ActivityManager.java revision 54de77470de4f605eef7f4b4e01718b301fe275e
1/*
2 * Copyright (C) 2007 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17package android.app;
18
19import android.Manifest;
20import android.annotation.IntDef;
21import android.annotation.NonNull;
22import android.annotation.Nullable;
23import android.annotation.RequiresPermission;
24import android.annotation.SystemApi;
25import android.content.pm.ActivityInfo;
26import android.content.res.Configuration;
27import android.graphics.Canvas;
28import android.graphics.Matrix;
29import android.graphics.Point;
30import android.os.BatteryStats;
31import android.os.IBinder;
32import android.os.ParcelFileDescriptor;
33
34import com.android.internal.app.procstats.ProcessStats;
35import com.android.internal.os.TransferPipe;
36import com.android.internal.util.FastPrintWriter;
37
38import android.content.ComponentName;
39import android.content.Context;
40import android.content.Intent;
41import android.content.UriPermission;
42import android.content.pm.ApplicationInfo;
43import android.content.pm.ConfigurationInfo;
44import android.content.pm.IPackageDataObserver;
45import android.content.pm.PackageManager;
46import android.content.pm.ParceledListSlice;
47import android.content.pm.UserInfo;
48import android.content.res.Resources;
49import android.graphics.Bitmap;
50import android.graphics.Color;
51import android.graphics.Rect;
52import android.os.Bundle;
53import android.os.Debug;
54import android.os.Handler;
55import android.os.Parcel;
56import android.os.Parcelable;
57import android.os.Process;
58import android.os.RemoteException;
59import android.os.ServiceManager;
60import android.os.SystemProperties;
61import android.os.UserHandle;
62import android.text.TextUtils;
63import android.util.DisplayMetrics;
64import android.util.Size;
65
66import org.xmlpull.v1.XmlSerializer;
67
68import java.io.FileDescriptor;
69import java.io.FileOutputStream;
70import java.io.IOException;
71import java.io.PrintWriter;
72import java.lang.annotation.Retention;
73import java.lang.annotation.RetentionPolicy;
74import java.util.ArrayList;
75import java.util.List;
76
77/**
78 * Interact with the overall activities running in the system.
79 */
80public class ActivityManager {
81    private static String TAG = "ActivityManager";
82
83    private static int gMaxRecentTasks = -1;
84
85    private final Context mContext;
86    private final Handler mHandler;
87
88    /**
89     * Defines acceptable types of bugreports.
90     * @hide
91     */
92    @Retention(RetentionPolicy.SOURCE)
93    @IntDef({
94            BUGREPORT_OPTION_FULL,
95            BUGREPORT_OPTION_INTERACTIVE,
96            BUGREPORT_OPTION_REMOTE,
97            BUGREPORT_OPTION_WEAR
98    })
99    public @interface BugreportMode {}
100    /**
101     * Takes a bugreport without user interference (and hence causing less
102     * interference to the system), but includes all sections.
103     * @hide
104     */
105    public static final int BUGREPORT_OPTION_FULL = 0;
106    /**
107     * Allows user to monitor progress and enter additional data; might not include all
108     * sections.
109     * @hide
110     */
111    public static final int BUGREPORT_OPTION_INTERACTIVE = 1;
112    /**
113     * Takes a bugreport requested remotely by administrator of the Device Owner app,
114     * not the device's user.
115     * @hide
116     */
117    public static final int BUGREPORT_OPTION_REMOTE = 2;
118    /**
119     * Takes a bugreport on a wearable device.
120     * @hide
121     */
122    public static final int BUGREPORT_OPTION_WEAR = 3;
123
124    /**
125     * <a href="{@docRoot}guide/topics/manifest/meta-data-element.html">{@code
126     * <meta-data>}</a> name for a 'home' Activity that declares a package that is to be
127     * uninstalled in lieu of the declaring one.  The package named here must be
128     * signed with the same certificate as the one declaring the {@code <meta-data>}.
129     */
130    public static final String META_HOME_ALTERNATE = "android.app.home.alternate";
131
132    /**
133     * Result for IActivityManager.startVoiceActivity: active session is currently hidden.
134     * @hide
135     */
136    public static final int START_VOICE_HIDDEN_SESSION = -10;
137
138    /**
139     * Result for IActivityManager.startVoiceActivity: active session does not match
140     * the requesting token.
141     * @hide
142     */
143    public static final int START_VOICE_NOT_ACTIVE_SESSION = -9;
144
145    /**
146     * Result for IActivityManager.startActivity: trying to start a background user
147     * activity that shouldn't be displayed for all users.
148     * @hide
149     */
150    public static final int START_NOT_CURRENT_USER_ACTIVITY = -8;
151
152    /**
153     * Result for IActivityManager.startActivity: trying to start an activity under voice
154     * control when that activity does not support the VOICE category.
155     * @hide
156     */
157    public static final int START_NOT_VOICE_COMPATIBLE = -7;
158
159    /**
160     * Result for IActivityManager.startActivity: an error where the
161     * start had to be canceled.
162     * @hide
163     */
164    public static final int START_CANCELED = -6;
165
166    /**
167     * Result for IActivityManager.startActivity: an error where the
168     * thing being started is not an activity.
169     * @hide
170     */
171    public static final int START_NOT_ACTIVITY = -5;
172
173    /**
174     * Result for IActivityManager.startActivity: an error where the
175     * caller does not have permission to start the activity.
176     * @hide
177     */
178    public static final int START_PERMISSION_DENIED = -4;
179
180    /**
181     * Result for IActivityManager.startActivity: an error where the
182     * caller has requested both to forward a result and to receive
183     * a result.
184     * @hide
185     */
186    public static final int START_FORWARD_AND_REQUEST_CONFLICT = -3;
187
188    /**
189     * Result for IActivityManager.startActivity: an error where the
190     * requested class is not found.
191     * @hide
192     */
193    public static final int START_CLASS_NOT_FOUND = -2;
194
195    /**
196     * Result for IActivityManager.startActivity: an error where the
197     * given Intent could not be resolved to an activity.
198     * @hide
199     */
200    public static final int START_INTENT_NOT_RESOLVED = -1;
201
202    /**
203     * Result for IActivityManaqer.startActivity: the activity was started
204     * successfully as normal.
205     * @hide
206     */
207    public static final int START_SUCCESS = 0;
208
209    /**
210     * Result for IActivityManaqer.startActivity: the caller asked that the Intent not
211     * be executed if it is the recipient, and that is indeed the case.
212     * @hide
213     */
214    public static final int START_RETURN_INTENT_TO_CALLER = 1;
215
216    /**
217     * Result for IActivityManaqer.startActivity: activity wasn't really started, but
218     * a task was simply brought to the foreground.
219     * @hide
220     */
221    public static final int START_TASK_TO_FRONT = 2;
222
223    /**
224     * Result for IActivityManaqer.startActivity: activity wasn't really started, but
225     * the given Intent was given to the existing top activity.
226     * @hide
227     */
228    public static final int START_DELIVERED_TO_TOP = 3;
229
230    /**
231     * Result for IActivityManaqer.startActivity: request was canceled because
232     * app switches are temporarily canceled to ensure the user's last request
233     * (such as pressing home) is performed.
234     * @hide
235     */
236    public static final int START_SWITCHES_CANCELED = 4;
237
238    /**
239     * Result for IActivityManaqer.startActivity: a new activity was attempted to be started
240     * while in Lock Task Mode.
241     * @hide
242     */
243    public static final int START_RETURN_LOCK_TASK_MODE_VIOLATION = 5;
244
245    /**
246     * Flag for IActivityManaqer.startActivity: do special start mode where
247     * a new activity is launched only if it is needed.
248     * @hide
249     */
250    public static final int START_FLAG_ONLY_IF_NEEDED = 1<<0;
251
252    /**
253     * Flag for IActivityManaqer.startActivity: launch the app for
254     * debugging.
255     * @hide
256     */
257    public static final int START_FLAG_DEBUG = 1<<1;
258
259    /**
260     * Flag for IActivityManaqer.startActivity: launch the app for
261     * allocation tracking.
262     * @hide
263     */
264    public static final int START_FLAG_TRACK_ALLOCATION = 1<<2;
265
266    /**
267     * Flag for IActivityManaqer.startActivity: launch the app with
268     * native debugging support.
269     * @hide
270     */
271    public static final int START_FLAG_NATIVE_DEBUGGING = 1<<3;
272
273    /**
274     * Result for IActivityManaqer.broadcastIntent: success!
275     * @hide
276     */
277    public static final int BROADCAST_SUCCESS = 0;
278
279    /**
280     * Result for IActivityManaqer.broadcastIntent: attempt to broadcast
281     * a sticky intent without appropriate permission.
282     * @hide
283     */
284    public static final int BROADCAST_STICKY_CANT_HAVE_PERMISSION = -1;
285
286    /**
287     * Result for IActivityManager.broadcastIntent: trying to send a broadcast
288     * to a stopped user. Fail.
289     * @hide
290     */
291    public static final int BROADCAST_FAILED_USER_STOPPED = -2;
292
293    /**
294     * Type for IActivityManaqer.getIntentSender: this PendingIntent is
295     * for a sendBroadcast operation.
296     * @hide
297     */
298    public static final int INTENT_SENDER_BROADCAST = 1;
299
300    /**
301     * Type for IActivityManaqer.getIntentSender: this PendingIntent is
302     * for a startActivity operation.
303     * @hide
304     */
305    public static final int INTENT_SENDER_ACTIVITY = 2;
306
307    /**
308     * Type for IActivityManaqer.getIntentSender: this PendingIntent is
309     * for an activity result operation.
310     * @hide
311     */
312    public static final int INTENT_SENDER_ACTIVITY_RESULT = 3;
313
314    /**
315     * Type for IActivityManaqer.getIntentSender: this PendingIntent is
316     * for a startService operation.
317     * @hide
318     */
319    public static final int INTENT_SENDER_SERVICE = 4;
320
321    /** @hide User operation call: success! */
322    public static final int USER_OP_SUCCESS = 0;
323
324    /** @hide User operation call: given user id is not known. */
325    public static final int USER_OP_UNKNOWN_USER = -1;
326
327    /** @hide User operation call: given user id is the current user, can't be stopped. */
328    public static final int USER_OP_IS_CURRENT = -2;
329
330    /** @hide User operation call: system user can't be stopped. */
331    public static final int USER_OP_ERROR_IS_SYSTEM = -3;
332
333    /** @hide User operation call: one of related users cannot be stopped. */
334    public static final int USER_OP_ERROR_RELATED_USERS_CANNOT_STOP = -4;
335
336    /** @hide Process does not exist. */
337    public static final int PROCESS_STATE_NONEXISTENT = -1;
338
339    /** @hide Process is a persistent system process. */
340    public static final int PROCESS_STATE_PERSISTENT = 0;
341
342    /** @hide Process is a persistent system process and is doing UI. */
343    public static final int PROCESS_STATE_PERSISTENT_UI = 1;
344
345    /** @hide Process is hosting the current top activities.  Note that this covers
346     * all activities that are visible to the user. */
347    public static final int PROCESS_STATE_TOP = 2;
348
349    /** @hide Process is hosting a foreground service due to a system binding. */
350    public static final int PROCESS_STATE_BOUND_FOREGROUND_SERVICE = 3;
351
352    /** @hide Process is hosting a foreground service. */
353    public static final int PROCESS_STATE_FOREGROUND_SERVICE = 4;
354
355    /** @hide Same as {@link #PROCESS_STATE_TOP} but while device is sleeping. */
356    public static final int PROCESS_STATE_TOP_SLEEPING = 5;
357
358    /** @hide Process is important to the user, and something they are aware of. */
359    public static final int PROCESS_STATE_IMPORTANT_FOREGROUND = 6;
360
361    /** @hide Process is important to the user, but not something they are aware of. */
362    public static final int PROCESS_STATE_IMPORTANT_BACKGROUND = 7;
363
364    /** @hide Process is in the background running a backup/restore operation. */
365    public static final int PROCESS_STATE_BACKUP = 8;
366
367    /** @hide Process is in the background, but it can't restore its state so we want
368     * to try to avoid killing it. */
369    public static final int PROCESS_STATE_HEAVY_WEIGHT = 9;
370
371    /** @hide Process is in the background running a service.  Unlike oom_adj, this level
372     * is used for both the normal running in background state and the executing
373     * operations state. */
374    public static final int PROCESS_STATE_SERVICE = 10;
375
376    /** @hide Process is in the background running a receiver.   Note that from the
377     * perspective of oom_adj receivers run at a higher foreground level, but for our
378     * prioritization here that is not necessary and putting them below services means
379     * many fewer changes in some process states as they receive broadcasts. */
380    public static final int PROCESS_STATE_RECEIVER = 11;
381
382    /** @hide Process is in the background but hosts the home activity. */
383    public static final int PROCESS_STATE_HOME = 12;
384
385    /** @hide Process is in the background but hosts the last shown activity. */
386    public static final int PROCESS_STATE_LAST_ACTIVITY = 13;
387
388    /** @hide Process is being cached for later use and contains activities. */
389    public static final int PROCESS_STATE_CACHED_ACTIVITY = 14;
390
391    /** @hide Process is being cached for later use and is a client of another cached
392     * process that contains activities. */
393    public static final int PROCESS_STATE_CACHED_ACTIVITY_CLIENT = 15;
394
395    /** @hide Process is being cached for later use and is empty. */
396    public static final int PROCESS_STATE_CACHED_EMPTY = 16;
397
398    /** @hide The lowest process state number */
399    public static final int MIN_PROCESS_STATE = PROCESS_STATE_NONEXISTENT;
400
401    /** @hide The highest process state number */
402    public static final int MAX_PROCESS_STATE = PROCESS_STATE_CACHED_EMPTY;
403
404    /** @hide Should this process state be considered a background state? */
405    public static final boolean isProcStateBackground(int procState) {
406        return procState >= PROCESS_STATE_BACKUP;
407    }
408
409    /** @hide requestType for assist context: only basic information. */
410    public static final int ASSIST_CONTEXT_BASIC = 0;
411
412    /** @hide requestType for assist context: generate full AssistStructure. */
413    public static final int ASSIST_CONTEXT_FULL = 1;
414
415    /** @hide Flag for registerUidObserver: report changes in process state. */
416    public static final int UID_OBSERVER_PROCSTATE = 1<<0;
417
418    /** @hide Flag for registerUidObserver: report uid gone. */
419    public static final int UID_OBSERVER_GONE = 1<<1;
420
421    /** @hide Flag for registerUidObserver: report uid has become idle. */
422    public static final int UID_OBSERVER_IDLE = 1<<2;
423
424    /** @hide Flag for registerUidObserver: report uid has become active. */
425    public static final int UID_OBSERVER_ACTIVE = 1<<3;
426
427    /** @hide Mode for {@link IActivityManager#getAppStartMode}: normal free-to-run operation. */
428    public static final int APP_START_MODE_NORMAL = 0;
429
430    /** @hide Mode for {@link IActivityManager#getAppStartMode}: delay running until later. */
431    public static final int APP_START_MODE_DELAYED = 1;
432
433    /** @hide Mode for {@link IActivityManager#getAppStartMode}: disable/cancel pending
434     * launches. */
435    public static final int APP_START_MODE_DISABLED = 2;
436
437    /**
438     * Lock task mode is not active.
439     */
440    public static final int LOCK_TASK_MODE_NONE = 0;
441
442    /**
443     * Full lock task mode is active.
444     */
445    public static final int LOCK_TASK_MODE_LOCKED = 1;
446
447    /**
448     * App pinning mode is active.
449     */
450    public static final int LOCK_TASK_MODE_PINNED = 2;
451
452    Point mAppTaskThumbnailSize;
453
454    /*package*/ ActivityManager(Context context, Handler handler) {
455        mContext = context;
456        mHandler = handler;
457    }
458
459    /**
460     * Screen compatibility mode: the application most always run in
461     * compatibility mode.
462     * @hide
463     */
464    public static final int COMPAT_MODE_ALWAYS = -1;
465
466    /**
467     * Screen compatibility mode: the application can never run in
468     * compatibility mode.
469     * @hide
470     */
471    public static final int COMPAT_MODE_NEVER = -2;
472
473    /**
474     * Screen compatibility mode: unknown.
475     * @hide
476     */
477    public static final int COMPAT_MODE_UNKNOWN = -3;
478
479    /**
480     * Screen compatibility mode: the application currently has compatibility
481     * mode disabled.
482     * @hide
483     */
484    public static final int COMPAT_MODE_DISABLED = 0;
485
486    /**
487     * Screen compatibility mode: the application currently has compatibility
488     * mode enabled.
489     * @hide
490     */
491    public static final int COMPAT_MODE_ENABLED = 1;
492
493    /**
494     * Screen compatibility mode: request to toggle the application's
495     * compatibility mode.
