1 /* 2 * Copyright (C) 2006 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 package android.widget; 18 19 import android.content.Context; 20 import android.content.Intent; 21 import android.content.res.TypedArray; 22 import android.graphics.Canvas; 23 import android.graphics.Rect; 24 import android.graphics.drawable.Drawable; 25 import android.graphics.drawable.TransitionDrawable; 26 import android.os.Bundle; 27 import android.os.Debug; 28 import android.os.Handler; 29 import android.os.Parcel; 30 import android.os.Parcelable; 31 import android.os.StrictMode; 32 import android.text.Editable; 33 import android.text.TextUtils; 34 import android.text.TextWatcher; 35 import android.util.AttributeSet; 36 import android.util.Log; 37 import android.util.LongSparseArray; 38 import android.util.SparseArray; 39 import android.util.SparseBooleanArray; 40 import android.util.StateSet; 41 import android.view.ActionMode; 42 import android.view.ContextMenu.ContextMenuInfo; 43 import android.view.Gravity; 44 import android.view.HapticFeedbackConstants; 45 import android.view.InputDevice; 46 import android.view.KeyEvent; 47 import android.view.LayoutInflater; 48 import android.view.Menu; 49 import android.view.MenuItem; 50 import android.view.MotionEvent; 51 import android.view.VelocityTracker; 52 import android.view.View; 53 import android.view.ViewConfiguration; 54 import android.view.ViewDebug; 55 import android.view.ViewGroup; 56 import android.view.ViewParent; 57 import android.view.ViewTreeObserver; 58 import android.view.accessibility.AccessibilityEvent; 59 import android.view.accessibility.AccessibilityManager; 60 import android.view.accessibility.AccessibilityNodeInfo; 61 import android.view.animation.Interpolator; 62 import android.view.animation.LinearInterpolator; 63 import android.view.inputmethod.BaseInputConnection; 64 import android.view.inputmethod.EditorInfo; 65 import android.view.inputmethod.InputConnection; 66 import android.view.inputmethod.InputConnectionWrapper; 67 import android.view.inputmethod.InputMethodManager; 68 import android.widget.RemoteViews.OnClickHandler; 69 70 import com.android.internal.R; 71 72 import java.util.ArrayList; 73 import java.util.List; 74 75 /** 76 * Base class that can be used to implement virtualized lists of items. A list does 77 * not have a spatial definition here. For instance, subclases of this class can 78 * display the content of the list in a grid, in a carousel, as stack, etc. 79 * 80 * @attr ref android.R.styleable#AbsListView_listSelector 81 * @attr ref android.R.styleable#AbsListView_drawSelectorOnTop 82 * @attr ref android.R.styleable#AbsListView_stackFromBottom 83 * @attr ref android.R.styleable#AbsListView_scrollingCache 84 * @attr ref android.R.styleable#AbsListView_textFilterEnabled 85 * @attr ref android.R.styleable#AbsListView_transcriptMode 86 * @attr ref android.R.styleable#AbsListView_cacheColorHint 87 * @attr ref android.R.styleable#AbsListView_fastScrollEnabled 88 * @attr ref android.R.styleable#AbsListView_smoothScrollbar 89 * @attr ref android.R.styleable#AbsListView_choiceMode 90 */ 91 public abstract class AbsListView extends AdapterView<ListAdapter> implements TextWatcher, 92 ViewTreeObserver.OnGlobalLayoutListener, Filter.FilterListener, 93 ViewTreeObserver.OnTouchModeChangeListener, 94 RemoteViewsAdapter.RemoteAdapterConnectionCallback { 95 96 @SuppressWarnings("UnusedDeclaration") 97 private static final String TAG = "AbsListView"; 98 99 /** 100 * Disables the transcript mode. 101 * 102 * @see #setTranscriptMode(int) 103 */ 104 public static final int TRANSCRIPT_MODE_DISABLED = 0; 105 /** 106 * The list will automatically scroll to the bottom when a data set change 107 * notification is received and only if the last item is already visible 108 * on screen. 109 * 110 * @see #setTranscriptMode(int) 111 */ 112 public static final int TRANSCRIPT_MODE_NORMAL = 1; 113 /** 114 * The list will automatically scroll to the bottom, no matter what items 115 * are currently visible. 116 * 117 * @see #setTranscriptMode(int) 118 */ 119 public static final int TRANSCRIPT_MODE_ALWAYS_SCROLL = 2; 120 121 /** 122 * Indicates that we are not in the middle of a touch gesture 123 */ 124 static final int TOUCH_MODE_REST = -1; 125 126 /** 127 * Indicates we just received the touch event and we are waiting to see if the it is a tap or a 128 * scroll gesture. 129 */ 130 static final int TOUCH_MODE_DOWN = 0; 131 132 /** 133 * Indicates the touch has been recognized as a tap and we are now waiting to see if the touch 134 * is a longpress 135 */ 136 static final int TOUCH_MODE_TAP = 1; 137 138 /** 139 * Indicates we have waited for everything we can wait for, but the user's finger is still down 140 */ 141 static final int TOUCH_MODE_DONE_WAITING = 2; 142 143 /** 144 * Indicates the touch gesture is a scroll 145 */ 146 static final int TOUCH_MODE_SCROLL = 3; 147 148 /** 149 * Indicates the view is in the process of being flung 150 */ 151 static final int TOUCH_MODE_FLING = 4; 152 153 /** 154 * Indicates the touch gesture is an overscroll - a scroll beyond the beginning or end. 155 */ 156 static final int TOUCH_MODE_OVERSCROLL = 5; 157 158 /** 159 * Indicates the view is being flung outside of normal content bounds 160 * and will spring back. 161 */ 162 static final int TOUCH_MODE_OVERFLING = 6; 163 164 /** 165 * Regular layout - usually an unsolicited layout from the view system 166 */ 167 static final int LAYOUT_NORMAL = 0; 168 169 /** 170 * Show the first item 171 */ 172 static final int LAYOUT_FORCE_TOP = 1; 173 174 /** 175 * Force the selected item to be on somewhere on the screen 176 */ 177 static final int LAYOUT_SET_SELECTION = 2; 178 179 /** 180 * Show the last item 181 */ 182 static final int LAYOUT_FORCE_BOTTOM = 3; 183 184 /** 185 * Make a mSelectedItem appear in a specific location and build the rest of 186 * the views from there. The top is specified by mSpecificTop. 