously notified that the availability of VT over LTE has changed. 5557 updateImsServiceConfig(); 5558 } 5559 } 5560 5561 /** 5562 * If the ImsService is currently connected and we have loaded the carrier config, proceed to 5563 * trigger the update of the configuration sent to the ImsService. 5564 */ updateImsServiceConfig()5565 private void updateImsServiceConfig() { 5566 if (mImsManager != null && mCarrierConfigLoadedForSubscription) { 5567 mImsManager.updateImsServiceConfig(); 5568 } 5569 } 5570 maybeNotifyDataDisabled(boolean enabled, int reasonCode)5571 private void maybeNotifyDataDisabled(boolean enabled, int reasonCode) { 5572 if (!enabled) { 5573 // If data is disabled while there are ongoing VT calls which are not taking place over 5574 // wifi, then they should be disconnected to prevent the user from incurring further 5575 // data charges. 5576 for (ImsPhoneConnection conn : mConnections) { 5577 ImsCall imsCall = conn.getImsCall(); 5578 if (imsCall != null && imsCall.isVideoCall() && !imsCall.isWifiCall()) { 5579 if (conn.hasCapabilities( 5580 Connection.Capability.SUPPORTS_DOWNGRADE_TO_VOICE_LOCAL | 5581 Connection.Capability.SUPPORTS_DOWNGRADE_TO_VOICE_REMOTE)) { 5582 5583 // If the carrier supports downgrading to voice, then we can simply issue a 5584 // downgrade to voice instead of terminating the call. 5585 if (reasonCode == ImsReasonInfo.CODE_DATA_DISABLED) { 5586 conn.onConnectionEvent(TelephonyManager.EVENT_DOWNGRADE_DATA_DISABLED, 5587 null); 5588 } else if (reasonCode == ImsReasonInfo.CODE_DATA_LIMIT_REACHED) { 5589 conn.onConnectionEvent( 5590 TelephonyManager.EVENT_DOWNGRADE_DATA_LIMIT_REACHED, null); 5591 } 5592 } 5593 } 5594 } 5595 } 5596 } 5597 5598 /** 5599 * Handles changes to the enabled state of mobile data. 5600 * When data is disabled, handles auto-downgrade of video calls over LTE. 5601 * When data is enabled, handled resuming of video calls paused when data was disabled. 5602 * @param enabled {@code true} if mobile data is enabled, {@code false} if mobile data is 5603 * disabled. 5604 * @param reasonCode The {@link ImsReasonInfo} code for the data enabled state change. 5605 */ handleDataEnabledChange(boolean enabled, int reasonCode)5606 private void handleDataEnabledChange(boolean enabled, int reasonCode) { 5607 if (!enabled) { 5608 // If data is disabled while there are ongoing VT calls which are not taking place over 5609 // wifi, then they should be disconnected to prevent the user from incurring further 5610 // data charges. 5611 for (ImsPhoneConnection conn : mConnections) { 5612 ImsCall imsCall = conn.getImsCall(); 5613 if (imsCall != null && imsCall.isVideoCall() && !imsCall.isWifiCall()) { 5614 log("handleDataEnabledChange - downgrading " + conn); 5615 downgradeVideoCall(reasonCode, conn); 5616 } 5617 } 5618 } else if (mSupportPauseVideo) { 5619 // Data was re-enabled, so un-pause previously paused video calls. 5620 for (ImsPhoneConnection conn : mConnections) { 5621 // If video is paused, check to see if there are any pending pauses due to enabled 5622 // state of data changing. 