496     * @hide
497     */
498    public static final int COMPAT_MODE_TOGGLE = 2;
499
500    /** @hide */
501    public static class StackId {
502        /** Invalid stack ID. */
503        public static final int INVALID_STACK_ID = -1;
504
505        /** First static stack ID. */
506        public static final int FIRST_STATIC_STACK_ID = 0;
507
508        /** Home activity stack ID. */
509        public static final int HOME_STACK_ID = FIRST_STATIC_STACK_ID;
510
511        /** ID of stack where fullscreen activities are normally launched into. */
512        public static final int FULLSCREEN_WORKSPACE_STACK_ID = 1;
513
514        /** ID of stack where freeform/resized activities are normally launched into. */
515        public static final int FREEFORM_WORKSPACE_STACK_ID = FULLSCREEN_WORKSPACE_STACK_ID + 1;
516
517        /** ID of stack that occupies a dedicated region of the screen. */
518        public static final int DOCKED_STACK_ID = FREEFORM_WORKSPACE_STACK_ID + 1;
519
520        /** ID of stack that always on top (always visible) when it exist. */
521        public static final int PINNED_STACK_ID = DOCKED_STACK_ID + 1;
522
523        /** Last static stack stack ID. */
524        public static final int LAST_STATIC_STACK_ID = PINNED_STACK_ID;
525
526        /** Start of ID range used by stacks that are created dynamically. */
527        public static final int FIRST_DYNAMIC_STACK_ID = LAST_STATIC_STACK_ID + 1;
528
529        public static boolean isStaticStack(int stackId) {
530            return stackId >= FIRST_STATIC_STACK_ID && stackId <= LAST_STATIC_STACK_ID;
531        }
532
533        /**
534         * Returns true if the activities contained in the input stack display a shadow around
535         * their border.
536         */
537        public static boolean hasWindowShadow(int stackId) {
538            return stackId == FREEFORM_WORKSPACE_STACK_ID || stackId == PINNED_STACK_ID;
539        }
540
541        /**
542         * Returns true if the activities contained in the input stack display a decor view.
543         */
544        public static boolean hasWindowDecor(int stackId) {
545            return stackId == FREEFORM_WORKSPACE_STACK_ID;
546        }
547
548        /**
549         * Returns true if the tasks contained in the stack can be resized independently of the
550         * stack.
551         */
552        public static boolean isTaskResizeAllowed(int stackId) {
553            return stackId == FREEFORM_WORKSPACE_STACK_ID;
554        }
555
556        /** Returns true if the task bounds should persist across power cycles. */
557        public static boolean persistTaskBounds(int stackId) {
558            return stackId == FREEFORM_WORKSPACE_STACK_ID;
559        }
560
561        /**
562         * Returns true if dynamic stacks are allowed to be visible behind the input stack.
563         */
564        public static boolean isDynamicStacksVisibleBehindAllowed(int stackId) {
565            return stackId == PINNED_STACK_ID;
566        }
567
568        /**
569         * Returns true if we try to maintain focus in the current stack when the top activity
570         * finishes.
571         */
572        public static boolean keepFocusInStackIfPossible(int stackId) {
573            return stackId == FREEFORM_WORKSPACE_STACK_ID
574                    || stackId == DOCKED_STACK_ID || stackId == PINNED_STACK_ID;
575        }
576
577        /**
578         * Returns true if Stack size is affected by the docked stack changing size.
579         */
580        public static boolean isResizeableByDockedStack(int stackId) {
581            return isStaticStack(stackId) &&
582                    stackId != DOCKED_STACK_ID && stackId != PINNED_STACK_ID;
583        }
584
585        /**
586         * Returns true if the size of tasks in the input stack are affected by the docked stack
587         * changing size.
588         */
589        public static boolean isTaskResizeableByDockedStack(int stackId) {
590            return isStaticStack(stackId) && stackId != FREEFORM_WORKSPACE_STACK_ID
591                    && stackId != DOCKED_STACK_ID && stackId != PINNED_STACK_ID;
592        }
593
594        /**
595         * Returns true if the windows of tasks being moved to the target stack from the source
596         * stack should be replaced, meaning that window manager will keep the old window around
597         * until the new is ready.
598         */
599        public static boolean replaceWindowsOnTaskMove(int sourceStackId, int targetStackId) {
600            return sourceStackId == FREEFORM_WORKSPACE_STACK_ID
601                    || targetStackId == FREEFORM_WORKSPACE_STACK_ID;
602        }
603
604        /**
605         * Return whether a stackId is a stack containing floating windows. Floating windows
606         * are laid out differently as they are allowed to extend past the display bounds
607         * without overscan insets.
608         */
609        public static boolean tasksAreFloating(int stackId) {
610            return stackId == FREEFORM_WORKSPACE_STACK_ID
611                || stackId == PINNED_STACK_ID;
612        }
613
614        /**
615         * Returns true if animation specs should be constructed for app transition that moves
616         * the task to the specified stack.
617         */
618        public static boolean useAnimationSpecForAppTransition(int stackId) {
619
620            // TODO: INVALID_STACK_ID is also animated because we don't persist stack id's across
621            // reboots.
622            return stackId == FREEFORM_WORKSPACE_STACK_ID
623                    || stackId == FULLSCREEN_WORKSPACE_STACK_ID || stackId == DOCKED_STACK_ID
624                    || stackId == INVALID_STACK_ID;
625        }
626
627        /** Returns true if the windows in the stack can receive input keys. */
628        public static boolean canReceiveKeys(int stackId) {
629            return stackId != PINNED_STACK_ID;
630        }
631
632        /**
633         * Returns true if the stack can be visible above lockscreen.
634         */
635        public static boolean isAllowedOverLockscreen(int stackId) {
636            return stackId == HOME_STACK_ID || stackId == FULLSCREEN_WORKSPACE_STACK_ID;
637        }
638
639        public static boolean isAlwaysOnTop(int stackId) {
640            return stackId == PINNED_STACK_ID;
641        }
642
643        /**
644         * Returns true if the top task in the task is allowed to return home when finished and
645         * there are other tasks in the stack.
646         */
647        public static boolean allowTopTaskToReturnHome(int stackId) {
648            return stackId != PINNED_STACK_ID;
649        }
650
651        /**
652         * Returns true if the stack should be resized to match the bounds specified by
653         * {@link ActivityOptions#setLaunchBounds} when launching an activity into the stack.
654         */
655        public static boolean resizeStackWithLaunchBounds(int stackId) {
656            return stackId == PINNED_STACK_ID;
657        }
658
659        /**
660         * Returns true if any visible windows belonging to apps in this stack should be kept on
661         * screen when the app is killed due to something like the low memory killer.
662         */
663        public static boolean keepVisibleDeadAppWindowOnScreen(int stackId) {
664            return stackId != PINNED_STACK_ID;
665        }
666
667        /**
668         * Returns true if the backdrop on the client side should match the frame of the window.
669         * Returns false, if the backdrop should be fullscreen.
670         */
671        public static boolean useWindowFrameForBackdrop(int stackId) {
672            return stackId == FREEFORM_WORKSPACE_STACK_ID || stackId == PINNED_STACK_ID;
673        }
674
675        /**
676         * Returns true if a window from the specified stack with {@param stackId} are normally
677         * fullscreen, i. e. they can become the top opaque fullscreen window, meaning that it
678         * controls system bars, lockscreen occluded/dismissing state, screen rotation animation,
679         * etc.
680         */
681        public static boolean normallyFullscreenWindows(int stackId) {
682            return stackId != PINNED_STACK_ID && stackId != FREEFORM_WORKSPACE_STACK_ID
683                    && stackId != DOCKED_STACK_ID;
684        }
685
686        /**
687         * Returns true if the input stack id should only be present on a device that supports
688         * multi-window mode.
689         * @see android.app.ActivityManager#supportsMultiWindow
690         */
691        public static boolean isMultiWindowStack(int stackId) {
692            return isStaticStack(stackId) || stackId == PINNED_STACK_ID
693                    || stackId == FREEFORM_WORKSPACE_STACK_ID || stackId == DOCKED_STACK_ID;
694        }
695
696        /**
697         * Returns true if activities contained in this stack can request visible behind by
698         * calling {@link Activity#requestVisibleBehind}.
699         */
700        public static boolean activitiesCanRequestVisibleBehind(int stackId) {
701            return stackId == FULLSCREEN_WORKSPACE_STACK_ID;
702        }
703
704        /**
705         * Returns true if this stack may be scaled without resizing,
706         * and windows within may need to be configured as such.
707         */
708        public static boolean windowsAreScaleable(int stackId) {
709            return stackId == PINNED_STACK_ID;
710        }
711
712        /**
713         * Returns true if windows in this stack should be given move animations
714         * by default.
715         */
716        public static boolean hasMovementAnimations(int stackId) {
717            return stackId != PINNED_STACK_ID;
718        }
719    }
720
721    /**
722     * Input parameter to {@link android.app.IActivityManager#moveTaskToDockedStack} which
723     * specifies the position of the created docked stack at the top half of the screen if
724     * in portrait mode or at the left half of the screen if in landscape mode.
725     * @hide
726     */
727    public static final int DOCKED_STACK_CREATE_MODE_TOP_OR_LEFT = 0;
728
729    /**
730     * Input parameter to {@link android.app.IActivityManager#moveTaskToDockedStack} which
731     * specifies the position of the created docked stack at the bottom half of the screen if
732     * in portrait mode or at the right half of the screen if in landscape mode.
733     * @hide
734     */
735    public static final int DOCKED_STACK_CREATE_MODE_BOTTOM_OR_RIGHT = 1;
736
737    /**
738     * Input parameter to {@link android.app.IActivityManager#resizeTask} which indicates
739     * that the resize doesn't need to preserve the window, and can be skipped if bounds
740     * is unchanged. This mode is used by window manager in most cases.
741     * @hide
742     */
743    public static final int RESIZE_MODE_SYSTEM = 0;
744
745    /**
746     * Input parameter to {@link android.app.IActivityManager#resizeTask} which indicates
747     * that the resize should preserve the window if possible.
748     * @hide
749     */
750    public static final int RESIZE_MODE_PRESERVE_WINDOW   = (0x1 << 0);
751
752    /**
753     * Input parameter to {@link android.app.IActivityManager#resizeTask} which indicates
754     * that the resize should be performed even if the bounds appears unchanged.
755     * @hide
756     */
757    public static final int RESIZE_MODE_FORCED = (0x1 << 1);
758
759    /**
760     * Input parameter to {@link android.app.IActivityManager#resizeTask} used by window
761     * manager during a screen rotation.
762     * @hide
763     */
764    public static final int RESIZE_MODE_SYSTEM_SCREEN_ROTATION = RESIZE_MODE_PRESERVE_WINDOW;
765
766    /**
767     * Input parameter to {@link android.app.IActivityManager#resizeTask} used when the
768     * resize is due to a drag action.
769     * @hide
770     */
771    public static final int RESIZE_MODE_USER = RESIZE_MODE_PRESERVE_WINDOW;
772
773    /**
774     * Input parameter to {@link android.app.IActivityManager#resizeTask} which indicates
775     * that the resize should preserve the window if possible, and should not be skipped
776     * even if the bounds is unchanged. Usually used to force a resizing when a drag action
777     * is ending.
778     * @hide
779     */
780    public static final int RESIZE_MODE_USER_FORCED =
781            RESIZE_MODE_PRESERVE_WINDOW | RESIZE_MODE_FORCED;
782
783    /** @hide */
784    public int getFrontActivityScreenCompatMode() {
785        try {
786            return ActivityManagerNative.getDefault().getFrontActivityScreenCompatMode();
787        } catch (RemoteException e) {
788            throw e.rethrowFromSystemServer();
789        }
790    }
791
792    /** @hide */
793    public void setFrontActivityScreenCompatMode(int mode) {
794        try {
795            ActivityManagerNative.getDefault().setFrontActivityScreenCompatMode(mode);
796        } catch (RemoteException e) {
797            throw e.rethrowFromSystemServer();
798        }
799    }
800
801    /** @hide */
802    public int getPackageScreenCompatMode(String packageName) {
803        try {
804            return ActivityManagerNative.getDefault().getPackageScreenCompatMode(packageName);
805        } catch (RemoteException e) {
806            throw e.rethrowFromSystemServer();
807        }
808    }
809
810    /** @hide */
811    public void setPackageScreenCompatMode(String packageName, int mode) {
812        try {
813            ActivityManagerNative.getDefault().setPackageScreenCompatMode(packageName, mode);
814        } catch (RemoteException e) {
815            throw e.rethrowFromSystemServer();
816        }
817    }
818
819    /** @hide */
820    public boolean getPackageAskScreenCompat(String packageName) {
821        try {
822            return ActivityManagerNative.getDefault().getPackageAskScreenCompat(packageName);
823        } catch (RemoteException e) {
824            throw e.rethrowFromSystemServer();
825        }
826    }
827
828    /** @hide */
829    public void setPackageAskScreenCompat(String packageName, boolean ask) {
830        try {
831            ActivityManagerNative.getDefault().setPackageAskScreenCompat(packageName, ask);
832        } catch (RemoteException e) {
833            throw e.rethrowFromSystemServer();
834        }
835    }
836
837    /**
838     * Return the approximate per-application memory class of the current
839     * device.  This gives you an idea of how hard a memory limit you should
840     * impose on your application to let the overall system work best.  The
841     * returned value is in megabytes; the baseline Android memory class is
842     * 16 (which happens to be the Java heap limit of those devices); some
843     * device with more memory may return 24 or even higher numbers.
844     */
845    public int getMemoryClass() {
846        return staticGetMemoryClass();
847    }
848
849    /** @hide */
850    static public int staticGetMemoryClass() {
851        // Really brain dead right now -- just take this from the configured
852        // vm heap size, and assume it is in megabytes and thus ends with "m".
853        String vmHeapSize = SystemProperties.get("dalvik.vm.heapgrowthlimit", "");
854        if (vmHeapSize != null && !"".equals(vmHeapSize)) {
855            return Integer.parseInt(vmHeapSize.substring(0, vmHeapSize.length()-1));
856        }
857        return staticGetLargeMemoryClass();
858    }
859
860    /**
861     * Return the approximate per-application memory class of the current
862     * device when an application is running with a large heap.  This is the
863     * space available for memory-intensive applications; most applications
864     * should not need this amount of memory, and should instead stay with the
865     * {@link #getMemoryClass()} limit.  The returned value is in megabytes.
866     * This may be the same size as {@link #getMemoryClass()} on memory
867     * constrained devices, or it may be significantly larger on devices with
868     * a large amount of available RAM.
869     *
870     * <p>The is the size of the application's Dalvik heap if it has
871     * specified <code>android:largeHeap="true"</code> in its manifest.
872     */
873    public int getLargeMemoryClass() {
874        return staticGetLargeMemoryClass();
875    }
876
877    /** @hide */
878    static public int staticGetLargeMemoryClass() {
879        // Really brain dead right now -- just take this from the configured
880        // vm heap size, and assume it is in megabytes and thus ends with "m".
881        String vmHeapSize = SystemProperties.get("dalvik.vm.heapsize", "16m");
882        return Integer.parseInt(vmHeapSize.substring(0, vmHeapSize.length() - 1));
883    }
884
885    /**
886     * Returns true if this is a low-RAM device.  Exactly whether a device is low-RAM
887     * is ultimately up to the device configuration, but currently it generally means
888     * something in the class of a 512MB device with about a 800x480 or less screen.
889     * This is mostly intended to be used by apps to determine whether they should turn
890     * off certain features that require more RAM.
891     */
892    public boolean isLowRamDevice() {
893        return isLowRamDeviceStatic();
894    }
895
896    /** @hide */
897    public static boolean isLowRamDeviceStatic() {
898        return "true".equals(SystemProperties.get("ro.config.low_ram", "false"));
899    }
900
901    /**
902     * Used by persistent processes to determine if they are running on a
903     * higher-end device so should be okay using hardware drawing acceleration
904     * (which tends to consume a lot more RAM).
905     * @hide
906     */
907    static public boolean isHighEndGfx() {
908        return !isLowRamDeviceStatic() &&
909                !Resources.getSystem().getBoolean(com.android.internal.R.bool.config_avoidGfxAccel);
910    }
911
912    /**
913     * Return the maximum number of recents entries that we will maintain and show.
914     * @hide
915     */
916    static public int getMaxRecentTasksStatic() {
917        if (gMaxRecentTasks < 0) {
918            return gMaxRecentTasks = isLowRamDeviceStatic() ? 36 : 48;
919        }
920        return gMaxRecentTasks;
921    }
922
923    /**
924     * Return the default limit on the number of recents that an app can make.
925     * @hide
926     */
927    static public int getDefaultAppRecentsLimitStatic() {
928        return getMaxRecentTasksStatic() / 6;
929    }
930
931    /**
932     * Return the maximum limit on the number of recents that an app can make.
933     * @hide
934     */
935    static public int getMaxAppRecentsLimitStatic() {
936        return getMaxRecentTasksStatic() / 2;
937    }
938
939    /**
940     * Returns true if the system supports at least one form of multi-window.