187 */ 188 static final int LAYOUT_SPECIFIC = 4; 189 190 /** 191 * Layout to sync as a result of a data change. Restore mSyncPosition to have its top 192 * at mSpecificTop 193 */ 194 static final int LAYOUT_SYNC = 5; 195 196 /** 197 * Layout as a result of using the navigation keys 198 */ 199 static final int LAYOUT_MOVE_SELECTION = 6; 200 201 /** 202 * Normal list that does not indicate choices 203 */ 204 public static final int CHOICE_MODE_NONE = 0; 205 206 /** 207 * The list allows up to one choice 208 */ 209 public static final int CHOICE_MODE_SINGLE = 1; 210 211 /** 212 * The list allows multiple choices 213 */ 214 public static final int CHOICE_MODE_MULTIPLE = 2; 215 216 /** 217 * The list allows multiple choices in a modal selection mode 218 */ 219 public static final int CHOICE_MODE_MULTIPLE_MODAL = 3; 220 221 /** 222 * Controls if/how the user may choose/check items in the list 223 */ 224 int mChoiceMode = CHOICE_MODE_NONE; 225 226 /** 227 * Controls CHOICE_MODE_MULTIPLE_MODAL. null when inactive. 228 */ 229 ActionMode mChoiceActionMode; 230 231 /** 232 * Wrapper for the multiple choice mode callback; AbsListView needs to perform 233 * a few extra actions around what application code does. 234 */ 235 MultiChoiceModeWrapper mMultiChoiceModeCallback; 236 237 /** 238 * Running count of how many items are currently checked 239 */ 240 int mCheckedItemCount; 241 242 /** 243 * Running state of which positions are currently checked 244 */ 245 SparseBooleanArray mCheckStates; 246 247 /** 248 * Running state of which IDs are currently checked. 249 * If there is a value for a given key, the checked state for that ID is true 250 * and the value holds the last known position in the adapter for that id. 251 */ 252 LongSparseArray<Integer> mCheckedIdStates; 253 254 /** 255 * Controls how the next layout will happen 256 */ 257 int mLayoutMode = LAYOUT_NORMAL; 258 259 /** 260 * Should be used by subclasses to listen to changes in the dataset 261 */ 262 AdapterDataSetObserver mDataSetObserver; 263 264 /** 265 * The adapter containing the data to be displayed by this view 266 */ 267 ListAdapter mAdapter; 268 269 /** 270 * The remote adapter containing the data to be displayed by this view to be set 271 */ 272 private RemoteViewsAdapter mRemoteAdapter; 273 274 /** 275 * If mAdapter != null, whenever this is true the adapter has stable IDs. 276 */ 277 boolean mAdapterHasStableIds; 278 279 /** 280 * This flag indicates the a full notify is required when the RemoteViewsAdapter connects 281 */ 282 private boolean mDeferNotifyDataSetChanged = false; 283 284 /** 285 * Indicates whether the list selector should be drawn on top of the children or behind 286 */ 287 boolean mDrawSelectorOnTop = false; 288 289 /** 290 * The drawable used to draw the selector 291 */ 292 Drawable mSelector; 293 294 /** 295 * The current position of the selector in the list. 296 */ 297 int mSelectorPosition = INVALID_POSITION; 298 299 /** 300 * Defines the selector's location and dimension at drawing time 301 */ 302 Rect mSelectorRect = new Rect(); 303 304 /** 305 * The data set used to store unused views that should be reused during the next layout 306 * to avoid creating new ones 307 */ 308 final RecycleBin mRecycler = new RecycleBin(); 309 310 /** 311 * The selection's left padding 312 */ 313 int mSelectionLeftPadding = 0; 314 315 /** 316 * The selection's top padding 317 */ 318 int mSelectionTopPadding = 0; 319 320 /** 321 * The selection's right padding 322 */ 323 int mSelectionRightPadding = 0; 324 325 /** 326 * The selection's bottom padding 327 */ 328 int mSelectionBottomPadding = 0; 329 330 /** 331 * This view's padding 332 */ 333 Rect mListPadding = new Rect(); 334 335 /** 336 * Subclasses must retain their measure spec from onMeasure() into this member 337 */ 338 int mWidthMeasureSpec = 0; 339 340 /** 341 * The top scroll indicator 342 */ 343 View mScrollUp; 344 345 /** 346 * The down scroll indicator 347 */ 348 View mScrollDown; 349 350 /** 351 * When the view is scrolling, this flag is set to true to indicate subclasses that 352 * the drawing cache was enabled on the children 353 */ 354 boolean mCachingStarted; 355 boolean mCachingActive; 356 357 /** 358 * The position of the view that received the down motion event 359 */ 360 int mMotionPosition; 361 362 /** 363 * The offset to the top of the mMotionPosition view when the down motion event was received 364 */ 365 int mMotionViewOriginalTop; 366 367 /** 368 * The desired offset to the top of the mMotionPosition view after a scroll 369 */ 370 int mMotionViewNewTop; 371 372 /** 373 * The X value associated with the the down motion event 374 */ 375 int mMotionX; 376 