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1 /*
2  * Copyright (C) 2016 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.server.wm;
18 
19 import static android.app.ActivityTaskManager.INVALID_TASK_ID;
20 import static android.app.KeyguardManager.ACTION_CONFIRM_DEVICE_CREDENTIAL_WITH_USER;
21 import static android.app.WindowConfiguration.ACTIVITY_TYPE_STANDARD;
22 import static android.app.WindowConfiguration.ACTIVITY_TYPE_UNDEFINED;
23 import static android.app.WindowConfiguration.WINDOWING_MODE_PINNED;
24 import static android.content.Intent.FLAG_ACTIVITY_NEW_TASK;
25 import static android.content.pm.ActivityInfo.LAUNCH_SINGLE_INSTANCE;
26 import static android.content.pm.ActivityInfo.LAUNCH_SINGLE_TASK;
27 import static android.content.res.Configuration.EMPTY;
28 import static android.os.Trace.TRACE_TAG_WINDOW_MANAGER;
29 import static android.view.Display.DEFAULT_DISPLAY;
30 import static android.view.Display.INVALID_DISPLAY;
31 import static android.view.WindowManager.LayoutParams.PRIVATE_FLAG_SUSTAINED_PERFORMANCE_MODE;
32 import static android.view.WindowManager.LayoutParams.TYPE_KEYGUARD_DIALOG;
33 import static android.view.WindowManager.LayoutParams.TYPE_NOTIFICATION_SHADE;
34 import static android.view.WindowManager.TRANSIT_NONE;
35 import static android.view.WindowManager.TRANSIT_PIP;
36 import static android.view.WindowManager.TRANSIT_SLEEP;
37 import static android.view.WindowManager.TRANSIT_TO_BACK;
38 import static android.view.WindowManager.TRANSIT_WAKE;
39 
40 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_FOCUS_LIGHT;
41 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_KEEP_SCREEN_ON;
42 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_ORIENTATION;
43 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_STATES;
44 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_TASKS;
45 import static com.android.internal.protolog.ProtoLogGroup.WM_DEBUG_WALLPAPER;
46 import static com.android.internal.protolog.ProtoLogGroup.WM_SHOW_SURFACE_ALLOC;
47 import static com.android.server.policy.PhoneWindowManager.SYSTEM_DIALOG_REASON_ASSIST;
48 import static com.android.server.policy.WindowManagerPolicy.FINISH_LAYOUT_REDO_LAYOUT;
49 import static com.android.server.policy.WindowManagerPolicy.FINISH_LAYOUT_REDO_WALLPAPER;
50 import static com.android.server.wm.ActivityRecord.State.FINISHING;
51 import static com.android.server.wm.ActivityRecord.State.PAUSED;
52 import static com.android.server.wm.ActivityRecord.State.RESUMED;
53 import static com.android.server.wm.ActivityRecord.State.STOPPED;
54 import static com.android.server.wm.ActivityRecord.State.STOPPING;
55 import static com.android.server.wm.ActivityTaskManagerDebugConfig.DEBUG_RECENTS;
56 import static com.android.server.wm.ActivityTaskManagerDebugConfig.DEBUG_ROOT_TASK;
57 import static com.android.server.wm.ActivityTaskManagerDebugConfig.DEBUG_SWITCH;
58 import static com.android.server.wm.ActivityTaskManagerDebugConfig.POSTFIX_RECENTS;
59 import static com.android.server.wm.ActivityTaskManagerDebugConfig.POSTFIX_STATES;
60 import static com.android.server.wm.ActivityTaskManagerDebugConfig.POSTFIX_TASKS;
61 import static com.android.server.wm.ActivityTaskManagerService.ANIMATE;
62 import static com.android.server.wm.ActivityTaskManagerService.TAG_SWITCH;
63 import static com.android.server.wm.ActivityTaskSupervisor.DEFER_RESUME;
64 import static com.android.server.wm.ActivityTaskSupervisor.ON_TOP;
65 import static com.android.server.wm.ActivityTaskSupervisor.PRESERVE_WINDOWS;
66 import static com.android.server.wm.ActivityTaskSupervisor.dumpHistoryList;
67 import static com.android.server.wm.ActivityTaskSupervisor.printThisActivity;
68 import static com.android.server.wm.KeyguardController.KEYGUARD_SLEEP_TOKEN_TAG;
69 import static com.android.server.wm.RootWindowContainerProto.IS_HOME_RECENTS_COMPONENT;
70 import static com.android.server.wm.RootWindowContainerProto.KEYGUARD_CONTROLLER;
71 import static com.android.server.wm.RootWindowContainerProto.WINDOW_CONTAINER;
72 import static com.android.server.wm.Task.REPARENT_LEAVE_ROOT_TASK_IN_PLACE;
73 import static com.android.server.wm.Task.REPARENT_MOVE_ROOT_TASK_TO_FRONT;
74 import static com.android.server.wm.TaskFragment.TASK_FRAGMENT_VISIBILITY_INVISIBLE;
75 import static com.android.server.wm.WindowManagerDebugConfig.DEBUG_LAYOUT_REPEATS;
76 import static com.android.server.wm.WindowManagerDebugConfig.DEBUG_WINDOW_TRACE;
77 import static com.android.server.wm.WindowManagerDebugConfig.SHOW_LIGHT_TRANSACTIONS;
78 import static com.android.server.wm.WindowManagerDebugConfig.TAG_WITH_CLASS_NAME;
79 import static com.android.server.wm.WindowManagerDebugConfig.TAG_WM;
80 import static com.android.server.wm.WindowManagerService.H.WINDOW_FREEZE_TIMEOUT;
81 import static com.android.server.wm.WindowManagerService.UPDATE_FOCUS_NORMAL;
82 import static com.android.server.wm.WindowManagerService.UPDATE_FOCUS_PLACING_SURFACES;
83 import static com.android.server.wm.WindowManagerService.UPDATE_FOCUS_WILL_PLACE_SURFACES;
84 import static com.android.server.wm.WindowManagerService.WINDOWS_FREEZING_SCREENS_NONE;
85 import static com.android.server.wm.WindowSurfacePlacer.SET_UPDATE_ROTATION;
86 import static com.android.server.wm.WindowSurfacePlacer.SET_WALLPAPER_ACTION_PENDING;
87 
88 import static java.lang.Integer.MAX_VALUE;
89 
90 import android.annotation.IntDef;
91 import android.annotation.NonNull;
92 import android.annotation.Nullable;
93 import android.annotation.UserIdInt;
94 import android.app.ActivityManager;
95 import android.app.ActivityOptions;
96 import android.app.ActivityTaskManager.RootTaskInfo;
97 import android.app.AppGlobals;
98 import android.app.WindowConfiguration;
99 import android.content.ComponentName;
100 import android.content.Context;
101 import android.content.Intent;
102 import android.content.pm.ActivityInfo;
103 import android.content.pm.ApplicationInfo;
104 import android.content.pm.ResolveInfo;
105 import android.content.res.Configuration;
106 import android.graphics.Rect;
107 import android.hardware.display.DisplayManager;
108 import android.hardware.display.DisplayManagerInternal;
109 import android.hardware.power.Mode;
110 import android.net.Uri;
111 import android.os.Binder;
112 import android.os.Debug;
113 import android.os.FactoryTest;
114 import android.os.Handler;
115 import android.os.IBinder;
116 import android.os.Looper;
117 import android.os.Message;
118 import android.os.PowerManager;
119 import android.os.RemoteException;
120 import android.os.SystemClock;
121 import android.os.Trace;
122 import android.os.UserHandle;
123 import android.os.storage.StorageManager;
124 import android.provider.Settings;
125 import android.service.voice.IVoiceInteractionSession;
126 import android.util.ArrayMap;
127 import android.util.ArraySet;
128 import android.util.IntArray;
129 import android.util.Pair;
130 import android.util.Slog;
131 import android.util.SparseArray;
132 import android.util.SparseIntArray;
133 import android.util.TimeUtils;
134 import android.util.proto.ProtoOutputStream;
135 import android.view.Display;
136 import android.view.DisplayInfo;
137 import android.view.SurfaceControl;
138 import android.view.WindowManager;
139 import android.window.TaskFragmentAnimationParams;
140 import android.window.WindowContainerToken;
141 
142 import com.android.internal.annotations.VisibleForTesting;
143 import com.android.internal.app.ResolverActivity;
144 import com.android.internal.protolog.common.ProtoLog;
145 import com.android.internal.util.function.pooled.PooledLambda;
146 import com.android.internal.util.function.pooled.PooledPredicate;
147 import com.android.server.LocalServices;
148 import com.android.server.am.ActivityManagerService;
149 import com.android.server.am.AppTimeTracker;
150 import com.android.server.am.UserState;
151 import com.android.server.policy.PermissionPolicyInternal;
152 import com.android.server.policy.WindowManagerPolicy;
153 import com.android.server.utils.Slogf;
154 
155 import java.io.FileDescriptor;
156 import java.io.PrintWriter;
157 import java.lang.annotation.Retention;
158 import java.lang.annotation.RetentionPolicy;
159 import java.util.ArrayList;
160 import java.util.Collections;
161 import java.util.List;
162 import java.util.Objects;
163 import java.util.Set;
164 import java.util.function.Consumer;
165 import java.util.function.Predicate;
166 
167 /** Root {@link WindowContainer} for the device. */
168 class RootWindowContainer extends WindowContainer<DisplayContent>
169         implements DisplayManager.DisplayListener {
170     private static final String TAG = TAG_WITH_CLASS_NAME ? "RootWindowContainer" : TAG_WM;
171 
172     private static final int SET_SCREEN_BRIGHTNESS_OVERRIDE = 1;
173     private static final int SET_USER_ACTIVITY_TIMEOUT = 2;
174     static final String TAG_TASKS = TAG + POSTFIX_TASKS;
175     static final String TAG_STATES = TAG + POSTFIX_STATES;
176     private static final String TAG_RECENTS = TAG + POSTFIX_RECENTS;
177 
178     private Object mLastWindowFreezeSource = null;
179     private float mScreenBrightnessOverride = PowerManager.BRIGHTNESS_INVALID_FLOAT;
180     private long mUserActivityTimeout = -1;
181     private boolean mUpdateRotation = false;
182     // Only set while traversing the default display based on its content.
183     // Affects the behavior of mirroring on secondary displays.
184     private boolean mObscureApplicationContentOnSecondaryDisplays = false;
185 
186     private boolean mSustainedPerformanceModeEnabled = false;
187     private boolean mSustainedPerformanceModeCurrent = false;
188 
189     // During an orientation change, we track whether all windows have rendered
190     // at the new orientation, and this will be false from changing orientation until that occurs.
191     // For seamless rotation cases this always stays true, as the windows complete their orientation
192     // changes 1 by 1 without disturbing global state.
193     boolean mOrientationChangeComplete = true;
194     boolean mWallpaperActionPending = false;
195 
196     private final Handler mHandler;
197 
198     private String mCloseSystemDialogsReason;
199 
200     // The ID of the display which is responsible for receiving display-unspecified key and pointer
201     // events.
202     private int mTopFocusedDisplayId = INVALID_DISPLAY;
203 
204     // Map from the PID to the top most app which has a focused window of the process.
205     final ArrayMap<Integer, ActivityRecord> mTopFocusedAppByProcess = new ArrayMap<>();
206 
207     // The tag for the token to put root tasks on the displays to sleep.
208     private static final String DISPLAY_OFF_SLEEP_TOKEN_TAG = "Display-off";
209 
210     /** The token acquirer to put root tasks on the displays to sleep */
211     final ActivityTaskManagerInternal.SleepTokenAcquirer mDisplayOffTokenAcquirer;
212 
213     /**
214      * The modes which affect which tasks are returned when calling
215      * {@link RootWindowContainer#anyTaskForId(int)}.
216      */
217     @Retention(RetentionPolicy.SOURCE)
218     @IntDef({
219             MATCH_ATTACHED_TASK_ONLY,
220             MATCH_ATTACHED_TASK_OR_RECENT_TASKS,
221             MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE
222     })
223     public @interface AnyTaskForIdMatchTaskMode {
224     }
225 
226     // Match only tasks that are attached to the hierarchy
227     static final int MATCH_ATTACHED_TASK_ONLY = 0;
228     // Match either attached tasks, or in the recent tasks if the tasks are detached
229     static final int MATCH_ATTACHED_TASK_OR_RECENT_TASKS = 1;
230     // Match either attached tasks, or in the recent tasks, restoring it to the provided task id
231     static final int MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE = 2;
232 
233     ActivityTaskManagerService mService;
234     ActivityTaskSupervisor mTaskSupervisor;
235     WindowManagerService mWindowManager;
236     DisplayManager mDisplayManager;
237     private DisplayManagerInternal mDisplayManagerInternal;
238     @NonNull
239     private final DeviceStateController mDeviceStateController;
240     @NonNull
241     private final DisplayRotationCoordinator mDisplayRotationCoordinator;
242 
243     /** Reference to default display so we can quickly look it up. */
244     private DisplayContent mDefaultDisplay;
245     private final SparseArray<IntArray> mDisplayAccessUIDs = new SparseArray<>();
246 
247     /** The current user */
248     int mCurrentUser;
249     /** Root task id of the front root task when user switched, indexed by userId. */
250     SparseIntArray mUserRootTaskInFront = new SparseIntArray(2);
251 
252     /**
253      * A list of tokens that cause the top activity to be put to sleep.
254      * They are used by components that may hide and block interaction with underlying
255      * activities.
256      */
257     final SparseArray<SleepToken> mSleepTokens = new SparseArray<>();
258 
259     // The default minimal size that will be used if the activity doesn't specify its minimal size.
260     // It will be calculated when the default display gets added.
261     int mDefaultMinSizeOfResizeableTaskDp = -1;
262 
263     // Whether tasks have moved and we need to rank the tasks before next OOM scoring
264     private boolean mTaskLayersChanged = true;
265     private int mTmpTaskLayerRank;
266     private final RankTaskLayersRunnable mRankTaskLayersRunnable = new RankTaskLayersRunnable();
267 
268     private final AttachApplicationHelper mAttachApplicationHelper = new AttachApplicationHelper();
269 
270     private String mDestroyAllActivitiesReason;
271     private final Runnable mDestroyAllActivitiesRunnable = new Runnable() {
272         @Override
273         public void run() {
274             synchronized (mService.mGlobalLock) {
275                 try {
276                     mTaskSupervisor.beginDeferResume();
277                     forAllActivities(r -> {
278                         if (r.finishing || !r.isDestroyable()) return;
279                         if (DEBUG_SWITCH) {
280                             Slog.v(TAG_SWITCH, "Destroying " + r + " in state " + r.getState()
281                                     + " resumed=" + r.getTask().getTopResumedActivity()
282                                     + " pausing=" + r.getTask().getTopPausingActivity()
283                                     + " for reason " + mDestroyAllActivitiesReason);
284                         }
285                         r.destroyImmediately(mDestroyAllActivitiesReason);
286                     });
287                 } finally {
288                     mTaskSupervisor.endDeferResume();
289                     resumeFocusedTasksTopActivities();
290                 }
291             }
292         }
293 
294     };
295 
296     private final FindTaskResult mTmpFindTaskResult = new FindTaskResult();
297 
298     static class FindTaskResult implements Predicate<Task> {
299         ActivityRecord mIdealRecord;
300         ActivityRecord mCandidateRecord;
301 
302         private int mActivityType;
303         private String mTaskAffinity;
304         private Intent mIntent;
305         private ActivityInfo mInfo;
306         private ComponentName cls;
307         private int userId;
308         private boolean isDocument;
309         private Uri documentData;
310 
init(int activityType, String taskAffinity, Intent intent, ActivityInfo info)311         void init(int activityType, String taskAffinity, Intent intent, ActivityInfo info) {
312             mActivityType = activityType;
313             mTaskAffinity = taskAffinity;
314             mIntent = intent;
315             mInfo = info;
316             mIdealRecord = null;
317             mCandidateRecord = null;
318         }
319 
320         /**
321          * Returns the top activity in any existing task matching the given Intent in the input
322          * result. Returns null if no such task is found.
323          */
process(WindowContainer parent)324         void process(WindowContainer parent) {
325             cls = mIntent.getComponent();
326             if (mInfo.targetActivity != null) {
327                 cls = new ComponentName(mInfo.packageName, mInfo.targetActivity);
328             }
329             userId = UserHandle.getUserId(mInfo.applicationInfo.uid);
330             isDocument = mIntent != null & mIntent.isDocument();
331             // If documentData is non-null then it must match the existing task data.
332             documentData = isDocument ? mIntent.getData() : null;
333 
334             ProtoLog.d(WM_DEBUG_TASKS, "Looking for task of %s in %s", mInfo,
335                     parent);
336             parent.forAllLeafTasks(this);
337         }
338 
339         @Override
test(Task task)340         public boolean test(Task task) {
341             if (!ConfigurationContainer.isCompatibleActivityType(mActivityType,
342                     task.getActivityType())) {
343                 ProtoLog.d(WM_DEBUG_TASKS, "Skipping task: (mismatch activity/task) %s", task);
344                 return false;
345             }
346 
347             if (task.voiceSession != null) {
348                 // We never match voice sessions; those always run independently.
349                 ProtoLog.d(WM_DEBUG_TASKS, "Skipping %s: voice session", task);
350                 return false;
351             }
352             if (task.mUserId != userId) {
353                 // Looking for a different task.
354                 ProtoLog.d(WM_DEBUG_TASKS, "Skipping %s: different user", task);
355                 return false;
356             }
357 
358             // Overlays should not be considered as the task's logical top activity.
359             final ActivityRecord r = task.getTopNonFinishingActivity(false /* includeOverlays */);
360 
361             if (r == null || r.finishing || r.mUserId != userId
362                     || r.launchMode == ActivityInfo.LAUNCH_SINGLE_INSTANCE) {
363                 ProtoLog.d(WM_DEBUG_TASKS, "Skipping %s: mismatch root %s", task, r);
364                 return false;
365             }
366             if (!ConfigurationContainer.isCompatibleActivityType(r.getActivityType(),
367                     mActivityType)) {
368                 ProtoLog.d(WM_DEBUG_TASKS, "Skipping %s: mismatch activity type", task);
369                 return false;
370             }
371 
372             final Intent taskIntent = task.intent;
373             final Intent affinityIntent = task.affinityIntent;
374             final boolean taskIsDocument;
375             final Uri taskDocumentData;
376             if (taskIntent != null && taskIntent.isDocument()) {
377                 taskIsDocument = true;
378                 taskDocumentData = taskIntent.getData();
379             } else if (affinityIntent != null && affinityIntent.isDocument()) {
380                 taskIsDocument = true;
381                 taskDocumentData = affinityIntent.getData();
382             } else {
383                 taskIsDocument = false;
384                 taskDocumentData = null;
385             }
386 
387             ProtoLog.d(WM_DEBUG_TASKS, "Comparing existing cls=%s /aff=%s to new cls=%s /aff=%s",
388                     (task.realActivity != null ? task.realActivity.flattenToShortString() : ""),
389                     task.rootAffinity, mIntent.getComponent().flattenToShortString(),
390                     mTaskAffinity);
391             // TODO Refactor to remove duplications. Check if logic can be simplified.
392             if (task.realActivity != null && task.realActivity.compareTo(cls) == 0
393                     && Objects.equals(documentData, taskDocumentData)) {
394                 ProtoLog.d(WM_DEBUG_TASKS, "Found matching class!");
395                 //dump();
396                 ProtoLog.d(WM_DEBUG_TASKS, "For Intent %s bringing to top: %s", mIntent, r.intent);
397                 mIdealRecord = r;
398                 return true;
399             } else if (affinityIntent != null && affinityIntent.getComponent() != null
400                     && affinityIntent.getComponent().compareTo(cls) == 0 &&
401                     Objects.equals(documentData, taskDocumentData)) {
402                 ProtoLog.d(WM_DEBUG_TASKS, "Found matching class!");
403                 ProtoLog.d(WM_DEBUG_TASKS, "For Intent %s bringing to top: %s", mIntent, r.intent);
404                 mIdealRecord = r;
405                 return true;
406             } else if (!isDocument && !taskIsDocument
407                     && mIdealRecord == null && mCandidateRecord == null
408                     && task.rootAffinity != null) {
409                 if (task.rootAffinity.equals(mTaskAffinity)
410                         && task.isSameRequiredDisplayCategory(mInfo)) {
411                     ProtoLog.d(WM_DEBUG_TASKS, "Found matching affinity candidate!");
412                     // It is possible for multiple tasks to have the same root affinity especially
413                     // if they are in separate root tasks. We save off this candidate, but keep
414                     // looking to see if there is a better candidate.
415                     mCandidateRecord = r;
416                 }
417             } else {
418                 ProtoLog.d(WM_DEBUG_TASKS, "Not a match: %s", task);
419             }
420 
421             return false;
422         }
423     }
424 
425     private final Consumer<WindowState> mCloseSystemDialogsConsumer = w -> {
426         if (w.mHasSurface) {
427             try {
428                 w.mClient.closeSystemDialogs(mCloseSystemDialogsReason);
429             } catch (RemoteException e) {
430             }
431         }
432     };
433 
RootWindowContainer(WindowManagerService service)434     RootWindowContainer(WindowManagerService service) {
435         super(service);
436         mHandler = new MyHandler(service.mH.getLooper());
437         mService = service.mAtmService;
438         mTaskSupervisor = mService.mTaskSupervisor;
439         mTaskSupervisor.mRootWindowContainer = this;
440         mDisplayOffTokenAcquirer = mService.new SleepTokenAcquirerImpl(DISPLAY_OFF_SLEEP_TOKEN_TAG);
441         mDeviceStateController = new DeviceStateController(service.mContext, service.mGlobalLock);
442         mDisplayRotationCoordinator = new DisplayRotationCoordinator();
443     }
444 
445     /**
446      * Updates the children's focused window and the top focused display if needed.