941     * E.g. freeform, split-screen, picture-in-picture.
942     * @hide
943     */
944    static public boolean supportsMultiWindow() {
945        return !isLowRamDeviceStatic()
946                && Resources.getSystem().getBoolean(
947                    com.android.internal.R.bool.config_supportsMultiWindow);
948    }
949
950    /**
951     * Information you can set and retrieve about the current activity within the recent task list.
952     */
953    public static class TaskDescription implements Parcelable {
954        /** @hide */
955        public static final String ATTR_TASKDESCRIPTION_PREFIX = "task_description_";
956        private static final String ATTR_TASKDESCRIPTIONLABEL =
957                ATTR_TASKDESCRIPTION_PREFIX + "label";
958        private static final String ATTR_TASKDESCRIPTIONCOLOR_PRIMARY =
959                ATTR_TASKDESCRIPTION_PREFIX + "color";
960        private static final String ATTR_TASKDESCRIPTIONCOLOR_BACKGROUND =
961                ATTR_TASKDESCRIPTION_PREFIX + "colorBackground";
962        private static final String ATTR_TASKDESCRIPTIONICONFILENAME =
963                ATTR_TASKDESCRIPTION_PREFIX + "icon_filename";
964
965        private String mLabel;
966        private Bitmap mIcon;
967        private String mIconFilename;
968        private int mColorPrimary;
969        private int mColorBackground;
970
971        /**
972         * Creates the TaskDescription to the specified values.
973         *
974         * @param label A label and description of the current state of this task.
975         * @param icon An icon that represents the current state of this task.
976         * @param colorPrimary A color to override the theme's primary color.  This color must be
977         *                     opaque.
978         */
979        public TaskDescription(String label, Bitmap icon, int colorPrimary) {
980            this(label, icon, null, colorPrimary, 0);
981            if ((colorPrimary != 0) && (Color.alpha(colorPrimary) != 255)) {
982                throw new RuntimeException("A TaskDescription's primary color should be opaque");
983            }
984        }
985
986        /**
987         * Creates the TaskDescription to the specified values.
988         *
989         * @param label A label and description of the current state of this activity.
990         * @param icon An icon that represents the current state of this activity.
991         */
992        public TaskDescription(String label, Bitmap icon) {
993            this(label, icon, null, 0, 0);
994        }
995
996        /**
997         * Creates the TaskDescription to the specified values.
998         *
999         * @param label A label and description of the current state of this activity.
1000         */
1001        public TaskDescription(String label) {
1002            this(label, null, null, 0, 0);
1003        }
1004
1005        /**
1006         * Creates an empty TaskDescription.
1007         */
1008        public TaskDescription() {
1009            this(null, null, null, 0, 0);
1010        }
1011
1012        /** @hide */
1013        public TaskDescription(String label, Bitmap icon, String iconFilename, int colorPrimary,
1014                int colorBackground) {
1015            mLabel = label;
1016            mIcon = icon;
1017            mIconFilename = iconFilename;
1018            mColorPrimary = colorPrimary;
1019            mColorBackground = colorBackground;
1020        }
1021
1022        /**
1023         * Creates a copy of another TaskDescription.
1024         */
1025        public TaskDescription(TaskDescription td) {
1026            copyFrom(td);
1027        }
1028
1029        /**
1030         * Copies this the values from another TaskDescription.
1031         * @hide
1032         */
1033        public void copyFrom(TaskDescription other) {
1034            mLabel = other.mLabel;
1035            mIcon = other.mIcon;
1036            mIconFilename = other.mIconFilename;
1037            mColorPrimary = other.mColorPrimary;
1038            mColorBackground = other.mColorBackground;
1039        }
1040
1041        private TaskDescription(Parcel source) {
1042            readFromParcel(source);
1043        }
1044
1045        /**
1046         * Sets the label for this task description.
1047         * @hide
1048         */
1049        public void setLabel(String label) {
1050            mLabel = label;
1051        }
1052
1053        /**
1054         * Sets the primary color for this task description.
1055         * @hide
1056         */
1057        public void setPrimaryColor(int primaryColor) {
1058            // Ensure that the given color is valid
1059            if ((primaryColor != 0) && (Color.alpha(primaryColor) != 255)) {
1060                throw new RuntimeException("A TaskDescription's primary color should be opaque");
1061            }
1062            mColorPrimary = primaryColor;
1063        }
1064
1065        /**
1066         * Sets the background color for this task description.
1067         * @hide
1068         */
1069        public void setBackgroundColor(int backgroundColor) {
1070            // Ensure that the given color is valid
1071            if ((backgroundColor != 0) && (Color.alpha(backgroundColor) != 255)) {
1072                throw new RuntimeException("A TaskDescription's background color should be opaque");
1073            }
1074            mColorBackground = backgroundColor;
1075        }
1076
1077        /**
1078         * Sets the icon for this task description.
1079         * @hide
1080         */
1081        public void setIcon(Bitmap icon) {
1082            mIcon = icon;
1083        }
1084
1085        /**
1086         * Moves the icon bitmap reference from an actual Bitmap to a file containing the
1087         * bitmap.
1088         * @hide
1089         */
1090        public void setIconFilename(String iconFilename) {
1091            mIconFilename = iconFilename;
1092            mIcon = null;
1093        }
1094
1095        /**
1096         * @return The label and description of the current state of this task.
1097         */
1098        public String getLabel() {
1099            return mLabel;
1100        }
1101
1102        /**
1103         * @return The icon that represents the current state of this task.
1104         */
1105        public Bitmap getIcon() {
1106            if (mIcon != null) {
1107                return mIcon;
1108            }
1109            return loadTaskDescriptionIcon(mIconFilename, UserHandle.myUserId());
1110        }
1111
1112        /** @hide */
1113        public String getIconFilename() {
1114            return mIconFilename;
1115        }
1116
1117        /** @hide */
1118        public Bitmap getInMemoryIcon() {
1119            return mIcon;
1120        }
1121
1122        /** @hide */
1123        public static Bitmap loadTaskDescriptionIcon(String iconFilename, int userId) {
1124            if (iconFilename != null) {
1125                try {
1126                    return ActivityManagerNative.getDefault().getTaskDescriptionIcon(iconFilename,
1127                            userId);
1128                } catch (RemoteException e) {
1129                    throw e.rethrowFromSystemServer();
1130                }
1131            }
1132            return null;
1133        }
1134
1135        /**
1136         * @return The color override on the theme's primary color.
1137         */
1138        public int getPrimaryColor() {
1139            return mColorPrimary;
1140        }
1141
1142        /**
1143         * @return The background color.
1144         * @hide
1145         */
1146        public int getBackgroundColor() {
1147            return mColorBackground;
1148        }
1149
1150        /** @hide */
1151        public void saveToXml(XmlSerializer out) throws IOException {
1152            if (mLabel != null) {
1153                out.attribute(null, ATTR_TASKDESCRIPTIONLABEL, mLabel);
1154            }
1155            if (mColorPrimary != 0) {
1156                out.attribute(null, ATTR_TASKDESCRIPTIONCOLOR_PRIMARY,
1157                        Integer.toHexString(mColorPrimary));
1158            }
1159            if (mColorBackground != 0) {
1160                out.attribute(null, ATTR_TASKDESCRIPTIONCOLOR_BACKGROUND,
1161                        Integer.toHexString(mColorBackground));
1162            }
1163            if (mIconFilename != null) {
1164                out.attribute(null, ATTR_TASKDESCRIPTIONICONFILENAME, mIconFilename);
1165            }
1166        }
1167
1168        /** @hide */
1169        public void restoreFromXml(String attrName, String attrValue) {
1170            if (ATTR_TASKDESCRIPTIONLABEL.equals(attrName)) {
1171                setLabel(attrValue);
1172            } else if (ATTR_TASKDESCRIPTIONCOLOR_PRIMARY.equals(attrName)) {
1173                setPrimaryColor((int) Long.parseLong(attrValue, 16));
1174            } else if (ATTR_TASKDESCRIPTIONCOLOR_BACKGROUND.equals(attrName)) {
1175                setBackgroundColor((int) Long.parseLong(attrValue, 16));
1176            } else if (ATTR_TASKDESCRIPTIONICONFILENAME.equals(attrName)) {
1177                setIconFilename(attrValue);
1178            }
1179        }
1180
1181        @Override
1182        public int describeContents() {
1183            return 0;
1184        }
1185
1186        @Override
1187        public void writeToParcel(Parcel dest, int flags) {
1188            if (mLabel == null) {
1189                dest.writeInt(0);
1190            } else {
1191                dest.writeInt(1);
1192                dest.writeString(mLabel);
1193            }
1194            if (mIcon == null) {
1195                dest.writeInt(0);
1196            } else {
1197                dest.writeInt(1);
1198                mIcon.writeToParcel(dest, 0);
1199            }
1200            dest.writeInt(mColorPrimary);
1201            dest.writeInt(mColorBackground);
1202            if (mIconFilename == null) {
1203                dest.writeInt(0);
1204            } else {
1205                dest.writeInt(1);
1206                dest.writeString(mIconFilename);
1207            }
1208        }
1209
1210        public void readFromParcel(Parcel source) {
1211            mLabel = source.readInt() > 0 ? source.readString() : null;
1212            mIcon = source.readInt() > 0 ? Bitmap.CREATOR.createFromParcel(source) : null;
1213            mColorPrimary = source.readInt();
1214            mColorBackground = source.readInt();
1215            mIconFilename = source.readInt() > 0 ? source.readString() : null;
1216        }
1217
1218        public static final Creator<TaskDescription> CREATOR
1219                = new Creator<TaskDescription>() {
1220            public TaskDescription createFromParcel(Parcel source) {
1221                return new TaskDescription(source);
1222            }
1223            public TaskDescription[] newArray(int size) {
1224                return new TaskDescription[size];
1225            }
1226        };
1227
1228        @Override
1229        public String toString() {
1230            return "TaskDescription Label: " + mLabel + " Icon: " + mIcon +
1231                    " IconFilename: " + mIconFilename + " colorPrimary: " + mColorPrimary +
1232                    " colorBackground: " + mColorBackground;
1233        }
1234    }
1235
1236    /**
1237     * Information you can retrieve about tasks that the user has most recently
1238     * started or visited.
1239     */
1240    public static class RecentTaskInfo implements Parcelable {
1241        /**
1242         * If this task is currently running, this is the identifier for it.
1243         * If it is not running, this will be -1.
1244         */
1245        public int id;
1246
1247        /**
1248         * The true identifier of this task, valid even if it is not running.
1249         */
1250        public int persistentId;
1251
1252        /**
1253         * The original Intent used to launch the task.  You can use this
1254         * Intent to re-launch the task (if it is no longer running) or bring
1255         * the current task to the front.
1256         */
1257        public Intent baseIntent;
1258
1259        /**
1260         * If this task was started from an alias, this is the actual
1261         * activity component that was initially started; the component of
1262         * the baseIntent in this case is the name of the actual activity
1263         * implementation that the alias referred to.  Otherwise, this is null.
1264         */
1265        public ComponentName origActivity;
1266
1267        /**
1268         * The actual activity component that started the task.
1269         * @hide
1270         */
1271        @Nullable
1272        public ComponentName realActivity;
1273
1274        /**
1275         * Description of the task's last state.
1276         */
1277        public CharSequence description;
1278
1279        /**
1280         * The id of the ActivityStack this Task was on most recently.
1281         * @hide
1282         */
1283        public int stackId;
1284
1285        /**
1286         * The id of the user the task was running as.
1287         * @hide
1288         */
1289        public int userId;
1290
1291        /**
1292         * The first time this task was active.
1293         * @hide
1294         */
1295        public long firstActiveTime;
1296
1297        /**
1298         * The last time this task was active.
1299         * @hide
1300         */
1301        public long lastActiveTime;
1302
1303        /**
1304         * The recent activity values for the highest activity in the stack to have set the values.
1305         * {@link Activity#setTaskDescription(android.app.ActivityManager.TaskDescription)}.
1306         */
1307        public TaskDescription taskDescription;
1308
1309        /**
1310         * Task affiliation for grouping with other tasks.
1311         */
1312        public int affiliatedTaskId;
1313
1314        /**
1315         * Task affiliation color of the source task with the affiliated task id.
1316         *
1317         * @hide
1318         */
1319        public int affiliatedTaskColor;
1320
1321        /**
1322         * The component launched as the first activity in the task.
1323         * This can be considered the "application" of this task.
1324         */
1325        public ComponentName baseActivity;
1326
1327        /**
1328         * The activity component at the top of the history stack of the task.
1329         * This is what the user is currently doing.
1330         */
1331        public ComponentName topActivity;
1332
1333        /**
1334         * Number of activities in this task.
1335         */
1336        public int numActivities;
1337
1338        /**
1339         * The bounds of the task.
1340         * @hide
1341         */
1342        public Rect bounds;
1343
1344        /**
1345         * True if the task can go in the docked stack.
1346         * @hide
1347         */
1348        public boolean isDockable;
1349
1350        /**
1351         * The resize mode of the task. See {@link ActivityInfo#resizeMode}.
1352         * @hide
1353         */
1354        public int resizeMode;
1355
1356        public RecentTaskInfo() {
1357        }
1358
1359        @Override
1360        public int describeContents() {
1361            return 0;
1362        }
1363
1364        @Override
1365        public void writeToParcel(Parcel dest, int flags) {
1366            dest.writeInt(id);
1367            dest.writeInt(persistentId);
1368            if (baseIntent != null) {
1369                dest.writeInt(1);
1370                baseIntent.writeToParcel(dest, 0);
1371            } else {
1372                dest.writeInt(0);
1373            }
1374            ComponentName.writeToParcel(origActivity, dest);
1375            ComponentName.writeToParcel(realActivity, dest);
1376            TextUtils.writeToParcel(description, dest,
1377                    Parcelable.PARCELABLE_WRITE_RETURN_VALUE);
1378            if (taskDescription != null) {
1379                dest.writeInt(1);
1380                taskDescription.writeToParcel(dest, 0);
1381            } else {
1382                dest.writeInt(0);
1383            }
1384            dest.writeInt(stackId);
1385            dest.writeInt(userId);
1386            dest.writeLong(firstActiveTime);
1387            dest.writeLong(lastActiveTime);
1388            dest.writeInt(affiliatedTaskId);
1389            dest.writeInt(affiliatedTaskColor);
1390            ComponentName.writeToParcel(baseActivity, dest);
1391            ComponentName.writeToParcel(topActivity, dest);
1392            dest.writeInt(numActivities);
1393            if (bounds != null) {
1394                dest.writeInt(1);
1395                bounds.writeToParcel(dest, 0);
1396            } else {
1397                dest.writeInt(0);
1398            }
1399            dest.writeInt(isDockable ? 1 : 0);
1400            dest.writeInt(resizeMode);
1401        }
1402
1403        public void readFromParcel(Parcel source) {
1404            id = source.readInt();
1405            persistentId = source.readInt();
1406            baseIntent = source.readInt() > 0 ? Intent.CREATOR.createFromParcel(source) : null;
1407            origActivity = ComponentName.readFromParcel(source);
1408            realActivity = ComponentName.readFromParcel(source);
1409            description = TextUtils.CHAR_SEQUENCE_CREATOR.createFromParcel(source);
1410            taskDescription = source.readInt() > 0 ?
1411                    TaskDescription.CREATOR.createFromParcel(source) : null;
1412            stackId = source.readInt();
1413            userId = source.readInt();
1414            firstActiveTime = source.readLong();
1415            lastActiveTime = source.readLong();
1416            affiliatedTaskId = source.readInt();
1417            affiliatedTaskColor = source.readInt();
1418            baseActivity = ComponentName.readFromParcel(source);
1419            topActivity = ComponentName.readFromParcel(source);
1420            numActivities = source.readInt();
1421            bounds = source.readInt() > 0 ?
1422                    Rect.CREATOR.createFromParcel(source) : null;
1423            isDockable = source.readInt() == 1;
1424            resizeMode = source.readInt();
1425        }
1426
1427        public static final Creator<RecentTaskInfo> CREATOR
1428                = new Creator<RecentTaskInfo>() {
1429            public RecentTaskInfo createFromParcel(Parcel source) {
1430                return new RecentTaskInfo(source);
1431            }
1432            public RecentTaskInfo[] newArray(int size) {
1433                return new RecentTaskInfo[size];
1434            }
1435        };
1436
1437        private RecentTaskInfo(Parcel source) {
1438            readFromParcel(source);
1439        }
1440    }
1441
1442    /**
1443     * Flag for use with {@link #getRecentTasks}: return all tasks, even those
1444     * that have set their
1445     * {@link android.content.Intent#FLAG_ACTIVITY_EXCLUDE_FROM_RECENTS} flag.
1446     */
1447    public static final int RECENT_WITH_EXCLUDED = 0x0001;
1448
1449    /**
1450     * Provides a list that does not contain any
1451     * recent tasks that currently are not available to the user.