377 /** 378 * The Y value associated with the the down motion event 379 */ 380 int mMotionY; 381 382 /** 383 * One of TOUCH_MODE_REST, TOUCH_MODE_DOWN, TOUCH_MODE_TAP, TOUCH_MODE_SCROLL, or 384 * TOUCH_MODE_DONE_WAITING 385 */ 386 int mTouchMode = TOUCH_MODE_REST; 387 388 /** 389 * Y value from on the previous motion event (if any) 390 */ 391 int mLastY; 392 393 /** 394 * How far the finger moved before we started scrolling 395 */ 396 int mMotionCorrection; 397 398 /** 399 * Determines speed during touch scrolling 400 */ 401 private VelocityTracker mVelocityTracker; 402 403 /** 404 * Handles one frame of a fling 405 */ 406 private FlingRunnable mFlingRunnable; 407 408 /** 409 * Handles scrolling between positions within the list. 410 */ 411 PositionScroller mPositionScroller; 412 413 /** 414 * The offset in pixels form the top of the AdapterView to the top 415 * of the currently selected view. Used to save and restore state. 416 */ 417 int mSelectedTop = 0; 418 419 /** 420 * Indicates whether the list is stacked from the bottom edge or 421 * the top edge. 422 */ 423 boolean mStackFromBottom; 424 425 /** 426 * When set to true, the list automatically discards the children's 427 * bitmap cache after scrolling. 428 */ 429 boolean mScrollingCacheEnabled; 430 431 /** 432 * Whether or not to enable the fast scroll feature on this list 433 */ 434 boolean mFastScrollEnabled; 435 436 /** 437 * Optional callback to notify client when scroll position has changed 438 */ 439 private OnScrollListener mOnScrollListener; 440 441 /** 442 * Keeps track of our accessory window 443 */ 444 PopupWindow mPopup; 445 446 /** 447 * Used with type filter window 448 */ 449 EditText mTextFilter; 450 451 /** 452 * Indicates whether to use pixels-based or position-based scrollbar 453 * properties. 454 */ 455 private boolean mSmoothScrollbarEnabled = true; 456 457 /** 458 * Indicates that this view supports filtering 459 */ 460 private boolean mTextFilterEnabled; 461 462 /** 463 * Indicates that this view is currently displaying a filtered view of the data 464 */ 465 private boolean mFiltered; 466 467 /** 468 * Rectangle used for hit testing children 469 */ 470 private Rect mTouchFrame; 471 472 /** 473 * The position to resurrect the selected position to. 474 */ 475 int mResurrectToPosition = INVALID_POSITION; 476 477 private ContextMenuInfo mContextMenuInfo = null; 478 479 /** 480 * Maximum distance to record overscroll 481 */ 482 int mOverscrollMax; 483 484 /** 485 * Content height divided by this is the overscroll limit. 486 */ 487 static final int OVERSCROLL_LIMIT_DIVISOR = 3; 488 489 /** 490 * How many positions in either direction we will search to try to 491 * find a checked item with a stable ID that moved position across 492 * a data set change. If the item isn't found it will be unselected. 493 */ 494 private static final int CHECK_POSITION_SEARCH_DISTANCE = 20; 495 496 /** 497 * Used to request a layout when we changed touch mode 498 */ 499 private static final int TOUCH_MODE_UNKNOWN = -1; 500 private static final int TOUCH_MODE_ON = 0; 501 private static final int TOUCH_MODE_OFF = 1; 502 503 private int mLastTouchMode = TOUCH_MODE_UNKNOWN; 504 505 private static final boolean PROFILE_SCROLLING = false; 506 private boolean mScrollProfilingStarted = false; 507 508 private static final boolean PROFILE_FLINGING = false; 509 private boolean mFlingProfilingStarted = false; 510 511 /** 512 * The StrictMode "critical time span" objects to catch animation 513 * stutters. Non-null when a time-sensitive animation is 514 * in-flight. Must call finish() on them when done animating. 515 * These are no-ops on user builds. 516 */ 517 private StrictMode.Span mScrollStrictSpan = null; 518 private StrictMode.Span mFlingStrictSpan = null; 519 520 /** 521 * The last CheckForLongPress runnable we posted, if any 522 */ 523 private CheckForLongPress mPendingCheckForLongPress; 524 525 /** 526 * The last CheckForTap runnable we posted, if any 527 */ 528 private Runnable mPendingCheckForTap; 529 530 /** 531 * The last CheckForKeyLongPress runnable we posted, if any 532 */ 533 private CheckForKeyLongPress mPendingCheckForKeyLongPress; 534 535 /** 536 * Acts upon click 537 */ 538 private AbsListView.PerformClick mPerformClick; 539 540 /** 541 * Delayed action for touch mode. 542 */ 543 private Runnable mTouchModeReset; 544 545 /** 546 * This view is in transcript mode -- it shows the bottom of the list when the data 547 * changes 548 */ 549 private int mTranscriptMode; 550 551 /** 552 * Indicates that this list is always drawn on top of a solid, single-color, opaque 553 * background 554 */ 555 private int mCacheColorHint; 556 557 /** 558 * The select child's view (from the adapter's getView) is enabled. 559 */ 560 private boolean mIsChildViewEnabled; 561 562 /** 563 * The last scroll state reported to clients through {@link OnScrollListener}. 564 */ 565 private int mLastScrollState = OnScrollListener.SCROLL_STATE_IDLE; 566 567 /** 568 * Helper object that renders and controls the fast scroll thumb. 