447      */
updateFocusedWindowLocked(int mode, boolean updateInputWindows)448     boolean updateFocusedWindowLocked(int mode, boolean updateInputWindows) {
449         mTopFocusedAppByProcess.clear();
450         boolean changed = false;
451         int topFocusedDisplayId = INVALID_DISPLAY;
452         // Go through the children in z-order starting at the top-most
453         for (int i = mChildren.size() - 1; i >= 0; --i) {
454             final DisplayContent dc = mChildren.get(i);
455             changed |= dc.updateFocusedWindowLocked(mode, updateInputWindows, topFocusedDisplayId);
456             final WindowState newFocus = dc.mCurrentFocus;
457             if (newFocus != null) {
458                 final int pidOfNewFocus = newFocus.mSession.mPid;
459                 if (mTopFocusedAppByProcess.get(pidOfNewFocus) == null) {
460                     mTopFocusedAppByProcess.put(pidOfNewFocus, newFocus.mActivityRecord);
461                 }
462                 if (topFocusedDisplayId == INVALID_DISPLAY) {
463                     topFocusedDisplayId = dc.getDisplayId();
464                 }
465             } else if (topFocusedDisplayId == INVALID_DISPLAY && dc.mFocusedApp != null) {
466                 // The top-most display that has a focused app should still be the top focused
467                 // display even when the app window is not ready yet (process not attached or
468                 // window not added yet).
469                 topFocusedDisplayId = dc.getDisplayId();
470             }
471         }
472         if (topFocusedDisplayId == INVALID_DISPLAY) {
473             topFocusedDisplayId = DEFAULT_DISPLAY;
474         }
475         if (mTopFocusedDisplayId != topFocusedDisplayId) {
476             mTopFocusedDisplayId = topFocusedDisplayId;
477             mWmService.mInputManager.setFocusedDisplay(topFocusedDisplayId);
478             mWmService.mPolicy.setTopFocusedDisplay(topFocusedDisplayId);
479             mWmService.mAccessibilityController.setFocusedDisplay(topFocusedDisplayId);
480             ProtoLog.d(WM_DEBUG_FOCUS_LIGHT, "New topFocusedDisplayId=%d", topFocusedDisplayId);
481         }
482         return changed;
483     }
484 
getTopFocusedDisplayContent()485     DisplayContent getTopFocusedDisplayContent() {
486         final DisplayContent dc = getDisplayContent(mTopFocusedDisplayId);
487         return dc != null ? dc : getDisplayContent(DEFAULT_DISPLAY);
488     }
489 
490     @Override
isOnTop()491     boolean isOnTop() {
492         // Considered always on top
493         return true;
494     }
495 
496     @Override
onChildPositionChanged(WindowContainer child)497     void onChildPositionChanged(WindowContainer child) {
498         mWmService.updateFocusedWindowLocked(UPDATE_FOCUS_NORMAL,
499                 !mWmService.mPerDisplayFocusEnabled /* updateInputWindows */);
500         mTaskSupervisor.updateTopResumedActivityIfNeeded("onChildPositionChanged");
501     }
502 
503     @Override
isAttached()504     boolean isAttached() {
505         return true;
506     }
507 
508     /**
509      * Called when DisplayWindowSettings values may change.
510      */
onSettingsRetrieved()511     void onSettingsRetrieved() {
512         final int numDisplays = mChildren.size();
513         for (int displayNdx = 0; displayNdx < numDisplays; ++displayNdx) {
514             final DisplayContent displayContent = mChildren.get(displayNdx);
515             final boolean changed = mWmService.mDisplayWindowSettings.updateSettingsForDisplay(
516                     displayContent);
517             if (!changed) {
518                 continue;
519             }
520 
521             displayContent.reconfigureDisplayLocked();
522 
523             // We need to update global configuration as well if config of default display has
524             // changed. Do it inline because ATMS#retrieveSettings() will soon update the
525             // configuration inline, which will overwrite the new windowing mode.
526             if (displayContent.isDefaultDisplay) {
527                 final Configuration newConfig = mWmService.computeNewConfiguration(
528                         displayContent.getDisplayId());
529                 mWmService.mAtmService.updateConfigurationLocked(newConfig, null /* starting */,
530                         false /* initLocale */);
531             }
532         }
533     }
534 
isLayoutNeeded()535     boolean isLayoutNeeded() {
536         final int numDisplays = mChildren.size();
537         for (int displayNdx = 0; displayNdx < numDisplays; ++displayNdx) {
538             final DisplayContent displayContent = mChildren.get(displayNdx);
539             if (displayContent.isLayoutNeeded()) {
540                 return true;
541             }
542         }
543         return false;
544     }
545 
getWindowsByName(ArrayList<WindowState> output, String name)546     void getWindowsByName(ArrayList<WindowState> output, String name) {
547         int objectId = 0;
548         // See if this is an object ID.
549         try {
550             objectId = Integer.parseInt(name, 16);
551             name = null;
552         } catch (RuntimeException e) {
553         }
554 
555         getWindowsByName(output, name, objectId);
556     }
557 
getWindowsByName(ArrayList<WindowState> output, String name, int objectId)558     private void getWindowsByName(ArrayList<WindowState> output, String name, int objectId) {
559         forAllWindows((w) -> {
560             if (name != null) {
561                 if (w.mAttrs.getTitle().toString().contains(name)) {
562                     output.add(w);
563                 }
564             } else if (System.identityHashCode(w) == objectId) {
565                 output.add(w);
566             }
567         }, true /* traverseTopToBottom */);
568     }
569 
570     /**
571      * Returns the app window token for the input binder if it exist in the system.
572      * NOTE: Only one AppWindowToken is allowed to exist in the system for a binder token, since
573      * AppWindowToken represents an activity which can only exist on one display.
574      */
getActivityRecord(IBinder binder)575     ActivityRecord getActivityRecord(IBinder binder) {
576         for (int i = mChildren.size() - 1; i >= 0; --i) {
577             final DisplayContent dc = mChildren.get(i);
578             final ActivityRecord activity = dc.getActivityRecord(binder);
579             if (activity != null) {
580                 return activity;
581             }
582         }
583         return null;
584     }
585 
586     /** Returns the window token for the input binder if it exist in the system. */
getWindowToken(IBinder binder)587     WindowToken getWindowToken(IBinder binder) {
588         for (int i = mChildren.size() - 1; i >= 0; --i) {
589             final DisplayContent dc = mChildren.get(i);
590             final WindowToken wtoken = dc.getWindowToken(binder);
591             if (wtoken != null) {
592                 return wtoken;
593             }
594         }
595         return null;
596     }
597 
598     /** Returns the display object the input window token is currently mapped on. */
getWindowTokenDisplay(WindowToken token)599     DisplayContent getWindowTokenDisplay(WindowToken token) {
600         if (token == null) {
601             return null;
602         }
603 
604         for (int i = mChildren.size() - 1; i >= 0; --i) {
605             final DisplayContent dc = mChildren.get(i);
606             final WindowToken current = dc.getWindowToken(token.token);
607             if (current == token) {
608                 return dc;
609             }
610         }
611 
612         return null;
613     }
614 
615     @Override
dispatchConfigurationToChild(DisplayContent child, Configuration config)616     void dispatchConfigurationToChild(DisplayContent child, Configuration config) {
617         if (child.isDefaultDisplay) {
618             // The global configuration is also the override configuration of default display.
619             child.performDisplayOverrideConfigUpdate(config);
620         } else {
621             child.onConfigurationChanged(config);
622         }
623     }
624 
refreshSecureSurfaceState()625     void refreshSecureSurfaceState() {
626         forAllWindows((w) -> {
627             if (w.mHasSurface) {
628                 w.mWinAnimator.setSecureLocked(w.isSecureLocked());
629             }
630         }, true /* traverseTopToBottom */);
631     }
632 
updateHiddenWhileSuspendedState(final ArraySet<String> packages, final boolean suspended)633     void updateHiddenWhileSuspendedState(final ArraySet<String> packages, final boolean suspended) {
634         forAllWindows((w) -> {
635             if (packages.contains(w.getOwningPackage())) {
636                 w.setHiddenWhileSuspended(suspended);
637             }
638         }, false);
639     }
640 
updateAppOpsState()641     void updateAppOpsState() {
642         forAllWindows((w) -> {
643             w.updateAppOpsState();
644         }, false /* traverseTopToBottom */);
645     }
646 
canShowStrictModeViolation(int pid)647     boolean canShowStrictModeViolation(int pid) {
648         final WindowState win = getWindow((w) -> w.mSession.mPid == pid && w.isVisible());
649         return win != null;
650     }
651 
closeSystemDialogs(String reason)652     void closeSystemDialogs(String reason) {
653         mCloseSystemDialogsReason = reason;
654         forAllWindows(mCloseSystemDialogsConsumer, false /* traverseTopToBottom */);
655     }
656 
hasPendingLayoutChanges(WindowAnimator animator)657     boolean hasPendingLayoutChanges(WindowAnimator animator) {
658         boolean hasChanges = false;
659 
660         final int count = mChildren.size();
661         for (int i = 0; i < count; ++i) {
662             final int pendingChanges = mChildren.get(i).pendingLayoutChanges;
663             if ((pendingChanges & FINISH_LAYOUT_REDO_WALLPAPER) != 0) {
664                 animator.mBulkUpdateParams |= SET_WALLPAPER_ACTION_PENDING;
665             }
666             if (pendingChanges != 0) {
667                 hasChanges = true;
668             }
669         }
670 
671         return hasChanges;
672     }
673 
reclaimSomeSurfaceMemory(WindowStateAnimator winAnimator, String operation, boolean secure)674     boolean reclaimSomeSurfaceMemory(WindowStateAnimator winAnimator, String operation,
675             boolean secure) {
676         final WindowSurfaceController surfaceController = winAnimator.mSurfaceController;
677         boolean leakedSurface = false;
678         boolean killedApps = false;
679         EventLogTags.writeWmNoSurfaceMemory(winAnimator.mWin.toString(),
680                 winAnimator.mSession.mPid, operation);
681         final long callingIdentity = Binder.clearCallingIdentity();
682         try {
683             // There was some problem...first, do a validity check of the window list to make sure
684             // we haven't left any dangling surfaces around.
685 
686             Slog.i(TAG_WM, "Out of memory for surface!  Looking for leaks...");
687             final int numDisplays = mChildren.size();
688             for (int displayNdx = 0; displayNdx < numDisplays; ++displayNdx) {
689                 leakedSurface |= mChildren.get(displayNdx).destroyLeakedSurfaces();
690             }
691 
692             if (!leakedSurface) {
693                 Slog.w(TAG_WM, "No leaked surfaces; killing applications!");
694                 final SparseIntArray pidCandidates = new SparseIntArray();
695                 for (int displayNdx = 0; displayNdx < numDisplays; ++displayNdx) {
696                     mChildren.get(displayNdx).forAllWindows((w) -> {
697                         if (mWmService.mForceRemoves.contains(w)) {
698                             return;
699                         }
700                         final WindowStateAnimator wsa = w.mWinAnimator;
701                         if (wsa.mSurfaceController != null) {
702                             pidCandidates.append(wsa.mSession.mPid, wsa.mSession.mPid);
703                         }
704                     }, false /* traverseTopToBottom */);
705 
706                     if (pidCandidates.size() > 0) {
707                         int[] pids = new int[pidCandidates.size()];
708                         for (int i = 0; i < pids.length; i++) {
709                             pids[i] = pidCandidates.keyAt(i);
710                         }
711                         try {
712                             if (mWmService.mActivityManager.killPids(pids, "Free memory", secure)) {
713                                 killedApps = true;
714                             }
715                         } catch (RemoteException e) {
716                         }
717                     }
718                 }
719             }
720 
721             if (leakedSurface || killedApps) {
722                 // We managed to reclaim some memory, so get rid of the trouble surface and ask the
723                 // app to request another one.
724                 Slog.w(TAG_WM,
725                         "Looks like we have reclaimed some memory, clearing surface for retry.");
726                 if (surfaceController != null) {
727                     ProtoLog.i(WM_SHOW_SURFACE_ALLOC,
728                             "SURFACE RECOVER DESTROY: %s", winAnimator.mWin);
729                     SurfaceControl.Transaction t = mWmService.mTransactionFactory.get();
730                     winAnimator.destroySurface(t);
731                     t.apply();
732                     if (winAnimator.mWin.mActivityRecord != null) {
733                         winAnimator.mWin.mActivityRecord.removeStartingWindow();
734                     }
735                 }
736 
737                 try {
738                     winAnimator.mWin.mClient.dispatchGetNewSurface();
739                 } catch (RemoteException e) {
740                 }
741             }
742         } finally {
743             Binder.restoreCallingIdentity(callingIdentity);
744         }
745 
746         return leakedSurface || killedApps;
747     }
748 
749     /**
750      * This method should only be called from {@link WindowSurfacePlacer}. Otherwise the recursion
751      * check and {@link WindowSurfacePlacer#isInLayout()} won't take effect.
752      */
performSurfacePlacement()753     void performSurfacePlacement() {
754         Trace.traceBegin(TRACE_TAG_WINDOW_MANAGER, "performSurfacePlacement");
755         try {
756             performSurfacePlacementNoTrace();
757         } finally {
758             Trace.traceEnd(TRACE_TAG_WINDOW_MANAGER);
759         }
760     }
761 
762     // "Something has changed!  Let's make it correct now."
763     // TODO: Super long method that should be broken down...
performSurfacePlacementNoTrace()764     void performSurfacePlacementNoTrace() {
765         if (DEBUG_WINDOW_TRACE) {
766             Slog.v(TAG, "performSurfacePlacementInner: entry. Called by "
767                     + Debug.getCallers(3));
768         }
769 
770         int i;
771 
772         if (mWmService.mFocusMayChange) {
773             mWmService.mFocusMayChange = false;
774             mWmService.updateFocusedWindowLocked(
775                     UPDATE_FOCUS_WILL_PLACE_SURFACES, false /*updateInputWindows*/);
776         }
777 
778         mScreenBrightnessOverride = PowerManager.BRIGHTNESS_INVALID_FLOAT;
779         mUserActivityTimeout = -1;
780         mObscureApplicationContentOnSecondaryDisplays = false;
781         mSustainedPerformanceModeCurrent = false;
782         mWmService.mTransactionSequence++;
783 
784         // TODO(multi-display): recents animation & wallpaper need support multi-display.
785         final DisplayContent defaultDisplay = mWmService.getDefaultDisplayContentLocked();
786         final WindowSurfacePlacer surfacePlacer = mWmService.mWindowPlacerLocked;
787 
788         if (SHOW_LIGHT_TRANSACTIONS) {
789             Slog.i(TAG,
790                     ">>> OPEN TRANSACTION performLayoutAndPlaceSurfaces");
791         }
792         Trace.traceBegin(TRACE_TAG_WINDOW_MANAGER, "applySurfaceChanges");
793         mWmService.openSurfaceTransaction();
794         try {
795             applySurfaceChangesTransaction();
796         } catch (RuntimeException e) {
797             Slog.wtf(TAG, "Unhandled exception in Window Manager", e);
798         } finally {
799             mWmService.closeSurfaceTransaction("performLayoutAndPlaceSurfaces");
800             Trace.traceEnd(TRACE_TAG_WINDOW_MANAGER);
801             if (SHOW_LIGHT_TRANSACTIONS) {
802                 Slog.i(TAG,
803                         "<<< CLOSE TRANSACTION performLayoutAndPlaceSurfaces");
804             }
805         }
806 
807         // Send any pending task-info changes that were queued-up during a layout deferment
808         mWmService.mAtmService.mTaskOrganizerController.dispatchPendingEvents();
809         mWmService.mAtmService.mTaskFragmentOrganizerController.dispatchPendingEvents();
810         mWmService.mSyncEngine.onSurfacePlacement();
811         mWmService.mAnimator.executeAfterPrepareSurfacesRunnables();
812 
813         checkAppTransitionReady(surfacePlacer);
814 
815         // Defer starting the recents animation until the wallpaper has drawn
816         final RecentsAnimationController recentsAnimationController =
817                 mWmService.getRecentsAnimationController();
818         if (recentsAnimationController != null) {
819             recentsAnimationController.checkAnimationReady(defaultDisplay.mWallpaperController);
820         }
821         mWmService.mAtmService.mBackNavigationController
822                 .checkAnimationReady(defaultDisplay.mWallpaperController);
823 
824         for (int displayNdx = 0; displayNdx < mChildren.size(); ++displayNdx) {
825             final DisplayContent displayContent = mChildren.get(displayNdx);
826             if (displayContent.mWallpaperMayChange) {
827                 ProtoLog.v(WM_DEBUG_WALLPAPER, "Wallpaper may change!  Adjusting");
828                 displayContent.pendingLayoutChanges |= FINISH_LAYOUT_REDO_WALLPAPER;
829                 if (DEBUG_LAYOUT_REPEATS) {
830                     surfacePlacer.debugLayoutRepeats("WallpaperMayChange",
831                             displayContent.pendingLayoutChanges);
832                 }
833             }
834         }
835 
836         if (mWmService.mFocusMayChange) {
837             mWmService.mFocusMayChange = false;
838             mWmService.updateFocusedWindowLocked(UPDATE_FOCUS_PLACING_SURFACES,
839                     false /*updateInputWindows*/);
840         }
841 
842         if (isLayoutNeeded()) {
843             defaultDisplay.pendingLayoutChanges |= FINISH_LAYOUT_REDO_LAYOUT;
844             if (DEBUG_LAYOUT_REPEATS) {
845                 surfacePlacer.debugLayoutRepeats("mLayoutNeeded",
846                         defaultDisplay.pendingLayoutChanges);
847             }
848         }
849 
850         handleResizingWindows();
851 
852         if (mWmService.mDisplayFrozen) {
853             ProtoLog.v(WM_DEBUG_ORIENTATION,
854                     "With display frozen, orientationChangeComplete=%b",
855                     mOrientationChangeComplete);
856         }
857         if (mOrientationChangeComplete) {
858             if (mWmService.mWindowsFreezingScreen != WINDOWS_FREEZING_SCREENS_NONE) {
859                 mWmService.mWindowsFreezingScreen = WINDOWS_FREEZING_SCREENS_NONE;
860                 mWmService.mLastFinishedFreezeSource = mLastWindowFreezeSource;
861                 mWmService.mH.removeMessages(WINDOW_FREEZE_TIMEOUT);
862             }
863             mWmService.stopFreezingDisplayLocked();
864         }
865 
866         // Destroy the surface of any windows that are no longer visible.
867         i = mWmService.mDestroySurface.size();
868         if (i > 0) {
869             do {
870                 i--;
871                 WindowState win = mWmService.mDestroySurface.get(i);
872                 win.mDestroying = false;
873                 final DisplayContent displayContent = win.getDisplayContent();
874                 if (displayContent.mInputMethodWindow == win) {
875                     displayContent.setInputMethodWindowLocked(null);
876                 }
877                 if (displayContent.mWallpaperController.isWallpaperTarget(win)) {
878                     displayContent.pendingLayoutChanges |= FINISH_LAYOUT_REDO_WALLPAPER;
879                 }
880                 win.destroySurfaceUnchecked();
881             } while (i > 0);
882             mWmService.mDestroySurface.clear();
883         }
884 
885         for (int displayNdx = 0; displayNdx < mChildren.size(); ++displayNdx) {
886             final DisplayContent displayContent = mChildren.get(displayNdx);
887             if (displayContent.pendingLayoutChanges != 0) {
888                 displayContent.setLayoutNeeded();
889             }
890         }
891 
892         if (!mWmService.mDisplayFrozen) {
893             final float brightnessOverride = mScreenBrightnessOverride < PowerManager.BRIGHTNESS_MIN
894                     || mScreenBrightnessOverride > PowerManager.BRIGHTNESS_MAX
895                     ? PowerManager.BRIGHTNESS_INVALID_FLOAT : mScreenBrightnessOverride;
896             int brightnessFloatAsIntBits = Float.floatToIntBits(brightnessOverride);
897             // Post these on a handler such that we don't call into power manager service while
898             // holding the window manager lock to avoid lock contention with power manager lock.
899             mHandler.obtainMessage(SET_SCREEN_BRIGHTNESS_OVERRIDE, brightnessFloatAsIntBits,
900                     0).sendToTarget();
901             mHandler.obtainMessage(SET_USER_ACTIVITY_TIMEOUT, mUserActivityTimeout).sendToTarget();
902         }
903 
904         if (mSustainedPerformanceModeCurrent != mSustainedPerformanceModeEnabled) {
905             mSustainedPerformanceModeEnabled = mSustainedPerformanceModeCurrent;
906             mWmService.mPowerManagerInternal.setPowerMode(
907                     Mode.SUSTAINED_PERFORMANCE,
908                     mSustainedPerformanceModeEnabled);
909         }
910 
911         if (mUpdateRotation) {
912             ProtoLog.d(WM_DEBUG_ORIENTATION, "Performing post-rotate rotation");
913             mUpdateRotation = updateRotationUnchecked();
914         }
915 
916         if (!mWmService.mWaitingForDrawnCallbacks.isEmpty()
917                 || (mOrientationChangeComplete && !isLayoutNeeded()
918                 && !mUpdateRotation)) {
919             mWmService.checkDrawnWindowsLocked();
920         }
921 
922         forAllDisplays(dc -> {
923             dc.getInputMonitor().updateInputWindowsLw(true /*force*/);
924             dc.updateSystemGestureExclusion();
925             dc.updateKeepClearAreas();
926             dc.updateTouchExcludeRegion();
927         });
928 
929         // Check to see if we are now in a state where the screen should
930         // be enabled, because the window obscured flags have changed.