1452     */
1453    public static final int RECENT_IGNORE_UNAVAILABLE = 0x0002;
1454
1455    /**
1456     * Provides a list that contains recent tasks for all
1457     * profiles of a user.
1458     * @hide
1459     */
1460    public static final int RECENT_INCLUDE_PROFILES = 0x0004;
1461
1462    /**
1463     * Ignores all tasks that are on the home stack.
1464     * @hide
1465     */
1466    public static final int RECENT_IGNORE_HOME_STACK_TASKS = 0x0008;
1467
1468    /**
1469     * Ignores the top task in the docked stack.
1470     * @hide
1471     */
1472    public static final int RECENT_INGORE_DOCKED_STACK_TOP_TASK = 0x0010;
1473
1474    /**
1475     * Ignores all tasks that are on the pinned stack.
1476     * @hide
1477     */
1478    public static final int RECENT_INGORE_PINNED_STACK_TASKS = 0x0020;
1479
1480    /**
1481     * <p></p>Return a list of the tasks that the user has recently launched, with
1482     * the most recent being first and older ones after in order.
1483     *
1484     * <p><b>Note: this method is only intended for debugging and presenting
1485     * task management user interfaces</b>.  This should never be used for
1486     * core logic in an application, such as deciding between different
1487     * behaviors based on the information found here.  Such uses are
1488     * <em>not</em> supported, and will likely break in the future.  For
1489     * example, if multiple applications can be actively running at the
1490     * same time, assumptions made about the meaning of the data here for
1491     * purposes of control flow will be incorrect.</p>
1492     *
1493     * @deprecated As of {@link android.os.Build.VERSION_CODES#LOLLIPOP}, this method is
1494     * no longer available to third party applications: the introduction of
1495     * document-centric recents means
1496     * it can leak personal information to the caller.  For backwards compatibility,
1497     * it will still return a small subset of its data: at least the caller's
1498     * own tasks (though see {@link #getAppTasks()} for the correct supported
1499     * way to retrieve that information), and possibly some other tasks
1500     * such as home that are known to not be sensitive.
1501     *
1502     * @param maxNum The maximum number of entries to return in the list.  The
1503     * actual number returned may be smaller, depending on how many tasks the
1504     * user has started and the maximum number the system can remember.
1505     * @param flags Information about what to return.  May be any combination
1506     * of {@link #RECENT_WITH_EXCLUDED} and {@link #RECENT_IGNORE_UNAVAILABLE}.
1507     *
1508     * @return Returns a list of RecentTaskInfo records describing each of
1509     * the recent tasks.
1510     */
1511    @Deprecated
1512    public List<RecentTaskInfo> getRecentTasks(int maxNum, int flags)
1513            throws SecurityException {
1514        try {
1515            return ActivityManagerNative.getDefault().getRecentTasks(maxNum,
1516                    flags, UserHandle.myUserId()).getList();
1517        } catch (RemoteException e) {
1518            throw e.rethrowFromSystemServer();
1519        }
1520    }
1521
1522    /**
1523     * Same as {@link #getRecentTasks(int, int)} but returns the recent tasks for a
1524     * specific user. It requires holding
1525     * the {@link android.Manifest.permission#INTERACT_ACROSS_USERS_FULL} permission.
1526     * @param maxNum The maximum number of entries to return in the list.  The
1527     * actual number returned may be smaller, depending on how many tasks the
1528     * user has started and the maximum number the system can remember.
1529     * @param flags Information about what to return.  May be any combination
1530     * of {@link #RECENT_WITH_EXCLUDED} and {@link #RECENT_IGNORE_UNAVAILABLE}.
1531     *
1532     * @return Returns a list of RecentTaskInfo records describing each of
1533     * the recent tasks. Most recently activated tasks go first.
1534     *
1535     * @hide
1536     */
1537    public List<RecentTaskInfo> getRecentTasksForUser(int maxNum, int flags, int userId)
1538            throws SecurityException {
1539        try {
1540            return ActivityManagerNative.getDefault().getRecentTasks(maxNum,
1541                    flags, userId).getList();
1542        } catch (RemoteException e) {
1543            throw e.rethrowFromSystemServer();
1544        }
1545    }
1546
1547    /**
1548     * Information you can retrieve about a particular task that is currently
1549     * "running" in the system.  Note that a running task does not mean the
1550     * given task actually has a process it is actively running in; it simply
1551     * means that the user has gone to it and never closed it, but currently
1552     * the system may have killed its process and is only holding on to its
1553     * last state in order to restart it when the user returns.
1554     */
1555    public static class RunningTaskInfo implements Parcelable {
1556        /**
1557         * A unique identifier for this task.
1558         */
1559        public int id;
1560
1561        /**
1562         * The stack that currently contains this task.
1563         * @hide
1564         */
1565        public int stackId;
1566
1567        /**
1568         * The component launched as the first activity in the task.  This can
1569         * be considered the "application" of this task.
1570         */
1571        public ComponentName baseActivity;
1572
1573        /**
1574         * The activity component at the top of the history stack of the task.
1575         * This is what the user is currently doing.
1576         */
1577        public ComponentName topActivity;
1578
1579        /**
1580         * Thumbnail representation of the task's current state.  Currently
1581         * always null.
1582         */
1583        public Bitmap thumbnail;
1584
1585        /**
1586         * Description of the task's current state.
1587         */
1588        public CharSequence description;
1589
1590        /**
1591         * Number of activities in this task.
1592         */
1593        public int numActivities;
1594
1595        /**
1596         * Number of activities that are currently running (not stopped
1597         * and persisted) in this task.
1598         */
1599        public int numRunning;
1600
1601        /**
1602         * Last time task was run. For sorting.
1603         * @hide
1604         */
1605        public long lastActiveTime;
1606
1607        /**
1608         * True if the task can go in the docked stack.
1609         * @hide
1610         */
1611        public boolean isDockable;
1612
1613        /**
1614         * The resize mode of the task. See {@link ActivityInfo#resizeMode}.
1615         * @hide
1616         */
1617        public int resizeMode;
1618
1619        public RunningTaskInfo() {
1620        }
1621
1622        public int describeContents() {
1623            return 0;
1624        }
1625
1626        public void writeToParcel(Parcel dest, int flags) {
1627            dest.writeInt(id);
1628            dest.writeInt(stackId);
1629            ComponentName.writeToParcel(baseActivity, dest);
1630            ComponentName.writeToParcel(topActivity, dest);
1631            if (thumbnail != null) {
1632                dest.writeInt(1);
1633                thumbnail.writeToParcel(dest, 0);
1634            } else {
1635                dest.writeInt(0);
1636            }
1637            TextUtils.writeToParcel(description, dest,
1638                    Parcelable.PARCELABLE_WRITE_RETURN_VALUE);
1639            dest.writeInt(numActivities);
1640            dest.writeInt(numRunning);
1641            dest.writeInt(isDockable ? 1 : 0);
1642            dest.writeInt(resizeMode);
1643        }
1644
1645        public void readFromParcel(Parcel source) {
1646            id = source.readInt();
1647            stackId = source.readInt();
1648            baseActivity = ComponentName.readFromParcel(source);
1649            topActivity = ComponentName.readFromParcel(source);
1650            if (source.readInt() != 0) {
1651                thumbnail = Bitmap.CREATOR.createFromParcel(source);
1652            } else {
1653                thumbnail = null;
1654            }
1655            description = TextUtils.CHAR_SEQUENCE_CREATOR.createFromParcel(source);
1656            numActivities = source.readInt();
1657            numRunning = source.readInt();
1658            isDockable = source.readInt() != 0;
1659            resizeMode = source.readInt();
1660        }
1661
1662        public static final Creator<RunningTaskInfo> CREATOR = new Creator<RunningTaskInfo>() {
1663            public RunningTaskInfo createFromParcel(Parcel source) {
1664                return new RunningTaskInfo(source);
1665            }
1666            public RunningTaskInfo[] newArray(int size) {
1667                return new RunningTaskInfo[size];
1668            }
1669        };
1670
1671        private RunningTaskInfo(Parcel source) {
1672            readFromParcel(source);
1673        }
1674    }
1675
1676    /**
1677     * Get the list of tasks associated with the calling application.
1678     *
1679     * @return The list of tasks associated with the application making this call.
1680     * @throws SecurityException
1681     */
1682    public List<ActivityManager.AppTask> getAppTasks() {
1683        ArrayList<AppTask> tasks = new ArrayList<AppTask>();
1684        List<IAppTask> appTasks;
1685        try {
1686            appTasks = ActivityManagerNative.getDefault().getAppTasks(mContext.getPackageName());
1687        } catch (RemoteException e) {
1688            throw e.rethrowFromSystemServer();
1689        }
1690        int numAppTasks = appTasks.size();
1691        for (int i = 0; i < numAppTasks; i++) {
1692            tasks.add(new AppTask(appTasks.get(i)));
1693        }
1694        return tasks;
1695    }
1696
1697    /**
1698     * Return the current design dimensions for {@link AppTask} thumbnails, for use
1699     * with {@link #addAppTask}.
1700     */
1701    public Size getAppTaskThumbnailSize() {
1702        synchronized (this) {
1703            ensureAppTaskThumbnailSizeLocked();
1704            return new Size(mAppTaskThumbnailSize.x, mAppTaskThumbnailSize.y);
1705        }
1706    }
1707
1708    private void ensureAppTaskThumbnailSizeLocked() {
1709        if (mAppTaskThumbnailSize == null) {
1710            try {
1711                mAppTaskThumbnailSize = ActivityManagerNative.getDefault().getAppTaskThumbnailSize();
1712            } catch (RemoteException e) {
1713                throw e.rethrowFromSystemServer();
1714            }
1715        }
1716    }
1717
1718    /**
1719     * Add a new {@link AppTask} for the calling application.  This will create a new
1720     * recents entry that is added to the <b>end</b> of all existing recents.
1721     *
1722     * @param activity The activity that is adding the entry.   This is used to help determine
1723     * the context that the new recents entry will be in.
1724     * @param intent The Intent that describes the recents entry.  This is the same Intent that
1725     * you would have used to launch the activity for it.  In generally you will want to set
1726     * both {@link Intent#FLAG_ACTIVITY_NEW_DOCUMENT} and
1727     * {@link Intent#FLAG_ACTIVITY_RETAIN_IN_RECENTS}; the latter is required since this recents
1728     * entry will exist without an activity, so it doesn't make sense to not retain it when
1729     * its activity disappears.  The given Intent here also must have an explicit ComponentName
1730     * set on it.
1731     * @param description Optional additional description information.
1732     * @param thumbnail Thumbnail to use for the recents entry.  Should be the size given by
1733     * {@link #getAppTaskThumbnailSize()}.  If the bitmap is not that exact size, it will be
1734     * recreated in your process, probably in a way you don't like, before the recents entry
1735     * is added.
1736     *
1737     * @return Returns the task id of the newly added app task, or -1 if the add failed.  The
1738     * most likely cause of failure is that there is no more room for more tasks for your app.
1739     */
1740    public int addAppTask(@NonNull Activity activity, @NonNull Intent intent,
1741            @Nullable TaskDescription description, @NonNull Bitmap thumbnail) {
1742        Point size;
1743        synchronized (this) {
1744            ensureAppTaskThumbnailSizeLocked();
1745            size = mAppTaskThumbnailSize;
1746        }
1747        final int tw = thumbnail.getWidth();
1748        final int th = thumbnail.getHeight();
1749        if (tw != size.x || th != size.y) {
1750            Bitmap bm = Bitmap.createBitmap(size.x, size.y, thumbnail.getConfig());
1751
1752            // Use ScaleType.CENTER_CROP, except we leave the top edge at the top.
1753            float scale;
1754            float dx = 0, dy = 0;
1755            if (tw * size.x > size.y * th) {
1756                scale = (float) size.x / (float) th;
1757                dx = (size.y - tw * scale) * 0.5f;
1758            } else {
1759                scale = (float) size.y / (float) tw;
1760                dy = (size.x - th * scale) * 0.5f;
1761            }
1762            Matrix matrix = new Matrix();
1763            matrix.setScale(scale, scale);
1764            matrix.postTranslate((int) (dx + 0.5f), 0);
1765
1766            Canvas canvas = new Canvas(bm);
1767            canvas.drawBitmap(thumbnail, matrix, null);
1768            canvas.setBitmap(null);
1769
1770            thumbnail = bm;
1771        }
1772        if (description == null) {
1773            description = new TaskDescription();
1774        }
1775        try {
1776            return ActivityManagerNative.getDefault().addAppTask(activity.getActivityToken(),
1777                    intent, description, thumbnail);
1778        } catch (RemoteException e) {
1779            throw e.rethrowFromSystemServer();
1780        }
1781    }
1782
1783    /**
1784     * Return a list of the tasks that are currently running, with
1785     * the most recent being first and older ones after in order.  Note that
1786     * "running" does not mean any of the task's code is currently loaded or
1787     * activity -- the task may have been frozen by the system, so that it
1788     * can be restarted in its previous state when next brought to the
1789     * foreground.
1790     *
1791     * <p><b>Note: this method is only intended for debugging and presenting
1792     * task management user interfaces</b>.  This should never be used for
1793     * core logic in an application, such as deciding between different
1794     * behaviors based on the information found here.  Such uses are
1795     * <em>not</em> supported, and will likely break in the future.  For
1796     * example, if multiple applications can be actively running at the
1797     * same time, assumptions made about the meaning of the data here for
1798     * purposes of control flow will be incorrect.</p>
1799     *
1800     * @deprecated As of {@link android.os.Build.VERSION_CODES#LOLLIPOP}, this method
1801     * is no longer available to third party
1802     * applications: the introduction of document-centric recents means
1803     * it can leak person information to the caller.  For backwards compatibility,
1804     * it will still retu rn a small subset of its data: at least the caller's
1805     * own tasks, and possibly some other tasks
1806     * such as home that are known to not be sensitive.
1807     *
1808     * @param maxNum The maximum number of entries to return in the list.  The
1809     * actual number returned may be smaller, depending on how many tasks the
1810     * user has started.
1811     *
1812     * @return Returns a list of RunningTaskInfo records describing each of
1813     * the running tasks.
1814     */
1815    @Deprecated
1816    public List<RunningTaskInfo> getRunningTasks(int maxNum)
1817            throws SecurityException {
1818        try {
1819            return ActivityManagerNative.getDefault().getTasks(maxNum, 0);
1820        } catch (RemoteException e) {
1821            throw e.rethrowFromSystemServer();
1822        }
1823    }
1824
1825    /**
1826     * Completely remove the given task.
1827     *
1828     * @param taskId Identifier of the task to be removed.
1829     * @return Returns true if the given task was found and removed.
1830     *
1831     * @hide
1832     */
1833    public boolean removeTask(int taskId) throws SecurityException {
1834        try {
1835            return ActivityManagerNative.getDefault().removeTask(taskId);
1836        } catch (RemoteException e) {
1837            throw e.rethrowFromSystemServer();
1838        }
1839    }
1840
1841    /**
1842     * Metadata related to the {@link TaskThumbnail}.
1843     *
1844     * @hide
1845     */
1846    public static class TaskThumbnailInfo implements Parcelable {
1847        /** @hide */
1848        public static final String ATTR_TASK_THUMBNAILINFO_PREFIX = "task_thumbnailinfo_";
1849        private static final String ATTR_TASK_WIDTH =
1850                ATTR_TASK_THUMBNAILINFO_PREFIX + "task_width";
1851        private static final String ATTR_TASK_HEIGHT =
1852                ATTR_TASK_THUMBNAILINFO_PREFIX + "task_height";
1853        private static final String ATTR_SCREEN_ORIENTATION =
1854                ATTR_TASK_THUMBNAILINFO_PREFIX + "screen_orientation";
1855
1856        public int taskWidth;
1857        public int taskHeight;
1858        public int screenOrientation = Configuration.ORIENTATION_UNDEFINED;
1859
1860        public TaskThumbnailInfo() {
1861            // Do nothing
1862        }
1863
1864        private TaskThumbnailInfo(Parcel source) {
1865            readFromParcel(source);
1866        }
1867
1868        /**
1869         * Resets this info state to the initial state.
1870         * @hide
1871         */
1872        public void reset() {
1873            taskWidth = 0;
1874            taskHeight = 0;
1875            screenOrientation = Configuration.ORIENTATION_UNDEFINED;
1876        }
1877
1878        /**
1879         * Copies from another ThumbnailInfo.