569 */ 570 private FastScroller mFastScroller; 571 572 private boolean mGlobalLayoutListenerAddedFilter; 573 574 private int mTouchSlop; 575 private float mDensityScale; 576 577 private InputConnection mDefInputConnection; 578 private InputConnectionWrapper mPublicInputConnection; 579 580 private Runnable mClearScrollingCache; 581 Runnable mPositionScrollAfterLayout; 582 private int mMinimumVelocity; 583 private int mMaximumVelocity; 584 private float mVelocityScale = 1.0f; 585 586 final boolean[] mIsScrap = new boolean[1]; 587 588 // True when the popup should be hidden because of a call to 589 // dispatchDisplayHint() 590 private boolean mPopupHidden; 591 592 /** 593 * ID of the active pointer. This is used to retain consistency during 594 * drags/flings if multiple pointers are used. 595 */ 596 private int mActivePointerId = INVALID_POINTER; 597 598 /** 599 * Sentinel value for no current active pointer. 600 * Used by {@link #mActivePointerId}. 601 */ 602 private static final int INVALID_POINTER = -1; 603 604 /** 605 * Maximum distance to overscroll by during edge effects 606 */ 607 int mOverscrollDistance; 608 609 /** 610 * Maximum distance to overfling during edge effects 611 */ 612 int mOverflingDistance; 613 614 // These two EdgeGlows are always set and used together. 615 // Checking one for null is as good as checking both. 616 617 /** 618 * Tracks the state of the top edge glow. 619 */ 620 private EdgeEffect mEdgeGlowTop; 621 622 /** 623 * Tracks the state of the bottom edge glow. 624 */ 625 private EdgeEffect mEdgeGlowBottom; 626 627 /** 628 * An estimate of how many pixels are between the top of the list and 629 * the top of the first position in the adapter, based on the last time 630 * we saw it. Used to hint where to draw edge glows. 631 */ 632 private int mFirstPositionDistanceGuess; 633 634 /** 635 * An estimate of how many pixels are between the bottom of the list and 636 * the bottom of the last position in the adapter, based on the last time 637 * we saw it. Used to hint where to draw edge glows. 638 */ 639 private int mLastPositionDistanceGuess; 640 641 /** 642 * Used for determining when to cancel out of overscroll. 643 */ 644 private int mDirection = 0; 645 646 /** 647 * Tracked on measurement in transcript mode. Makes sure that we can still pin to 648 * the bottom correctly on resizes. 649 */ 650 private boolean mForceTranscriptScroll; 651 652 private int mGlowPaddingLeft; 653 private int mGlowPaddingRight; 654 655 /** 656 * Used for interacting with list items from an accessibility service. 657 */ 658 private ListItemAccessibilityDelegate mAccessibilityDelegate; 659 660 private int mLastAccessibilityScrollEventFromIndex; 661 private int mLastAccessibilityScrollEventToIndex; 662 663 /** 664 * Track if we are currently attached to a window. 665 */ 666 boolean mIsAttached; 667 668 /** 669 * Track the item count from the last time we handled a data change. 670 */ 671 private int mLastHandledItemCount; 672 673 /** 674 * Used for smooth scrolling at a consistent rate 675 */ 676 static final Interpolator sLinearInterpolator = new LinearInterpolator(); 677 678 /** 679 * The saved state that we will be restoring from when we next sync. 680 * Kept here so that if we happen to be asked to save our state before 681 * the sync happens, we can return this existing data rather than losing 682 * it. 683 */ 684 private SavedState mPendingSync; 685 686 /** 687 * Interface definition for a callback to be invoked when the list or grid 688 * has been scrolled. 689 */ 690 public interface OnScrollListener { 691 692 /** 693 * The view is not scrolling. Note navigating the list using the trackball counts as 694 * being in the idle state since these transitions are not animated. 695 */ 696 public static int SCROLL_STATE_IDLE = 0; 697 698 /** 699 * The user is scrolling using touch, and their finger is still on the screen 700 */ 701 public static int SCROLL_STATE_TOUCH_SCROLL = 1; 702 703 /** 704 * The user had previously been scrolling using touch and had performed a fling. The 705 * animation is now coasting to a stop 706 */ 707 public static int SCROLL_STATE_FLING = 2; 708 709 /** 710 * Callback method to be invoked while the list view or grid view is being scrolled. If the 711 * view is being scrolled, this method will be called before the next frame of the scroll is 712 * rendered. In particular, it will be called before any calls to 713 * {@link Adapter#getView(int, View, ViewGroup)}. 714 * 715 * @param view The view whose scroll state is being reported 716 * 717 * @param scrollState The current scroll state. One of {@link #SCROLL_STATE_IDLE}, 718 * {@link #SCROLL_STATE_TOUCH_SCROLL} or {@link #SCROLL_STATE_IDLE}. 719 */ 720 public void onScrollStateChanged(AbsListView view, int scrollState); 721 722 /** 723 * Callback method to be invoked when the list or grid has been scrolled. This will be 724 * called after the scroll has completed 725 * @param view The view whose scroll state is being reported 726 * @param firstVisibleItem the index of the first visible cell (ignore if 727 * visibleItemCount == 0) 728 * @param visibleItemCount the number of visible cells 729 * @param totalItemCount the number of items in the list adaptor 730 */ 731 public void onScroll(AbsListView view, int firstVisibleItem, int visibleItemCount, 732 int totalItemCount); 733 } 734 735 /** 736 * The top-level view of a list item can implement this interface to allow 737 * itself to modify the bounds of the selection shown for that item. 738 */ 739 public interface SelectionBoundsAdjuster { 740 /** 741 * Called to allow the list item to adjust the bounds shown for 742 * its selection. 