931         mWmService.enableScreenIfNeededLocked();
932 
933         mWmService.scheduleAnimationLocked();
934 
935         if (DEBUG_WINDOW_TRACE) Slog.e(TAG, "performSurfacePlacementInner exit");
936     }
937 
checkAppTransitionReady(WindowSurfacePlacer surfacePlacer)938     private void checkAppTransitionReady(WindowSurfacePlacer surfacePlacer) {
939         // Trace all displays app transition by Z-order for pending layout change.
940         for (int i = mChildren.size() - 1; i >= 0; --i) {
941             final DisplayContent curDisplay = mChildren.get(i);
942 
943             // If we are ready to perform an app transition, check through all of the app tokens
944             // to be shown and see if they are ready to go.
945             if (curDisplay.mAppTransition.isReady()) {
946                 // handleAppTransitionReady may modify curDisplay.pendingLayoutChanges.
947                 curDisplay.mAppTransitionController.handleAppTransitionReady();
948                 if (DEBUG_LAYOUT_REPEATS) {
949                     surfacePlacer.debugLayoutRepeats("after handleAppTransitionReady",
950                             curDisplay.pendingLayoutChanges);
951                 }
952             }
953 
954             if (curDisplay.mAppTransition.isRunning() && !curDisplay.isAppTransitioning()) {
955                 // We have finished the animation of an app transition. To do this, we have
956                 // delayed a lot of operations like showing and hiding apps, moving apps in
957                 // Z-order, etc.
958                 // The app token list reflects the correct Z-order, but the window list may now
959                 // be out of sync with it. So here we will just rebuild the entire app window
960                 // list. Fun!
961                 curDisplay.handleAnimatingStoppedAndTransition();
962                 if (DEBUG_LAYOUT_REPEATS) {
963                     surfacePlacer.debugLayoutRepeats("after handleAnimStopAndXitionLock",
964                             curDisplay.pendingLayoutChanges);
965                 }
966             }
967         }
968     }
969 
applySurfaceChangesTransaction()970     private void applySurfaceChangesTransaction() {
971         // TODO(multi-display): Support these features on secondary screens.
972         final DisplayContent defaultDc = mDefaultDisplay;
973         final DisplayInfo defaultInfo = defaultDc.getDisplayInfo();
974         final int defaultDw = defaultInfo.logicalWidth;
975         final int defaultDh = defaultInfo.logicalHeight;
976         final SurfaceControl.Transaction t = defaultDc.getSyncTransaction();
977         if (mWmService.mWatermark != null) {
978             mWmService.mWatermark.positionSurface(defaultDw, defaultDh, t);
979         }
980         if (mWmService.mStrictModeFlash != null) {
981             mWmService.mStrictModeFlash.positionSurface(defaultDw, defaultDh, t);
982         }
983         if (mWmService.mEmulatorDisplayOverlay != null) {
984             mWmService.mEmulatorDisplayOverlay.positionSurface(defaultDw, defaultDh,
985                     defaultDc.getRotation(), t);
986         }
987 
988         final int count = mChildren.size();
989         for (int j = 0; j < count; ++j) {
990             final DisplayContent dc = mChildren.get(j);
991             dc.applySurfaceChangesTransaction();
992         }
993 
994         // Give the display manager a chance to adjust properties like display rotation if it needs
995         // to.
996         mWmService.mDisplayManagerInternal.performTraversal(t);
997         if (t != defaultDc.mSyncTransaction) {
998             SurfaceControl.mergeToGlobalTransaction(t);
999         }
1000     }
1001 
1002     /**
1003      * Handles resizing windows during surface placement.
1004      */
handleResizingWindows()1005     private void handleResizingWindows() {
1006         for (int i = mWmService.mResizingWindows.size() - 1; i >= 0; i--) {
1007             WindowState win = mWmService.mResizingWindows.get(i);
1008             if (win.mAppFreezing || win.getDisplayContent().mWaitingForConfig) {
1009                 // Don't remove this window until rotation has completed and is not waiting for the
1010                 // complete configuration.
1011                 continue;
1012             }
1013             win.reportResized();
1014             mWmService.mResizingWindows.remove(i);
1015         }
1016     }
1017 
1018     /**
1019      * @param w        WindowState this method is applied to.
1020      * @param obscured True if there is a window on top of this obscuring the display.
1021      * @param syswin   System window?
1022      * @return True when the display contains content to show the user. When false, the display
1023      * manager may choose to mirror or blank the display.
1024      */
handleNotObscuredLocked(WindowState w, boolean obscured, boolean syswin)1025     boolean handleNotObscuredLocked(WindowState w, boolean obscured, boolean syswin) {
1026         final WindowManager.LayoutParams attrs = w.mAttrs;
1027         final int attrFlags = attrs.flags;
1028         final boolean onScreen = w.isOnScreen();
1029         final boolean canBeSeen = w.isDisplayed();
1030         final int privateflags = attrs.privateFlags;
1031         boolean displayHasContent = false;
1032 
1033         ProtoLog.d(WM_DEBUG_KEEP_SCREEN_ON,
1034                 "handleNotObscuredLocked w: %s, w.mHasSurface: %b, w.isOnScreen(): %b, w"
1035                         + ".isDisplayedLw(): %b, w.mAttrs.userActivityTimeout: %d",
1036                 w, w.mHasSurface, onScreen, w.isDisplayed(), w.mAttrs.userActivityTimeout);
1037         if (w.mHasSurface && onScreen) {
1038             if (!syswin && w.mAttrs.userActivityTimeout >= 0 && mUserActivityTimeout < 0) {
1039                 mUserActivityTimeout = w.mAttrs.userActivityTimeout;
1040                 ProtoLog.d(WM_DEBUG_KEEP_SCREEN_ON, "mUserActivityTimeout set to %d",
1041                         mUserActivityTimeout);
1042             }
1043         }
1044         if (w.mHasSurface && canBeSeen) {
1045             if (!syswin && w.mAttrs.screenBrightness >= 0
1046                     && Float.isNaN(mScreenBrightnessOverride)) {
1047                 mScreenBrightnessOverride = w.mAttrs.screenBrightness;
1048             }
1049 
1050             final int type = attrs.type;
1051             // This function assumes that the contents of the default display are processed first
1052             // before secondary displays.
1053             final DisplayContent displayContent = w.getDisplayContent();
1054             if (displayContent != null && displayContent.isDefaultDisplay) {
1055                 // While a dream or keyguard is showing, obscure ordinary application content on
1056                 // secondary displays (by forcibly enabling mirroring unless there is other content
1057                 // we want to show) but still allow opaque keyguard dialogs to be shown.
1058                 if (w.isDreamWindow() || mWmService.mPolicy.isKeyguardShowing()) {
1059                     mObscureApplicationContentOnSecondaryDisplays = true;
1060                 }
1061                 displayHasContent = true;
1062             } else if (displayContent != null &&
1063                     (!mObscureApplicationContentOnSecondaryDisplays
1064                             || displayContent.isKeyguardAlwaysUnlocked()
1065                             || (obscured && type == TYPE_KEYGUARD_DIALOG))) {
1066                 // Allow full screen keyguard presentation dialogs to be seen, or simply ignore the
1067                 // keyguard if this display is always unlocked.
1068                 displayHasContent = true;
1069             }
1070             if ((privateflags & PRIVATE_FLAG_SUSTAINED_PERFORMANCE_MODE) != 0) {
1071                 mSustainedPerformanceModeCurrent = true;
1072             }
1073         }
1074 
1075         return displayHasContent;
1076     }
1077 
updateRotationUnchecked()1078     boolean updateRotationUnchecked() {
1079         boolean changed = false;
1080         for (int i = mChildren.size() - 1; i >= 0; i--) {
1081             if (mChildren.get(i).getDisplayRotation().updateRotationAndSendNewConfigIfChanged()) {
1082                 changed = true;
1083             }
1084         }
1085         return changed;
1086     }
1087 
copyAnimToLayoutParams()1088     boolean copyAnimToLayoutParams() {
1089         boolean doRequest = false;
1090 
1091         final int bulkUpdateParams = mWmService.mAnimator.mBulkUpdateParams;
1092         if ((bulkUpdateParams & SET_UPDATE_ROTATION) != 0) {
1093             mUpdateRotation = true;
1094             doRequest = true;
1095         }
1096         if (mOrientationChangeComplete) {
1097             mLastWindowFreezeSource = mWmService.mAnimator.mLastWindowFreezeSource;
1098             if (mWmService.mWindowsFreezingScreen != WINDOWS_FREEZING_SCREENS_NONE) {
1099                 doRequest = true;
1100             }
1101         }
1102 
1103         if ((bulkUpdateParams & SET_WALLPAPER_ACTION_PENDING) != 0) {
1104             mWallpaperActionPending = true;
1105         }
1106 
1107         return doRequest;
1108     }
1109 
1110     private final class MyHandler extends Handler {
1111 
MyHandler(Looper looper)1112         public MyHandler(Looper looper) {
1113             super(looper);
1114         }
1115 
1116         @Override
handleMessage(Message msg)1117         public void handleMessage(Message msg) {
1118             switch (msg.what) {
1119                 case SET_SCREEN_BRIGHTNESS_OVERRIDE:
1120                     mWmService.mPowerManagerInternal.setScreenBrightnessOverrideFromWindowManager(
1121                             Float.intBitsToFloat(msg.arg1));
1122                     break;
1123                 case SET_USER_ACTIVITY_TIMEOUT:
1124                     mWmService.mPowerManagerInternal.
1125                             setUserActivityTimeoutOverrideFromWindowManager((Long) msg.obj);
1126                     break;
1127                 default:
1128                     break;
1129             }
1130         }
1131     }
1132 
dumpDisplayContents(PrintWriter pw)1133     void dumpDisplayContents(PrintWriter pw) {
1134         pw.println("WINDOW MANAGER DISPLAY CONTENTS (dumpsys window displays)");
1135         if (mWmService.mDisplayReady) {
1136             final int count = mChildren.size();
1137             for (int i = 0; i < count; ++i) {
1138                 final DisplayContent displayContent = mChildren.get(i);
1139                 displayContent.dump(pw, "  ", true /* dumpAll */);
1140             }
1141         } else {
1142             pw.println("  NO DISPLAY");
1143         }
1144     }
1145 
dumpTopFocusedDisplayId(PrintWriter pw)1146     void dumpTopFocusedDisplayId(PrintWriter pw) {
1147         pw.print("  mTopFocusedDisplayId=");
1148         pw.println(mTopFocusedDisplayId);
1149     }
1150 
dumpLayoutNeededDisplayIds(PrintWriter pw)1151     void dumpLayoutNeededDisplayIds(PrintWriter pw) {
1152         if (!isLayoutNeeded()) {
1153             return;
1154         }
1155         pw.print("  mLayoutNeeded on displays=");
1156         final int count = mChildren.size();
1157         for (int displayNdx = 0; displayNdx < count; ++displayNdx) {
1158             final DisplayContent displayContent = mChildren.get(displayNdx);
1159             if (displayContent.isLayoutNeeded()) {
1160                 pw.print(displayContent.getDisplayId());
1161             }
1162         }
1163         pw.println();
1164     }
1165 
dumpWindowsNoHeader(PrintWriter pw, boolean dumpAll, ArrayList<WindowState> windows)1166     void dumpWindowsNoHeader(PrintWriter pw, boolean dumpAll, ArrayList<WindowState> windows) {
1167         final int[] index = new int[1];
1168         forAllWindows((w) -> {
1169             if (windows == null || windows.contains(w)) {
1170                 pw.println("  Window #" + index[0] + " " + w + ":");
1171                 w.dump(pw, "    ", dumpAll || windows != null);
1172                 index[0] = index[0] + 1;
1173             }
1174         }, true /* traverseTopToBottom */);
1175     }
1176 
dumpTokens(PrintWriter pw, boolean dumpAll)1177     void dumpTokens(PrintWriter pw, boolean dumpAll) {
1178         pw.println("  All tokens:");
1179         for (int i = mChildren.size() - 1; i >= 0; --i) {
1180             mChildren.get(i).dumpTokens(pw, dumpAll);
1181         }
1182     }
1183 
1184     @Override
dumpDebug(ProtoOutputStream proto, long fieldId, @WindowTraceLogLevel int logLevel)1185     public void dumpDebug(ProtoOutputStream proto, long fieldId,
1186             @WindowTraceLogLevel int logLevel) {
1187         if (logLevel == WindowTraceLogLevel.CRITICAL && !isVisible()) {
1188             return;
1189         }
1190 
1191         final long token = proto.start(fieldId);
1192         super.dumpDebug(proto, WINDOW_CONTAINER, logLevel);
1193 
1194         mTaskSupervisor.getKeyguardController().dumpDebug(proto, KEYGUARD_CONTROLLER);
1195         proto.write(IS_HOME_RECENTS_COMPONENT,
1196                 mTaskSupervisor.mRecentTasks.isRecentsComponentHomeActivity(mCurrentUser));
1197         proto.end(token);
1198     }
1199 
1200     @Override
getName()1201     String getName() {
1202         return "ROOT";
1203     }
1204 
1205     @Override
removeChild(DisplayContent dc)1206     protected void removeChild(DisplayContent dc) {
1207         super.removeChild(dc);
1208         if (mTopFocusedDisplayId == dc.getDisplayId()) {
1209             mWmService.updateFocusedWindowLocked(
1210                     UPDATE_FOCUS_NORMAL, true /* updateInputWindows */);
1211         }
1212     }
1213 
1214     /**
1215      * For all display at or below this call the callback.
1216      *
1217      * @param callback Callback to be called for every display.
1218      */
forAllDisplays(Consumer<DisplayContent> callback)1219     void forAllDisplays(Consumer<DisplayContent> callback) {
1220         for (int i = mChildren.size() - 1; i >= 0; --i) {
1221             callback.accept(mChildren.get(i));
1222         }
1223     }
1224 
forAllDisplayPolicies(Consumer<DisplayPolicy> callback)1225     void forAllDisplayPolicies(Consumer<DisplayPolicy> callback) {
1226         for (int i = mChildren.size() - 1; i >= 0; --i) {
1227             callback.accept(mChildren.get(i).getDisplayPolicy());
1228         }
1229     }
1230 
1231     /**
1232      * Get current topmost focused IME window in system.
1233      * Will look on all displays in current Z-order.
1234      */
getCurrentInputMethodWindow()1235     WindowState getCurrentInputMethodWindow() {
1236         for (int i = mChildren.size() - 1; i >= 0; --i) {
1237             final DisplayContent displayContent = mChildren.get(i);
1238             if (displayContent.mInputMethodWindow != null) {
1239                 return displayContent.mInputMethodWindow;
1240             }
1241         }
1242         return null;
1243     }
1244 
getDisplayContextsWithNonToastVisibleWindows(int pid, List<Context> outContexts)1245     void getDisplayContextsWithNonToastVisibleWindows(int pid, List<Context> outContexts) {
1246         if (outContexts == null) {
1247             return;
1248         }
1249         for (int i = mChildren.size() - 1; i >= 0; --i) {
1250             DisplayContent dc = mChildren.get(i);
1251             if (dc.getWindow(w -> pid == w.mSession.mPid && w.isVisibleNow()
1252                     && w.mAttrs.type != WindowManager.LayoutParams.TYPE_TOAST) != null) {
1253                 outContexts.add(dc.getDisplayUiContext());
1254             }
1255         }
1256     }
1257 
1258     @Nullable
getDisplayUiContext(int displayId)1259     Context getDisplayUiContext(int displayId) {
1260         return getDisplayContent(displayId) != null
1261                 ? getDisplayContent(displayId).getDisplayUiContext() : null;
1262     }
1263 
setWindowManager(WindowManagerService wm)1264     void setWindowManager(WindowManagerService wm) {
1265         mWindowManager = wm;
1266         mDisplayManager = mService.mContext.getSystemService(DisplayManager.class);
1267         mDisplayManager.registerDisplayListener(this, mService.mUiHandler);
1268         mDisplayManagerInternal = LocalServices.getService(DisplayManagerInternal.class);
1269 
1270         final Display[] displays = mDisplayManager.getDisplays();
1271         for (int displayNdx = 0; displayNdx < displays.length; ++displayNdx) {
1272             final Display display = displays[displayNdx];
1273             final DisplayContent displayContent =
1274                     new DisplayContent(display, this, mDeviceStateController);
1275             addChild(displayContent, POSITION_BOTTOM);
1276             if (displayContent.mDisplayId == DEFAULT_DISPLAY) {
1277                 mDefaultDisplay = displayContent;
1278             }
1279         }
1280 
1281         final TaskDisplayArea defaultTaskDisplayArea = getDefaultTaskDisplayArea();
1282         defaultTaskDisplayArea.getOrCreateRootHomeTask(ON_TOP);
1283         positionChildAt(POSITION_TOP, defaultTaskDisplayArea.mDisplayContent,
1284                 false /* includingParents */);
1285     }
1286 
1287     /**
1288      * Called just before display manager has applied the device state to the displays
1289      * @param deviceState device state as defined by
1290      *        {@link android.hardware.devicestate.DeviceStateManager}
1291      */
onDisplayManagerReceivedDeviceState(int deviceState)1292     void onDisplayManagerReceivedDeviceState(int deviceState) {
1293         mDeviceStateController.onDeviceStateReceivedByDisplayManager(deviceState);
1294     }
1295 
1296     // TODO(multi-display): Look at all callpoints to make sure they make sense in multi-display.
getDefaultDisplay()1297     DisplayContent getDefaultDisplay() {
1298         return mDefaultDisplay;
1299     }
1300 
1301     @NonNull
getDisplayRotationCoordinator()1302     DisplayRotationCoordinator getDisplayRotationCoordinator() {
1303         return mDisplayRotationCoordinator;
1304     }
1305 
1306     /**
1307      * Get the default display area on the device dedicated to app windows. This one should be used
1308      * only as a fallback location for activity launches when no target display area is specified,
1309      * or for cases when multi-instance is not supported yet (like Split-screen, Freeform, PiP or
1310      * Recents).
1311      */
getDefaultTaskDisplayArea()1312     TaskDisplayArea getDefaultTaskDisplayArea() {
1313         return mDefaultDisplay.getDefaultTaskDisplayArea();
1314     }
1315 
1316     /**
1317      * Get an existing instance of {@link DisplayContent} that has the given uniqueId. Unique ID is
1318      * defined in {@link DisplayInfo#uniqueId}.
1319      *
1320      * @param uniqueId the unique ID of the display
1321      * @return the {@link DisplayContent} or {@code null} if nothing is found.
1322      */
getDisplayContent(String uniqueId)1323     DisplayContent getDisplayContent(String uniqueId) {
1324         for (int i = getChildCount() - 1; i >= 0; --i) {
1325             final DisplayContent display = getChildAt(i);
1326             final boolean isValid = display.mDisplay.isValid();
1327             if (isValid && display.mDisplay.getUniqueId().equals(uniqueId)) {
1328                 return display;
1329             }
1330         }
1331 
1332         return null;
1333     }
1334 
1335     // TODO: Look into consolidating with getDisplayContentOrCreate()
getDisplayContent(int displayId)1336     DisplayContent getDisplayContent(int displayId) {
1337         for (int i = getChildCount() - 1; i >= 0; --i) {
1338             final DisplayContent displayContent = getChildAt(i);
1339             if (displayContent.mDisplayId == displayId) {
1340                 return displayContent;
1341             }
1342         }
1343         return null;
1344     }
1345 
1346     /**
1347      * Get an existing instance of {@link DisplayContent} or create new if there is a
1348      * corresponding record in display manager.
1349      */
1350     // TODO: Look into consolidating with getDisplayContent()
1351     @Nullable
getDisplayContentOrCreate(int displayId)1352     DisplayContent getDisplayContentOrCreate(int displayId) {
1353         DisplayContent displayContent = getDisplayContent(displayId);
1354         if (displayContent != null) {
1355             return displayContent;
1356         }
1357         if (mDisplayManager == null) {
1358             // The system isn't fully initialized yet.
1359             return null;
1360         }
1361         final Display display = mDisplayManager.getDisplay(displayId);
1362         if (display == null) {
1363             // The display is not registered in DisplayManager.
1364             return null;
1365         }
1366         // The display hasn't been added to ActivityManager yet, create a new record now.
1367         displayContent = new DisplayContent(display, this, mDeviceStateController);
1368         addChild(displayContent, POSITION_BOTTOM);
1369         return displayContent;
1370     }
1371 
getDefaultDisplayHomeActivityForUser(int userId)1372     ActivityRecord getDefaultDisplayHomeActivityForUser(int userId) {
1373         return getDefaultTaskDisplayArea().getHomeActivityForUser(userId);
1374     }
1375 
startHomeOnAllDisplays(int userId, String reason)1376     boolean startHomeOnAllDisplays(int userId, String reason) {
1377         boolean homeStarted = false;
1378         for (int i = getChildCount() - 1; i >= 0; i--) {
1379             final int displayId = getChildAt(i).mDisplayId;
1380             homeStarted |= startHomeOnDisplay(userId, reason, displayId);
1381         }
1382         return homeStarted;
1383     }
1384 
startHomeOnEmptyDisplays(String reason)1385     void startHomeOnEmptyDisplays(String reason) {
1386         forAllTaskDisplayAreas(taskDisplayArea -> {
1387             if (taskDisplayArea.topRunningActivity() == null) {
1388                 int userId = mWmService.getUserAssignedToDisplay(taskDisplayArea.getDisplayId());
1389                 startHomeOnTaskDisplayArea(userId, reason, taskDisplayArea,
1390                         false /* allowInstrumenting */, false /* fromHomeKey */);
1391             }
1392         });
1393     }
1394 
startHomeOnDisplay(int userId, String reason, int displayId)1395     boolean startHomeOnDisplay(int userId, String reason, int displayId) {
1396         return startHomeOnDisplay(userId, reason, displayId, false /* allowInstrumenting */,
1397                 false /* fromHomeKey */);
1398     }
1399 
startHomeOnDisplay(int userId, String reason, int displayId, boolean allowInstrumenting, boolean fromHomeKey)1400     boolean startHomeOnDisplay(int userId, String reason, int displayId, boolean allowInstrumenting,
1401             boolean fromHomeKey) {
1402         // Fallback to top focused display or default display if the displayId is invalid.