1880         */
1881        public void copyFrom(TaskThumbnailInfo o) {
1882            taskWidth = o.taskWidth;
1883            taskHeight = o.taskHeight;
1884            screenOrientation = o.screenOrientation;
1885        }
1886
1887        /** @hide */
1888        public void saveToXml(XmlSerializer out) throws IOException {
1889            out.attribute(null, ATTR_TASK_WIDTH, Integer.toString(taskWidth));
1890            out.attribute(null, ATTR_TASK_HEIGHT, Integer.toString(taskHeight));
1891            out.attribute(null, ATTR_SCREEN_ORIENTATION, Integer.toString(screenOrientation));
1892        }
1893
1894        /** @hide */
1895        public void restoreFromXml(String attrName, String attrValue) {
1896            if (ATTR_TASK_WIDTH.equals(attrName)) {
1897                taskWidth = Integer.parseInt(attrValue);
1898            } else if (ATTR_TASK_HEIGHT.equals(attrName)) {
1899                taskHeight = Integer.parseInt(attrValue);
1900            } else if (ATTR_SCREEN_ORIENTATION.equals(attrName)) {
1901                screenOrientation = Integer.parseInt(attrValue);
1902            }
1903        }
1904
1905        public int describeContents() {
1906            return 0;
1907        }
1908
1909        public void writeToParcel(Parcel dest, int flags) {
1910            dest.writeInt(taskWidth);
1911            dest.writeInt(taskHeight);
1912            dest.writeInt(screenOrientation);
1913        }
1914
1915        public void readFromParcel(Parcel source) {
1916            taskWidth = source.readInt();
1917            taskHeight = source.readInt();
1918            screenOrientation = source.readInt();
1919        }
1920
1921        public static final Creator<TaskThumbnailInfo> CREATOR = new Creator<TaskThumbnailInfo>() {
1922            public TaskThumbnailInfo createFromParcel(Parcel source) {
1923                return new TaskThumbnailInfo(source);
1924            }
1925            public TaskThumbnailInfo[] newArray(int size) {
1926                return new TaskThumbnailInfo[size];
1927            }
1928        };
1929    }
1930
1931    /** @hide */
1932    public static class TaskThumbnail implements Parcelable {
1933        public Bitmap mainThumbnail;
1934        public ParcelFileDescriptor thumbnailFileDescriptor;
1935        public TaskThumbnailInfo thumbnailInfo;
1936
1937        public TaskThumbnail() {
1938        }
1939
1940        private TaskThumbnail(Parcel source) {
1941            readFromParcel(source);
1942        }
1943
1944        public int describeContents() {
1945            if (thumbnailFileDescriptor != null) {
1946                return thumbnailFileDescriptor.describeContents();
1947            }
1948            return 0;
1949        }
1950
1951        public void writeToParcel(Parcel dest, int flags) {
1952            if (mainThumbnail != null) {
1953                dest.writeInt(1);
1954                mainThumbnail.writeToParcel(dest, flags);
1955            } else {
1956                dest.writeInt(0);
1957            }
1958            if (thumbnailFileDescriptor != null) {
1959                dest.writeInt(1);
1960                thumbnailFileDescriptor.writeToParcel(dest, flags);
1961            } else {
1962                dest.writeInt(0);
1963            }
1964            if (thumbnailInfo != null) {
1965                dest.writeInt(1);
1966                thumbnailInfo.writeToParcel(dest, flags);
1967            } else {
1968                dest.writeInt(0);
1969            }
1970        }
1971
1972        public void readFromParcel(Parcel source) {
1973            if (source.readInt() != 0) {
1974                mainThumbnail = Bitmap.CREATOR.createFromParcel(source);
1975            } else {
1976                mainThumbnail = null;
1977            }
1978            if (source.readInt() != 0) {
1979                thumbnailFileDescriptor = ParcelFileDescriptor.CREATOR.createFromParcel(source);
1980            } else {
1981                thumbnailFileDescriptor = null;
1982            }
1983            if (source.readInt() != 0) {
1984                thumbnailInfo = TaskThumbnailInfo.CREATOR.createFromParcel(source);
1985            } else {
1986                thumbnailInfo = null;
1987            }
1988        }
1989
1990        public static final Creator<TaskThumbnail> CREATOR = new Creator<TaskThumbnail>() {
1991            public TaskThumbnail createFromParcel(Parcel source) {
1992                return new TaskThumbnail(source);
1993            }
1994            public TaskThumbnail[] newArray(int size) {
1995                return new TaskThumbnail[size];
1996            }
1997        };
1998    }
1999
2000    /** @hide */
2001    public TaskThumbnail getTaskThumbnail(int id) throws SecurityException {
2002        try {
2003            return ActivityManagerNative.getDefault().getTaskThumbnail(id);
2004        } catch (RemoteException e) {
2005            throw e.rethrowFromSystemServer();
2006        }
2007    }
2008
2009    /** @hide */
2010    public boolean isInHomeStack(int taskId) {
2011        try {
2012            return ActivityManagerNative.getDefault().isInHomeStack(taskId);
2013        } catch (RemoteException e) {
2014            throw e.rethrowFromSystemServer();
2015        }
2016    }
2017
2018    /**
2019     * Flag for {@link #moveTaskToFront(int, int)}: also move the "home"
2020     * activity along with the task, so it is positioned immediately behind
2021     * the task.
2022     */
2023    public static final int MOVE_TASK_WITH_HOME = 0x00000001;
2024
2025    /**
2026     * Flag for {@link #moveTaskToFront(int, int)}: don't count this as a
2027     * user-instigated action, so the current activity will not receive a
2028     * hint that the user is leaving.
2029     */
2030    public static final int MOVE_TASK_NO_USER_ACTION = 0x00000002;
2031
2032    /**
2033     * Equivalent to calling {@link #moveTaskToFront(int, int, Bundle)}
2034     * with a null options argument.
2035     *
2036     * @param taskId The identifier of the task to be moved, as found in
2037     * {@link RunningTaskInfo} or {@link RecentTaskInfo}.
2038     * @param flags Additional operational flags, 0 or more of
2039     * {@link #MOVE_TASK_WITH_HOME}, {@link #MOVE_TASK_NO_USER_ACTION}.
2040     */
2041    public void moveTaskToFront(int taskId, int flags) {
2042        moveTaskToFront(taskId, flags, null);
2043    }
2044
2045    /**
2046     * Ask that the task associated with a given task ID be moved to the
2047     * front of the stack, so it is now visible to the user.  Requires that
2048     * the caller hold permission {@link android.Manifest.permission#REORDER_TASKS}
2049     * or a SecurityException will be thrown.
2050     *
2051     * @param taskId The identifier of the task to be moved, as found in
2052     * {@link RunningTaskInfo} or {@link RecentTaskInfo}.
2053     * @param flags Additional operational flags, 0 or more of
2054     * {@link #MOVE_TASK_WITH_HOME}, {@link #MOVE_TASK_NO_USER_ACTION}.
2055     * @param options Additional options for the operation, either null or
2056     * as per {@link Context#startActivity(Intent, android.os.Bundle)
2057     * Context.startActivity(Intent, Bundle)}.
2058     */
2059    public void moveTaskToFront(int taskId, int flags, Bundle options) {
2060        try {
2061            ActivityManagerNative.getDefault().moveTaskToFront(taskId, flags, options);
2062        } catch (RemoteException e) {
2063            throw e.rethrowFromSystemServer();
2064        }
2065    }
2066
2067    /**
2068     * Information you can retrieve about a particular Service that is
2069     * currently running in the system.
2070     */
2071    public static class RunningServiceInfo implements Parcelable {
2072        /**
2073         * The service component.
2074         */
2075        public ComponentName service;
2076
2077        /**
2078         * If non-zero, this is the process the service is running in.
2079         */
2080        public int pid;
2081
2082        /**
2083         * The UID that owns this service.
2084         */
2085        public int uid;
2086
2087        /**
2088         * The name of the process this service runs in.
2089         */
2090        public String process;
2091
2092        /**
2093         * Set to true if the service has asked to run as a foreground process.
2094         */
2095        public boolean foreground;
2096
2097        /**
2098         * The time when the service was first made active, either by someone
2099         * starting or binding to it.  This
2100         * is in units of {@link android.os.SystemClock#elapsedRealtime()}.
2101         */
2102        public long activeSince;
2103
2104        /**
2105         * Set to true if this service has been explicitly started.
2106         */
2107        public boolean started;
2108
2109        /**
2110         * Number of clients connected to the service.
2111         */
2112        public int clientCount;
2113
2114        /**
2115         * Number of times the service's process has crashed while the service
2116         * is running.
2117         */
2118        public int crashCount;
2119
2120        /**
2121         * The time when there was last activity in the service (either
2122         * explicit requests to start it or clients binding to it).  This
2123         * is in units of {@link android.os.SystemClock#uptimeMillis()}.
2124         */
2125        public long lastActivityTime;
2126
2127        /**
2128         * If non-zero, this service is not currently running, but scheduled to
2129         * restart at the given time.
2130         */
2131        public long restarting;
2132
2133        /**
2134         * Bit for {@link #flags}: set if this service has been
2135         * explicitly started.
2136         */
2137        public static final int FLAG_STARTED = 1<<0;
2138
2139        /**
2140         * Bit for {@link #flags}: set if the service has asked to
2141         * run as a foreground process.
2142         */
2143        public static final int FLAG_FOREGROUND = 1<<1;
2144
2145        /**
2146         * Bit for {@link #flags}: set if the service is running in a
2147         * core system process.
2148         */
2149        public static final int FLAG_SYSTEM_PROCESS = 1<<2;
2150
2151        /**
2152         * Bit for {@link #flags}: set if the service is running in a
2153         * persistent process.
2154         */
2155        public static final int FLAG_PERSISTENT_PROCESS = 1<<3;
2156
2157        /**
2158         * Running flags.
2159         */
2160        public int flags;
2161
2162        /**
2163         * For special services that are bound to by system code, this is
2164         * the package that holds the binding.
2165         */
2166        public String clientPackage;
2167
2168        /**
2169         * For special services that are bound to by system code, this is
2170         * a string resource providing a user-visible label for who the
2171         * client is.
2172         */
2173        public int clientLabel;
2174
2175        public RunningServiceInfo() {
2176        }
2177
2178        public int describeContents() {
2179            return 0;
2180        }
2181
2182        public void writeToParcel(Parcel dest, int flags) {
2183            ComponentName.writeToParcel(service, dest);
2184            dest.writeInt(pid);
2185            dest.writeInt(uid);
2186            dest.writeString(process);
2187            dest.writeInt(foreground ? 1 : 0);
2188            dest.writeLong(activeSince);
2189            dest.writeInt(started ? 1 : 0);
2190            dest.writeInt(clientCount);
2191            dest.writeInt(crashCount);
2192            dest.writeLong(lastActivityTime);
2193            dest.writeLong(restarting);
2194            dest.writeInt(this.flags);
2195            dest.writeString(clientPackage);
2196            dest.writeInt(clientLabel);
2197        }
2198
2199        public void readFromParcel(Parcel source) {
2200            service = ComponentName.readFromParcel(source);
2201            pid = source.readInt();
2202            uid = source.readInt();
2203            process = source.readString();
2204            foreground = source.readInt() != 0;
2205            activeSince = source.readLong();
2206            started = source.readInt() != 0;
2207            clientCount = source.readInt();
2208            crashCount = source.readInt();
2209            lastActivityTime = source.readLong();
2210            restarting = source.readLong();
2211            flags = source.readInt();
2212            clientPackage = source.readString();
2213            clientLabel = source.readInt();
2214        }
2215
2216        public static final Creator<RunningServiceInfo> CREATOR = new Creator<RunningServiceInfo>() {
2217            public RunningServiceInfo createFromParcel(Parcel source) {
2218                return new RunningServiceInfo(source);
2219            }
2220            public RunningServiceInfo[] newArray(int size) {
2221                return new RunningServiceInfo[size];
2222            }
2223        };
2224
2225        private RunningServiceInfo(Parcel source) {
2226            readFromParcel(source);
2227        }
2228    }
2229
2230    /**
2231     * Return a list of the services that are currently running.
2232     *
2233     * <p><b>Note: this method is only intended for debugging or implementing
2234     * service management type user interfaces.</b></p>
2235     *
2236     * @param maxNum The maximum number of entries to return in the list.  The
2237     * actual number returned may be smaller, depending on how many services
2238     * are running.
2239     *
2240     * @return Returns a list of RunningServiceInfo records describing each of
2241     * the running tasks.
2242     */
2243    public List<RunningServiceInfo> getRunningServices(int maxNum)
2244            throws SecurityException {
2245        try {
2246            return ActivityManagerNative.getDefault()
2247                    .getServices(maxNum, 0);
2248        } catch (RemoteException e) {
2249            throw e.rethrowFromSystemServer();
2250        }
2251    }
2252
2253    /**
2254     * Returns a PendingIntent you can start to show a control panel for the
2255     * given running service.  If the service does not have a control panel,
2256     * null is returned.
2257     */
2258    public PendingIntent getRunningServiceControlPanel(ComponentName service)
2259            throws SecurityException {
2260        try {
2261            return ActivityManagerNative.getDefault()
2262                    .getRunningServiceControlPanel(service);
2263        } catch (RemoteException e) {
2264            throw e.rethrowFromSystemServer();
2265        }
2266    }
2267
2268    /**
2269     * Information you can retrieve about the available memory through
2270     * {@link ActivityManager#getMemoryInfo}.
2271     */
2272    public static class MemoryInfo implements Parcelable {
2273        /**
2274         * The available memory on the system.  This number should not
2275         * be considered absolute: due to the nature of the kernel, a significant
2276         * portion of this memory is actually in use and needed for the overall
2277         * system to run well.
2278         */
2279        public long availMem;
2280
2281        /**
2282         * The total memory accessible by the kernel.  This is basically the
2283         * RAM size of the device, not including below-kernel fixed allocations
2284         * like DMA buffers, RAM for the baseband CPU, etc.
2285         */
2286        public long totalMem;
2287
2288        /**
2289         * The threshold of {@link #availMem} at which we consider memory to be
2290         * low and start killing background services and other non-extraneous
2291         * processes.
2292         */
2293        public long threshold;
2294
2295        /**
2296         * Set to true if the system considers itself to currently be in a low
2297         * memory situation.
2298         */
2299        public boolean lowMemory;
2300
2301        /** @hide */
2302        public long hiddenAppThreshold;
2303        /** @hide */
2304        public long secondaryServerThreshold;
2305        /** @hide */
2306        public long visibleAppThreshold;
2307        /** @hide */
2308        public long foregroundAppThreshold;
2309
2310        public MemoryInfo() {
2311        }
2312
2313        public int describeContents() {
2314            return 0;
2315        }
2316
2317        public void writeToParcel(Parcel dest, int flags) {
2318            dest.writeLong(availMem);
2319            dest.writeLong(totalMem);
2320            dest.writeLong(threshold);
2321            dest.writeInt(lowMemory ? 1 : 0);
2322            dest.writeLong(hiddenAppThreshold);
2323            dest.writeLong(secondaryServerThreshold);
2324            dest.writeLong(visibleAppThreshold);
2325            dest.writeLong(foregroundAppThreshold);
2326        }
2327
2328        public void readFromParcel(Parcel source) {
2329            availMem = source.readLong();
2330            totalMem = source.readLong();
2331            threshold = source.readLong();
2332            lowMemory = source.readInt() != 0;
2333            hiddenAppThreshold = source.readLong();
2334            secondaryServerThreshold = source.readLong();
2335            visibleAppThreshold = source.readLong();
2336            foregroundAppThreshold = source.readLong();
2337        }
2338
2339        public static final Creator<MemoryInfo> CREATOR
2340                = new Creator<MemoryInfo>() {
2341            public MemoryInfo createFromParcel(Parcel source) {
2342                return new MemoryInfo(source);
2343            }
2344            public MemoryInfo[] newArray(int size) {
2345                return new MemoryInfo[size];
2346            }
2347        };
2348
2349        private MemoryInfo(Parcel source) {
2350            readFromParcel(source);
2351        }
2352    }
2353
2354    /**
2355     * Return general information about the memory state of the system.  This
2356     * can be used to help decide how to manage your own memory, though note
2357     * that polling is not recommended and
2358     * {@link android.content.ComponentCallbacks2#onTrimMemory(int)
2359     * ComponentCallbacks2.onTrimMemory(int)} is the preferred way to do this.
2360     * Also see {@link #getMyMemoryState} for how to retrieve the current trim
2361     * level of your process as needed, which gives a better hint for how to
2362     * manage its memory.
2363     */
2364    public void getMemoryInfo(MemoryInfo outInfo) {
2365        try {
2366            ActivityManagerNative.getDefault().getMemoryInfo(outInfo);
2367        } catch (RemoteException e) {
2368            throw e.rethrowFromSystemServer();
2369        }
2370    }
2371
2372    /**
2373     * Information you can retrieve about an ActivityStack in the system.