743 * 744 * @param bounds On call, this contains the bounds the list has 745 * selected for the item (that is the bounds of the entire view). The 746 * values can be modified as desired. 747 */ 748 public void adjustListItemSelectionBounds(Rect bounds); 749 } 750 751 public AbsListView(Context context) { 752 super(context); 753 initAbsListView(); 754 755 setVerticalScrollBarEnabled(true); 756 TypedArray a = context.obtainStyledAttributes(R.styleable.View); 757 initializeScrollbars(a); 758 a.recycle(); 759 } 760 761 public AbsListView(Context context, AttributeSet attrs) { 762 this(context, attrs, com.android.internal.R.attr.absListViewStyle); 763 } 764 765 public AbsListView(Context context, AttributeSet attrs, int defStyle) { 766 super(context, attrs, defStyle); 767 initAbsListView(); 768 769 TypedArray a = context.obtainStyledAttributes(attrs, 770 com.android.internal.R.styleable.AbsListView, defStyle, 0); 771 772 Drawable d = a.getDrawable(com.android.internal.R.styleable.AbsListView_listSelector); 773 if (d != null) { 774 setSelector(d); 775 } 776 777 mDrawSelectorOnTop = a.getBoolean( 778 com.android.internal.R.styleable.AbsListView_drawSelectorOnTop, false); 779 780 boolean stackFromBottom = a.getBoolean(R.styleable.AbsListView_stackFromBottom, false); 781 setStackFromBottom(stackFromBottom); 782 783 boolean scrollingCacheEnabled = a.getBoolean(R.styleable.AbsListView_scrollingCache, true); 784 setScrollingCacheEnabled(scrollingCacheEnabled); 785 786 boolean useTextFilter = a.getBoolean(R.styleable.AbsListView_textFilterEnabled, false); 787 setTextFilterEnabled(useTextFilter); 788 789 int transcriptMode = a.getInt(R.styleable.AbsListView_transcriptMode, 790 TRANSCRIPT_MODE_DISABLED); 791 setTranscriptMode(transcriptMode); 792 793 int color = a.getColor(R.styleable.AbsListView_cacheColorHint, 0); 794 setCacheColorHint(color); 795 796 boolean enableFastScroll = a.getBoolean(R.styleable.AbsListView_fastScrollEnabled, false); 797 setFastScrollEnabled(enableFastScroll); 798 799 boolean smoothScrollbar = a.getBoolean(R.styleable.AbsListView_smoothScrollbar, true); 800 setSmoothScrollbarEnabled(smoothScrollbar); 801 802 setChoiceMode(a.getInt(R.styleable.AbsListView_choiceMode, CHOICE_MODE_NONE)); 803 setFastScrollAlwaysVisible( 804 a.getBoolean(R.styleable.AbsListView_fastScrollAlwaysVisible, false)); 805 806 a.recycle(); 807 } 808 809 private void initAbsListView() { 810 // Setting focusable in touch mode will set the focusable property to true 811 setClickable(true); 812 setFocusableInTouchMode(true); 813 setWillNotDraw(false); 814 setAlwaysDrawnWithCacheEnabled(false); 815 setScrollingCacheEnabled(true); 816 817 final ViewConfiguration configuration = ViewConfiguration.get(mContext); 818 mTouchSlop = configuration.getScaledTouchSlop(); 819 mMinimumVelocity = configuration.getScaledMinimumFlingVelocity(); 820 mMaximumVelocity = configuration.getScaledMaximumFlingVelocity(); 821 mOverscrollDistance = configuration.getScaledOverscrollDistance(); 822 mOverflingDistance = configuration.getScaledOverflingDistance(); 823 824 mDensityScale = getContext().getResources().getDisplayMetrics().density; 825 } 826 827 @Override 828 public void setOverScrollMode(int mode) { 829 if (mode != OVER_SCROLL_NEVER) { 830 if (mEdgeGlowTop == null) { 831 Context context = getContext(); 832 mEdgeGlowTop = new EdgeEffect(context); 833 mEdgeGlowBottom = new EdgeEffect(context); 834 } 835 } else { 836 mEdgeGlowTop = null; 837 mEdgeGlowBottom = null; 838 } 839 super.setOverScrollMode(mode); 840 } 841 842 /** 843 * {@inheritDoc} 844 */ 845 @Override 846 public void setAdapter(ListAdapter adapter) { 847 if (adapter != null) { 848 mAdapterHasStableIds = mAdapter.hasStableIds(); 849 if (mChoiceMode != CHOICE_MODE_NONE && mAdapterHasStableIds && 850 mCheckedIdStates == null) { 851 mCheckedIdStates = new LongSparseArray<Integer>(); 852 } 853 } 854 855 if (mCheckStates != null) { 856 mCheckStates.clear(); 857 } 858 859 if (mCheckedIdStates != null) { 860 mCheckedIdStates.clear(); 861 } 862 } 863 864 /** 865 * Returns the number of items currently selected. This will only be valid 866 * if the choice mode is not {@link #CHOICE_MODE_NONE} (default). 867 * 868 * <p>To determine the specific items that are currently selected, use one of 869 * the <code>getChecked*</code> methods. 870 * 871 * @return The number of items currently selected 872 * 873 * @see #getCheckedItemPosition() 874 * @see #getCheckedItemPositions() 875 * @see #getCheckedItemIds() 876 */ 877 public int getCheckedItemCount() { 878 return mCheckedItemCount; 879 } 880 881 /** 882 * Returns the checked state of the specified position. The result is only 883 * valid if the choice mode has been set to {@link #CHOICE_MODE_SINGLE} 884 * or {@link #CHOICE_MODE_MULTIPLE}. 885 * 886 * @param position The item whose checked state to return 887 * @return The item's checked state or <code>false</code> if choice mode 888 * is invalid 889 * 890 * @see #setChoiceMode(int) 891 */ 892 public boolean isItemChecked(int position) { 893 if (mChoiceMode != CHOICE_MODE_NONE && mCheckStates != null) { 894 return mCheckStates.get(position); 895 } 896 897 return false; 898 } 899 900 /** 901 * Returns the currently checked item. The result is only valid if the choice 902 * mode has been set to {@link #CHOICE_MODE_SINGLE}. 