1403         if (displayId == INVALID_DISPLAY) {
1404             final Task rootTask = getTopDisplayFocusedRootTask();
1405             displayId = rootTask != null ? rootTask.getDisplayId() : DEFAULT_DISPLAY;
1406         }
1407 
1408         final DisplayContent display = getDisplayContent(displayId);
1409         return display.reduceOnAllTaskDisplayAreas((taskDisplayArea, result) ->
1410                         result | startHomeOnTaskDisplayArea(userId, reason, taskDisplayArea,
1411                                 allowInstrumenting, fromHomeKey),
1412                 false /* initValue */);
1413     }
1414 
1415     /**
1416      * This starts home activity on display areas that can have system decorations based on
1417      * displayId - default display area always uses primary home component.
1418      * For secondary display areas, the home activity must have category SECONDARY_HOME and then
1419      * resolves according to the priorities listed below.
1420      * - If default home is not set, always use the secondary home defined in the config.
1421      * - Use currently selected primary home activity.
1422      * - Use the activity in the same package as currently selected primary home activity.
1423      * If there are multiple activities matched, use first one.
1424      * - Use the secondary home defined in the config.
1425      */
startHomeOnTaskDisplayArea(int userId, String reason, TaskDisplayArea taskDisplayArea, boolean allowInstrumenting, boolean fromHomeKey)1426     boolean startHomeOnTaskDisplayArea(int userId, String reason, TaskDisplayArea taskDisplayArea,
1427             boolean allowInstrumenting, boolean fromHomeKey) {
1428         // Fallback to top focused display area if the provided one is invalid.
1429         if (taskDisplayArea == null) {
1430             final Task rootTask = getTopDisplayFocusedRootTask();
1431             taskDisplayArea = rootTask != null ? rootTask.getDisplayArea()
1432                     : getDefaultTaskDisplayArea();
1433         }
1434 
1435         Intent homeIntent = null;
1436         ActivityInfo aInfo = null;
1437         if (taskDisplayArea == getDefaultTaskDisplayArea()
1438                 || mWmService.shouldPlacePrimaryHomeOnDisplay(
1439                         taskDisplayArea.getDisplayId(), userId)) {
1440             homeIntent = mService.getHomeIntent();
1441             aInfo = resolveHomeActivity(userId, homeIntent);
1442         } else if (shouldPlaceSecondaryHomeOnDisplayArea(taskDisplayArea)) {
1443             Pair<ActivityInfo, Intent> info = resolveSecondaryHomeActivity(userId, taskDisplayArea);
1444             aInfo = info.first;
1445             homeIntent = info.second;
1446         }
1447         if (aInfo == null || homeIntent == null) {
1448             return false;
1449         }
1450 
1451         if (!canStartHomeOnDisplayArea(aInfo, taskDisplayArea, allowInstrumenting)) {
1452             return false;
1453         }
1454 
1455         // Updates the home component of the intent.
1456         homeIntent.setComponent(new ComponentName(aInfo.applicationInfo.packageName, aInfo.name));
1457         homeIntent.setFlags(homeIntent.getFlags() | FLAG_ACTIVITY_NEW_TASK);
1458         // Updates the extra information of the intent.
1459         if (fromHomeKey) {
1460             homeIntent.putExtra(WindowManagerPolicy.EXTRA_FROM_HOME_KEY, true);
1461             if (mWindowManager.getRecentsAnimationController() != null) {
1462                 mWindowManager.getRecentsAnimationController().cancelAnimationForHomeStart();
1463             }
1464         }
1465         homeIntent.putExtra(WindowManagerPolicy.EXTRA_START_REASON, reason);
1466 
1467         // Update the reason for ANR debugging to verify if the user activity is the one that
1468         // actually launched.
1469         final String myReason = reason + ":" + userId + ":" + UserHandle.getUserId(
1470                 aInfo.applicationInfo.uid) + ":" + taskDisplayArea.getDisplayId();
1471         mService.getActivityStartController().startHomeActivity(homeIntent, aInfo, myReason,
1472                 taskDisplayArea);
1473         return true;
1474     }
1475 
1476     /**
1477      * This resolves the home activity info.
1478      *
1479      * @return the home activity info if any.
1480      */
1481     @VisibleForTesting
resolveHomeActivity(int userId, Intent homeIntent)1482     ActivityInfo resolveHomeActivity(int userId, Intent homeIntent) {
1483         final int flags = ActivityManagerService.STOCK_PM_FLAGS;
1484         final ComponentName comp = homeIntent.getComponent();
1485         ActivityInfo aInfo = null;
1486         try {
1487             if (comp != null) {
1488                 // Factory test.
1489                 aInfo = AppGlobals.getPackageManager().getActivityInfo(comp, flags, userId);
1490             } else {
1491                 final String resolvedType =
1492                         homeIntent.resolveTypeIfNeeded(mService.mContext.getContentResolver());
1493                 final ResolveInfo info = mTaskSupervisor.resolveIntent(homeIntent, resolvedType,
1494                         userId, flags, Binder.getCallingUid(), Binder.getCallingPid());
1495                 if (info != null) {
1496                     aInfo = info.activityInfo;
1497                 }
1498             }
1499         } catch (RemoteException e) {
1500             // ignore
1501         }
1502 
1503         if (aInfo == null) {
1504             Slogf.wtf(TAG, new Exception(), "No home screen found for %s and user %d", homeIntent,
1505                     userId);
1506             return null;
1507         }
1508 
1509         aInfo = new ActivityInfo(aInfo);
1510         aInfo.applicationInfo = mService.getAppInfoForUser(aInfo.applicationInfo, userId);
1511         return aInfo;
1512     }
1513 
1514     @VisibleForTesting
resolveSecondaryHomeActivity(int userId, @NonNull TaskDisplayArea taskDisplayArea)1515     Pair<ActivityInfo, Intent> resolveSecondaryHomeActivity(int userId,
1516             @NonNull TaskDisplayArea taskDisplayArea) {
1517         if (taskDisplayArea == getDefaultTaskDisplayArea()) {
1518             throw new IllegalArgumentException(
1519                     "resolveSecondaryHomeActivity: Should not be default task container");
1520         }
1521         // Resolve activities in the same package as currently selected primary home activity.
1522         Intent homeIntent = mService.getHomeIntent();
1523         ActivityInfo aInfo = resolveHomeActivity(userId, homeIntent);
1524         if (aInfo != null) {
1525             if (ResolverActivity.class.getName().equals(aInfo.name)) {
1526                 // Always fallback to secondary home component if default home is not set.
1527                 aInfo = null;
1528             } else {
1529                 // Look for secondary home activities in the currently selected default home
1530                 // package.
1531                 homeIntent = mService.getSecondaryHomeIntent(aInfo.applicationInfo.packageName);
1532                 final List<ResolveInfo> resolutions = resolveActivities(userId, homeIntent);
1533                 final int size = resolutions.size();
1534                 final String targetName = aInfo.name;
1535                 aInfo = null;
1536                 for (int i = 0; i < size; i++) {
1537                     ResolveInfo resolveInfo = resolutions.get(i);
1538                     // We need to traverse all resolutions to check if the currently selected
1539                     // default home activity is present.
1540                     if (resolveInfo.activityInfo.name.equals(targetName)) {
1541                         aInfo = resolveInfo.activityInfo;
1542                         break;
1543                     }
1544                 }
1545                 if (aInfo == null && size > 0) {
1546                     // First one is the best.
1547                     aInfo = resolutions.get(0).activityInfo;
1548                 }
1549             }
1550         }
1551 
1552         if (aInfo != null) {
1553             if (!canStartHomeOnDisplayArea(aInfo, taskDisplayArea,
1554                     false /* allowInstrumenting */)) {
1555                 aInfo = null;
1556             }
1557         }
1558 
1559         // Fallback to secondary home component.
1560         if (aInfo == null) {
1561             homeIntent = mService.getSecondaryHomeIntent(null);
1562             aInfo = resolveHomeActivity(userId, homeIntent);
1563         }
1564         return Pair.create(aInfo, homeIntent);
1565     }
1566 
1567     /**
1568      * Retrieve all activities that match the given intent.
1569      * The list should already ordered from best to worst matched.
1570      * {@link android.content.pm.PackageManager#queryIntentActivities}
1571      */
1572     @VisibleForTesting
resolveActivities(int userId, Intent homeIntent)1573     List<ResolveInfo> resolveActivities(int userId, Intent homeIntent) {
1574         List<ResolveInfo> resolutions;
1575         try {
1576             final String resolvedType =
1577                     homeIntent.resolveTypeIfNeeded(mService.mContext.getContentResolver());
1578             resolutions = AppGlobals.getPackageManager().queryIntentActivities(homeIntent,
1579                     resolvedType, ActivityManagerService.STOCK_PM_FLAGS, userId).getList();
1580 
1581         } catch (RemoteException e) {
1582             resolutions = new ArrayList<>();
1583         }
1584         return resolutions;
1585     }
1586 
resumeHomeActivity(ActivityRecord prev, String reason, TaskDisplayArea taskDisplayArea)1587     boolean resumeHomeActivity(ActivityRecord prev, String reason,
1588             TaskDisplayArea taskDisplayArea) {
1589         if (!mService.isBooting() && !mService.isBooted()) {
1590             // Not ready yet!
1591             return false;
1592         }
1593 
1594         if (taskDisplayArea == null) {
1595             taskDisplayArea = getDefaultTaskDisplayArea();
1596         }
1597 
1598         final ActivityRecord r = taskDisplayArea.getHomeActivity();
1599         final String myReason = reason + " resumeHomeActivity";
1600 
1601         // Only resume home activity if isn't finishing.
1602         if (r != null && !r.finishing) {
1603             r.moveFocusableActivityToTop(myReason);
1604             return resumeFocusedTasksTopActivities(r.getRootTask(), prev, null);
1605         }
1606         int userId = mWmService.getUserAssignedToDisplay(taskDisplayArea.getDisplayId());
1607         return startHomeOnTaskDisplayArea(userId, myReason, taskDisplayArea,
1608                 false /* allowInstrumenting */, false /* fromHomeKey */);
1609     }
1610 
1611     /**
1612      * Check if the display area is valid for secondary home activity.
1613      *
1614      * @param taskDisplayArea The target display area.
1615      * @return {@code true} if allow to launch, {@code false} otherwise.
1616      */
shouldPlaceSecondaryHomeOnDisplayArea(TaskDisplayArea taskDisplayArea)1617     boolean shouldPlaceSecondaryHomeOnDisplayArea(TaskDisplayArea taskDisplayArea) {
1618         if (getDefaultTaskDisplayArea() == taskDisplayArea) {
1619             throw new IllegalArgumentException(
1620                     "shouldPlaceSecondaryHomeOnDisplay: Should not be on default task container");
1621         } else if (taskDisplayArea == null) {
1622             return false;
1623         }
1624 
1625         if (!taskDisplayArea.canHostHomeTask()) {
1626             // Can't launch home on a TaskDisplayArea that does not support root home task
1627             return false;
1628         }
1629 
1630         if (taskDisplayArea.getDisplayId() != DEFAULT_DISPLAY && !mService.mSupportsMultiDisplay) {
1631             // Can't launch home on secondary display if device does not support multi-display.
1632             return false;
1633         }
1634 
1635         final boolean deviceProvisioned = Settings.Global.getInt(
1636                 mService.mContext.getContentResolver(),
1637                 Settings.Global.DEVICE_PROVISIONED, 0) != 0;
1638         if (!deviceProvisioned) {
1639             // Can't launch home on secondary display areas before device is provisioned.
1640             return false;
1641         }
1642 
1643         if (!StorageManager.isUserKeyUnlocked(mCurrentUser)) {
1644             // Can't launch home on secondary display areas if device is still locked.
1645             return false;
1646         }
1647 
1648         final DisplayContent display = taskDisplayArea.getDisplayContent();
1649         if (display == null || display.isRemoved() || !display.supportsSystemDecorations()) {
1650             // Can't launch home on display that doesn't support system decorations.
1651             return false;
1652         }
1653 
1654         return true;
1655     }
1656 
1657     /**
1658      * Check if home activity start should be allowed on a display.
1659      *
1660      * @param homeInfo           {@code ActivityInfo} of the home activity that is going to be
1661      *                           launched.
1662      * @param taskDisplayArea    The target display area.
1663      * @param allowInstrumenting Whether launching home should be allowed if being instrumented.
1664      * @return {@code true} if allow to launch, {@code false} otherwise.
1665      */
canStartHomeOnDisplayArea(ActivityInfo homeInfo, TaskDisplayArea taskDisplayArea, boolean allowInstrumenting)1666     boolean canStartHomeOnDisplayArea(ActivityInfo homeInfo, TaskDisplayArea taskDisplayArea,
1667             boolean allowInstrumenting) {
1668         if (mService.mFactoryTest == FactoryTest.FACTORY_TEST_LOW_LEVEL
1669                 && mService.mTopAction == null) {
1670             // We are running in factory test mode, but unable to find the factory test app, so
1671             // just sit around displaying the error message and don't try to start anything.
1672             return false;
1673         }
1674 
1675         final WindowProcessController app =
1676                 mService.getProcessController(homeInfo.processName, homeInfo.applicationInfo.uid);
1677         if (!allowInstrumenting && app != null && app.isInstrumenting()) {
1678             // Don't do this if the home app is currently being instrumented.
1679             return false;
1680         }
1681 
1682         final int displayId = taskDisplayArea != null ? taskDisplayArea.getDisplayId()
1683                 : INVALID_DISPLAY;
1684         if (displayId == DEFAULT_DISPLAY || (displayId != INVALID_DISPLAY
1685                 && (displayId == mService.mVr2dDisplayId
1686                 || mWmService.shouldPlacePrimaryHomeOnDisplay(displayId)))) {
1687             // No restrictions to default display, vr 2d display or main display for visible users.
1688             return true;
1689         }
1690 
1691         if (!shouldPlaceSecondaryHomeOnDisplayArea(taskDisplayArea)) {
1692             return false;
1693         }
1694 
1695         final boolean supportMultipleInstance = homeInfo.launchMode != LAUNCH_SINGLE_TASK
1696                 && homeInfo.launchMode != LAUNCH_SINGLE_INSTANCE;
1697         if (!supportMultipleInstance) {
1698             // Can't launch home on secondary displays if it requested to be single instance.
1699             return false;
1700         }
1701 
1702         return true;
1703     }
1704 
1705     /**
1706      * Ensure all activities visibility, update orientation and configuration.
1707      *
1708      * @param starting                  The currently starting activity or {@code null} if there is
1709      *                                  none.
1710      * @param displayId                 The id of the display where operation is executed.
1711      * @param markFrozenIfConfigChanged Whether to set {@link ActivityRecord#frozenBeforeDestroy} to
1712      *                                  {@code true} if config changed.
1713      * @param deferResume               Whether to defer resume while updating config.
1714      * @return 'true' if starting activity was kept or wasn't provided, 'false' if it was relaunched
1715      * because of configuration update.
1716      */
ensureVisibilityAndConfig(ActivityRecord starting, int displayId, boolean markFrozenIfConfigChanged, boolean deferResume)1717     boolean ensureVisibilityAndConfig(ActivityRecord starting, int displayId,
1718             boolean markFrozenIfConfigChanged, boolean deferResume) {
1719         // First ensure visibility without updating the config just yet. We need this to know what
1720         // activities are affecting configuration now.
1721         // Passing null here for 'starting' param value, so that visibility of actual starting
1722         // activity will be properly updated.
1723         ensureActivitiesVisible(null /* starting */, 0 /* configChanges */,
1724                 false /* preserveWindows */, false /* notifyClients */);
1725 
1726         if (displayId == INVALID_DISPLAY) {
1727             // The caller didn't provide a valid display id, skip updating config.
1728             return true;
1729         }
1730 
1731         // Force-update the orientation from the WindowManager, since we need the true configuration
1732         // to send to the client now.
1733         final DisplayContent displayContent = getDisplayContent(displayId);
1734         Configuration config = null;
1735         if (displayContent != null) {
1736             config = displayContent.updateOrientation(starting, true /* forceUpdate */);
1737         }
1738         // Visibilities may change so let the starting activity have a chance to report. Can't do it
1739         // when visibility is changed in each AppWindowToken because it may trigger wrong
1740         // configuration push because the visibility of some activities may not be updated yet.
1741         if (starting != null) {
1742             starting.reportDescendantOrientationChangeIfNeeded();
1743         }
1744         if (starting != null && markFrozenIfConfigChanged && config != null) {
1745             starting.frozenBeforeDestroy = true;
1746         }
1747 
1748         if (displayContent != null) {
1749             // Update the configuration of the activities on the display.
1750             return displayContent.updateDisplayOverrideConfigurationLocked(config, starting,
1751                     deferResume, null /* result */);
1752         } else {
1753             return true;
1754         }
1755     }
1756 
1757     /**
1758      * @return a list of pairs, containing activities and their task id which are the top ones in
1759      * each visible root task. The first entry will be the focused activity.
1760      *
1761      * <p>NOTE: If the top activity is in the split screen, the other activities in the same split
1762      * screen will also be returned.
1763      */
getTopVisibleActivities()1764     List<ActivityAssistInfo> getTopVisibleActivities() {
1765         final ArrayList<ActivityAssistInfo> topVisibleActivities = new ArrayList<>();
1766         final ArrayList<ActivityAssistInfo> activityAssistInfos = new ArrayList<>();
1767         final Task topFocusedRootTask = getTopDisplayFocusedRootTask();
1768         // Traverse all displays.
1769         forAllRootTasks(rootTask -> {
1770             // Get top activity from a visible root task and add it to the list.
1771             if (rootTask.shouldBeVisible(null /* starting */)) {
1772                 final ActivityRecord top = rootTask.getTopNonFinishingActivity();
1773                 if (top != null) {
1774                     activityAssistInfos.clear();
1775                     activityAssistInfos.add(new ActivityAssistInfo(top));
1776                     // Check if the activity on the split screen.
1777                     final Task adjacentTask = top.getTask().getAdjacentTask();
1778                     if (adjacentTask != null) {
1779                         final ActivityRecord adjacentActivityRecord =
1780                                 adjacentTask.getTopNonFinishingActivity();
1781                         if (adjacentActivityRecord != null) {
1782                             activityAssistInfos.add(new ActivityAssistInfo(adjacentActivityRecord));
1783                         }
1784                     }
1785                     if (rootTask == topFocusedRootTask) {
1786                         topVisibleActivities.addAll(0, activityAssistInfos);
1787                     } else {
1788                         topVisibleActivities.addAll(activityAssistInfos);
1789                     }
1790                 }
1791             }
1792         });
1793         return topVisibleActivities;
1794     }
1795 
1796     @Nullable
getTopDisplayFocusedRootTask()1797     Task getTopDisplayFocusedRootTask() {
1798         for (int i = getChildCount() - 1; i >= 0; --i) {
1799             final Task focusedRootTask = getChildAt(i).getFocusedRootTask();
1800             if (focusedRootTask != null) {
1801                 return focusedRootTask;
1802             }
1803         }
1804         return null;
1805     }
1806 
1807     @Nullable
getTopResumedActivity()1808     ActivityRecord getTopResumedActivity() {
1809         final Task focusedRootTask = getTopDisplayFocusedRootTask();
1810         if (focusedRootTask == null) {
1811             return null;
1812         }
1813         final ActivityRecord resumedActivity = focusedRootTask.getTopResumedActivity();
1814         if (resumedActivity != null && resumedActivity.app != null) {
1815             return resumedActivity;
1816         }
1817         // The top focused root task might not have a resumed activity yet - look on all displays in
1818         // focus order.
1819         return getItemFromTaskDisplayAreas(TaskDisplayArea::getFocusedActivity);
1820     }
1821 
isTopDisplayFocusedRootTask(Task task)1822     boolean isTopDisplayFocusedRootTask(Task task) {
1823         return task != null && task == getTopDisplayFocusedRootTask();
1824     }
1825 
attachApplication(WindowProcessController app)1826     boolean attachApplication(WindowProcessController app) throws RemoteException {
1827         try {
1828             return mAttachApplicationHelper.process(app);
1829         } finally {
1830             mAttachApplicationHelper.reset();
1831         }
1832     }
1833 
1834     /**
1835      * Make sure that all activities that need to be visible in the system actually are and update
1836      * their configuration.