2374     * @hide
2375     */
2376    public static class StackInfo implements Parcelable {
2377        public int stackId;
2378        public Rect bounds = new Rect();
2379        public int[] taskIds;
2380        public String[] taskNames;
2381        public Rect[] taskBounds;
2382        public int[] taskUserIds;
2383        public ComponentName topActivity;
2384        public int displayId;
2385        public int userId;
2386        public boolean visible;
2387        // Index of the stack in the display's stack list, can be used for comparison of stack order
2388        public int position;
2389
2390        @Override
2391        public int describeContents() {
2392            return 0;
2393        }
2394
2395        @Override
2396        public void writeToParcel(Parcel dest, int flags) {
2397            dest.writeInt(stackId);
2398            dest.writeInt(bounds.left);
2399            dest.writeInt(bounds.top);
2400            dest.writeInt(bounds.right);
2401            dest.writeInt(bounds.bottom);
2402            dest.writeIntArray(taskIds);
2403            dest.writeStringArray(taskNames);
2404            final int boundsCount = taskBounds == null ? 0 : taskBounds.length;
2405            dest.writeInt(boundsCount);
2406            for (int i = 0; i < boundsCount; i++) {
2407                dest.writeInt(taskBounds[i].left);
2408                dest.writeInt(taskBounds[i].top);
2409                dest.writeInt(taskBounds[i].right);
2410                dest.writeInt(taskBounds[i].bottom);
2411            }
2412            dest.writeIntArray(taskUserIds);
2413            dest.writeInt(displayId);
2414            dest.writeInt(userId);
2415            dest.writeInt(visible ? 1 : 0);
2416            dest.writeInt(position);
2417            if (topActivity != null) {
2418                dest.writeInt(1);
2419                topActivity.writeToParcel(dest, 0);
2420            } else {
2421                dest.writeInt(0);
2422            }
2423        }
2424
2425        public void readFromParcel(Parcel source) {
2426            stackId = source.readInt();
2427            bounds = new Rect(
2428                    source.readInt(), source.readInt(), source.readInt(), source.readInt());
2429            taskIds = source.createIntArray();
2430            taskNames = source.createStringArray();
2431            final int boundsCount = source.readInt();
2432            if (boundsCount > 0) {
2433                taskBounds = new Rect[boundsCount];
2434                for (int i = 0; i < boundsCount; i++) {
2435                    taskBounds[i] = new Rect();
2436                    taskBounds[i].set(
2437                            source.readInt(), source.readInt(), source.readInt(), source.readInt());
2438                }
2439            } else {
2440                taskBounds = null;
2441            }
2442            taskUserIds = source.createIntArray();
2443            displayId = source.readInt();
2444            userId = source.readInt();
2445            visible = source.readInt() > 0;
2446            position = source.readInt();
2447            if (source.readInt() > 0) {
2448                topActivity = ComponentName.readFromParcel(source);
2449            }
2450        }
2451
2452        public static final Creator<StackInfo> CREATOR = new Creator<StackInfo>() {
2453            @Override
2454            public StackInfo createFromParcel(Parcel source) {
2455                return new StackInfo(source);
2456            }
2457            @Override
2458            public StackInfo[] newArray(int size) {
2459                return new StackInfo[size];
2460            }
2461        };
2462
2463        public StackInfo() {
2464        }
2465
2466        private StackInfo(Parcel source) {
2467            readFromParcel(source);
2468        }
2469
2470        public String toString(String prefix) {
2471            StringBuilder sb = new StringBuilder(256);
2472            sb.append(prefix); sb.append("Stack id="); sb.append(stackId);
2473                    sb.append(" bounds="); sb.append(bounds.toShortString());
2474                    sb.append(" displayId="); sb.append(displayId);
2475                    sb.append(" userId="); sb.append(userId);
2476                    sb.append("\n");
2477            prefix = prefix + "  ";
2478            for (int i = 0; i < taskIds.length; ++i) {
2479                sb.append(prefix); sb.append("taskId="); sb.append(taskIds[i]);
2480                        sb.append(": "); sb.append(taskNames[i]);
2481                        if (taskBounds != null) {
2482                            sb.append(" bounds="); sb.append(taskBounds[i].toShortString());
2483                        }
2484                        sb.append(" userId=").append(taskUserIds[i]);
2485                        sb.append(" visible=").append(visible);
2486                        if (topActivity != null) {
2487                            sb.append(" topActivity=").append(topActivity);
2488                        }
2489                        sb.append("\n");
2490            }
2491            return sb.toString();
2492        }
2493
2494        @Override
2495        public String toString() {
2496            return toString("");
2497        }
2498    }
2499
2500    /**
2501     * @hide
2502     */
2503    public boolean clearApplicationUserData(String packageName, IPackageDataObserver observer) {
2504        try {
2505            return ActivityManagerNative.getDefault().clearApplicationUserData(packageName,
2506                    observer, UserHandle.myUserId());
2507        } catch (RemoteException e) {
2508            throw e.rethrowFromSystemServer();
2509        }
2510    }
2511
2512    /**
2513     * Permits an application to erase its own data from disk.  This is equivalent to
2514     * the user choosing to clear the app's data from within the device settings UI.  It
2515     * erases all dynamic data associated with the app -- its private data and data in its
2516     * private area on external storage -- but does not remove the installed application
2517     * itself, nor any OBB files.
2518     *
2519     * @return {@code true} if the application successfully requested that the application's
2520     *     data be erased; {@code false} otherwise.
2521     */
2522    public boolean clearApplicationUserData() {
2523        return clearApplicationUserData(mContext.getPackageName(), null);
2524    }
2525
2526
2527    /**
2528     * Permits an application to get the persistent URI permissions granted to another.
2529     *
2530     * <p>Typically called by Settings.
2531     *
2532     * @param packageName application to look for the granted permissions
2533     * @return list of granted URI permissions
2534     *
2535     * @hide
2536     */
2537    public ParceledListSlice<UriPermission> getGrantedUriPermissions(String packageName) {
2538        try {
2539            return ActivityManagerNative.getDefault().getGrantedUriPermissions(packageName,
2540                    UserHandle.myUserId());
2541        } catch (RemoteException e) {
2542            throw e.rethrowFromSystemServer();
2543        }
2544    }
2545
2546    /**
2547     * Permits an application to clear the persistent URI permissions granted to another.
2548     *
2549     * <p>Typically called by Settings.
2550     *
2551     * @param packageName application to clear its granted permissions
2552     *
2553     * @hide
2554     */
2555    public void clearGrantedUriPermissions(String packageName) {
2556        try {
2557            ActivityManagerNative.getDefault().clearGrantedUriPermissions(packageName,
2558                    UserHandle.myUserId());
2559        } catch (RemoteException e) {
2560            throw e.rethrowFromSystemServer();
2561        }
2562    }
2563
2564    /**
2565     * Information you can retrieve about any processes that are in an error condition.
2566     */
2567    public static class ProcessErrorStateInfo implements Parcelable {
2568        /**
2569         * Condition codes
2570         */
2571        public static final int NO_ERROR = 0;
2572        public static final int CRASHED = 1;
2573        public static final int NOT_RESPONDING = 2;
2574
2575        /**
2576         * The condition that the process is in.
2577         */
2578        public int condition;
2579
2580        /**
2581         * The process name in which the crash or error occurred.
2582         */
2583        public String processName;
2584
2585        /**
2586         * The pid of this process; 0 if none
2587         */
2588        public int pid;
2589
2590        /**
2591         * The kernel user-ID that has been assigned to this process;
2592         * currently this is not a unique ID (multiple applications can have
2593         * the same uid).
2594         */
2595        public int uid;
2596
2597        /**
2598         * The activity name associated with the error, if known.  May be null.
2599         */
2600        public String tag;
2601
2602        /**
2603         * A short message describing the error condition.
2604         */
2605        public String shortMsg;
2606
2607        /**
2608         * A long message describing the error condition.
2609         */
2610        public String longMsg;
2611
2612        /**
2613         * The stack trace where the error originated.  May be null.
2614         */
2615        public String stackTrace;
2616
2617        /**
2618         * to be deprecated: This value will always be null.
2619         */
2620        public byte[] crashData = null;
2621
2622        public ProcessErrorStateInfo() {
2623        }
2624
2625        @Override
2626        public int describeContents() {
2627            return 0;
2628        }
2629
2630        @Override
2631        public void writeToParcel(Parcel dest, int flags) {
2632            dest.writeInt(condition);
2633            dest.writeString(processName);
2634            dest.writeInt(pid);
2635            dest.writeInt(uid);
2636            dest.writeString(tag);
2637            dest.writeString(shortMsg);
2638            dest.writeString(longMsg);
2639            dest.writeString(stackTrace);
2640        }
2641
2642        public void readFromParcel(Parcel source) {
2643            condition = source.readInt();
2644            processName = source.readString();
2645            pid = source.readInt();
2646            uid = source.readInt();
2647            tag = source.readString();
2648            shortMsg = source.readString();
2649            longMsg = source.readString();
2650            stackTrace = source.readString();
2651        }
2652
2653        public static final Creator<ProcessErrorStateInfo> CREATOR =
2654                new Creator<ProcessErrorStateInfo>() {
2655            public ProcessErrorStateInfo createFromParcel(Parcel source) {
2656                return new ProcessErrorStateInfo(source);
2657            }
2658            public ProcessErrorStateInfo[] newArray(int size) {
2659                return new ProcessErrorStateInfo[size];
2660            }
2661        };
2662
2663        private ProcessErrorStateInfo(Parcel source) {
2664            readFromParcel(source);
2665        }
2666    }
2667
2668    /**
2669     * Returns a list of any processes that are currently in an error condition.  The result
2670     * will be null if all processes are running properly at this time.
2671     *
2672     * @return Returns a list of ProcessErrorStateInfo records, or null if there are no
2673     * current error conditions (it will not return an empty list).  This list ordering is not
2674     * specified.
2675     */
2676    public List<ProcessErrorStateInfo> getProcessesInErrorState() {
2677        try {
2678            return ActivityManagerNative.getDefault().getProcessesInErrorState();
2679        } catch (RemoteException e) {
2680            throw e.rethrowFromSystemServer();
2681        }
2682    }
2683
2684    /**
2685     * Information you can retrieve about a running process.
2686     */
2687    public static class RunningAppProcessInfo implements Parcelable {
2688        /**
2689         * The name of the process that this object is associated with
2690         */
2691        public String processName;
2692
2693        /**
2694         * The pid of this process; 0 if none
2695         */
2696        public int pid;
2697
2698        /**
2699         * The user id of this process.
2700         */
2701        public int uid;
2702
2703        /**
2704         * All packages that have been loaded into the process.
2705         */
2706        public String pkgList[];
2707
2708        /**
2709         * Constant for {@link #flags}: this is an app that is unable to
2710         * correctly save its state when going to the background,
2711         * so it can not be killed while in the background.
2712         * @hide
2713         */
2714        public static final int FLAG_CANT_SAVE_STATE = 1<<0;
2715
2716        /**
2717         * Constant for {@link #flags}: this process is associated with a
2718         * persistent system app.
2719         * @hide
2720         */
2721        public static final int FLAG_PERSISTENT = 1<<1;
2722
2723        /**
2724         * Constant for {@link #flags}: this process is associated with a
2725         * persistent system app.
2726         * @hide
2727         */
2728        public static final int FLAG_HAS_ACTIVITIES = 1<<2;
2729
2730        /**
2731         * Flags of information.  May be any of
2732         * {@link #FLAG_CANT_SAVE_STATE}.
2733         * @hide
2734         */
2735        public int flags;
2736
2737        /**
2738         * Last memory trim level reported to the process: corresponds to
2739         * the values supplied to {@link android.content.ComponentCallbacks2#onTrimMemory(int)
2740         * ComponentCallbacks2.onTrimMemory(int)}.
2741         */
2742        public int lastTrimLevel;
2743
2744        /**
2745         * Constant for {@link #importance}: This process is running the
2746         * foreground UI; that is, it is the thing currently at the top of the screen
2747         * that the user is interacting with.
2748         */
2749        public static final int IMPORTANCE_FOREGROUND = 100;
2750
2751        /**
2752         * Constant for {@link #importance}: This process is running a foreground
2753         * service, for example to perform music playback even while the user is
2754         * not immediately in the app.  This generally indicates that the process
2755         * is doing something the user actively cares about.
2756         */
2757        public static final int IMPORTANCE_FOREGROUND_SERVICE = 125;
2758
2759        /**
2760         * Constant for {@link #importance}: This process is running the foreground
2761         * UI, but the device is asleep so it is not visible to the user.  This means
2762         * the user is not really aware of the process, because they can not see or
2763         * interact with it, but it is quite important because it what they expect to
2764         * return to once unlocking the device.
2765         */
2766        public static final int IMPORTANCE_TOP_SLEEPING = 150;
2767
2768        /**
2769         * Constant for {@link #importance}: This process is running something
2770         * that is actively visible to the user, though not in the immediate
2771         * foreground.  This may be running a window that is behind the current
2772         * foreground (so paused and with its state saved, not interacting with
2773         * the user, but visible to them to some degree); it may also be running
2774         * other services under the system's control that it inconsiders important.
2775         */
2776        public static final int IMPORTANCE_VISIBLE = 200;
2777
2778        /**
2779         * Constant for {@link #importance}: This process is not something the user
2780         * is directly aware of, but is otherwise perceptable to them to some degree.
2781         */
2782        public static final int IMPORTANCE_PERCEPTIBLE = 130;
2783
2784        /**
2785         * Constant for {@link #importance}: This process is running an
2786         * application that can not save its state, and thus can't be killed
2787         * while in the background.
2788         * @hide
2789         */
2790        public static final int IMPORTANCE_CANT_SAVE_STATE = 170;
2791
2792        /**
2793         * Constant for {@link #importance}: This process is contains services
2794         * that should remain running.  These are background services apps have
2795         * started, not something the user is aware of, so they may be killed by
2796         * the system relatively freely (though it is generally desired that they
2797         * stay running as long as they want to).
2798         */
2799        public static final int IMPORTANCE_SERVICE = 300;
2800
2801        /**
2802         * Constant for {@link #importance}: This process process contains
2803         * background code that is expendable.
2804         */
2805        public static final int IMPORTANCE_BACKGROUND = 400;
2806
2807        /**
2808         * Constant for {@link #importance}: This process is empty of any
2809         * actively running code.
2810         */
2811        public static final int IMPORTANCE_EMPTY = 500;
2812
2813        /**
2814         * Constant for {@link #importance}: This process does not exist.
2815         */
2816        public static final int IMPORTANCE_GONE = 1000;
2817
2818        /** @hide */
2819        public static int procStateToImportance(int procState) {
2820            if (procState == PROCESS_STATE_NONEXISTENT) {
2821                return IMPORTANCE_GONE;
2822            } else if (procState >= PROCESS_STATE_HOME) {
2823                return IMPORTANCE_BACKGROUND;
2824            } else if (procState >= PROCESS_STATE_SERVICE) {
2825                return IMPORTANCE_SERVICE;
2826            } else if (procState > PROCESS_STATE_HEAVY_WEIGHT) {
2827                return IMPORTANCE_CANT_SAVE_STATE;
2828            } else if (procState >= PROCESS_STATE_IMPORTANT_BACKGROUND) {
2829                return IMPORTANCE_PERCEPTIBLE;
2830            } else if (procState >= PROCESS_STATE_IMPORTANT_FOREGROUND) {
2831                return IMPORTANCE_VISIBLE;
2832            } else if (procState >= PROCESS_STATE_TOP_SLEEPING) {
2833                return IMPORTANCE_TOP_SLEEPING;
2834            } else if (procState >= PROCESS_STATE_FOREGROUND_SERVICE) {
2835                return IMPORTANCE_FOREGROUND_SERVICE;
2836            } else {
2837                return IMPORTANCE_FOREGROUND;
2838            }
2839        }
2840
2841        /**
2842         * The relative importance level that the system places on this
2843         * process.  May be one of {@link #IMPORTANCE_FOREGROUND},
2844         * {@link #IMPORTANCE_VISIBLE}, {@link #IMPORTANCE_SERVICE},
2845         * {@link #IMPORTANCE_BACKGROUND}, or {@link #IMPORTANCE_EMPTY}.  These
2846         * constants are numbered so that "more important" values are always
2847         * smaller than "less important" values.
2848         */
2849        public int importance;
2850
2851        /**
2852         * An additional ordering within a particular {@link #importance}
2853         * category, providing finer-grained information about the relative
2854         * utility of processes within a category.  This number means nothing
2855         * except that a smaller values are more recently used (and thus
2856         * more important).  Currently an LRU value is only maintained for
2857         * the {@link #IMPORTANCE_BACKGROUND} category, though others may
2858         * be maintained in the future.
2859         */
2860        public int lru;
2861
2862        /**
2863         * Constant for {@link #importanceReasonCode}: nothing special has
2864         * been specified for the reason for this level.
2865         */
2866        public static final int REASON_UNKNOWN = 0;
2867
2868        /**
2869         * Constant for {@link #importanceReasonCode}: one of the application's
2870         * content providers is being used by another process.  The pid of
2871         * the client process is in {@link #importanceReasonPid} and the
2872         * target provider in this process is in
2873         * {@link #importanceReasonComponent}.
2874         */
2875        public static final int REASON_PROVIDER_IN_USE = 1;
2876
2877        /**
2878         * Constant for {@link #importanceReasonCode}: one of the application's
2879         * content providers is being used by another process.  The pid of
2880         * the client process is in {@link #importanceReasonPid} and the
2881         * target provider in this process is in
2882         * {@link #importanceReasonComponent}.