5623 log("handleDataEnabledChange - resuming " + conn); 5624 if (VideoProfile.isPaused(conn.getVideoState()) && 5625 conn.wasVideoPausedFromSource(VideoPauseTracker.SOURCE_DATA_ENABLED)) { 5626 // The data enabled state was a cause of a pending pause, so potentially 5627 // resume the video now. 5628 conn.resumeVideo(VideoPauseTracker.SOURCE_DATA_ENABLED); 5629 } 5630 } 5631 mShouldUpdateImsConfigOnDisconnect = false; 5632 } 5633 } 5634 5635 /** 5636 * Handles downgrading a video call. The behavior depends on carrier capabilities; we will 5637 * attempt to take one of the following actions (in order of precedence): 5638 * 1. If supported by the carrier, the call will be downgraded to an audio-only call. 5639 * 2. If the carrier supports video pause signalling, the video will be paused. 5640 * 3. The call will be disconnected. 5641 * @param reasonCode The {@link ImsReasonInfo} reason code for the downgrade. 5642 * @param conn The {@link ImsPhoneConnection} to downgrade. 5643 */ downgradeVideoCall(int reasonCode, ImsPhoneConnection conn)5644 private void downgradeVideoCall(int reasonCode, ImsPhoneConnection conn) { 5645 ImsCall imsCall = conn.getImsCall(); 5646 if (imsCall != null) { 5647 if (conn.hasCapabilities( 5648 Connection.Capability.SUPPORTS_DOWNGRADE_TO_VOICE_LOCAL | 5649 Connection.Capability.SUPPORTS_DOWNGRADE_TO_VOICE_REMOTE) 5650 && !mSupportPauseVideo) { 5651 log("downgradeVideoCall :: callId=" + conn.getTelecomCallId() 5652 + " Downgrade to audio"); 5653 // If the carrier supports downgrading to voice, then we can simply issue a 5654 // downgrade to voice instead of terminating the call. 5655 modifyVideoCall(imsCall, VideoProfile.STATE_AUDIO_ONLY); 5656 } else if (mSupportPauseVideo && reasonCode != ImsReasonInfo.CODE_WIFI_LOST) { 5657 // The carrier supports video pause signalling, so pause the video if we didn't just 5658 // lose wifi; in that case just disconnect. 5659 log("downgradeVideoCall :: callId=" + conn.getTelecomCallId() 5660 + " Pause audio"); 5661 mShouldUpdateImsConfigOnDisconnect = true; 5662 conn.pauseVideo(VideoPauseTracker.SOURCE_DATA_ENABLED); 5663 } else { 5664 log("downgradeVideoCall :: callId=" + conn.getTelecomCallId() 5665 + " Disconnect call."); 5666 // At this point the only choice we have is to terminate the call. 5667 imsCall.terminate(ImsReasonInfo.CODE_USER_TERMINATED, reasonCode); 5668 } 5669 } 5670 } 5671 resetImsCapabilities()5672 private void resetImsCapabilities() { 5673 log("Resetting Capabilities..."); 5674 boolean tmpIsVideoCallEnabled = isVideoCallEnabled(); 5675 mMmTelCapabilities = new MmTelFeature.MmTelCapabilities(); 5676 mPhone.setServiceState(ServiceState.STATE_OUT_OF_SERVICE); 5677 mPhone.resetImsRegistrationState(); 5678 mPhone.processDisconnectReason(new ImsReasonInfo(ImsReasonInfo.CODE_LOCAL_IMS_SERVICE_DOWN, 5679 ImsReasonInfo.CODE_UNSPECIFIED)); 5680 boolean isVideoEnabled = isVideoCallEnabled(); 5681 if (tmpIsVideoCallEnabled != isVideoEnabled) { 5682 mPhone.notifyForVideoCapabilityChanged(isVideoEnabled); 5683 } 5684 } 5685 5686 /** 5687 * @return {@code true} if the device is connected to a WIFI network, {@code false} otherwise. 5688 */ isWifiConnected()5689 private boolean isWifiConnected() { 5690 ConnectivityManager cm = (ConnectivityManager) mPhone.getContext() 5691 .getSystemService(Context.CONNECTIVITY_SERVICE); 5692 if (cm != null) { 5693 NetworkInfo ni = cm.getActiveNetworkInfo(); 5694 if (ni != null && ni.isConnected()) { 5695 return ni.getType() == ConnectivityManager.TYPE_WIFI; 5696 } 5697 } 5698 return false; 5699 } 5700 5701 /** 5702 * Registers for changes to network connectivity. Specifically requests the availability of new 5703 * WIFI networks which an IMS video call could potentially hand over to. 5704 */ registerForConnectivityChanges()5705 private void registerForConnectivityChanges() { 5706 if (mIsMonitoringConnectivity || !mNotifyVtHandoverToWifiFail) { 5707 return; 5708 } 5709 ConnectivityManager cm = (ConnectivityManager) mPhone.getContext() 5710 .getSystemService(Context.CONNECTIVITY_SERVICE); 5711 if (cm != null) { 5712 Rlog.i(LOG_TAG, "registerForConnectivityChanges"); 5713 NetworkRequest.Builder builder = new NetworkRequest.Builder(); 5714 builder.addTransportType(NetworkCapabilities.TRANSPORT_WIFI); 5715 cm.registerNetworkCallback(builder.build(), mNetworkCallback); 5716 mIsMonitoringConnectivity = true; 5717 } 5718 } 5719 5720 /** 5721 * Unregister for connectivity changes. Will be called when a call disconnects or if the call 5722 * ends up handing over to WIFI. 5723 */ unregisterForConnectivityChanges()5724 private void unregisterForConnectivityChanges() { 5725 if (!mIsMonitoringConnectivity || !mNotifyVtHandoverToWifiFail) { 5726 return; 5727 } 5728 ConnectivityManager cm = (ConnectivityManager) mPhone.getContext() 5729 .getSystemService(Context.CONNECTIVITY_SERVICE); 5730 if (cm != null) { 5731 Rlog.i(LOG_TAG, "unregisterForConnectivityChanges"); 5732 cm.unregisterNetworkCallback(mNetworkCallback); 5733 mIsMonitoringConnectivity = false; 5734 } 5735 } 5736 5737 /** 5738 * If the foreground call is a video call, schedule a handover check if one is not already 5739 * scheduled. This method is intended ONLY for use when scheduling to watch for mid-call 5740 * handovers. 5741 */ scheduleHandoverCheck()5742 private void scheduleHandoverCheck() { 5743 ImsCall fgCall = mForegroundCall.getImsCall(); 5744 ImsPhoneConnection conn = mForegroundCall.getFirstConnection(); 5745 if (!mNotifyVtHandoverToWifiFail || fgCall == null || !fgCall.isVideoCall() || conn == null 5746 || conn.getDisconnectCause() != DisconnectCause.NOT_DISCONNECTED) { 5747 return; 5748 } 5749 5750 if (!hasMessages(EVENT_CHECK_FOR_WIFI_HANDOVER)) { 5751 Rlog.i(LOG_TAG, "scheduleHandoverCheck: schedule"); 5752 sendMessageDelayed(obtainMessage(EVENT_CHECK_FOR_WIFI_HANDOVER, fgCall), 5753 HANDOVER_TO_WIFI_TIMEOUT_MS); 5754 } 5755 } 5756 5757 /** 5758 * @return {@code true} if downgrading of a video call to audio is supported. 5759 */ isCarrierDowngradeOfVtCallSupported()5760 public boolean isCarrierDowngradeOfVtCallSupported() { 5761 return mSupportDowngradeVtToAudio; 5762 } 5763 5764 @VisibleForTesting setDataEnabled(boolean isDataEnabled)5765 public void setDataEnabled(boolean isDataEnabled) { 5766 mIsDataEnabled = isDataEnabled; 5767 } 5768 5769 // Removes old call quality metrics if mCallQualityMetricsHistory exceeds its max size pruneCallQualityMetricsHistory()5770 private void pruneCallQualityMetricsHistory() { 5771 if (mCallQualityMetricsHistory.size() > MAX_CALL_QUALITY_HISTORY) { 5772 mCallQualityMetricsHistory.poll(); 5773 } 5774 } 5775 handleFeatureCapabilityChanged(ImsFeature.Capabilities capabilities)5776 private void handleFeatureCapabilityChanged(ImsFeature.Capabilities capabilities) { 5777 boolean tmpIsVideoCallEnabled = isVideoCallEnabled(); 5778 // Check enabledFeatures to determine capabilities. We ignore disabledFeatures. 