1837      */
ensureActivitiesVisible(ActivityRecord starting, int configChanges, boolean preserveWindows)1838     void ensureActivitiesVisible(ActivityRecord starting, int configChanges,
1839             boolean preserveWindows) {
1840         ensureActivitiesVisible(starting, configChanges, preserveWindows, true /* notifyClients */);
1841     }
1842 
1843     /**
1844      * @see #ensureActivitiesVisible(ActivityRecord, int, boolean)
1845      */
ensureActivitiesVisible(ActivityRecord starting, int configChanges, boolean preserveWindows, boolean notifyClients)1846     void ensureActivitiesVisible(ActivityRecord starting, int configChanges,
1847             boolean preserveWindows, boolean notifyClients) {
1848         if (mTaskSupervisor.inActivityVisibilityUpdate()
1849                 || mTaskSupervisor.isRootVisibilityUpdateDeferred()) {
1850             // Don't do recursive work.
1851             return;
1852         }
1853 
1854         try {
1855             mTaskSupervisor.beginActivityVisibilityUpdate();
1856             // First the front root tasks. In case any are not fullscreen and are in front of home.
1857             for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
1858                 final DisplayContent display = getChildAt(displayNdx);
1859                 display.ensureActivitiesVisible(starting, configChanges, preserveWindows,
1860                         notifyClients);
1861             }
1862         } finally {
1863             mTaskSupervisor.endActivityVisibilityUpdate();
1864         }
1865     }
1866 
switchUser(int userId, UserState uss)1867     boolean switchUser(int userId, UserState uss) {
1868         final Task topFocusedRootTask = getTopDisplayFocusedRootTask();
1869         final int focusRootTaskId = topFocusedRootTask != null
1870                 ? topFocusedRootTask.getRootTaskId() : INVALID_TASK_ID;
1871         // Also dismiss the pinned root task whenever we switch users. Removing the pinned root task
1872         // will also cause all tasks to be moved to the fullscreen root task at a position that is
1873         // appropriate.
1874         removeRootTasksInWindowingModes(WINDOWING_MODE_PINNED);
1875 
1876         mUserRootTaskInFront.put(mCurrentUser, focusRootTaskId);
1877         mCurrentUser = userId;
1878 
1879         mTaskSupervisor.mStartingUsers.add(uss);
1880         forAllRootTasks(rootTask -> {
1881             rootTask.switchUser(userId);
1882         });
1883 
1884         final int restoreRootTaskId = mUserRootTaskInFront.get(userId);
1885         Task rootTask = getRootTask(restoreRootTaskId);
1886         if (rootTask == null) {
1887             rootTask = getDefaultTaskDisplayArea().getOrCreateRootHomeTask();
1888         }
1889         final boolean homeInFront = rootTask.isActivityTypeHome();
1890         if (rootTask.isOnHomeDisplay()) {
1891             rootTask.moveToFront("switchUserOnHomeDisplay");
1892         } else {
1893             // Root task was moved to another display while user was swapped out.
1894             resumeHomeActivity(null, "switchUserOnOtherDisplay", getDefaultTaskDisplayArea());
1895         }
1896         return homeInFront;
1897     }
1898 
removeUser(int userId)1899     void removeUser(int userId) {
1900         mUserRootTaskInFront.delete(userId);
1901     }
1902 
1903     /**
1904      * Update the last used root task id for non-current user (current user's last
1905      * used root task is the focused root task)
1906      */
updateUserRootTask(int userId, Task rootTask)1907     void updateUserRootTask(int userId, Task rootTask) {
1908         if (userId != mCurrentUser) {
1909             if (rootTask == null) {
1910                 rootTask = getDefaultTaskDisplayArea().getOrCreateRootHomeTask();
1911             }
1912 
1913             mUserRootTaskInFront.put(userId, rootTask.getRootTaskId());
1914         }
1915     }
1916 
1917     /**
1918      * Move root task with all its existing content to specified task display area.
1919      *
1920      * @param rootTaskId      Id of root task to move.
1921      * @param taskDisplayArea The task display area to move root task to.
1922      * @param onTop           Indicates whether container should be place on top or on bottom.
1923      */
moveRootTaskToTaskDisplayArea(int rootTaskId, TaskDisplayArea taskDisplayArea, boolean onTop)1924     void moveRootTaskToTaskDisplayArea(int rootTaskId, TaskDisplayArea taskDisplayArea,
1925             boolean onTop) {
1926         final Task rootTask = getRootTask(rootTaskId);
1927         if (rootTask == null) {
1928             throw new IllegalArgumentException("moveRootTaskToTaskDisplayArea: Unknown rootTaskId="
1929                     + rootTaskId);
1930         }
1931 
1932         final TaskDisplayArea currentTaskDisplayArea = rootTask.getDisplayArea();
1933         if (currentTaskDisplayArea == null) {
1934             throw new IllegalStateException("moveRootTaskToTaskDisplayArea: rootTask=" + rootTask
1935                     + " is not attached to any task display area.");
1936         }
1937 
1938         if (taskDisplayArea == null) {
1939             throw new IllegalArgumentException(
1940                     "moveRootTaskToTaskDisplayArea: Unknown taskDisplayArea=" + taskDisplayArea);
1941         }
1942 
1943         if (currentTaskDisplayArea == taskDisplayArea) {
1944             throw new IllegalArgumentException("Trying to move rootTask=" + rootTask
1945                     + " to its current taskDisplayArea=" + taskDisplayArea);
1946         }
1947         rootTask.reparent(taskDisplayArea, onTop);
1948 
1949         // Resume focusable root task after reparenting to another display area.
1950         rootTask.resumeNextFocusAfterReparent();
1951 
1952         // TODO(multi-display): resize rootTasks properly if moved from split-screen.
1953     }
1954 
1955     /**
1956      * Move root task with all its existing content to specified display.
1957      *
1958      * @param rootTaskId Id of root task to move.
1959      * @param displayId  Id of display to move root task to.
1960      * @param onTop      Indicates whether container should be place on top or on bottom.
1961      */
moveRootTaskToDisplay(int rootTaskId, int displayId, boolean onTop)1962     void moveRootTaskToDisplay(int rootTaskId, int displayId, boolean onTop) {
1963         final DisplayContent displayContent = getDisplayContentOrCreate(displayId);
1964         if (displayContent == null) {
1965             throw new IllegalArgumentException("moveRootTaskToDisplay: Unknown displayId="
1966                     + displayId);
1967         }
1968 
1969         moveRootTaskToTaskDisplayArea(rootTaskId, displayContent.getDefaultTaskDisplayArea(),
1970                 onTop);
1971     }
1972 
moveActivityToPinnedRootTask(@onNull ActivityRecord r, @Nullable ActivityRecord launchIntoPipHostActivity, String reason)1973     void moveActivityToPinnedRootTask(@NonNull ActivityRecord r,
1974             @Nullable ActivityRecord launchIntoPipHostActivity, String reason) {
1975         moveActivityToPinnedRootTask(r, launchIntoPipHostActivity, reason, null /* transition */);
1976     }
1977 
moveActivityToPinnedRootTask(@onNull ActivityRecord r, @Nullable ActivityRecord launchIntoPipHostActivity, String reason, @Nullable Transition transition)1978     void moveActivityToPinnedRootTask(@NonNull ActivityRecord r,
1979             @Nullable ActivityRecord launchIntoPipHostActivity, String reason,
1980             @Nullable Transition transition) {
1981         final TaskDisplayArea taskDisplayArea = r.getDisplayArea();
1982         final Task task = r.getTask();
1983         final Task rootTask;
1984 
1985         Transition newTransition = transition;
1986         // Create a transition now (if not provided) to collect the current pinned Task dismiss.
1987         // Only do the create here as the Task (trigger) to enter PIP is not ready yet.
1988         final TransitionController transitionController = task.mTransitionController;
1989         if (newTransition == null && !transitionController.isCollecting()
1990                 && transitionController.getTransitionPlayer() != null) {
1991             newTransition = transitionController.createTransition(TRANSIT_PIP);
1992         }
1993 
1994         transitionController.deferTransitionReady();
1995         mService.deferWindowLayout();
1996         try {
1997             // This will change the root pinned task's windowing mode to its original mode, ensuring
1998             // we only have one root task that is in pinned mode.
1999             final Task rootPinnedTask = taskDisplayArea.getRootPinnedTask();
2000             if (rootPinnedTask != null) {
2001                 transitionController.collect(rootPinnedTask);
2002                 // The new ActivityRecord should replace the existing PiP, so it's more desirable
2003                 // that the old PiP disappears instead of turning to full-screen at the same time,
2004                 // as the Task#dismissPip is trying to do.
2005                 removeRootTasksInWindowingModes(WINDOWING_MODE_PINNED);
2006             }
2007 
2008             // Set a transition to ensure that we don't immediately try and update the visibility
2009             // of the activity entering PIP
2010             r.getDisplayContent().prepareAppTransition(TRANSIT_NONE);
2011 
2012             transitionController.collect(task);
2013 
2014             // Defer the windowing mode change until after the transition to prevent the activity
2015             // from doing work and changing the activity visuals while animating
2016             // TODO(task-org): Figure-out more structured way to do this long term.
2017             r.setWindowingMode(r.getWindowingMode());
2018 
2019             final TaskFragment organizedTf = r.getOrganizedTaskFragment();
2020             final boolean singleActivity = task.getNonFinishingActivityCount() == 1;
2021             if (singleActivity) {
2022                 rootTask = task;
2023 
2024                 // Apply the last recents animation leash transform to the task entering PIP
2025                 rootTask.maybeApplyLastRecentsAnimationTransaction();
2026 
2027                 if (rootTask.getParent() != taskDisplayArea) {
2028                     // root task is nested, but pinned tasks need to be direct children of their
2029                     // display area, so reparent.
2030                     rootTask.reparent(taskDisplayArea, true /* onTop */);
2031                 }
2032 
2033                 rootTask.forAllTaskFragments(tf -> {
2034                     if (!tf.isOrganizedTaskFragment()) {
2035                         return;
2036                     }
2037                     tf.resetAdjacentTaskFragment();
2038                     tf.setCompanionTaskFragment(null /* companionTaskFragment */);
2039                     tf.setAnimationParams(TaskFragmentAnimationParams.DEFAULT);
2040                     if (tf.getTopNonFinishingActivity() != null) {
2041                         // When the Task is entering picture-in-picture, we should clear all
2042                         // override from the client organizer, so the PIP activity can get the
2043                         // correct config from the Task, and prevent conflict with the
2044                         // PipTaskOrganizer. TaskFragmentOrganizer may have requested relative
2045                         // bounds, so reset the relative bounds before update configuration.
2046                         tf.setRelativeEmbeddedBounds(new Rect());
2047                         tf.updateRequestedOverrideConfiguration(EMPTY);
2048                     }
2049                 });
2050             } else {
2051                 // In the case of multiple activities, we will create a new task for it and then
2052                 // move the PIP activity into the task. Note that we explicitly defer the task
2053                 // appear being sent in this case and mark this newly created task to been visible.
2054                 rootTask = new Task.Builder(mService)
2055                         .setActivityType(r.getActivityType())
2056                         .setOnTop(true)
2057                         .setActivityInfo(r.info)
2058                         .setParent(taskDisplayArea)
2059                         .setIntent(r.intent)
2060                         .setDeferTaskAppear(true)
2061                         .setHasBeenVisible(true)
2062                         .setWindowingMode(task.getRequestedOverrideWindowingMode())
2063                         .build();
2064                 // Establish bi-directional link between the original and pinned task.
2065                 r.setLastParentBeforePip(launchIntoPipHostActivity);
2066                 // It's possible the task entering PIP is in freeform, so save the last
2067                 // non-fullscreen bounds. Then when this new PIP task exits PIP, it can restore
2068                 // to its previous freeform bounds.
2069                 rootTask.setLastNonFullscreenBounds(task.mLastNonFullscreenBounds);
2070                 // When creating a new Task for PiP, set its initial bounds as the TaskFragment in
2071                 // case the activity is embedded, so that it can be animated to PiP window from the
2072                 // current bounds.
2073                 // Use Task#setBoundsUnchecked to skip checking windowing mode as the windowing mode
2074                 // will be updated later after this is collected in transition.
2075                 rootTask.setBoundsUnchecked(r.getTaskFragment().getBounds());
2076 
2077                 // Move the last recents animation transaction from original task to the new one.
2078                 if (task.mLastRecentsAnimationTransaction != null) {
2079                     rootTask.setLastRecentsAnimationTransaction(
2080                             task.mLastRecentsAnimationTransaction,
2081                             task.mLastRecentsAnimationOverlay);
2082                     task.clearLastRecentsAnimationTransaction(false /* forceRemoveOverlay */);
2083                 } else {
2084                     // Reset the original task surface
2085                     task.resetSurfaceControlTransforms();
2086                 }
2087 
2088                 // The organized TaskFragment is becoming empty because this activity is reparented
2089                 // to a new PIP Task. In this case, we should notify the organizer about why the
2090                 // TaskFragment becomes empty.
2091                 if (organizedTf != null && organizedTf.getNonFinishingActivityCount() == 1
2092                         && organizedTf.getTopNonFinishingActivity() == r) {
2093                     organizedTf.mClearedTaskFragmentForPip = true;
2094                 }
2095 
2096                 transitionController.collect(rootTask);
2097 
2098                 if (transitionController.isShellTransitionsEnabled()) {
2099                     // set mode NOW so that when we reparent the activity, it won't be resumed.
2100                     // During recents animations, the original task is "occluded" by launcher but
2101                     // it wasn't paused (due to transient-launch). If we reparent to the (top) task
2102                     // now, it will take focus briefly which confuses the RecentTasks tracker.
2103                     rootTask.setWindowingMode(WINDOWING_MODE_PINNED);
2104                 }
2105 
2106                 // There are multiple activities in the task and moving the top activity should
2107                 // reveal/leave the other activities in their original task.
2108                 // On the other hand, ActivityRecord#onParentChanged takes care of setting the
2109                 // up-to-dated root pinned task information on this newly created root task.
2110                 r.reparent(rootTask, MAX_VALUE, reason);
2111 
2112                 // Ensure the leash of new task is in sync with its current bounds after reparent.
2113                 rootTask.maybeApplyLastRecentsAnimationTransaction();
2114 
2115                 // In the case of this activity entering PIP due to it being moved to the back,
2116                 // the old activity would have a TRANSIT_TASK_TO_BACK transition that needs to be
2117                 // ran. But, since its visibility did not change (note how it was STOPPED/not
2118                 // visible, and with it now at the back stack, it remains not visible), the logic to
2119                 // add the transition is automatically skipped. We then add this activity manually
2120                 // to the list of apps being closed, and request its transition to be ran.
2121                 final ActivityRecord oldTopActivity = task.getTopMostActivity();
2122                 if (oldTopActivity != null && oldTopActivity.isState(STOPPED)
2123                         && task.getDisplayContent().mAppTransition.containsTransitRequest(
2124                         TRANSIT_TO_BACK)) {
2125                     task.getDisplayContent().mClosingApps.add(oldTopActivity);
2126                     oldTopActivity.mRequestForceTransition = true;
2127                 }
2128             }
2129 
2130             // TODO(remove-legacy-transit): Move this to the `singleActivity` case when removing
2131             //                              legacy transit.
2132             rootTask.setWindowingMode(WINDOWING_MODE_PINNED);
2133             // Set the launch bounds for launch-into-pip Activity on the root task.
2134             if (r.getOptions() != null && r.getOptions().isLaunchIntoPip()) {
2135                 // Record the snapshot now, it will be later fetched for content-pip animation.
2136                 // We do this early in the process to make sure the right snapshot is used for
2137                 // entering content-pip animation.
2138                 mWindowManager.mTaskSnapshotController.recordSnapshot(
2139                         task, false /* allowSnapshotHome */);
2140                 rootTask.setBounds(r.pictureInPictureArgs.getSourceRectHint());
2141             }
2142             rootTask.setDeferTaskAppear(false);
2143 
2144             // After setting this, it is not expected to change activity configuration until the
2145             // transition animation is finished. So the activity can keep consistent appearance
2146             // when animating.
2147             r.mWaitForEnteringPinnedMode = true;
2148             // Reset the state that indicates it can enter PiP while pausing after we've moved it
2149             // to the root pinned task
2150             r.supportsEnterPipOnTaskSwitch = false;
2151 
2152             if (organizedTf != null && organizedTf.mClearedTaskFragmentForPip
2153                     && organizedTf.isTaskVisibleRequested()) {
2154                 // Dispatch the pending info to TaskFragmentOrganizer before PIP animation.
2155                 // Otherwise, it will keep waiting for the empty TaskFragment to be non-empty.
2156                 mService.mTaskFragmentOrganizerController.dispatchPendingInfoChangedEvent(
2157                         organizedTf);
2158             }
2159         } finally {
2160             mService.continueWindowLayout();
2161             try {
2162                 ensureActivitiesVisible(null, 0, false /* preserveWindows */);
2163             } finally {
2164                 transitionController.continueTransitionReady();
2165             }
2166         }
2167 
2168         if (newTransition != null) {
2169             // Request at end since we want task-organizer events from ensureActivitiesVisible
2170             // to be recognized.
2171             transitionController.requestStartTransition(newTransition, rootTask,
2172                     null /* remoteTransition */, null /* displayChange */);
2173             // A new transition was created just for this operations. Since the operation is
2174             // complete, mark it as ready.
2175             newTransition.setReady(rootTask, true /* ready */);
2176         }
2177 
2178         resumeFocusedTasksTopActivities();
2179 
2180         notifyActivityPipModeChanged(r.getTask(), r);
2181     }
2182 
2183     /**
2184      * Notifies when an activity enters or leaves PIP mode.
2185      *
2186      * @param task the task of {@param r}
2187      * @param r indicates the activity currently in PIP, can be null to indicate no activity is
2188      *          currently in PIP mode.
2189      */
notifyActivityPipModeChanged(@onNull Task task, @Nullable ActivityRecord r)2190     void notifyActivityPipModeChanged(@NonNull Task task, @Nullable ActivityRecord r) {
2191         final boolean inPip = r != null;
2192         if (inPip) {
2193             mService.getTaskChangeNotificationController().notifyActivityPinned(r);
2194         } else {
2195             mService.getTaskChangeNotificationController().notifyActivityUnpinned();
2196         }
2197         mWindowManager.mPolicy.setPipVisibilityLw(inPip);
2198         mWmService.mTransactionFactory.get()
2199                 .setTrustedOverlay(task.getSurfaceControl(), inPip)
2200                 .apply();
2201     }
2202 
executeAppTransitionForAllDisplay()2203     void executeAppTransitionForAllDisplay() {
2204         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
2205             final DisplayContent display = getChildAt(displayNdx);
2206             display.mDisplayContent.executeAppTransition();
2207         }
2208     }
2209 
2210     @Nullable
findTask(ActivityRecord r, TaskDisplayArea preferredTaskDisplayArea)2211     ActivityRecord findTask(ActivityRecord r, TaskDisplayArea preferredTaskDisplayArea) {
2212         return findTask(r.getActivityType(), r.taskAffinity, r.intent, r.info,
2213                 preferredTaskDisplayArea);
2214     }
2215 
2216     @Nullable
findTask(int activityType, String taskAffinity, Intent intent, ActivityInfo info, TaskDisplayArea preferredTaskDisplayArea)2217     ActivityRecord findTask(int activityType, String taskAffinity, Intent intent, ActivityInfo info,
2218             TaskDisplayArea preferredTaskDisplayArea) {
2219         ProtoLog.d(WM_DEBUG_TASKS, "Looking for task of type=%s, taskAffinity=%s, intent=%s"
2220                         + ", info=%s, preferredTDA=%s", activityType, taskAffinity, intent, info,
2221                 preferredTaskDisplayArea);
2222         mTmpFindTaskResult.init(activityType, taskAffinity, intent, info);
2223 
2224         // Looking up task on preferred display area first
2225         ActivityRecord candidateActivity = null;
2226         if (preferredTaskDisplayArea != null) {
2227             mTmpFindTaskResult.process(preferredTaskDisplayArea);
2228             if (mTmpFindTaskResult.mIdealRecord != null) {
2229                 return mTmpFindTaskResult.mIdealRecord;
2230             } else if (mTmpFindTaskResult.mCandidateRecord != null) {
2231                 candidateActivity = mTmpFindTaskResult.mCandidateRecord;
2232             }
2233         }
2234 
2235         final ActivityRecord idealMatchActivity = getItemFromTaskDisplayAreas(taskDisplayArea -> {
2236             if (taskDisplayArea == preferredTaskDisplayArea) {
2237                 return null;
2238             }
2239 
2240             mTmpFindTaskResult.process(taskDisplayArea);
2241             if (mTmpFindTaskResult.mIdealRecord != null) {
2242                 return mTmpFindTaskResult.mIdealRecord;
2243             }
2244             return null;
2245         });
2246         if (idealMatchActivity != null) {
2247             return idealMatchActivity;
2248         }
2249 
2250         if (WM_DEBUG_TASKS.isEnabled() && candidateActivity == null) {
2251             ProtoLog.d(WM_DEBUG_TASKS, "No task found");
2252         }
2253         return candidateActivity;
2254     }
2255 
2256     /**
2257      * Finish the topmost activities in all root tasks that belong to the crashed app.
2258      *
2259      * @param app    The app that crashed.
2260      * @param reason Reason to perform this action.
2261      * @return The task id that was finished in this root task, or INVALID_TASK_ID if none was
2262      * finished.