2883         */
2884        public static final int REASON_SERVICE_IN_USE = 2;
2885
2886        /**
2887         * The reason for {@link #importance}, if any.
2888         */
2889        public int importanceReasonCode;
2890
2891        /**
2892         * For the specified values of {@link #importanceReasonCode}, this
2893         * is the process ID of the other process that is a client of this
2894         * process.  This will be 0 if no other process is using this one.
2895         */
2896        public int importanceReasonPid;
2897
2898        /**
2899         * For the specified values of {@link #importanceReasonCode}, this
2900         * is the name of the component that is being used in this process.
2901         */
2902        public ComponentName importanceReasonComponent;
2903
2904        /**
2905         * When {@link #importanceReasonPid} is non-0, this is the importance
2906         * of the other pid. @hide
2907         */
2908        public int importanceReasonImportance;
2909
2910        /**
2911         * Current process state, as per PROCESS_STATE_* constants.
2912         * @hide
2913         */
2914        public int processState;
2915
2916        public RunningAppProcessInfo() {
2917            importance = IMPORTANCE_FOREGROUND;
2918            importanceReasonCode = REASON_UNKNOWN;
2919            processState = PROCESS_STATE_IMPORTANT_FOREGROUND;
2920        }
2921
2922        public RunningAppProcessInfo(String pProcessName, int pPid, String pArr[]) {
2923            processName = pProcessName;
2924            pid = pPid;
2925            pkgList = pArr;
2926        }
2927
2928        public int describeContents() {
2929            return 0;
2930        }
2931
2932        public void writeToParcel(Parcel dest, int flags) {
2933            dest.writeString(processName);
2934            dest.writeInt(pid);
2935            dest.writeInt(uid);
2936            dest.writeStringArray(pkgList);
2937            dest.writeInt(this.flags);
2938            dest.writeInt(lastTrimLevel);
2939            dest.writeInt(importance);
2940            dest.writeInt(lru);
2941            dest.writeInt(importanceReasonCode);
2942            dest.writeInt(importanceReasonPid);
2943            ComponentName.writeToParcel(importanceReasonComponent, dest);
2944            dest.writeInt(importanceReasonImportance);
2945            dest.writeInt(processState);
2946        }
2947
2948        public void readFromParcel(Parcel source) {
2949            processName = source.readString();
2950            pid = source.readInt();
2951            uid = source.readInt();
2952            pkgList = source.readStringArray();
2953            flags = source.readInt();
2954            lastTrimLevel = source.readInt();
2955            importance = source.readInt();
2956            lru = source.readInt();
2957            importanceReasonCode = source.readInt();
2958            importanceReasonPid = source.readInt();
2959            importanceReasonComponent = ComponentName.readFromParcel(source);
2960            importanceReasonImportance = source.readInt();
2961            processState = source.readInt();
2962        }
2963
2964        public static final Creator<RunningAppProcessInfo> CREATOR =
2965            new Creator<RunningAppProcessInfo>() {
2966            public RunningAppProcessInfo createFromParcel(Parcel source) {
2967                return new RunningAppProcessInfo(source);
2968            }
2969            public RunningAppProcessInfo[] newArray(int size) {
2970                return new RunningAppProcessInfo[size];
2971            }
2972        };
2973
2974        private RunningAppProcessInfo(Parcel source) {
2975            readFromParcel(source);
2976        }
2977    }
2978
2979    /**
2980     * Returns a list of application processes installed on external media
2981     * that are running on the device.
2982     *
2983     * <p><b>Note: this method is only intended for debugging or building
2984     * a user-facing process management UI.</b></p>
2985     *
2986     * @return Returns a list of ApplicationInfo records, or null if none
2987     * This list ordering is not specified.
2988     * @hide
2989     */
2990    public List<ApplicationInfo> getRunningExternalApplications() {
2991        try {
2992            return ActivityManagerNative.getDefault().getRunningExternalApplications();
2993        } catch (RemoteException e) {
2994            throw e.rethrowFromSystemServer();
2995        }
2996    }
2997
2998    /**
2999     * Sets the memory trim mode for a process and schedules a memory trim operation.
3000     *
3001     * <p><b>Note: this method is only intended for testing framework.</b></p>
3002     *
3003     * @return Returns true if successful.
3004     * @hide
3005     */
3006    public boolean setProcessMemoryTrimLevel(String process, int userId, int level) {
3007        try {
3008            return ActivityManagerNative.getDefault().setProcessMemoryTrimLevel(process, userId,
3009                    level);
3010        } catch (RemoteException e) {
3011            throw e.rethrowFromSystemServer();
3012        }
3013    }
3014
3015    /**
3016     * Returns a list of application processes that are running on the device.
3017     *
3018     * <p><b>Note: this method is only intended for debugging or building
3019     * a user-facing process management UI.</b></p>
3020     *
3021     * @return Returns a list of RunningAppProcessInfo records, or null if there are no
3022     * running processes (it will not return an empty list).  This list ordering is not
3023     * specified.
3024     */
3025    public List<RunningAppProcessInfo> getRunningAppProcesses() {
3026        try {
3027            return ActivityManagerNative.getDefault().getRunningAppProcesses();
3028        } catch (RemoteException e) {
3029            throw e.rethrowFromSystemServer();
3030        }
3031    }
3032
3033    /**
3034     * Return the importance of a given package name, based on the processes that are
3035     * currently running.  The return value is one of the importance constants defined
3036     * in {@link RunningAppProcessInfo}, giving you the highest importance of all the
3037     * processes that this package has code running inside of.  If there are no processes
3038     * running its code, {@link RunningAppProcessInfo#IMPORTANCE_GONE} is returned.
3039     * @hide
3040     */
3041    @SystemApi
3042    public int getPackageImportance(String packageName) {
3043        try {
3044            int procState = ActivityManagerNative.getDefault().getPackageProcessState(packageName,
3045                    mContext.getOpPackageName());
3046            return RunningAppProcessInfo.procStateToImportance(procState);
3047        } catch (RemoteException e) {
3048            throw e.rethrowFromSystemServer();
3049        }
3050    }
3051
3052    /**
3053     * Return global memory state information for the calling process.  This
3054     * does not fill in all fields of the {@link RunningAppProcessInfo}.  The
3055     * only fields that will be filled in are
3056     * {@link RunningAppProcessInfo#pid},
3057     * {@link RunningAppProcessInfo#uid},
3058     * {@link RunningAppProcessInfo#lastTrimLevel},
3059     * {@link RunningAppProcessInfo#importance},
3060     * {@link RunningAppProcessInfo#lru}, and
3061     * {@link RunningAppProcessInfo#importanceReasonCode}.
3062     */
3063    static public void getMyMemoryState(RunningAppProcessInfo outState) {
3064        try {
3065            ActivityManagerNative.getDefault().getMyMemoryState(outState);
3066        } catch (RemoteException e) {
3067            throw e.rethrowFromSystemServer();
3068        }
3069    }
3070
3071    /**
3072     * Return information about the memory usage of one or more processes.
3073     *
3074     * <p><b>Note: this method is only intended for debugging or building
3075     * a user-facing process management UI.</b></p>
3076     *
3077     * @param pids The pids of the processes whose memory usage is to be
3078     * retrieved.
3079     * @return Returns an array of memory information, one for each
3080     * requested pid.
3081     */
3082    public Debug.MemoryInfo[] getProcessMemoryInfo(int[] pids) {
3083        try {
3084            return ActivityManagerNative.getDefault().getProcessMemoryInfo(pids);
3085        } catch (RemoteException e) {
3086            throw e.rethrowFromSystemServer();
3087        }
3088    }
3089
3090    /**
3091     * @deprecated This is now just a wrapper for
3092     * {@link #killBackgroundProcesses(String)}; the previous behavior here
3093     * is no longer available to applications because it allows them to
3094     * break other applications by removing their alarms, stopping their
3095     * services, etc.
3096     */
3097    @Deprecated
3098    public void restartPackage(String packageName) {
3099        killBackgroundProcesses(packageName);
3100    }
3101
3102    /**
3103     * Have the system immediately kill all background processes associated
3104     * with the given package.  This is the same as the kernel killing those
3105     * processes to reclaim memory; the system will take care of restarting
3106     * these processes in the future as needed.
3107     *
3108     * <p>You must hold the permission
3109     * {@link android.Manifest.permission#KILL_BACKGROUND_PROCESSES} to be able to
3110     * call this method.
3111     *
3112     * @param packageName The name of the package whose processes are to
3113     * be killed.
3114     */
3115    public void killBackgroundProcesses(String packageName) {
3116        try {
3117            ActivityManagerNative.getDefault().killBackgroundProcesses(packageName,
3118                    UserHandle.myUserId());
3119        } catch (RemoteException e) {
3120            throw e.rethrowFromSystemServer();
3121        }
3122    }
3123
3124    /**
3125     * Kills the specified UID.
3126     * @param uid The UID to kill.
3127     * @param reason The reason for the kill.
3128     *
3129     * @hide
3130     */
3131    @SystemApi
3132    @RequiresPermission(Manifest.permission.KILL_UID)
3133    public void killUid(int uid, String reason) {
3134        try {
3135            ActivityManagerNative.getDefault().killUid(UserHandle.getAppId(uid),
3136                    UserHandle.getUserId(uid), reason);
3137        } catch (RemoteException e) {
3138            throw e.rethrowFromSystemServer();
3139        }
3140    }
3141
3142    /**
3143     * Have the system perform a force stop of everything associated with
3144     * the given application package.  All processes that share its uid
3145     * will be killed, all services it has running stopped, all activities
3146     * removed, etc.  In addition, a {@link Intent#ACTION_PACKAGE_RESTARTED}
3147     * broadcast will be sent, so that any of its registered alarms can
3148     * be stopped, notifications removed, etc.
3149     *
3150     * <p>You must hold the permission
3151     * {@link android.Manifest.permission#FORCE_STOP_PACKAGES} to be able to
3152     * call this method.
3153     *
3154     * @param packageName The name of the package to be stopped.
3155     * @param userId The user for which the running package is to be stopped.
3156     *
3157     * @hide This is not available to third party applications due to
3158     * it allowing them to break other applications by stopping their
3159     * services, removing their alarms, etc.
3160     */
3161    public void forceStopPackageAsUser(String packageName, int userId) {
3162        try {
3163            ActivityManagerNative.getDefault().forceStopPackage(packageName, userId);
3164        } catch (RemoteException e) {
3165            throw e.rethrowFromSystemServer();
3166        }
3167    }
3168
3169    /**
3170     * @see #forceStopPackageAsUser(String, int)
3171     * @hide
3172     */
3173    public void forceStopPackage(String packageName) {
3174        forceStopPackageAsUser(packageName, UserHandle.myUserId());
3175    }
3176
3177    /**
3178     * Get the device configuration attributes.
3179     */
3180    public ConfigurationInfo getDeviceConfigurationInfo() {
3181        try {
3182            return ActivityManagerNative.getDefault().getDeviceConfigurationInfo();
3183        } catch (RemoteException e) {
3184            throw e.rethrowFromSystemServer();
3185        }
3186    }
3187
3188    /**
3189     * Get the preferred density of icons for the launcher. This is used when
3190     * custom drawables are created (e.g., for shortcuts).
3191     *
3192     * @return density in terms of DPI
3193     */
3194    public int getLauncherLargeIconDensity() {
3195        final Resources res = mContext.getResources();
3196        final int density = res.getDisplayMetrics().densityDpi;
3197        final int sw = res.getConfiguration().smallestScreenWidthDp;
3198
3199        if (sw < 600) {
3200            // Smaller than approx 7" tablets, use the regular icon size.
3201            return density;
3202        }
3203
3204        switch (density) {
3205            case DisplayMetrics.DENSITY_LOW:
3206                return DisplayMetrics.DENSITY_MEDIUM;
3207            case DisplayMetrics.DENSITY_MEDIUM:
3208                return DisplayMetrics.DENSITY_HIGH;
3209            case DisplayMetrics.DENSITY_TV:
3210                return DisplayMetrics.DENSITY_XHIGH;
3211            case DisplayMetrics.DENSITY_HIGH:
3212                return DisplayMetrics.DENSITY_XHIGH;
3213            case DisplayMetrics.DENSITY_XHIGH:
3214                return DisplayMetrics.DENSITY_XXHIGH;
3215            case DisplayMetrics.DENSITY_XXHIGH:
3216                return DisplayMetrics.DENSITY_XHIGH * 2;
3217            default:
3218                // The density is some abnormal value.  Return some other
3219                // abnormal value that is a reasonable scaling of it.
3220                return (int)((density*1.5f)+.5f);
3221        }
3222    }
3223
3224    /**
3225     * Get the preferred launcher icon size. This is used when custom drawables
3226     * are created (e.g., for shortcuts).
3227     *
3228     * @return dimensions of square icons in terms of pixels
3229     */
3230    public int getLauncherLargeIconSize() {
3231        return getLauncherLargeIconSizeInner(mContext);
3232    }
3233
3234    static int getLauncherLargeIconSizeInner(Context context) {
3235        final Resources res = context.getResources();
3236        final int size = res.getDimensionPixelSize(android.R.dimen.app_icon_size);
3237        final int sw = res.getConfiguration().smallestScreenWidthDp;
3238
3239        if (sw < 600) {
3240            // Smaller than approx 7" tablets, use the regular icon size.
3241            return size;
3242        }
3243
3244        final int density = res.getDisplayMetrics().densityDpi;
3245
3246        switch (density) {
3247            case DisplayMetrics.DENSITY_LOW:
3248                return (size * DisplayMetrics.DENSITY_MEDIUM) / DisplayMetrics.DENSITY_LOW;
3249            case DisplayMetrics.DENSITY_MEDIUM:
3250                return (size * DisplayMetrics.DENSITY_HIGH) / DisplayMetrics.DENSITY_MEDIUM;
3251            case DisplayMetrics.DENSITY_TV:
3252                return (size * DisplayMetrics.DENSITY_XHIGH) / DisplayMetrics.DENSITY_HIGH;
3253            case DisplayMetrics.DENSITY_HIGH:
3254                return (size * DisplayMetrics.DENSITY_XHIGH) / DisplayMetrics.DENSITY_HIGH;
3255            case DisplayMetrics.DENSITY_XHIGH:
3256                return (size * DisplayMetrics.DENSITY_XXHIGH) / DisplayMetrics.DENSITY_XHIGH;
3257            case DisplayMetrics.DENSITY_XXHIGH:
3258                return (size * DisplayMetrics.DENSITY_XHIGH*2) / DisplayMetrics.DENSITY_XXHIGH;
3259            default:
3260                // The density is some abnormal value.  Return some other
3261                // abnormal value that is a reasonable scaling of it.
3262                return (int)((size*1.5f) + .5f);
3263        }
3264    }
3265
3266    /**
3267     * Returns "true" if the user interface is currently being messed with
3268     * by a monkey.
3269     */
3270    public static boolean isUserAMonkey() {
3271        try {
3272            return ActivityManagerNative.getDefault().isUserAMonkey();
3273        } catch (RemoteException e) {
3274            throw e.rethrowFromSystemServer();
3275        }
3276    }
3277
3278    /**
3279     * Returns "true" if device is running in a test harness.
3280     */
3281    public static boolean isRunningInTestHarness() {
3282        return SystemProperties.getBoolean("ro.test_harness", false);
3283    }
3284
3285    /**
3286     * Returns the launch count of each installed package.
3287     *
3288     * @hide
3289     */
3290    /*public Map<String, Integer> getAllPackageLaunchCounts() {
3291        try {
3292            IUsageStats usageStatsService = IUsageStats.Stub.asInterface(
3293                    ServiceManager.getService("usagestats"));
3294            if (usageStatsService == null) {
3295                return new HashMap<String, Integer>();
3296            }
3297
3298            UsageStats.PackageStats[] allPkgUsageStats = usageStatsService.getAllPkgUsageStats(
3299                    ActivityThread.currentPackageName());
3300            if (allPkgUsageStats == null) {
3301                return new HashMap<String, Integer>();
3302            }
3303
3304            Map<String, Integer> launchCounts = new HashMap<String, Integer>();
3305            for (UsageStats.PackageStats pkgUsageStats : allPkgUsageStats) {
3306                launchCounts.put(pkgUsageStats.getPackageName(), pkgUsageStats.getLaunchCount());
3307            }
3308
3309            return launchCounts;
3310        } catch (RemoteException e) {
3311            Log.w(TAG, "Could not query launch counts", e);
3312            return new HashMap<String, Integer>();
3313        }
3314    }*/
3315
3316    /** @hide */
3317    public static int checkComponentPermission(String permission, int uid,
3318            int owningUid, boolean exported) {
3319        // Root, system server get to do everything.