903 * 904 * @return The position of the currently checked item or 905 * {@link #INVALID_POSITION} if nothing is selected 906 * 907 * @see #setChoiceMode(int) 908 */ 909 public int getCheckedItemPosition() { 910 if (mChoiceMode == CHOICE_MODE_SINGLE && mCheckStates != null && mCheckStates.size() == 1) { 911 return mCheckStates.keyAt(0); 912 } 913 914 return INVALID_POSITION; 915 } 916 917 /** 918 * Returns the set of checked items in the list. The result is only valid if 919 * the choice mode has not been set to {@link #CHOICE_MODE_NONE}. 920 * 921 * @return A SparseBooleanArray which will return true for each call to 922 * get(int position) where position is a position in the list, 923 * or <code>null</code> if the choice mode is set to 924 * {@link #CHOICE_MODE_NONE}. 925 */ 926 public SparseBooleanArray getCheckedItemPositions() { 927 if (mChoiceMode != CHOICE_MODE_NONE) { 928 return mCheckStates; 929 } 930 return null; 931 } 932 933 /** 934 * Returns the set of checked items ids. The result is only valid if the 935 * choice mode has not been set to {@link #CHOICE_MODE_NONE} and the adapter 936 * has stable IDs. ({@link ListAdapter#hasStableIds()} == {@code true}) 937 * 938 * @return A new array which contains the id of each checked item in the 939 * list. 940 */ 941 public long[] getCheckedItemIds() { 942 if (mChoiceMode == CHOICE_MODE_NONE || mCheckedIdStates == null || mAdapter == null) { 943 return new long[0]; 944 } 945 946 final LongSparseArray<Integer> idStates = mCheckedIdStates; 947 final int count = idStates.size(); 948 final long[] ids = new long[count]; 949 950 for (int i = 0; i < count; i++) { 951 ids[i] = idStates.keyAt(i); 952 } 953 954 return ids; 955 } 956 957 /** 958 * Clear any choices previously set 959 */ 960 public void clearChoices() { 961 if (mCheckStates != null) { 962 mCheckStates.clear(); 963 } 964 if (mCheckedIdStates != null) { 965 mCheckedIdStates.clear(); 966 } 967 mCheckedItemCount = 0; 968 } 969 970 /** 971 * Sets the checked state of the specified position. The is only valid if 972 * the choice mode has been set to {@link #CHOICE_MODE_SINGLE} or 973 * {@link #CHOICE_MODE_MULTIPLE}. 974 * 975 * @param position The item whose checked state is to be checked 976 * @param value The new checked state for the item 977 */ 978 public void setItemChecked(int position, boolean value) { 979 if (mChoiceMode == CHOICE_MODE_NONE) { 980 return; 981 } 982 983 // Start selection mode if needed. We don't need to if we're unchecking something. 984 if (value && mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL && mChoiceActionMode == null) { 985 if (mMultiChoiceModeCallback == null || 986 !mMultiChoiceModeCallback.hasWrappedCallback()) { 987 throw new IllegalStateException("AbsListView: attempted to start selection mode " + 988 "for CHOICE_MODE_MULTIPLE_MODAL but no choice mode callback was " + 989 "supplied. Call setMultiChoiceModeListener to set a callback."); 990 } 991 mChoiceActionMode = startActionMode(mMultiChoiceModeCallback); 992 } 993 994 if (mChoiceMode == CHOICE_MODE_MULTIPLE || mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL) { 995 boolean oldValue = mCheckStates.get(position); 996 mCheckStates.put(position, value); 997 if (mCheckedIdStates != null && mAdapter.hasStableIds()) { 998 if (value) { 999 mCheckedIdStates.put(mAdapter.getItemId(position), position); 1000 } else { 1001 mCheckedIdStates.delete(mAdapter.getItemId(position)); 1002 } 1003 } 1004 if (oldValue != value) { 1005 if (value) { 1006 mCheckedItemCount++; 1007 } else { 1008 mCheckedItemCount--; 1009 } 1010 } 1011 if (mChoiceActionMode != null) { 1012 final long id = mAdapter.getItemId(position); 1013 mMultiChoiceModeCallback.onItemCheckedStateChanged(mChoiceActionMode, 1014 position, id, value); 1015 } 1016 } else { 1017 boolean updateIds = mCheckedIdStates != null && mAdapter.hasStableIds(); 1018 // Clear all values if we're checking something, or unchecking the currently 1019 // selected item 1020 if (value || isItemChecked(position)) { 1021 mCheckStates.clear(); 1022 if (updateIds) { 1023 mCheckedIdStates.clear(); 1024 } 1025 } 1026 // this may end up selecting the value we just cleared but this way 1027 // we ensure length of mCheckStates is 1, a fact getCheckedItemPosition relies on 1028 if (value) { 1029 mCheckStates.put(position, true); 1030 if (updateIds) { 1031 mCheckedIdStates.put(mAdapter.getItemId(position), position); 1032 } 1033 mCheckedItemCount = 1; 1034 } else if (mCheckStates.size() == 0 || !mCheckStates.valueAt(0)) { 1035 mCheckedItemCount = 0; 1036 } 1037 } 1038 1039 // Do not generate a data change while we are in the layout phase 1040 if (!mInLayout && !mBlockLayoutRequests) { 1041 mDataChanged = true; 1042 rememberSyncState(); 1043 requestLayout(); 1044 } 1045 } 1046 1047 @Override 1048 public boolean performItemClick(View view, int position, long id) { 1049 boolean handled = false; 1050 boolean dispatchItemClick = true; 1051 1052 if (mChoiceMode != CHOICE_MODE_NONE) { 1053 handled = true; 1054 boolean checkedStateChanged = false; 1055 1056 if (mChoiceMode == CHOICE_MODE_MULTIPLE || 1057 (mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL && mChoiceActionMode != null)) { 1058 boolean checked = !mCheckStates.get(position, false); 1059 mCheckStates.put(position, checked); 1060 if (mCheckedIdStates != null && mAdapter.hasStableIds()) { 1061 if (checked) { 1062 mCheckedIdStates.put(mAdapter.getItemId(position), position); 1063 } else { 1064 mCheckedIdStates.delete(mAdapter.getItemId(position)); 1065 } 1066 } 1067 if (checked) { 1068 mCheckedItemCount++; 1069 } else { 1070 mCheckedItemCount--; 1071 } 1072 if (mChoiceActionMode != null) { 1073 mMultiChoiceModeCallback.onItemCheckedStateChanged(mChoiceActionMode, 1074 position, id, checked); 1075 dispatchItemClick = false; 1076 } 1077 checkedStateChanged = true; 1078 } else if (mChoiceMode == CHOICE_MODE_SINGLE) { 1079 boolean checked = !mCheckStates.get(position, false); 1080 if (checked) { 1081 mCheckStates.clear(); 1082 mCheckStates.put(position, true); 1083 if (mCheckedIdStates != null && mAdapter.hasStableIds()) { 1084 mCheckedIdStates.clear(); 1085 mCheckedIdStates.put(mAdapter.getItemId(position), position); 1086 } 1087 mCheckedItemCount = 1; 1088 } else if (mCheckStates.size() == 0 || !mCheckStates.valueAt(0)) { 1089 mCheckedItemCount = 0; 1090 } 1091 checkedStateChanged = true; 1092 } 1093 1094 if (checkedStateChanged) { 1095 updateOnScreenCheckedViews(); 1096 } 1097 } 1098 1099 if (dispatchItemClick) { 1100 handled |= super.performItemClick(view, position, id); 1101 } 1102 1103 return handled; 1104 } 1105 1106 /** 1107 * Perform a quick, in-place update of the checked or activated state 1108 * on all visible item views. This should only be called when a valid 1109 * choice mode is active. 1110 */ 1111 private void updateOnScreenCheckedViews() { 1112 final int firstPos = mFirstPosition; 1113 final int count = getChildCount(); 1114 final boolean useActivated = getContext().getApplicationInfo().targetSdkVersion 1115 >= android.os.Build.VERSION_CODES.HONEYCOMB; 1116 for (int i = 0; i < count; i++) { 1117 final View child = getChildAt(i); 1118 final int position = firstPos + i; 1119 1120 if (child instanceof Checkable) { 1121 ((Checkable) child).setChecked(mCheckStates.get(position)); 1122 } else if (useActivated) { 1123 child.setActivated(mCheckStates.get(position)); 1124 } 1125 } 1126 } 1127 1128 /** 1129 * @see #setChoiceMode(int) 1130 * 1131 * @return The current choice mode 1132 */ 1133 public int getChoiceMode() { 1134 return mChoiceMode; 1135 } 1136 1137 /** 1138 * Defines the choice behavior for the List. By default, Lists do not have any choice behavior 1139 * ({@link #CHOICE_MODE_NONE}). By setting the choiceMode to {@link #CHOICE_MODE_SINGLE}, the 1140 * List allows up to one item to be in a chosen state. By setting the choiceMode to 1141 * {@link #CHOICE_MODE_MULTIPLE}, the list allows any number of items to be chosen. 1142 * 1143 * @param choiceMode One of {@link #CHOICE_MODE_NONE}, {@link #CHOICE_MODE_SINGLE}, or 1144 * {@link #CHOICE_MODE_MULTIPLE} 1145 */ 1146 public void setChoiceMode(int choiceMode) { 1147 mChoiceMode = choiceMode; 1148 if (mChoiceActionMode != null) { 1149 mChoiceActionMode.finish(); 1150 mChoiceActionMode = null; 1151 } 1152 if (mChoiceMode != CHOICE_MODE_NONE) { 1153 if (mCheckStates == null) { 1154 mCheckStates = new SparseBooleanArray(); 1155 } 1156 if (mCheckedIdStates == null && mAdapter != null && mAdapter.hasStableIds()) { 1157 mCheckedIdStates = new LongSparseArray<Integer>(); 1158 } 1159 // Modal multi-choice mode only has choices when the mode is active. Clear them. 1160 if (mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL) { 1161 clearChoices(); 1162 setLongClickable(true); 1163 } 1164 } 1165 } 1166 1167 /** 1168 * Set a {@link MultiChoiceModeListener} that will manage the lifecycle of the 1169 * selection {@link ActionMode}. Only used when the choice mode is set to 1170 * {@link #CHOICE_MODE_MULTIPLE_MODAL}. 1171 * 1172 * @param listener Listener that will manage the selection mode 1173 * 1174 * @see #setChoiceMode(int) 1175 */ 1176 public void setMultiChoiceModeListener(MultiChoiceModeListener listener) { 1177 if (mMultiChoiceModeCallback == null) { 1178 mMultiChoiceModeCallback = new MultiChoiceModeWrapper(); 1179 } 1180 mMultiChoiceModeCallback.setWrapped(listener); 1181 } 1182 1183 /** 1184 * @return true if all list content currently fits within the view boundaries 1185 */ 1186 private boolean contentFits() { 1187 final int childCount = getChildCount(); 1188 if (childCount == 0) return true; 1189 if (childCount != mItemCount) return false; 1190 1191 return getChildAt(0).getTop() >= mListPadding.top && 1192 getChildAt(childCount - 1).getBottom() <= getHeight() - mListPadding.bottom; 1193 } 1194 1195 /** 1196 * Enables fast scrolling by letting the user quickly scroll through lists by 1197 * dragging the fast scroll thumb. The adapter attached to the list may want 1198 * to implement {@link SectionIndexer} if it wishes to display alphabet preview and 1199 * jump between sections of the list. 1200 * @see SectionIndexer 1201 * @see #isFastScrollEnabled() 1202 * @param enabled whether or not to enable fast scrolling 1203 */ 1204 public void setFastScrollEnabled(boolean enabled) { 1205 mFastScrollEnabled = enabled; 1206 if (enabled) { 1207 if (mFastScroller == null) { 1208 mFastScroller = new FastScroller(getContext(), this); 1209 } 1210 } else { 1211 if (mFastScroller != null) { 1212 mFastScroller.stop(); 1213 mFastScroller = null; 1214 } 1215 } 1216 } 1217 1218 /** 1219 * Set whether or not the fast scroller should always be shown in place of the 1220 * standard scrollbars. Fast scrollers shown in this way will not fade out and will 1221 * be a permanent fixture within the list. Best combined with an inset scroll bar style 1222 * that will ensure enough padding. This will enable fast scrolling if it is not 1223 * already enabled. 