2263      */
finishTopCrashedActivities(WindowProcessController app, String reason)2264     int finishTopCrashedActivities(WindowProcessController app, String reason) {
2265         Task focusedRootTask = getTopDisplayFocusedRootTask();
2266         final Task[] finishedTask = new Task[1];
2267         forAllRootTasks(rootTask -> {
2268             final Task t = rootTask.finishTopCrashedActivityLocked(app, reason);
2269             if (rootTask == focusedRootTask || finishedTask[0] == null) {
2270                 finishedTask[0] = t;
2271             }
2272         });
2273         return finishedTask[0] != null ? finishedTask[0].mTaskId : INVALID_TASK_ID;
2274     }
2275 
resumeFocusedTasksTopActivities()2276     boolean resumeFocusedTasksTopActivities() {
2277         return resumeFocusedTasksTopActivities(null, null, null);
2278     }
2279 
resumeFocusedTasksTopActivities( Task targetRootTask, ActivityRecord target, ActivityOptions targetOptions)2280     boolean resumeFocusedTasksTopActivities(
2281             Task targetRootTask, ActivityRecord target, ActivityOptions targetOptions) {
2282         return resumeFocusedTasksTopActivities(targetRootTask, target, targetOptions,
2283                 false /* deferPause */);
2284     }
2285 
resumeFocusedTasksTopActivities( Task targetRootTask, ActivityRecord target, ActivityOptions targetOptions, boolean deferPause)2286     boolean resumeFocusedTasksTopActivities(
2287             Task targetRootTask, ActivityRecord target, ActivityOptions targetOptions,
2288             boolean deferPause) {
2289         if (!mTaskSupervisor.readyToResume()) {
2290             return false;
2291         }
2292 
2293         boolean result = false;
2294         if (targetRootTask != null && (targetRootTask.isTopRootTaskInDisplayArea()
2295                 || getTopDisplayFocusedRootTask() == targetRootTask)) {
2296             result = targetRootTask.resumeTopActivityUncheckedLocked(target, targetOptions,
2297                     deferPause);
2298         }
2299 
2300         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
2301             final DisplayContent display = getChildAt(displayNdx);
2302             final boolean curResult = result;
2303             boolean[] resumedOnDisplay = new boolean[1];
2304             display.forAllRootTasks(rootTask -> {
2305                 final ActivityRecord topRunningActivity = rootTask.topRunningActivity();
2306                 if (!rootTask.isFocusableAndVisible() || topRunningActivity == null) {
2307                     return;
2308                 }
2309                 if (rootTask == targetRootTask) {
2310                     // Simply update the result for targetRootTask because the targetRootTask
2311                     // had already resumed in above. We don't want to resume it again,
2312                     // especially in some cases, it would cause a second launch failure
2313                     // if app process was dead.
2314                     resumedOnDisplay[0] |= curResult;
2315                     return;
2316                 }
2317                 if (topRunningActivity.isState(RESUMED)
2318                         && topRunningActivity == rootTask.getDisplayArea().topRunningActivity()) {
2319                     // Kick off any lingering app transitions form the MoveTaskToFront operation,
2320                     // but only consider the top activity on that display.
2321                     rootTask.executeAppTransition(targetOptions);
2322                 } else {
2323                     resumedOnDisplay[0] |= topRunningActivity.makeActiveIfNeeded(target);
2324                 }
2325             });
2326             result |= resumedOnDisplay[0];
2327             if (!resumedOnDisplay[0]) {
2328                 // In cases when there are no valid activities (e.g. device just booted or launcher
2329                 // crashed) it's possible that nothing was resumed on a display. Requesting resume
2330                 // of top activity in focused root task explicitly will make sure that at least home
2331                 // activity is started and resumed, and no recursion occurs.
2332                 final Task focusedRoot = display.getFocusedRootTask();
2333                 if (focusedRoot != null) {
2334                     result |= focusedRoot.resumeTopActivityUncheckedLocked(target, targetOptions);
2335                 } else if (targetRootTask == null) {
2336                     result |= resumeHomeActivity(null /* prev */, "no-focusable-task",
2337                             display.getDefaultTaskDisplayArea());
2338                 }
2339             }
2340         }
2341 
2342         return result;
2343     }
2344 
applySleepTokens(boolean applyToRootTasks)2345     void applySleepTokens(boolean applyToRootTasks) {
2346         boolean builtSleepTransition = false;
2347         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
2348             // Set the sleeping state of the display.
2349             final DisplayContent display = getChildAt(displayNdx);
2350             final boolean displayShouldSleep = display.shouldSleep();
2351             if (displayShouldSleep == display.isSleeping()) {
2352                 continue;
2353             }
2354             display.setIsSleeping(displayShouldSleep);
2355 
2356             if (display.mTransitionController.isShellTransitionsEnabled() && !builtSleepTransition
2357                     // Only care if there are actual sleep tokens.
2358                     && displayShouldSleep && !display.mAllSleepTokens.isEmpty()) {
2359                 builtSleepTransition = true;
2360                 // We don't actually care about collecting anything here. We really just want
2361                 // this as a signal to the transition-player.
2362                 final Transition transition = new Transition(TRANSIT_SLEEP, 0 /* flags */,
2363                         display.mTransitionController, mWmService.mSyncEngine);
2364                 final TransitionController.OnStartCollect sendSleepTransition = (deferred) -> {
2365                     if (deferred && !display.shouldSleep()) {
2366                         transition.abort();
2367                     } else {
2368                         display.mTransitionController.requestStartTransition(transition,
2369                                 null /* trigger */, null /* remote */, null /* display */);
2370                         // Force playing immediately so that unrelated ops can't be collected.
2371                         transition.playNow();
2372                     }
2373                 };
2374                 if (!display.mTransitionController.isCollecting()) {
2375                     // Since this bypasses sync, submit directly ignoring whether sync-engine
2376                     // is active.
2377                     if (mWindowManager.mSyncEngine.hasActiveSync()) {
2378                         Slog.w(TAG, "Ongoing sync outside of a transition.");
2379                     }
2380                     display.mTransitionController.moveToCollecting(transition);
2381                     sendSleepTransition.onCollectStarted(false /* deferred */);
2382                 } else {
2383                     display.mTransitionController.startCollectOrQueue(transition,
2384                             sendSleepTransition);
2385                 }
2386             }
2387 
2388             if (!applyToRootTasks) {
2389                 continue;
2390             }
2391 
2392             // Prepare transition before resume top activity, so it can be collected.
2393             if (!displayShouldSleep && display.mTransitionController.isShellTransitionsEnabled()
2394                     && !display.mTransitionController.isCollecting()) {
2395                 int transit = TRANSIT_NONE;
2396                 Task startTask = null;
2397                 if (!display.getDisplayPolicy().isAwake()) {
2398                     // Note that currently this only happens on default display because non-default
2399                     // display is always awake.
2400                     transit = TRANSIT_WAKE;
2401                 } else if (display.isKeyguardOccluded()) {
2402                     // The display was awake so this is resuming activity for occluding keyguard.
2403                     transit = WindowManager.TRANSIT_KEYGUARD_OCCLUDE;
2404                     startTask = display.getTaskOccludingKeyguard();
2405                 }
2406                 if (transit != TRANSIT_NONE) {
2407                     display.mTransitionController.requestStartTransition(
2408                             display.mTransitionController.createTransition(transit),
2409                             startTask, null /* remoteTransition */, null /* displayChange */);
2410                 }
2411             }
2412             // Set the sleeping state of the root tasks on the display.
2413             display.forAllRootTasks(rootTask -> {
2414                 if (displayShouldSleep) {
2415                     rootTask.goToSleepIfPossible(false /* shuttingDown */);
2416                 } else {
2417                     rootTask.forAllLeafTasksAndLeafTaskFragments(
2418                             taskFragment -> taskFragment.awakeFromSleeping(),
2419                             true /* traverseTopToBottom */);
2420                     if (rootTask.isFocusedRootTaskOnDisplay()
2421                             && !mTaskSupervisor.getKeyguardController()
2422                             .isKeyguardOrAodShowing(display.mDisplayId)) {
2423                         // If the keyguard is unlocked - resume immediately.
2424                         // It is possible that the display will not be awake at the time we
2425                         // process the keyguard going away, which can happen before the sleep
2426                         // token is released. As a result, it is important we resume the
2427                         // activity here.
2428                         rootTask.resumeTopActivityUncheckedLocked(null, null);
2429                     }
2430                     // The visibility update must not be called before resuming the top, so the
2431                     // display orientation can be updated first if needed. Otherwise there may
2432                     // have redundant configuration changes due to apply outdated display
2433                     // orientation (from keyguard) to activity.
2434                     rootTask.ensureActivitiesVisible(null /* starting */, 0 /* configChanges */,
2435                             false /* preserveWindows */);
2436                 }
2437             });
2438         }
2439     }
2440 
getRootTask(int rooTaskId)2441     protected Task getRootTask(int rooTaskId) {
2442         for (int i = getChildCount() - 1; i >= 0; --i) {
2443             final Task rootTask = getChildAt(i).getRootTask(rooTaskId);
2444             if (rootTask != null) {
2445                 return rootTask;
2446             }
2447         }
2448         return null;
2449     }
2450 
2451     /** @see DisplayContent#getRootTask(int, int) */
getRootTask(int windowingMode, int activityType)2452     Task getRootTask(int windowingMode, int activityType) {
2453         for (int i = getChildCount() - 1; i >= 0; --i) {
2454             final Task rootTask = getChildAt(i).getRootTask(windowingMode, activityType);
2455             if (rootTask != null) {
2456                 return rootTask;
2457             }
2458         }
2459         return null;
2460     }
2461 
getRootTask(int windowingMode, int activityType, int displayId)2462     private Task getRootTask(int windowingMode, int activityType,
2463             int displayId) {
2464         DisplayContent display = getDisplayContent(displayId);
2465         if (display == null) {
2466             return null;
2467         }
2468         return display.getRootTask(windowingMode, activityType);
2469     }
2470 
getRootTaskInfo(Task task)2471     private RootTaskInfo getRootTaskInfo(Task task) {
2472         RootTaskInfo info = new RootTaskInfo();
2473         task.fillTaskInfo(info);
2474 
2475         final DisplayContent displayContent = task.getDisplayContent();
2476         if (displayContent == null) {
2477             // A task might be not attached to a display.
2478             info.position = -1;
2479         } else {
2480             // Find the task z-order among all root tasks on the display from bottom to top.
2481             final int[] taskIndex = new int[1];
2482             final boolean[] hasFound = new boolean[1];
2483             displayContent.forAllRootTasks(rootTask -> {
2484                 if (task == rootTask) {
2485                     hasFound[0] = true;
2486                     return true;
2487                 }
2488                 taskIndex[0]++;
2489                 return false;
2490             }, false /* traverseTopToBottom */);
2491             info.position = hasFound[0] ? taskIndex[0] : -1;
2492         }
2493         info.visible = task.shouldBeVisible(null);
2494         task.getBounds(info.bounds);
2495 
2496         final int numTasks = task.getDescendantTaskCount();
2497         info.childTaskIds = new int[numTasks];
2498         info.childTaskNames = new String[numTasks];
2499         info.childTaskBounds = new Rect[numTasks];
2500         info.childTaskUserIds = new int[numTasks];
2501         final int[] currentIndex = {0};
2502 
2503         task.forAllLeafTasks(t -> {
2504             int i = currentIndex[0];
2505             info.childTaskIds[i] = t.mTaskId;
2506             info.childTaskNames[i] = t.origActivity != null ? t.origActivity.flattenToString()
2507                     : t.realActivity != null ? t.realActivity.flattenToString()
2508                     : t.getTopNonFinishingActivity() != null
2509                     ? t.getTopNonFinishingActivity().packageName : "unknown";
2510             info.childTaskBounds[i] = t.mAtmService.getTaskBounds(t.mTaskId);
2511             info.childTaskUserIds[i] = t.mUserId;
2512             currentIndex[0] = ++i;
2513         }, false /* traverseTopToBottom */);
2514 
2515         final ActivityRecord top = task.topRunningActivity();
2516         info.topActivity = top != null ? top.intent.getComponent() : null;
2517         return info;
2518     }
2519 
getRootTaskInfo(int taskId)2520     RootTaskInfo getRootTaskInfo(int taskId) {
2521         Task task = getRootTask(taskId);
2522         if (task != null) {
2523             return getRootTaskInfo(task);
2524         }
2525         return null;
2526     }
2527 
getRootTaskInfo(int windowingMode, int activityType)2528     RootTaskInfo getRootTaskInfo(int windowingMode, int activityType) {
2529         final Task rootTask = getRootTask(windowingMode, activityType);
2530         return (rootTask != null) ? getRootTaskInfo(rootTask) : null;
2531     }
2532 
getRootTaskInfo(int windowingMode, int activityType, int displayId)2533     RootTaskInfo getRootTaskInfo(int windowingMode, int activityType, int displayId) {
2534         final Task rootTask = getRootTask(windowingMode, activityType, displayId);
2535         return (rootTask != null) ? getRootTaskInfo(rootTask) : null;
2536     }
2537 
2538     /** If displayId == INVALID_DISPLAY, this will get root task infos on all displays */
getAllRootTaskInfos(int displayId)2539     ArrayList<RootTaskInfo> getAllRootTaskInfos(int displayId) {
2540         final ArrayList<RootTaskInfo> list = new ArrayList<>();
2541         if (displayId == INVALID_DISPLAY) {
2542             forAllRootTasks(rootTask -> {
2543                 list.add(getRootTaskInfo(rootTask));
2544             });
2545             return list;
2546         }
2547         final DisplayContent display = getDisplayContent(displayId);
2548         if (display == null) {
2549             return list;
2550         }
2551         display.forAllRootTasks(rootTask -> {
2552             list.add(getRootTaskInfo(rootTask));
2553         });
2554         return list;
2555     }
2556 
2557     @Override
onDisplayAdded(int displayId)2558     public void onDisplayAdded(int displayId) {
2559         if (DEBUG_ROOT_TASK) Slog.v(TAG, "Display added displayId=" + displayId);
2560         synchronized (mService.mGlobalLock) {
2561             final DisplayContent display = getDisplayContentOrCreate(displayId);
2562             if (display == null) {
2563                 return;
2564             }
2565             // Do not start home before booting, or it may accidentally finish booting before it
2566             // starts. Instead, we expect home activities to be launched when the system is ready
2567             // (ActivityManagerService#systemReady).
2568             if (mService.isBooted() || mService.isBooting()) {
2569                 startSystemDecorations(display);
2570             }
2571             // Drop any cached DisplayInfos associated with this display id - the values are now
2572             // out of date given this display added event.
2573             mWmService.mPossibleDisplayInfoMapper.removePossibleDisplayInfos(displayId);
2574         }
2575     }
2576 
startSystemDecorations(final DisplayContent displayContent)2577     private void startSystemDecorations(final DisplayContent displayContent) {
2578         startHomeOnDisplay(mCurrentUser, "displayAdded", displayContent.getDisplayId());
2579         displayContent.getDisplayPolicy().notifyDisplayReady();
2580     }
2581 
2582     @Override
onDisplayRemoved(int displayId)2583     public void onDisplayRemoved(int displayId) {
2584         if (DEBUG_ROOT_TASK) Slog.v(TAG, "Display removed displayId=" + displayId);
2585         if (displayId == DEFAULT_DISPLAY) {
2586             throw new IllegalArgumentException("Can't remove the primary display.");
2587         }
2588 
2589         synchronized (mService.mGlobalLock) {
2590             final DisplayContent displayContent = getDisplayContent(displayId);
2591             if (displayContent == null) {
2592                 return;
2593             }
2594             displayContent.remove();
2595             mWmService.mPossibleDisplayInfoMapper.removePossibleDisplayInfos(displayId);
2596         }
2597     }
2598 
2599     @Override
onDisplayChanged(int displayId)2600     public void onDisplayChanged(int displayId) {
2601         if (DEBUG_ROOT_TASK) Slog.v(TAG, "Display changed displayId=" + displayId);
2602         synchronized (mService.mGlobalLock) {
2603             final DisplayContent displayContent = getDisplayContent(displayId);
2604             if (displayContent != null) {
2605                 displayContent.onDisplayChanged();
2606             }
2607             // Drop any cached DisplayInfos associated with this display id - the values are now
2608             // out of date given this display changed event.
2609             mWmService.mPossibleDisplayInfoMapper.removePossibleDisplayInfos(displayId);
2610             updateDisplayImePolicyCache();
2611         }
2612     }
2613 
updateDisplayImePolicyCache()2614     void updateDisplayImePolicyCache() {
2615         ArrayMap<Integer, Integer> displayImePolicyMap = new ArrayMap<>();
2616         forAllDisplays(dc -> displayImePolicyMap.put(dc.getDisplayId(), dc.getImePolicy()));
2617         mWmService.mDisplayImePolicyCache = Collections.unmodifiableMap(displayImePolicyMap);
2618     }
2619 
2620     /** Update lists of UIDs that are present on displays and have access to them. */
updateUIDsPresentOnDisplay()2621     void updateUIDsPresentOnDisplay() {
2622         mDisplayAccessUIDs.clear();
2623         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
2624             final DisplayContent displayContent = getChildAt(displayNdx);
2625             // Only bother calculating the allowlist for private displays
2626             if (displayContent.isPrivate()) {
2627                 mDisplayAccessUIDs.append(
2628                         displayContent.mDisplayId, displayContent.getPresentUIDs());
2629             }
2630         }
2631         // Store updated lists in DisplayManager. Callers from outside of AM should get them there.
2632         mDisplayManagerInternal.setDisplayAccessUIDs(mDisplayAccessUIDs);
2633     }
2634 
prepareForShutdown()2635     void prepareForShutdown() {
2636         for (int i = 0; i < getChildCount(); i++) {
2637             createSleepToken("shutdown", getChildAt(i).mDisplayId);
2638         }
2639     }
2640 
createSleepToken(String tag, int displayId)2641     SleepToken createSleepToken(String tag, int displayId) {
2642         return createSleepToken(tag, displayId, false /* isSwappingDisplay */);
2643     }
2644 
createSleepToken(String tag, int displayId, boolean isSwappingDisplay)2645     SleepToken createSleepToken(String tag, int displayId, boolean isSwappingDisplay) {
2646         final DisplayContent display = getDisplayContent(displayId);
2647         if (display == null) {
2648             throw new IllegalArgumentException("Invalid display: " + displayId);
2649         }
2650 
2651         final int tokenKey = makeSleepTokenKey(tag, displayId);
2652         SleepToken token = mSleepTokens.get(tokenKey);
2653         if (token == null) {
2654             token = new SleepToken(tag, displayId, isSwappingDisplay);
2655             mSleepTokens.put(tokenKey, token);
2656             display.mAllSleepTokens.add(token);
2657             ProtoLog.d(WM_DEBUG_STATES, "Create sleep token: tag=%s, displayId=%d", tag, displayId);
2658         } else {
2659             throw new RuntimeException("Create the same sleep token twice: " + token);
2660         }
2661         return token;
2662     }
2663 
removeSleepToken(SleepToken token)2664     void removeSleepToken(SleepToken token) {
2665         if (!mSleepTokens.contains(token.mHashKey)) {
2666             Slog.d(TAG, "Remove non-exist sleep token: " + token + " from " + Debug.getCallers(6));
2667         }
2668         mSleepTokens.remove(token.mHashKey);
2669         final DisplayContent display = getDisplayContent(token.mDisplayId);
2670         if (display == null) {
2671             Slog.d(TAG, "Remove sleep token for non-existing display: " + token + " from "
2672                     + Debug.getCallers(6));
2673             return;
2674         }
2675 
2676         ProtoLog.d(WM_DEBUG_STATES, "Remove sleep token: tag=%s, displayId=%d", token.mTag,
2677                 token.mDisplayId);
2678         display.mAllSleepTokens.remove(token);
2679         if (display.mAllSleepTokens.isEmpty()) {
2680             mService.updateSleepIfNeededLocked();
2681             // Assuming no lock screen is set and a user launches an activity, turns off the screen
2682             // and turn on the screen again, then the launched activity should be displayed on the
2683             // screen without app transition animation. When the screen turns on, both keyguard
2684             // sleep token and display off sleep token are removed, but the order is
2685             // non-deterministic.
2686             // Note: Display#mSkipAppTransitionAnimation will be ignored when keyguard related
2687             // transition exists, so this affects only when no lock screen is set. Otherwise
2688             // keyguard going away animation will be played.
2689             // See also AppTransitionController#getTransitCompatType for more details.
2690             if ((!mTaskSupervisor.getKeyguardController().isDisplayOccluded(display.mDisplayId)
2691                     && token.mTag.equals(KEYGUARD_SLEEP_TOKEN_TAG))
2692                     || token.mTag.equals(DISPLAY_OFF_SLEEP_TOKEN_TAG)) {
2693                 display.mSkipAppTransitionAnimation = true;
2694             }
2695         }
2696     }
2697 
addStartingWindowsForVisibleActivities()2698     void addStartingWindowsForVisibleActivities() {
2699         final ArrayList<Task> addedTasks = new ArrayList<>();
2700         forAllActivities((r) -> {
2701             final Task task = r.getTask();
2702             if (r.isVisibleRequested() && r.mStartingData == null && !addedTasks.contains(task)) {
2703                 r.showStartingWindow(true /*taskSwitch*/);
2704                 addedTasks.add(task);
2705             }
2706         });
2707     }
2708 
invalidateTaskLayers()2709     void invalidateTaskLayers() {
2710         if (!mTaskLayersChanged) {
2711             mTaskLayersChanged = true;
2712             mService.mH.post(mRankTaskLayersRunnable);
2713         }
2714     }
2715 
2716     /** Generate oom-score-adjustment rank for all tasks in the system based on z-order. */
rankTaskLayers()2717     void rankTaskLayers() {
2718         if (mTaskLayersChanged) {
2719             mTaskLayersChanged = false;
2720             mService.mH.removeCallbacks(mRankTaskLayersRunnable);
2721         }
2722         mTmpTaskLayerRank = 0;
2723         // Only rank for leaf tasks because the score of activity is based on immediate parent.