3320        final int appId = UserHandle.getAppId(uid);
3321        if (appId == Process.ROOT_UID || appId == Process.SYSTEM_UID) {
3322            return PackageManager.PERMISSION_GRANTED;
3323        }
3324        // Isolated processes don't get any permissions.
3325        if (UserHandle.isIsolated(uid)) {
3326            return PackageManager.PERMISSION_DENIED;
3327        }
3328        // If there is a uid that owns whatever is being accessed, it has
3329        // blanket access to it regardless of the permissions it requires.
3330        if (owningUid >= 0 && UserHandle.isSameApp(uid, owningUid)) {
3331            return PackageManager.PERMISSION_GRANTED;
3332        }
3333        // If the target is not exported, then nobody else can get to it.
3334        if (!exported) {
3335            /*
3336            RuntimeException here = new RuntimeException("here");
3337            here.fillInStackTrace();
3338            Slog.w(TAG, "Permission denied: checkComponentPermission() owningUid=" + owningUid,
3339                    here);
3340            */
3341            return PackageManager.PERMISSION_DENIED;
3342        }
3343        if (permission == null) {
3344            return PackageManager.PERMISSION_GRANTED;
3345        }
3346        try {
3347            return AppGlobals.getPackageManager()
3348                    .checkUidPermission(permission, uid);
3349        } catch (RemoteException e) {
3350            throw e.rethrowFromSystemServer();
3351        }
3352    }
3353
3354    /** @hide */
3355    public static int checkUidPermission(String permission, int uid) {
3356        try {
3357            return AppGlobals.getPackageManager()
3358                    .checkUidPermission(permission, uid);
3359        } catch (RemoteException e) {
3360            throw e.rethrowFromSystemServer();
3361        }
3362    }
3363
3364    /**
3365     * @hide
3366     * Helper for dealing with incoming user arguments to system service calls.
3367     * Takes care of checking permissions and converting USER_CURRENT to the
3368     * actual current user.
3369     *
3370     * @param callingPid The pid of the incoming call, as per Binder.getCallingPid().
3371     * @param callingUid The uid of the incoming call, as per Binder.getCallingUid().
3372     * @param userId The user id argument supplied by the caller -- this is the user
3373     * they want to run as.
3374     * @param allowAll If true, we will allow USER_ALL.  This means you must be prepared
3375     * to get a USER_ALL returned and deal with it correctly.  If false,
3376     * an exception will be thrown if USER_ALL is supplied.
3377     * @param requireFull If true, the caller must hold
3378     * {@link android.Manifest.permission#INTERACT_ACROSS_USERS_FULL} to be able to run as a
3379     * different user than their current process; otherwise they must hold
3380     * {@link android.Manifest.permission#INTERACT_ACROSS_USERS}.
3381     * @param name Optional textual name of the incoming call; only for generating error messages.
3382     * @param callerPackage Optional package name of caller; only for error messages.
3383     *
3384     * @return Returns the user ID that the call should run as.  Will always be a concrete
3385     * user number, unless <var>allowAll</var> is true in which case it could also be
3386     * USER_ALL.
3387     */
3388    public static int handleIncomingUser(int callingPid, int callingUid, int userId,
3389            boolean allowAll, boolean requireFull, String name, String callerPackage) {
3390        if (UserHandle.getUserId(callingUid) == userId) {
3391            return userId;
3392        }
3393        try {
3394            return ActivityManagerNative.getDefault().handleIncomingUser(callingPid,
3395                    callingUid, userId, allowAll, requireFull, name, callerPackage);
3396        } catch (RemoteException e) {
3397            throw e.rethrowFromSystemServer();
3398        }
3399    }
3400
3401    /**
3402     * Gets the userId of the current foreground user. Requires system permissions.
3403     * @hide
3404     */
3405    @SystemApi
3406    public static int getCurrentUser() {
3407        UserInfo ui;
3408        try {
3409            ui = ActivityManagerNative.getDefault().getCurrentUser();
3410            return ui != null ? ui.id : 0;
3411        } catch (RemoteException e) {
3412            throw e.rethrowFromSystemServer();
3413        }
3414    }
3415
3416    /**
3417     * @param userid the user's id. Zero indicates the default user.
3418     * @hide
3419     */
3420    public boolean switchUser(int userid) {
3421        try {
3422            return ActivityManagerNative.getDefault().switchUser(userid);
3423        } catch (RemoteException e) {
3424            throw e.rethrowFromSystemServer();
3425        }
3426    }
3427
3428    /**
3429     * Logs out current current foreground user by switching to the system user and stopping the
3430     * user being switched from.
3431     * @hide
3432     */
3433    public static void logoutCurrentUser() {
3434        int currentUser = ActivityManager.getCurrentUser();
3435        if (currentUser != UserHandle.USER_SYSTEM) {
3436            try {
3437                ActivityManagerNative.getDefault().switchUser(UserHandle.USER_SYSTEM);
3438                ActivityManagerNative.getDefault().stopUser(currentUser, /* force= */ false, null);
3439            } catch (RemoteException e) {
3440                e.rethrowFromSystemServer();
3441            }
3442        }
3443    }
3444
3445    /** {@hide} */
3446    public static final int FLAG_OR_STOPPED = 1 << 0;
3447    /** {@hide} */
3448    public static final int FLAG_AND_LOCKED = 1 << 1;
3449    /** {@hide} */
3450    public static final int FLAG_AND_UNLOCKED = 1 << 2;
3451    /** {@hide} */
3452    public static final int FLAG_AND_UNLOCKING_OR_UNLOCKED = 1 << 3;
3453
3454    /**
3455     * Return whether the given user is actively running.  This means that
3456     * the user is in the "started" state, not "stopped" -- it is currently
3457     * allowed to run code through scheduled alarms, receiving broadcasts,
3458     * etc.  A started user may be either the current foreground user or a
3459     * background user; the result here does not distinguish between the two.
3460     * @param userid the user's id. Zero indicates the default user.
3461     * @hide
3462     */
3463    public boolean isUserRunning(int userId) {
3464        try {
3465            return ActivityManagerNative.getDefault().isUserRunning(userId, 0);
3466        } catch (RemoteException e) {
3467            throw e.rethrowFromSystemServer();
3468        }
3469    }
3470
3471    /** {@hide} */
3472    public boolean isVrModePackageEnabled(ComponentName component) {
3473        try {
3474            return ActivityManagerNative.getDefault().isVrModePackageEnabled(component);
3475        } catch (RemoteException e) {
3476            throw e.rethrowFromSystemServer();
3477        }
3478    }
3479
3480    /**
3481     * Perform a system dump of various state associated with the given application
3482     * package name.  This call blocks while the dump is being performed, so should
3483     * not be done on a UI thread.  The data will be written to the given file
3484     * descriptor as text.  An application must hold the
3485     * {@link android.Manifest.permission#DUMP} permission to make this call.
3486     * @param fd The file descriptor that the dump should be written to.  The file
3487     * descriptor is <em>not</em> closed by this function; the caller continues to
3488     * own it.
3489     * @param packageName The name of the package that is to be dumped.
3490     */
3491    public void dumpPackageState(FileDescriptor fd, String packageName) {
3492        dumpPackageStateStatic(fd, packageName);
3493    }
3494
3495    /**
3496     * @hide
3497     */
3498    public static void dumpPackageStateStatic(FileDescriptor fd, String packageName) {
3499        FileOutputStream fout = new FileOutputStream(fd);
3500        PrintWriter pw = new FastPrintWriter(fout);
3501        dumpService(pw, fd, "package", new String[] { packageName });
3502        pw.println();
3503        dumpService(pw, fd, Context.ACTIVITY_SERVICE, new String[] {
3504                "-a", "package", packageName });
3505        pw.println();
3506        dumpService(pw, fd, "meminfo", new String[] { "--local", "--package", packageName });
3507        pw.println();
3508        dumpService(pw, fd, ProcessStats.SERVICE_NAME, new String[] { packageName });
3509        pw.println();
3510        dumpService(pw, fd, "usagestats", new String[] { "--packages", packageName });
3511        pw.println();
3512        dumpService(pw, fd, BatteryStats.SERVICE_NAME, new String[] { packageName });
3513        pw.flush();
3514    }
3515
3516    private static void dumpService(PrintWriter pw, FileDescriptor fd, String name, String[] args) {
3517        pw.print("DUMP OF SERVICE "); pw.print(name); pw.println(":");
3518        IBinder service = ServiceManager.checkService(name);
3519        if (service == null) {
3520            pw.println("  (Service not found)");
3521            return;
3522        }
3523        TransferPipe tp = null;
3524        try {
3525            pw.flush();
3526            tp = new TransferPipe();
3527            tp.setBufferPrefix("  ");
3528            service.dumpAsync(tp.getWriteFd().getFileDescriptor(), args);
3529            tp.go(fd, 10000);
3530        } catch (Throwable e) {
3531            if (tp != null) {
3532                tp.kill();
3533            }
3534            pw.println("Failure dumping service:");
3535            e.printStackTrace(pw);
3536        }
3537    }
3538
3539    /**
3540     * Request that the system start watching for the calling process to exceed a pss
3541     * size as given here.  Once called, the system will look for any occasions where it
3542     * sees the associated process with a larger pss size and, when this happens, automatically
3543     * pull a heap dump from it and allow the user to share the data.  Note that this request
3544     * continues running even if the process is killed and restarted.  To remove the watch,
3545     * use {@link #clearWatchHeapLimit()}.
3546     *
3547     * <p>This API only work if the calling process has been marked as
3548     * {@link ApplicationInfo#FLAG_DEBUGGABLE} or this is running on a debuggable
3549     * (userdebug or eng) build.</p>
3550     *
3551     * <p>Callers can optionally implement {@link #ACTION_REPORT_HEAP_LIMIT} to directly
3552     * handle heap limit reports themselves.</p>
3553     *
3554     * @param pssSize The size in bytes to set the limit at.
3555     */
3556    public void setWatchHeapLimit(long pssSize) {
3557        try {
3558            ActivityManagerNative.getDefault().setDumpHeapDebugLimit(null, 0, pssSize,
3559                    mContext.getPackageName());
3560        } catch (RemoteException e) {
3561            throw e.rethrowFromSystemServer();
3562        }
3563    }
3564
3565    /**
3566     * Action an app can implement to handle reports from {@link #setWatchHeapLimit(long)}.
3567     * If your package has an activity handling this action, it will be launched with the
3568     * heap data provided to it the same way as {@link Intent#ACTION_SEND}.  Note that to
3569     * match the activty must support this action and a MIME type of "*&#47;*".
3570     */
3571    public static final String ACTION_REPORT_HEAP_LIMIT = "android.app.action.REPORT_HEAP_LIMIT";
3572
3573    /**
3574     * Clear a heap watch limit previously set by {@link #setWatchHeapLimit(long)}.
3575     */
3576    public void clearWatchHeapLimit() {
3577        try {
3578            ActivityManagerNative.getDefault().setDumpHeapDebugLimit(null, 0, 0, null);
3579        } catch (RemoteException e) {
3580            throw e.rethrowFromSystemServer();
3581        }
3582    }
3583
3584    /**
3585     * @hide
3586     */
3587    public void startLockTaskMode(int taskId) {
3588        try {
3589            ActivityManagerNative.getDefault().startLockTaskMode(taskId);
3590        } catch (RemoteException e) {
3591            throw e.rethrowFromSystemServer();
3592        }
3593    }
3594
3595    /**
3596     * @hide
3597     */
3598    public void stopLockTaskMode() {
3599        try {
3600            ActivityManagerNative.getDefault().stopLockTaskMode();
3601        } catch (RemoteException e) {
3602            throw e.rethrowFromSystemServer();
3603        }
3604    }
3605
3606    /**
3607     * Return whether currently in lock task mode.  When in this mode
3608     * no new tasks can be created or switched to.
3609     *
3610     * @see Activity#startLockTask()
3611     *
3612     * @deprecated Use {@link #getLockTaskModeState} instead.
3613     */
3614    public boolean isInLockTaskMode() {
3615        return getLockTaskModeState() != LOCK_TASK_MODE_NONE;
3616    }
3617
3618    /**
3619     * Return the current state of task locking. The three possible outcomes
3620     * are {@link #LOCK_TASK_MODE_NONE}, {@link #LOCK_TASK_MODE_LOCKED}
3621     * and {@link #LOCK_TASK_MODE_PINNED}.
3622     *
3623     * @see Activity#startLockTask()
3624     */
3625    public int getLockTaskModeState() {
3626        try {
3627            return ActivityManagerNative.getDefault().getLockTaskModeState();
3628        } catch (RemoteException e) {
3629            throw e.rethrowFromSystemServer();
3630        }
3631    }
3632
3633    /**
3634     * Enable more aggressive scheduling for latency-sensitive low-runtime VR threads. Only one
3635     * thread can be a VR thread in a process at a time, and that thread may be subject to
3636     * restrictions on the amount of time it can run.
3637     *
3638     * To reset the VR thread for an application, a tid of 0 can be passed.
3639     *
3640     * @see android.os.Process#myTid()
3641     * @param tid tid of the VR thread
3642     */
3643    public static void setVrThread(int tid) {
3644        try {
3645            ActivityManagerNative.getDefault().setVrThread(tid);
3646        } catch (RemoteException e) {
3647            // pass
3648        }
3649    }
3650
3651    /**
3652     * The AppTask allows you to manage your own application's tasks.
3653     * See {@link android.app.ActivityManager#getAppTasks()}
3654     */
3655    public static class AppTask {
3656        private IAppTask mAppTaskImpl;
3657
3658        /** @hide */
3659        public AppTask(IAppTask task) {
3660            mAppTaskImpl = task;
3661        }
3662
3663        /**
3664         * Finishes all activities in this task and removes it from the recent tasks list.
3665         */
3666        public void finishAndRemoveTask() {
3667            try {
3668                mAppTaskImpl.finishAndRemoveTask();
3669            } catch (RemoteException e) {
3670                throw e.rethrowFromSystemServer();
3671            }
3672        }
3673
3674        /**
3675         * Get the RecentTaskInfo associated with this task.
3676         *
3677         * @return The RecentTaskInfo for this task, or null if the task no longer exists.
3678         */
3679        public RecentTaskInfo getTaskInfo() {
3680            try {
3681                return mAppTaskImpl.getTaskInfo();
3682            } catch (RemoteException e) {
3683                throw e.rethrowFromSystemServer();
3684            }
3685        }
3686
3687        /**
3688         * Bring this task to the foreground.  If it contains activities, they will be
3689         * brought to the foreground with it and their instances re-created if needed.
3690         * If it doesn't contain activities, the root activity of the task will be
3691         * re-launched.
3692         */
3693        public void moveToFront() {
3694            try {
3695                mAppTaskImpl.moveToFront();
3696            } catch (RemoteException e) {
3697                throw e.rethrowFromSystemServer();
3698            }
3699        }
3700
3701        /**
3702         * Start an activity in this task.  Brings the task to the foreground.  If this task
3703         * is not currently active (that is, its id < 0), then a new activity for the given
3704         * Intent will be launched as the root of the task and the task brought to the
3705         * foreground.  Otherwise, if this task is currently active and the Intent does not specify
3706         * an activity to launch in a new task, then a new activity for the given Intent will
3707         * be launched on top of the task and the task brought to the foreground.  If this
3708         * task is currently active and the Intent specifies {@link Intent#FLAG_ACTIVITY_NEW_TASK}
3709         * or would otherwise be launched in to a new task, then the activity not launched but
3710         * this task be brought to the foreground and a new intent delivered to the top
3711         * activity if appropriate.
3712         *
3713         * <p>In other words, you generally want to use an Intent here that does not specify
3714         * {@link Intent#FLAG_ACTIVITY_NEW_TASK} or {@link Intent#FLAG_ACTIVITY_NEW_DOCUMENT},
3715         * and let the system do the right thing.</p>
3716         *
3717         * @param intent The Intent describing the new activity to be launched on the task.
3718         * @param options Optional launch options.
3719         *
3720         * @see Activity#startActivity(android.content.Intent, android.os.Bundle)
3721         */
3722        public void startActivity(Context context, Intent intent, Bundle options) {
3723            ActivityThread thread = ActivityThread.currentActivityThread();
3724            thread.getInstrumentation().execStartActivityFromAppTask(context,
3725                    thread.getApplicationThread(), mAppTaskImpl, intent, options);
3726        }
3727
3728        /**
3729         * Modify the {@link Intent#FLAG_ACTIVITY_EXCLUDE_FROM_RECENTS} flag in the root
3730         * Intent of this AppTask.
3731         *
3732         * @param exclude If true, {@link Intent#FLAG_ACTIVITY_EXCLUDE_FROM_RECENTS} will
3733         * be set; otherwise, it will be cleared.
3734         */
3735        public void setExcludeFromRecents(boolean exclude) {
3736            try {
3737                mAppTaskImpl.setExcludeFromRecents(exclude);
3738            } catch (RemoteException e) {
3739                throw e.rethrowFromSystemServer();
3740            }
3741        }
3742    }
3743}
3744