5779 StringBuilder sb; 5780 if (DBG) { 5781 sb = new StringBuilder(120); 5782 sb.append("handleFeatureCapabilityChanged: "); 5783 } 5784 sb.append(capabilities); 5785 mMmTelCapabilities = new MmTelFeature.MmTelCapabilities(capabilities); 5786 5787 boolean isVideoEnabled = isVideoCallEnabled(); 5788 boolean isVideoEnabledStatechanged = tmpIsVideoCallEnabled != isVideoEnabled; 5789 if (DBG) { 5790 sb.append(" isVideoEnabledStateChanged="); 5791 sb.append(isVideoEnabledStatechanged); 5792 } 5793 5794 if (isVideoEnabledStatechanged) { 5795 log("handleFeatureCapabilityChanged - notifyForVideoCapabilityChanged=" 5796 + isVideoEnabled); 5797 mPhone.notifyForVideoCapabilityChanged(isVideoEnabled); 5798 } 5799 5800 if (DBG) log(sb.toString()); 5801 5802 String logMessage = "handleFeatureCapabilityChanged: isVolteEnabled=" 5803 + isVoiceOverCellularImsEnabled() 5804 + ", isVideoCallEnabled=" + isVideoCallEnabled() 5805 + ", isVowifiEnabled=" + isVowifiEnabled() 5806 + ", isUtEnabled=" + isUtEnabled(); 5807 if (DBG) { 5808 log(logMessage); 5809 } 5810 mRegLocalLog.log(logMessage); 5811 5812 mPhone.onFeatureCapabilityChanged(); 5813 5814 int regTech = getImsRegistrationTech(); 5815 mMetrics.writeOnImsCapabilities(mPhone.getPhoneId(), regTech, mMmTelCapabilities); 5816 mPhone.getImsStats().onImsCapabilitiesChanged(regTech, mMmTelCapabilities); 5817 } 5818 5819 @VisibleForTesting onCallHoldReceived(ImsCall imsCall)5820 public void onCallHoldReceived(ImsCall imsCall) { 5821 if (DBG) log("onCallHoldReceived"); 5822 5823 ImsPhoneConnection conn = findConnection(imsCall); 5824 if (conn != null) { 5825 if (!mOnHoldToneStarted && (ImsPhoneCall.isLocalTone(imsCall) 5826 || mAlwaysPlayRemoteHoldTone) && 5827 conn.getState() == ImsPhoneCall.State.ACTIVE) { 5828 mPhone.startOnHoldTone(conn); 5829 mOnHoldToneStarted = true; 5830 mOnHoldToneId = System.identityHashCode(conn); 5831 } 5832 conn.setRemotelyHeld(); 5833 mImsCallInfoTracker.updateImsCallStatus(conn, true, false); 5834 5835 boolean useVideoPauseWorkaround = mPhone.getContext().getResources().getBoolean( 5836 com.android.internal.R.bool.config_useVideoPauseWorkaround); 5837 if (useVideoPauseWorkaround && mSupportPauseVideo && 5838 VideoProfile.isVideo(conn.getVideoState())) { 5839 // If we are using the video pause workaround, the vendor IMS code has issues 5840 // with video pause signalling. In this case, when a call is remotely 5841 // held, the modem does not reliably change the video state of the call to be 5842 // paused. 5843 // As a workaround, we will turn on that bit now. 5844 conn.changeToPausedState(); 5845 } 5846 } 5847 5848 SuppServiceNotification supp = new SuppServiceNotification(); 5849 supp.notificationType = SuppServiceNotification.NOTIFICATION_TYPE_CODE_2; 5850 supp.code = SuppServiceNotification.CODE_2_CALL_ON_HOLD; 5851 mPhone.notifySuppSvcNotification(supp); 5852 mMetrics.writeOnImsCallHoldReceived(mPhone.getPhoneId(), imsCall.getCallSession()); 5853 } 5854 5855 @VisibleForTesting setAlwaysPlayRemoteHoldTone(boolean shouldPlayRemoteHoldTone)5856 public void setAlwaysPlayRemoteHoldTone(boolean shouldPlayRemoteHoldTone) { 5857 mAlwaysPlayRemoteHoldTone = shouldPlayRemoteHoldTone; 5858 } 5859 getNetworkCountryIso()5860 private String getNetworkCountryIso() { 5861 String countryIso = ""; 5862 if (mPhone != null) { 5863 ServiceStateTracker sst = mPhone.getServiceStateTracker(); 5864 if (sst != null) { 5865 LocaleTracker lt = sst.getLocaleTracker(); 5866 if (lt != null) { 5867 countryIso = lt.getCurrentCountry(); 5868 } 5869 } 5870 } 5871 return countryIso; 5872 } 5873 5874 @Override getPhone()5875 public ImsPhone getPhone() { 5876 return mPhone; 5877 } 5878 5879 @VisibleForTesting setSupportCepOnPeer(boolean isSupported)5880 public void setSupportCepOnPeer(boolean isSupported) { 5881 mSupportCepOnPeer = isSupported; 5882 } 5883 5884 /** 5885 * Injects a test conference state into an ongoing IMS call. 5886 * @param state The injected state. 