2724         forAllLeafTasks(task -> {
2725             final int oldRank = task.mLayerRank;
2726             final ActivityRecord r = task.topRunningActivityLocked();
2727             if (r != null && r.isVisibleRequested()) {
2728                 task.mLayerRank = ++mTmpTaskLayerRank;
2729             } else {
2730                 task.mLayerRank = Task.LAYER_RANK_INVISIBLE;
2731             }
2732             if (task.mLayerRank != oldRank) {
2733                 task.forAllActivities(activity -> {
2734                     if (activity.hasProcess()) {
2735                         mTaskSupervisor.onProcessActivityStateChanged(activity.app,
2736                                 true /* forceBatch */);
2737                     }
2738                 });
2739             }
2740         }, true /* traverseTopToBottom */);
2741 
2742         if (!mTaskSupervisor.inActivityVisibilityUpdate()) {
2743             mTaskSupervisor.computeProcessActivityStateBatch();
2744         }
2745     }
2746 
clearOtherAppTimeTrackers(AppTimeTracker except)2747     void clearOtherAppTimeTrackers(AppTimeTracker except) {
2748         forAllActivities(r -> {
2749             if (r.appTimeTracker != except) {
2750                 r.appTimeTracker = null;
2751             }
2752         });
2753     }
2754 
scheduleDestroyAllActivities(String reason)2755     void scheduleDestroyAllActivities(String reason) {
2756         mDestroyAllActivitiesReason = reason;
2757         mService.mH.post(mDestroyAllActivitiesRunnable);
2758     }
2759 
2760     // Tries to put all activity tasks to sleep. Returns true if all tasks were
2761     // successfully put to sleep.
putTasksToSleep(boolean allowDelay, boolean shuttingDown)2762     boolean putTasksToSleep(boolean allowDelay, boolean shuttingDown) {
2763         final boolean[] result = {true};
2764         forAllRootTasks(task -> {
2765             if (allowDelay) {
2766                 result[0] &= task.goToSleepIfPossible(shuttingDown);
2767             } else {
2768                 task.ensureActivitiesVisible(null /* starting */, 0 /* configChanges */,
2769                         !PRESERVE_WINDOWS);
2770             }
2771         });
2772         return result[0];
2773     }
2774 
findActivity(Intent intent, ActivityInfo info, boolean compareIntentFilters)2775     ActivityRecord findActivity(Intent intent, ActivityInfo info, boolean compareIntentFilters) {
2776         ComponentName cls = intent.getComponent();
2777         if (info.targetActivity != null) {
2778             cls = new ComponentName(info.packageName, info.targetActivity);
2779         }
2780         final int userId = UserHandle.getUserId(info.applicationInfo.uid);
2781 
2782         final PooledPredicate p = PooledLambda.obtainPredicate(
2783                 RootWindowContainer::matchesActivity, PooledLambda.__(ActivityRecord.class),
2784                 userId, compareIntentFilters, intent, cls);
2785         final ActivityRecord r = getActivity(p);
2786         p.recycle();
2787         return r;
2788     }
2789 
matchesActivity(ActivityRecord r, int userId, boolean compareIntentFilters, Intent intent, ComponentName cls)2790     private static boolean matchesActivity(ActivityRecord r, int userId,
2791             boolean compareIntentFilters, Intent intent, ComponentName cls) {
2792         if (!r.canBeTopRunning() || r.mUserId != userId) return false;
2793 
2794         if (compareIntentFilters) {
2795             if (r.intent.filterEquals(intent)) {
2796                 return true;
2797             }
2798         } else {
2799             // Compare the target component instead of intent component so we don't miss if the
2800             // activity uses alias.
2801             if (r.mActivityComponent.equals(cls)) {
2802                 return true;
2803             }
2804         }
2805         return false;
2806     }
2807 
hasAwakeDisplay()2808     boolean hasAwakeDisplay() {
2809         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
2810             final DisplayContent display = getChildAt(displayNdx);
2811             if (!display.shouldSleep()) {
2812                 return true;
2813             }
2814         }
2815         return false;
2816     }
2817 
getOrCreateRootTask(@ullable ActivityRecord r, @Nullable ActivityOptions options, @Nullable Task candidateTask, boolean onTop)2818     Task getOrCreateRootTask(@Nullable ActivityRecord r, @Nullable ActivityOptions options,
2819             @Nullable Task candidateTask, boolean onTop) {
2820         return getOrCreateRootTask(r, options, candidateTask, null /* sourceTask */, onTop,
2821                 null /* launchParams */, 0 /* launchFlags */);
2822     }
2823 
2824     /**
2825      * Returns the right root task to use for launching factoring in all the input parameters.
2826      *
2827      * @param r              The activity we are trying to launch. Can be null.
2828      * @param options        The activity options used to the launch. Can be null.
2829      * @param candidateTask  The possible task the activity might be launched in. Can be null.
2830      * @param sourceTask     The task requesting to start activity. Can be null.
2831      * @param launchParams   The resolved launch params to use.
2832      * @param launchFlags    The launch flags for this launch.
2833      * @param realCallingPid The pid from {@link ActivityStarter#setRealCallingPid}
2834      * @param realCallingUid The uid from {@link ActivityStarter#setRealCallingUid}
2835      * @return The root task to use for the launch.
2836      */
getOrCreateRootTask(@ullable ActivityRecord r, @Nullable ActivityOptions options, @Nullable Task candidateTask, @Nullable Task sourceTask, boolean onTop, @Nullable LaunchParamsController.LaunchParams launchParams, int launchFlags)2837     Task getOrCreateRootTask(@Nullable ActivityRecord r,
2838             @Nullable ActivityOptions options, @Nullable Task candidateTask,
2839             @Nullable Task sourceTask, boolean onTop,
2840             @Nullable LaunchParamsController.LaunchParams launchParams, int launchFlags) {
2841         // First preference goes to the launch root task set in the activity options.
2842         if (options != null) {
2843             final Task candidateRoot = Task.fromWindowContainerToken(options.getLaunchRootTask());
2844             if (candidateRoot != null && canLaunchOnDisplay(r, candidateRoot)) {
2845                 return candidateRoot;
2846             }
2847         }
2848 
2849         // Next preference goes to the task id set in the activity options.
2850         if (options != null) {
2851             final int candidateTaskId = options.getLaunchTaskId();
2852             if (candidateTaskId != INVALID_TASK_ID) {
2853                 // Temporarily set the task id to invalid in case in re-entry.
2854                 options.setLaunchTaskId(INVALID_TASK_ID);
2855                 final Task task = anyTaskForId(candidateTaskId,
2856                         MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE, options, onTop);
2857                 options.setLaunchTaskId(candidateTaskId);
2858                 if (canLaunchOnDisplay(r, task)) {
2859                     return task.getRootTask();
2860                 }
2861             }
2862         }
2863 
2864         // Next preference goes to the TaskDisplayArea candidate from launchParams
2865         // or activity options.
2866         TaskDisplayArea taskDisplayArea = null;
2867         if (launchParams != null && launchParams.mPreferredTaskDisplayArea != null) {
2868             taskDisplayArea = launchParams.mPreferredTaskDisplayArea;
2869         } else if (options != null) {
2870             final WindowContainerToken daToken = options.getLaunchTaskDisplayArea();
2871             taskDisplayArea = daToken != null
2872                     ? (TaskDisplayArea) WindowContainer.fromBinder(daToken.asBinder()) : null;
2873             if (taskDisplayArea == null) {
2874                 final int launchDisplayId = options.getLaunchDisplayId();
2875                 if (launchDisplayId != INVALID_DISPLAY) {
2876                     final DisplayContent displayContent = getDisplayContent(launchDisplayId);
2877                     if (displayContent != null) {
2878                         taskDisplayArea = displayContent.getDefaultTaskDisplayArea();
2879                     }
2880                 }
2881             }
2882         }
2883 
2884         final int activityType = resolveActivityType(r, options, candidateTask);
2885         if (taskDisplayArea != null) {
2886             if (canLaunchOnDisplay(r, taskDisplayArea.getDisplayId())) {
2887                 return taskDisplayArea.getOrCreateRootTask(r, options, candidateTask,
2888                         sourceTask, launchParams, launchFlags, activityType, onTop);
2889             } else {
2890                 taskDisplayArea = null;
2891             }
2892         }
2893 
2894         // Give preference to the root task and display of the input task and activity if they
2895         // match the mode we want to launch into.
2896         Task rootTask = null;
2897         if (candidateTask != null) {
2898             rootTask = candidateTask.getRootTask();
2899         }
2900         if (rootTask == null && r != null) {
2901             rootTask = r.getRootTask();
2902         }
2903         int windowingMode = launchParams != null ? launchParams.mWindowingMode
2904                 : WindowConfiguration.WINDOWING_MODE_UNDEFINED;
2905         if (rootTask != null) {
2906             taskDisplayArea = rootTask.getDisplayArea();
2907             if (taskDisplayArea != null
2908                     && canLaunchOnDisplay(r, taskDisplayArea.mDisplayContent.mDisplayId)) {
2909                 if (windowingMode == WindowConfiguration.WINDOWING_MODE_UNDEFINED) {
2910                     windowingMode = taskDisplayArea.resolveWindowingMode(r, options, candidateTask);
2911                 }
2912                 // Always allow organized tasks that created by organizer since the activity type
2913                 // of an organized task is decided by the activity type of its top child, which
2914                 // could be incompatible with the given windowing mode and activity type.
2915                 if (rootTask.isCompatible(windowingMode, activityType)
2916                         || rootTask.mCreatedByOrganizer) {
2917                     return rootTask;
2918                 }
2919             } else {
2920                 taskDisplayArea = null;
2921             }
2922 
2923         }
2924 
2925         // Falling back to default task container
2926         if (taskDisplayArea == null) {
2927             taskDisplayArea = getDefaultTaskDisplayArea();
2928         }
2929         return taskDisplayArea.getOrCreateRootTask(r, options, candidateTask, sourceTask,
2930                 launchParams, launchFlags, activityType, onTop);
2931     }
2932 
canLaunchOnDisplay(ActivityRecord r, Task task)2933     private boolean canLaunchOnDisplay(ActivityRecord r, Task task) {
2934         if (task == null) {
2935             Slog.w(TAG, "canLaunchOnDisplay(), invalid task: " + task);
2936             return false;
2937         }
2938 
2939         if (!task.isAttached()) {
2940             Slog.w(TAG, "canLaunchOnDisplay(), Task is not attached: " + task);
2941             return false;
2942         }
2943 
2944         return canLaunchOnDisplay(r, task.getTaskDisplayArea().getDisplayId());
2945     }
2946 
2947     /** @return true if activity record is null or can be launched on provided display. */
canLaunchOnDisplay(ActivityRecord r, int displayId)2948     private boolean canLaunchOnDisplay(ActivityRecord r, int displayId) {
2949         if (r == null) {
2950             return true;
2951         }
2952         if (!r.canBeLaunchedOnDisplay(displayId)) {
2953             Slog.w(TAG, "Not allow to launch " + r + " on display " + displayId);
2954             return false;
2955         }
2956         return true;
2957     }
2958 
resolveActivityType(@ullable ActivityRecord r, @Nullable ActivityOptions options, @Nullable Task task)2959     int resolveActivityType(@Nullable ActivityRecord r, @Nullable ActivityOptions options,
2960             @Nullable Task task) {
2961         // Preference is given to the activity type for the activity then the task since the type
2962         // once set shouldn't change.
2963         int activityType = r != null ? r.getActivityType() : ACTIVITY_TYPE_UNDEFINED;
2964         if (activityType == ACTIVITY_TYPE_UNDEFINED && task != null) {
2965             activityType = task.getActivityType();
2966         }
2967         if (activityType != ACTIVITY_TYPE_UNDEFINED) {
2968             return activityType;
2969         }
2970         if (options != null) {
2971             activityType = options.getLaunchActivityType();
2972         }
2973         return activityType != ACTIVITY_TYPE_UNDEFINED ? activityType : ACTIVITY_TYPE_STANDARD;
2974     }
2975 
2976     /**
2977      * Get next focusable root task in the system. This will search through the root task on the
2978      * same display as the current focused root task, looking for a focusable and visible root task,
2979      * different from the target root task. If no valid candidates will be found, it will then go
2980      * through all displays and root tasks in last-focused order.
2981      *
2982      * @param currentFocus  The root task that previously had focus.
2983      * @param ignoreCurrent If we should ignore {@param currentFocus} when searching for next
2984      *                      candidate.
2985      * @return Next focusable {@link Task}, {@code null} if not found.
2986      */
getNextFocusableRootTask(@onNull Task currentFocus, boolean ignoreCurrent)2987     Task getNextFocusableRootTask(@NonNull Task currentFocus, boolean ignoreCurrent) {
2988         // First look for next focusable root task on the same display
2989         TaskDisplayArea preferredDisplayArea = currentFocus.getDisplayArea();
2990         if (preferredDisplayArea == null) {
2991             // Root task is currently detached because it is being removed. Use the previous
2992             // display it was on.
2993             preferredDisplayArea = getDisplayContent(currentFocus.mPrevDisplayId)
2994                     .getDefaultTaskDisplayArea();
2995         }
2996         final Task preferredFocusableRootTask = preferredDisplayArea.getNextFocusableRootTask(
2997                 currentFocus, ignoreCurrent);
2998         if (preferredFocusableRootTask != null) {
2999             return preferredFocusableRootTask;
3000         }
3001         if (preferredDisplayArea.mDisplayContent.supportsSystemDecorations()) {
3002             // Stop looking for focusable root task on other displays because the preferred display
3003             // supports system decorations. Home activity would be launched on the same display if
3004             // no focusable root task found.
3005             return null;
3006         }
3007 
3008         // Now look through all displays
3009         for (int i = getChildCount() - 1; i >= 0; --i) {
3010             final DisplayContent display = getChildAt(i);
3011             if (display == preferredDisplayArea.mDisplayContent) {
3012                 // We've already checked this one
3013                 continue;
3014             }
3015             final Task nextFocusableRootTask = display.getDefaultTaskDisplayArea()
3016                     .getNextFocusableRootTask(currentFocus, ignoreCurrent);
3017             if (nextFocusableRootTask != null) {
3018                 return nextFocusableRootTask;
3019             }
3020         }
3021 
3022         return null;
3023     }
3024 
closeSystemDialogActivities(String reason)3025     void closeSystemDialogActivities(String reason) {
3026         forAllActivities((r) -> {
3027             if ((r.info.flags & ActivityInfo.FLAG_FINISH_ON_CLOSE_SYSTEM_DIALOGS) != 0
3028                     || shouldCloseAssistant(r, reason)) {
3029                 r.finishIfPossible(reason, true /* oomAdj */);
3030             }
3031         });
3032     }
3033 
3034     /**
3035      * Returns {@code true} if {@code uid} has a visible window that's above the window of type
3036      * {@link WindowManager.LayoutParams#TYPE_NOTIFICATION_SHADE} and {@code uid} is not owner of
3037      * the window of type {@link WindowManager.LayoutParams#TYPE_NOTIFICATION_SHADE}.
3038      *
3039      * If there is no window with type {@link WindowManager.LayoutParams#TYPE_NOTIFICATION_SHADE},
3040      * it returns {@code false}.
3041      */
hasVisibleWindowAboveButDoesNotOwnNotificationShade(int uid)3042     boolean hasVisibleWindowAboveButDoesNotOwnNotificationShade(int uid) {
3043         boolean[] visibleWindowFound = {false};
3044         // We only return true if we found the notification shade (ie. window of type
3045         // TYPE_NOTIFICATION_SHADE). Usually, it should always be there, but if for some reason
3046         // it isn't, we should better be on the safe side and return false for this.
3047         return forAllWindows(w -> {
3048             if (w.mOwnerUid == uid && w.isVisible()) {
3049                 visibleWindowFound[0] = true;
3050             }
3051             if (w.mAttrs.type == TYPE_NOTIFICATION_SHADE) {
3052                 return visibleWindowFound[0] && w.mOwnerUid != uid;
3053             }
3054             return false;
3055         }, true /* traverseTopToBottom */);
3056     }
3057 
3058     private boolean shouldCloseAssistant(ActivityRecord r, String reason) {
3059         if (!r.isActivityTypeAssistant()) return false;
3060         if (reason == SYSTEM_DIALOG_REASON_ASSIST) return false;
3061         // When the assistant is configured to be on top of the dream, it will have higher z-order
3062         // than other activities. If it is also opaque, it will prevent other activities from
3063         // starting. We want to close the assistant on closeSystemDialogs to allow other activities
3064         // to start, e.g. on home button press.
3065         return mWmService.mAssistantOnTopOfDream;
3066     }
3067 
3068     FinishDisabledPackageActivitiesHelper mFinishDisabledPackageActivitiesHelper =
3069             new FinishDisabledPackageActivitiesHelper();
3070 
3071     class FinishDisabledPackageActivitiesHelper implements Predicate<ActivityRecord> {
3072         private String mPackageName;
3073         private Set<String> mFilterByClasses;
3074         private boolean mDoit;
3075         private boolean mEvenPersistent;
3076         private int mUserId;
3077         private boolean mOnlyRemoveNoProcess;
3078         private Task mLastTask;
3079         private final ArrayList<ActivityRecord> mCollectedActivities = new ArrayList<>();
3080 
3081         private void reset(String packageName, Set<String> filterByClasses,
3082                 boolean doit, boolean evenPersistent, int userId, boolean onlyRemoveNoProcess) {
3083             mPackageName = packageName;
3084             mFilterByClasses = filterByClasses;
3085             mDoit = doit;
3086             mEvenPersistent = evenPersistent;
3087             mUserId = userId;
3088             mOnlyRemoveNoProcess = onlyRemoveNoProcess;
3089             mLastTask = null;
3090         }
3091 
3092         boolean process(String packageName, Set<String> filterByClasses,
3093                 boolean doit, boolean evenPersistent, int userId, boolean onlyRemoveNoProcess) {
3094             reset(packageName, filterByClasses, doit, evenPersistent, userId, onlyRemoveNoProcess);
3095             forAllActivities(this);
3096 
3097             boolean didSomething = false;
3098             final int size = mCollectedActivities.size();
3099             // Keep the finishing order from top to bottom.
3100             for (int i = 0; i < size; i++) {
3101                 final ActivityRecord r = mCollectedActivities.get(i);
3102                 if (mOnlyRemoveNoProcess) {
3103                     if (!r.hasProcess()) {
3104                         didSomething = true;
3105                         Slog.i(TAG, "  Force removing " + r);
3106                         r.cleanUp(false /* cleanServices */, false /* setState */);
3107                         r.removeFromHistory("force-stop");
3108                     }
3109                 } else {
3110                     didSomething = true;
3111                     Slog.i(TAG, "  Force finishing " + r);
3112                     r.finishIfPossible("force-stop", true /* oomAdj */);
3113                 }
3114             }
3115             mCollectedActivities.clear();
3116 
3117             return didSomething;
3118         }
3119 
3120         @Override
3121         public boolean test(ActivityRecord r) {
3122             final boolean sameComponent =
3123                     (r.packageName.equals(mPackageName) && (mFilterByClasses == null
3124                             || mFilterByClasses.contains(r.mActivityComponent.getClassName())))
3125                             || (mPackageName == null && r.mUserId == mUserId);
3126             final boolean noProcess = !r.hasProcess();
3127             if ((mUserId == UserHandle.USER_ALL || r.mUserId == mUserId)
3128                     && (sameComponent || r.getTask() == mLastTask)
3129                     && (noProcess || mEvenPersistent || !r.app.isPersistent())) {
3130                 if (!mDoit) {
3131                     if (r.finishing) {
3132                         // If this activity is just finishing, then it is not
3133                         // interesting as far as something to stop.
3134                         return false;
3135                     }
3136                     return true;
3137                 }
3138                 mCollectedActivities.add(r);
3139                 mLastTask = r.getTask();
3140             }
3141 
3142             return false;
3143         }
3144     }
3145 
3146     /** @return true if some activity was finished (or would have finished if doit were true). */
3147     boolean finishDisabledPackageActivities(String packageName, Set<String> filterByClasses,
3148             boolean doit, boolean evenPersistent, int userId, boolean onlyRemoveNoProcess) {
3149         return mFinishDisabledPackageActivitiesHelper.process(packageName, filterByClasses, doit,
3150                 evenPersistent, userId, onlyRemoveNoProcess);
3151     }
3152 
3153     void updateActivityApplicationInfo(ApplicationInfo aInfo) {
3154         final String packageName = aInfo.packageName;
3155         final int userId = UserHandle.getUserId(aInfo.uid);
3156         forAllActivities(r -> {
3157             if (r.mUserId == userId && packageName.equals(r.packageName)) {
3158                 r.updateApplicationInfo(aInfo);
3159             }
3160         });
3161     }
3162 
3163     void finishVoiceTask(IVoiceInteractionSession session) {
3164         final IBinder binder = session.asBinder();
3165         forAllLeafTasks(t -> t.finishIfVoiceTask(binder), true /* traverseTopToBottom */);
3166     }
3167 
3168     /**
3169      * Removes root tasks in the input windowing modes from the system if they are of activity type
3170      * ACTIVITY_TYPE_STANDARD or ACTIVITY_TYPE_UNDEFINED
3171      */
3172     void removeRootTasksInWindowingModes(int... windowingModes) {
3173         for (int i = getChildCount() - 1; i >= 0; --i) {
3174             getChildAt(i).removeRootTasksInWindowingModes(windowingModes);
3175         }
3176     }
3177 
3178     void removeRootTasksWithActivityTypes(int... activityTypes) {
3179         for (int i = getChildCount() - 1; i >= 0; --i) {
3180             getChildAt(i).removeRootTasksWithActivityTypes(activityTypes);
3181         }
3182     }
3183 
3184     ActivityRecord topRunningActivity() {
3185         for (int i = getChildCount() - 1; i >= 0; --i) {
3186             final ActivityRecord topActivity = getChildAt(i).topRunningActivity();
3187             if (topActivity != null) {
3188                 return topActivity;
3189             }
3190         }
3191         return null;
3192     }
3193 
3194     boolean allResumedActivitiesIdle() {
3195         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
3196             // TODO(b/117135575): Check resumed activities on all visible root tasks.