5887 */ injectTestConferenceState(@onNull ImsConferenceState state)5888 public void injectTestConferenceState(@NonNull ImsConferenceState state) { 5889 List<ConferenceParticipant> participants = ImsCall.parseConferenceState(state); 5890 for (ImsPhoneConnection connection : getConnections()) { 5891 connection.updateConferenceParticipants(participants); 5892 } 5893 } 5894 5895 /** 5896 * Sets whether CEP handling is enabled or disabled. 5897 * @param isEnabled 5898 */ setConferenceEventPackageEnabled(boolean isEnabled)5899 public void setConferenceEventPackageEnabled(boolean isEnabled) { 5900 log("setConferenceEventPackageEnabled isEnabled=" + isEnabled); 5901 mIsConferenceEventPackageEnabled = isEnabled; 5902 } 5903 5904 /** 5905 * @return {@code true} is conference event package handling is enabled, {@code false} 5906 * otherwise. 5907 */ isConferenceEventPackageEnabled()5908 public boolean isConferenceEventPackageEnabled() { 5909 return mIsConferenceEventPackageEnabled; 5910 } 5911 5912 @VisibleForTesting getImsCallListener()5913 public ImsCall.Listener getImsCallListener() { 5914 return mImsCallListener; 5915 } 5916 5917 @VisibleForTesting getConnections()5918 public ArrayList<ImsPhoneConnection> getConnections() { 5919 return mConnections; 5920 } 5921 5922 @VisibleForTesting getPendingMO()5923 public ImsPhoneConnection getPendingMO() { 5924 return mPendingMO; 5925 } 5926 5927 /** 5928 * Set up static configuration from package/services/Telephony's config.xml. 5929 * @param config the config. 5930 */ setConfig(@onNull Config config)5931 public void setConfig(@NonNull Config config) { 5932 mConfig = config; 5933 } 5934 handleConferenceFailed(ImsPhoneConnection fgConnection, ImsPhoneConnection bgConnection)5935 private void handleConferenceFailed(ImsPhoneConnection fgConnection, 5936 ImsPhoneConnection bgConnection) { 5937 if (fgConnection != null) { 5938 fgConnection.handleMergeComplete(); 5939 } 5940 if (bgConnection != null) { 5941 bgConnection.handleMergeComplete(); 5942 } 5943 mPhone.notifySuppServiceFailed(Phone.SuppService.CONFERENCE); 5944 } 5945 5946 /** 5947 * Calculate whether CSFB or not with fg call type and bg call type. 5948 * @return {@code true} if bg call is not alive or fg call has higher score than bg call. 5949 */ isForegroundHigherPriority()5950 private boolean isForegroundHigherPriority() { 5951 if (!mBackgroundCall.getState().isAlive()) { 5952 return true; 5953 } 5954 ImsPhoneConnection fgConnection = mForegroundCall.getFirstConnection(); 5955 ImsPhoneConnection bgConnection = mBackgroundCall.getFirstConnection(); 5956 if (fgConnection.getCallPriority() > bgConnection.getCallPriority()) { 5957 return true; 5958 } 5959 return false; 5960 } 5961 initializeTerminalBasedCallWaiting()5962 private void initializeTerminalBasedCallWaiting() { 5963 boolean capable = false; 5964 if (mImsManager != null) { 5965 try { 5966 capable = mImsManager.isCapable(CAPABILITY_TERMINAL_BASED_CALL_WAITING); 5967 } catch (ImsException e) { 5968 loge("initializeTerminalBasedCallWaiting : exception " + e); 5969 } 5970 } 5971 logi("initializeTerminalBasedCallWaiting capable=" + capable); 5972 mPhone.setTerminalBasedCallWaitingSupported(capable); 5973 5974 if (capable) { 5975 setTerminalBasedCallWaitingStatus(mPhone.getTerminalBasedCallWaitingState(false)); 5976 } 5977 } 5978 5979 /** 5980 * Notifies the change of the user setting of the terminal-based call waiting service 5981 * to IMS service. 5982 */ setTerminalBasedCallWaitingStatus(int state)5983 public void setTerminalBasedCallWaitingStatus(int state) { 5984 if (state == TERMINAL_BASED_NOT_SUPPORTED) return; 5985 if (mImsManager != null) { 5986 try { 5987 log("setTerminalBasedCallWaitingStatus state=" + state); 5988 mImsManager.setTerminalBasedCallWaitingStatus( 5989 state == TERMINAL_BASED_ACTIVATED); 5990 } catch (ImsException e) { 5991 loge("setTerminalBasedCallWaitingStatus : exception " + e); 5992 } 5993 } 5994 } 5995 5996 /** Send the list of SrvccConnection instances to the radio */ handleSrvccConnectionInfo(List<SrvccCall> profileList)5997 public void handleSrvccConnectionInfo(List<SrvccCall> profileList) { 5998 mPhone.getDefaultPhone().mCi.setSrvccCallInfo( 5999 convertToSrvccConnectionInfo(profileList), null); 6000 } 6001 6002 /** Converts SrvccCall to SrvccConnection. */ 6003 @VisibleForTesting convertToSrvccConnectionInfo(List<SrvccCall> profileList)6004 public SrvccConnection[] convertToSrvccConnectionInfo(List<SrvccCall> profileList) { 6005 if (mSrvccTypeSupported.isEmpty() || profileList == null || profileList.isEmpty()) { 6006 loge("convertToSrvccConnectionInfo empty list"); 6007 return null; 6008 } 6009 6010 List<SrvccConnection> connList = new ArrayList<>(); 6011 for (SrvccCall profile : profileList) { 6012 if (isCallProfileSupported(profile)) { 6013 addConnection(connList, 6014 profile, findConnection(profile.getCallId())); 6015 } else { 6016 logi("convertToSrvccConnectionInfo not supported" 6017 + " state=" + profile.getPreciseCallState()); 6018 } 6019 } 6020 6021 logi("convertToSrvccConnectionInfo size=" + connList.size()); 6022 if (connList.isEmpty()) return null; 6023 return connList.toArray(new SrvccConnection[0]); 6024 } 6025 6026 /** Send the mediaType, direction, bitrate for ANBR Query to the radio */ handleSendAnbrQuery(int mediaType, int direction, int bitsPerSecond)6027 public void handleSendAnbrQuery(int mediaType, int direction, int bitsPerSecond) { 6028 if (DBG) log("handleSendAnbrQuery - mediaType=" + mediaType); 6029 mPhone.getDefaultPhone().mCi.sendAnbrQuery(mediaType, direction, bitsPerSecond, null); 6030 } 6031 6032 6033 /** 6034 * Notifies the recommended bit rate for the indicated logical channel and direction. 6035 * 6036 * @param mediaType MediaType is used to identify media stream such as audio or video. 6037 * @param direction Direction of this packet stream (e.g. uplink or downlink). 