3197             final DisplayContent display = getChildAt(displayNdx);
3198             if (display.isSleeping()) {
3199                 // No resumed activities while display is sleeping.
3200                 continue;
3201             }
3202 
3203             // If the focused root task is not null or not empty, there should have some activities
3204             // resuming or resumed. Make sure these activities are idle.
3205             final Task rootTask = display.getFocusedRootTask();
3206             if (rootTask == null || !rootTask.hasActivity()) {
3207                 continue;
3208             }
3209             final ActivityRecord resumedActivity = rootTask.getTopResumedActivity();
3210             if (resumedActivity == null || !resumedActivity.idle) {
3211                 ProtoLog.d(WM_DEBUG_STATES, "allResumedActivitiesIdle: rootTask=%d %s "
3212                         + "not idle", rootTask.getRootTaskId(), resumedActivity);
3213                 return false;
3214             }
3215             if (mTransitionController.isTransientLaunch(resumedActivity)) {
3216                 // Not idle if the transient transition animation is running.
3217                 return false;
3218             }
3219         }
3220         // End power mode launch when idle.
3221         mService.endLaunchPowerMode(ActivityTaskManagerService.POWER_MODE_REASON_START_ACTIVITY);
3222         return true;
3223     }
3224 
3225     boolean allResumedActivitiesVisible() {
3226         boolean[] foundResumed = {false};
3227         final boolean foundInvisibleResumedActivity = forAllRootTasks(rootTask -> {
3228             final ActivityRecord r = rootTask.getTopResumedActivity();
3229             if (r != null) {
3230                 if (!r.nowVisible) {
3231                     return true;
3232                 }
3233                 foundResumed[0] = true;
3234             }
3235             return false;
3236         });
3237         if (foundInvisibleResumedActivity) {
3238             return false;
3239         }
3240         return foundResumed[0];
3241     }
3242 
3243     boolean allPausedActivitiesComplete() {
3244         boolean[] pausing = {true};
3245         final boolean hasActivityNotCompleted = forAllLeafTasks(task -> {
3246             final ActivityRecord r = task.getTopPausingActivity();
3247             if (r != null && !r.isState(PAUSED, STOPPED, STOPPING, FINISHING)) {
3248                 ProtoLog.d(WM_DEBUG_STATES, "allPausedActivitiesComplete: "
3249                         + "r=%s state=%s", r, r.getState());
3250                 if (WM_DEBUG_STATES.isEnabled()) {
3251                     pausing[0] = false;
3252                 } else {
3253                     return true;
3254                 }
3255             }
3256             return false;
3257         });
3258         if (hasActivityNotCompleted) {
3259             return false;
3260         }
3261         return pausing[0];
3262     }
3263 
3264     /**
3265      * Find all tasks containing {@param userId} and intercept them with an activity
3266      * to block out the contents and possibly start a credential-confirming intent.
3267      *
3268      * @param userId user handle for the locked managed profile.
3269      */
3270     void lockAllProfileTasks(@UserIdInt int userId) {
3271         forAllLeafTasks(task -> {
3272             final ActivityRecord top = task.topRunningActivity();
3273             if (top != null && !top.finishing
3274                     && ACTION_CONFIRM_DEVICE_CREDENTIAL_WITH_USER.equals(top.intent.getAction())
3275                     && top.packageName.equals(
3276                             mService.getSysUiServiceComponentLocked().getPackageName())) {
3277                 // Do nothing since the task is already secure by sysui.
3278                 return;
3279             }
3280 
3281             if (task.getActivity(activity -> !activity.finishing && activity.mUserId == userId)
3282                     != null) {
3283                 mService.getTaskChangeNotificationController().notifyTaskProfileLocked(
3284                         task.getTaskInfo(), userId);
3285             }
3286         }, true /* traverseTopToBottom */);
3287     }
3288 
3289     Task anyTaskForId(int id) {
3290         return anyTaskForId(id, MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE);
3291     }
3292 
3293     Task anyTaskForId(int id, @RootWindowContainer.AnyTaskForIdMatchTaskMode int matchMode) {
3294         return anyTaskForId(id, matchMode, null, !ON_TOP);
3295     }
3296 
3297     /**
3298      * Returns a {@link Task} for the input id if available. {@code null} otherwise.
3299      *
3300      * @param id        Id of the task we would like returned.
3301      * @param matchMode The mode to match the given task id in.
3302      * @param aOptions  The activity options to use for restoration. Can be null.
3303      * @param onTop     If the root task for the task should be the topmost on the display.
3304      */
3305     Task anyTaskForId(int id, @RootWindowContainer.AnyTaskForIdMatchTaskMode int matchMode,
3306             @Nullable ActivityOptions aOptions, boolean onTop) {
3307         // If options are set, ensure that we are attempting to actually restore a task
3308         if (matchMode != MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE && aOptions != null) {
3309             throw new IllegalArgumentException("Should not specify activity options for non-restore"
3310                     + " lookup");
3311         }
3312 
3313         final PooledPredicate p = PooledLambda.obtainPredicate(
3314                 Task::isTaskId, PooledLambda.__(Task.class), id);
3315         Task task = getTask(p);
3316         p.recycle();
3317 
3318         if (task != null) {
3319             if (aOptions != null) {
3320                 // Resolve the root task the task should be placed in now based on options
3321                 // and reparent if needed.
3322                 // TODO(b/229927851) For split-screen, setLaunchRootTask is no longer the "root"
3323                 // task, consider to rename methods like "parentTask" instead of "rootTask".
3324                 final Task targetRootTask =
3325                         getOrCreateRootTask(null, aOptions, task, onTop);
3326                 // When launch with ActivityOptions#getLaunchRootTask, the "root task" just mean the
3327                 // parent of current launch, not the "root task" in hierarchy.
3328                 if (targetRootTask != null && task.getRootTask() != targetRootTask
3329                         && task.getParent() != targetRootTask) {
3330                     final int reparentMode = onTop
3331                             ? REPARENT_MOVE_ROOT_TASK_TO_FRONT : REPARENT_LEAVE_ROOT_TASK_IN_PLACE;
3332                     task.reparent(targetRootTask, onTop, reparentMode, ANIMATE, DEFER_RESUME,
3333                             "anyTaskForId");
3334                 }
3335             }
3336             return task;
3337         }
3338 
3339         // If we are matching root task tasks only, return now
3340         if (matchMode == MATCH_ATTACHED_TASK_ONLY) {
3341             return null;
3342         }
3343 
3344         // Otherwise, check the recent tasks and return if we find it there and we are not restoring
3345         // the task from recents
3346         if (DEBUG_RECENTS) Slog.v(TAG_RECENTS, "Looking for task id=" + id + " in recents");
3347         task = mTaskSupervisor.mRecentTasks.getTask(id);
3348 
3349         if (task == null) {
3350             if (DEBUG_RECENTS) {
3351                 Slog.d(TAG_RECENTS, "\tDidn't find task id=" + id + " in recents");
3352             }
3353 
3354             return null;
3355         }
3356 
3357         if (matchMode == MATCH_ATTACHED_TASK_OR_RECENT_TASKS) {
3358             return task;
3359         }
3360 
3361         // Implicitly, this case is MATCH_ATTACHED_TASK_OR_RECENT_TASKS_AND_RESTORE
3362         if (!mTaskSupervisor.restoreRecentTaskLocked(task, aOptions, onTop)) {
3363             if (DEBUG_RECENTS) {
3364                 Slog.w(TAG_RECENTS,
3365                         "Couldn't restore task id=" + id + " found in recents");
3366             }
3367             return null;
3368         }
3369         if (DEBUG_RECENTS) Slog.w(TAG_RECENTS, "Restored task id=" + id + " from in recents");
3370         return task;
3371     }
3372 
3373     @VisibleForTesting
3374     void getRunningTasks(int maxNum, List<ActivityManager.RunningTaskInfo> list,
3375             int flags, int callingUid, ArraySet<Integer> profileIds, int displayId) {
3376         WindowContainer root = this;
3377         if (displayId != INVALID_DISPLAY) {
3378             root = getDisplayContent(displayId);
3379             if (root == null) {
3380                 return;
3381             }
3382         }
3383         mTaskSupervisor.getRunningTasks().getTasks(maxNum, list, flags, mService.getRecentTasks(),
3384                 root, callingUid, profileIds);
3385     }
3386 
3387     void startPowerModeLaunchIfNeeded(boolean forceSend, ActivityRecord targetActivity) {
3388         if (!forceSend && targetActivity != null && targetActivity.app != null) {
3389             // Set power mode when the activity's process is different than the current top resumed
3390             // activity on all display areas, or if there are no resumed activities in the system.
3391             boolean[] noResumedActivities = {true};
3392             boolean[] allFocusedProcessesDiffer = {true};
3393             forAllTaskDisplayAreas(taskDisplayArea -> {
3394                 final ActivityRecord resumedActivity = taskDisplayArea.getFocusedActivity();
3395                 final WindowProcessController resumedActivityProcess =
3396                         resumedActivity == null ? null : resumedActivity.app;
3397 
3398                 noResumedActivities[0] &= resumedActivityProcess == null;
3399                 if (resumedActivityProcess != null) {
3400                     allFocusedProcessesDiffer[0] &=
3401                             !resumedActivityProcess.equals(targetActivity.app);
3402                 }
3403             });
3404             if (!noResumedActivities[0] && !allFocusedProcessesDiffer[0]) {
3405                 // All focused activities are resumed and the process of the target activity is
3406                 // the same as them, e.g. delivering new intent to the current top.
3407                 return;
3408             }
3409         }
3410 
3411         int reason = ActivityTaskManagerService.POWER_MODE_REASON_START_ACTIVITY;
3412         // If the activity is launching while keyguard is locked (including occluded), the activity
3413         // may be visible until its first relayout is done (e.g. apply show-when-lock flag). To
3414         // avoid power mode from being cleared before that, add a special reason to consider whether
3415         // the unknown visibility is resolved. The case from SystemUI is excluded because it should
3416         // rely on keyguard-going-away.
3417         final boolean isKeyguardLocked = (targetActivity != null)
3418                 ? targetActivity.isKeyguardLocked() : mDefaultDisplay.isKeyguardLocked();
3419         if (isKeyguardLocked && targetActivity != null
3420                 && !targetActivity.isLaunchSourceType(ActivityRecord.LAUNCH_SOURCE_TYPE_SYSTEMUI)) {
3421             final ActivityOptions opts = targetActivity.getOptions();
3422             if (opts == null || opts.getSourceInfo() == null
3423                     || opts.getSourceInfo().type != ActivityOptions.SourceInfo.TYPE_LOCKSCREEN) {
3424                 reason |= ActivityTaskManagerService.POWER_MODE_REASON_UNKNOWN_VISIBILITY;
3425             }
3426         }
3427         mService.startLaunchPowerMode(reason);
3428     }
3429 
3430     /**
3431      * Iterate over all task fragments, to see if there exists one that meets the
3432      * PermissionPolicyService's criteria to show a permission dialog.
3433      */
3434     public int getTaskToShowPermissionDialogOn(String pkgName, int uid) {
3435         PermissionPolicyInternal pPi = mService.getPermissionPolicyInternal();
3436         if (pPi == null) {
3437             return INVALID_TASK_ID;
3438         }
3439 
3440         final int[] validTaskId = {INVALID_TASK_ID};
3441         forAllLeafTaskFragments(fragment -> {
3442             ActivityRecord record = fragment.getActivity((r) -> {
3443                 // skip hidden (or about to hide) apps, or the permission dialog
3444                 return r.canBeTopRunning() && r.isVisibleRequested()
3445                         && !pPi.isIntentToPermissionDialog(r.intent);
3446             });
3447             if (record != null && record.isUid(uid)
3448                     && Objects.equals(pkgName, record.packageName)
3449                     && pPi.shouldShowNotificationDialogForTask(record.getTask().getTaskInfo(),
3450                     pkgName, record.launchedFromPackage, record.intent, record.getName())) {
3451                 validTaskId[0] = record.getTask().mTaskId;
3452                 return true;
3453             }
3454             return false;
3455         });
3456 
3457         return validTaskId[0];
3458     }
3459 
3460     /**
3461      * Dumps the activities matching the given {@param name} in the either the focused root task
3462      * or all visible root tasks if {@param dumpVisibleRootTasksOnly} is true.
3463      */
3464     ArrayList<ActivityRecord> getDumpActivities(String name, boolean dumpVisibleRootTasksOnly,
3465             boolean dumpFocusedRootTaskOnly, @UserIdInt int userId) {
3466         if (dumpFocusedRootTaskOnly) {
3467             final Task topFocusedRootTask = getTopDisplayFocusedRootTask();
3468             if (topFocusedRootTask != null) {
3469                 return topFocusedRootTask.getDumpActivitiesLocked(name, userId);
3470             } else {
3471                 return new ArrayList<>();
3472             }
3473         } else {
3474             final RecentTasks recentTasks = mWindowManager.mAtmService.getRecentTasks();
3475             final int recentsComponentUid = recentTasks != null
3476                     ? recentTasks.getRecentsComponentUid()
3477                     : -1;
3478             final ArrayList<ActivityRecord> activities = new ArrayList<>();
3479             forAllLeafTasks(task -> {
3480                 final boolean isRecents = (task.effectiveUid == recentsComponentUid);
3481                 if (!dumpVisibleRootTasksOnly || task.shouldBeVisible(null) || isRecents) {
3482                     activities.addAll(task.getDumpActivitiesLocked(name, userId));
3483                 }
3484                 return false;
3485             });
3486             return activities;
3487         }
3488     }
3489 
3490     @Override
3491     public void dump(PrintWriter pw, String prefix, boolean dumpAll) {
3492         super.dump(pw, prefix, dumpAll);
3493         pw.print(prefix);
3494         pw.println("topDisplayFocusedRootTask=" + getTopDisplayFocusedRootTask());
3495         for (int i = getChildCount() - 1; i >= 0; --i) {
3496             final DisplayContent display = getChildAt(i);
3497             display.dump(pw, prefix, dumpAll);
3498         }
3499     }
3500 
3501     /**
3502      * Dump all connected displays' configurations.
3503      *
3504      * @param prefix Prefix to apply to each line of the dump.
3505      */
3506     void dumpDisplayConfigs(PrintWriter pw, String prefix) {
3507         pw.print(prefix);
3508         pw.println("Display override configurations:");
3509         final int displayCount = getChildCount();
3510         for (int i = 0; i < displayCount; i++) {
3511             final DisplayContent displayContent = getChildAt(i);
3512             pw.print(prefix);
3513             pw.print("  ");
3514             pw.print(displayContent.mDisplayId);
3515             pw.print(": ");
3516             pw.println(displayContent.getRequestedOverrideConfiguration());
3517         }
3518     }
3519 
3520     boolean dumpActivities(FileDescriptor fd, PrintWriter pw, boolean dumpAll, boolean dumpClient,
3521             String dumpPackage, int displayIdFilter) {
3522         boolean[] printed = {false};
3523         boolean[] needSep = {false};
3524         for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
3525             DisplayContent displayContent = getChildAt(displayNdx);
3526             if (printed[0]) {
3527                 pw.println();
3528             }
3529             if (displayIdFilter != Display.INVALID_DISPLAY
3530                     && displayContent.mDisplayId != displayIdFilter) {
3531                 continue;
3532             }
3533             pw.print("Display #");
3534             pw.print(displayContent.mDisplayId);
3535             pw.println(" (activities from top to bottom):");
3536             displayContent.forAllRootTasks(rootTask -> {
3537                 if (needSep[0]) {
3538                     pw.println();
3539                 }
3540                 needSep[0] = rootTask.dump(fd, pw, dumpAll, dumpClient, dumpPackage, false);
3541                 printed[0] |= needSep[0];
3542             });
3543             displayContent.forAllTaskDisplayAreas(taskDisplayArea -> {
3544                 printed[0] |= printThisActivity(pw, taskDisplayArea.getFocusedActivity(),
3545                         dumpPackage, needSep[0], "    Resumed: ", () ->
3546                                 pw.println("  Resumed activities in task display areas"
3547                                         + " (from top to bottom):"));
3548             });
3549         }
3550 
3551         printed[0] |= dumpHistoryList(fd, pw, mTaskSupervisor.mFinishingActivities, "  ",
3552                 "Fin", false, !dumpAll,
3553                 false, dumpPackage, true,
3554                 () -> pw.println("  Activities waiting to finish:"), null);
3555         printed[0] |= dumpHistoryList(fd, pw, mTaskSupervisor.mStoppingActivities, "  ",
3556                 "Stop", false, !dumpAll,
3557                 false, dumpPackage, true,
3558                 () -> pw.println("  Activities waiting to stop:"), null);
3559 
3560         return printed[0];
3561     }
3562 
3563     private static int makeSleepTokenKey(String tag, int displayId) {
3564         final String tokenKey = tag + displayId;
3565         return tokenKey.hashCode();
3566     }
3567 
3568     static final class SleepToken {
3569         private final String mTag;
3570         private final long mAcquireTime;
3571         private final int mDisplayId;
3572         private final boolean mIsSwappingDisplay;
3573         final int mHashKey;
3574 
3575         // The display could remain in sleep after the physical display swapped, adding a 1
3576         // seconds display swap timeout to prevent activities staying in PAUSED state.
3577         // Otherwise, the sleep token should be removed once display turns back on after swapped.
3578         private static final long DISPLAY_SWAP_TIMEOUT = 1000;
3579 
3580         SleepToken(String tag, int displayId, boolean isSwappingDisplay) {
3581             mTag = tag;
3582             mDisplayId = displayId;
3583             mAcquireTime = SystemClock.uptimeMillis();
3584             mIsSwappingDisplay = isSwappingDisplay;
3585             mHashKey = makeSleepTokenKey(mTag, mDisplayId);
3586         }
3587 
3588         public boolean isDisplaySwapping() {
3589             long now = SystemClock.uptimeMillis();
3590             if (now - mAcquireTime > DISPLAY_SWAP_TIMEOUT) {
3591                 return false;
3592             }
3593             return mIsSwappingDisplay;
3594         }
3595 
3596         @Override
3597         public String toString() {
3598             return "{\"" + mTag + "\", display " + mDisplayId
3599                     + (mIsSwappingDisplay ? " is swapping " : "")
3600                     + ", acquire at " + TimeUtils.formatUptime(mAcquireTime) + "}";
3601         }
3602 
3603         void writeTagToProto(ProtoOutputStream proto, long fieldId) {
3604             proto.write(fieldId, mTag);
3605         }
3606     }
3607 
3608     private class RankTaskLayersRunnable implements Runnable {
3609         @Override
3610         public void run() {
3611             synchronized (mService.mGlobalLock) {
3612                 if (mTaskLayersChanged) {
3613                     mTaskLayersChanged = false;
3614                     rankTaskLayers();
3615                 }
3616             }
3617         }
3618     }
3619 
3620     private class AttachApplicationHelper implements Consumer<Task>, Predicate<ActivityRecord> {
3621         private boolean mHasActivityStarted;
3622         private RemoteException mRemoteException;
3623         private WindowProcessController mApp;
3624         private ActivityRecord mTop;
3625 
3626         void reset() {
3627             mHasActivityStarted = false;
3628             mRemoteException = null;
3629             mApp = null;
3630             mTop = null;
3631         }
3632 
3633         boolean process(WindowProcessController app) throws RemoteException {
3634             mApp = app;
3635             for (int displayNdx = getChildCount() - 1; displayNdx >= 0; --displayNdx) {
3636                 getChildAt(displayNdx).forAllRootTasks(this);
3637                 if (mRemoteException != null) {
3638                     throw mRemoteException;
3639                 }
3640             }
3641             if (!mHasActivityStarted) {
3642                 ensureActivitiesVisible(null /* starting */, 0 /* configChanges */,
3643                         false /* preserveWindows */);
3644             }
3645             return mHasActivityStarted;
3646         }
3647 
3648         @Override
3649         public void accept(Task rootTask) {
3650             if (mRemoteException != null) {
3651                 return;
3652             }
3653             if (rootTask.getVisibility(null /* starting */)
3654                     == TASK_FRAGMENT_VISIBILITY_INVISIBLE) {
3655                 return;
3656             }
3657             mTop = rootTask.topRunningActivity();
3658             rootTask.forAllActivities(this);
3659         }
3660 
3661         @Override
3662         public boolean test(ActivityRecord r) {
3663             if (r.finishing || !r.showToCurrentUser() || !r.visibleIgnoringKeyguard
3664                     || r.app != null || mApp.mUid != r.info.applicationInfo.uid
3665                     || !mApp.mName.equals(r.processName)) {
3666                 return false;
3667             }
3668 
3669             try {
3670                 if (mTaskSupervisor.realStartActivityLocked(r, mApp,
3671                         mTop == r && r.getTask().canBeResumed(r) /* andResume */,
3672                         true /* checkConfig */)) {
3673                     mHasActivityStarted = true;
3674                 }
3675             } catch (RemoteException e) {
3676                 Slog.w(TAG, "Exception in new application when starting activity " + mTop, e);
3677                 mRemoteException = e;
3678                 return true;
3679             }
3680             return false;
3681         }
3682     }
3683 }
3684