6038 * @param bitsPerSecond The recommended bit rate for the UE for a specific logical channel and 6039 * a specific direction by NW. 6040 */ triggerNotifyAnbr(int mediaType, int direction, int bitsPerSecond)6041 public void triggerNotifyAnbr(int mediaType, int direction, int bitsPerSecond) { 6042 ImsCall activeCall = mForegroundCall.getFirstConnection().getImsCall(); 6043 6044 if (activeCall != null) { 6045 if (DBG) log("triggerNotifyAnbr - mediaType=" + mediaType); 6046 activeCall.callSessionNotifyAnbr(mediaType, direction, bitsPerSecond); 6047 } 6048 } 6049 isCallProfileSupported(SrvccCall profile)6050 private boolean isCallProfileSupported(SrvccCall profile) { 6051 if (profile == null) { 6052 loge("isCallProfileSupported null profile"); 6053 return false; 6054 } 6055 6056 switch (profile.getPreciseCallState()) { 6057 case PRECISE_CALL_STATE_ACTIVE: 6058 return mSrvccTypeSupported.contains(BASIC_SRVCC_SUPPORT); 6059 case PRECISE_CALL_STATE_HOLDING: 6060 return mSrvccTypeSupported.contains(MIDCALL_SRVCC_SUPPORT); 6061 case PRECISE_CALL_STATE_DIALING: 6062 return mSrvccTypeSupported.contains(PREALERTING_SRVCC_SUPPORT); 6063 case PRECISE_CALL_STATE_ALERTING: 6064 return mSrvccTypeSupported.contains(ALERTING_SRVCC_SUPPORT); 6065 case PRECISE_CALL_STATE_INCOMING: 6066 return mSrvccTypeSupported.contains(ALERTING_SRVCC_SUPPORT); 6067 case PRECISE_CALL_STATE_WAITING: 6068 return mSrvccTypeSupported.contains(ALERTING_SRVCC_SUPPORT); 6069 case PRECISE_CALL_STATE_INCOMING_SETUP: 6070 return mSrvccTypeSupported.contains(PREALERTING_SRVCC_SUPPORT); 6071 default: 6072 loge("isCallProfileSupported invalid state=" 6073 + profile.getPreciseCallState()); 6074 break; 6075 } 6076 return false; 6077 } 6078 findConnection(String callId)6079 private synchronized ImsPhoneConnection findConnection(String callId) { 6080 for (ImsPhoneConnection c : mConnections) { 6081 ImsCall imsCall = c.getImsCall(); 6082 if (imsCall == null) continue; 6083 ImsCallSession session = imsCall.getCallSession(); 6084 if (session == null) continue; 6085 6086 if (TextUtils.equals(session.getCallId(), callId)) { 6087 return c; 6088 } 6089 } 6090 return null; 6091 } 6092 6093 /** 6094 * Update the list of SrvccConnection with the given SrvccCall and ImsPhoneconnection. 6095 * 6096 * @param destList the list of SrvccConnection the new connection will be added 6097 * @param profile the SrvccCall of the connection to be added 6098 * @param c the ImsPhoneConnection of the connection to be added 6099 */ addConnection( List<SrvccConnection> destList, SrvccCall profile, ImsPhoneConnection c)6100 private void addConnection( 6101 List<SrvccConnection> destList, SrvccCall profile, ImsPhoneConnection c) { 6102 if (destList == null) return; 6103 if (profile == null) return; 6104 6105 int preciseCallState = profile.getPreciseCallState(); 6106 if (!isAlive(preciseCallState)) { 6107 Rlog.i(LOG_TAG, "addConnection not alive, " + preciseCallState); 6108 return; 6109 } 6110 6111 List<ConferenceParticipant> participants = getConferenceParticipants(c); 6112 if (participants != null) { 6113 for (ConferenceParticipant cp : participants) { 6114 if (cp.getState() == android.telecom.Connection.STATE_DISCONNECTED) { 6115 Rlog.i(LOG_TAG, "addConnection participant is disconnected"); 6116 continue; 6117 } 6118 SrvccConnection srvccConnection = new SrvccConnection(cp, preciseCallState); 6119 Rlog.i(LOG_TAG, "addConnection " + srvccConnection); 6120 destList.add(srvccConnection); 6121 } 6122 } else { 6123 SrvccConnection srvccConnection = 6124 new SrvccConnection(profile.getImsCallProfile(), c, preciseCallState); 6125 Rlog.i(LOG_TAG, "addConnection " + srvccConnection); 6126 destList.add(srvccConnection); 6127 } 6128 } 6129 getConferenceParticipants(ImsPhoneConnection c)6130 private List<ConferenceParticipant> getConferenceParticipants(ImsPhoneConnection c) { 6131 if (!mSrvccTypeSupported.contains(MIDCALL_SRVCC_SUPPORT)) return null; 6132 6133 ImsCall imsCall = c.getImsCall(); 6134 if (imsCall == null) return null; 6135 6136 List<ConferenceParticipant> participants = imsCall.getConferenceParticipants(); 6137 if (participants == null || participants.isEmpty()) return null; 6138 return participants; 6139 } 6140 isAlive(int preciseCallState)6141 private static boolean isAlive(int preciseCallState) { 6142 switch (preciseCallState) { 6143 case PRECISE_CALL_STATE_ACTIVE: return true; 6144 case PRECISE_CALL_STATE_HOLDING: return true; 6145 case PRECISE_CALL_STATE_DIALING: return true; 6146 case PRECISE_CALL_STATE_ALERTING: return true; 6147 case PRECISE_CALL_STATE_INCOMING: return true; 6148 case PRECISE_CALL_STATE_WAITING: return true; 6149 case PRECISE_CALL_STATE_INCOMING_SETUP: return true; 6150 default: 6151 } 6152 return false; 6153 } 6154 6155 /** 6156 * Notifies that radio triggered IMS deregistration. 6157 * @param reason the reason why the deregistration is triggered. 6158 */ triggerImsDeregistration( @msRegistrationImplBase.ImsDeregistrationReason int reason)6159 public void triggerImsDeregistration( 6160 @ImsRegistrationImplBase.ImsDeregistrationReason int reason) { 6161 if (mImsManager == null) return; 6162 try { 6163 mImsManager.triggerDeregistration(reason); 6164 } catch (ImsException e) { 6165 loge("triggerImsDeregistration: exception " + e); 6166 } 6167 } 6168 updateImsRegistrationInfo()6169 private void updateImsRegistrationInfo() { 6170 int capabilities = 0; 6171 6172 if (mMmTelCapabilities.isCapable( 6173 MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VOICE)) { 6174 capabilities |= IMS_MMTEL_CAPABILITY_VOICE; 6175 } 6176 if (mMmTelCapabilities.isCapable( 6177 MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_VIDEO)) { 6178 capabilities |= IMS_MMTEL_CAPABILITY_VIDEO; 6179 } 6180 if (mMmTelCapabilities.isCapable( 6181 MmTelFeature.MmTelCapabilities.CAPABILITY_TYPE_SMS)) { 6182 capabilities |= IMS_MMTEL_CAPABILITY_SMS; 6183 } 6184 6185 mPhone.updateImsRegistrationInfo(capabilities); 6186 } 6187 registerImsTrafficSession(int token, @MmTelFeature.ImsTrafficType int trafficType, @MmTelFeature.ImsTrafficDirection int trafficDirection, @NonNull IImsTrafficSessionCallback callback)6188 private void registerImsTrafficSession(int token, 6189 @MmTelFeature.ImsTrafficType int trafficType, 6190 @MmTelFeature.ImsTrafficDirection int trafficDirection, 6191 @NonNull IImsTrafficSessionCallback callback) { 6192 mImsTrafficSessions.put(Integer.valueOf(token), 6193 new ImsTrafficSession(trafficType, trafficDirection, callback)); 6194 } 6195 unregisterImsTrafficSession(int token)6196 private void unregisterImsTrafficSession(int token) { 6197 mImsTrafficSessions.remove(Integer.valueOf(token)); 6198 } 6199 getImsTrafficSession(int token)6200 private ImsTrafficSession getImsTrafficSession(int token) { 6201 return mImsTrafficSessions.get(Integer.valueOf(token)); 6202 } 6203 stopAllImsTrafficTypes()6204 private void stopAllImsTrafficTypes() { 6205 boolean isEmpty = mImsTrafficSessions.isEmpty(); 6206 logi("stopAllImsTrafficTypes empty=" + isEmpty); 6207 6208 if (isEmpty) return; 6209 6210 mImsTrafficSessions.forEachKey(1, token -> mPhone.stopImsTraffic(token, null)); 6211 mImsTrafficSessions.clear(); 6212 } 6213 } 6214