1224 * 1225 * @param alwaysShow true if the fast scroller should always be displayed. 1226 * @see #setScrollBarStyle(int) 1227 * @see #setFastScrollEnabled(boolean) 1228 */ 1229 public void setFastScrollAlwaysVisible(boolean alwaysShow) { 1230 if (alwaysShow && !mFastScrollEnabled) { 1231 setFastScrollEnabled(true); 1232 } 1233 1234 if (mFastScroller != null) { 1235 mFastScroller.setAlwaysShow(alwaysShow); 1236 } 1237 1238 computeOpaqueFlags(); 1239 recomputePadding(); 1240 } 1241 1242 /** 1243 * Returns true if the fast scroller is set to always show on this view rather than 1244 * fade out when not in use. 1245 * 1246 * @return true if the fast scroller will always show. 1247 * @see #setFastScrollAlwaysVisible(boolean) 1248 */ 1249 public boolean isFastScrollAlwaysVisible() { 1250 return mFastScrollEnabled && mFastScroller.isAlwaysShowEnabled(); 1251 } 1252 1253 @Override 1254 public int getVerticalScrollbarWidth() { 1255 if (isFastScrollAlwaysVisible()) { 1256 return Math.max(super.getVerticalScrollbarWidth(), mFastScroller.getWidth()); 1257 } 1258 return super.getVerticalScrollbarWidth(); 1259 } 1260 1261 /** 1262 * Returns the current state of the fast scroll feature. 1263 * @see #setFastScrollEnabled(boolean) 1264 * @return true if fast scroll is enabled, false otherwise 1265 */ 1266 @ViewDebug.ExportedProperty 1267 public boolean isFastScrollEnabled() { 1268 return mFastScrollEnabled; 1269 } 1270 1271 @Override 1272 public void setVerticalScrollbarPosition(int position) { 1273 super.setVerticalScrollbarPosition(position); 1274 if (mFastScroller != null) { 1275 mFastScroller.setScrollbarPosition(position); 1276 } 1277 } 1278 1279 /** 1280 * If fast scroll is visible, then don't draw the vertical scrollbar. 1281 * @hide 1282 */ 1283 @Override 1284 protected boolean isVerticalScrollBarHidden() { 1285 return mFastScroller != null && mFastScroller.isVisible(); 1286 } 1287 1288 /** 1289 * When smooth scrollbar is enabled, the position and size of the scrollbar thumb 1290 * is computed based on the number of visible pixels in the visible items. This 1291 * however assumes that all list items have the same height. If you use a list in 1292 * which items have different heights, the scrollbar will change appearance as the 1293 * user scrolls through the list. To avoid this issue, you need to disable this 1294 * property. 1295 * 1296 * When smooth scrollbar is disabled, the position and size of the scrollbar thumb 1297 * is based solely on the number of items in the adapter and the position of the 1298 * visible items inside the adapter. This provides a stable scrollbar as the user 1299 * navigates through a list of items with varying heights. 1300 * 1301 * @param enabled Whether or not to enable smooth scrollbar. 1302 * 1303 * @see #setSmoothScrollbarEnabled(boolean) 1304 * @attr ref android.R.styleable#AbsListView_smoothScrollbar 1305 */ 1306 public void setSmoothScrollbarEnabled(boolean enabled) { 1307 mSmoothScrollbarEnabled = enabled; 1308 } 1309 1310 /** 1311 * Returns the current state of the fast scroll feature. 1312 * 1313 * @return True if smooth scrollbar is enabled is enabled, false otherwise. 1314 * 1315 * @see #setSmoothScrollbarEnabled(boolean) 1316 */ 1317 @ViewDebug.ExportedProperty 1318 public boolean isSmoothScrollbarEnabled() { 1319 return mSmoothScrollbarEnabled; 1320 } 1321 1322 /** 1323 * Set the listener that will receive notifications every time the list scrolls. 1324 * 1325 * @param l the scroll listener 1326 */ 1327 public void setOnScrollListener(OnScrollListener l) { 1328 mOnScrollListener = l; 1329 invokeOnItemScrollListener(); 1330 } 1331 1332 /** 1333 * Notify our scroll listener (if there is one) of a change in scroll state 1334 */ 1335 void invokeOnItemScrollListener() { 1336 if (mFastScroller != null) { 1337 mFastScroller.onScroll(this, mFirstPosition, getChildCount(), mItemCount); 1338 } 1339 if (mOnScrollListener != null) { 1340 mOnScrollListener.onScroll(this, mFirstPosition, getChildCount(), mItemCount); 1341 } 1342 onScrollChanged(0, 0, 0, 0); // dummy values, View's implementation does not use these. 1343 } 1344 1345 @Override 1346 public void sendAccessibilityEvent(int eventType) { 1347 // Since this class calls onScrollChanged even if the mFirstPosition and the 1348 // child count have not changed we will avoid sending duplicate accessibility 1349 // events. 1350 if (eventType == AccessibilityEvent.TYPE_VIEW_SCROLLED) { 1351 final int firstVisiblePosition = getFirstVisiblePosition(); 1352 final int lastVisiblePosition = getLastVisiblePosition(); 1353 if (mLastAccessibilityScrollEventFromIndex == firstVisiblePosition 1354 && mLastAccessibilityScrollEventToIndex == lastVisiblePosition) { 1355 return; 1356 } else { 1357 mLastAccessibilityScrollEventFromIndex = firstVisiblePosition; 1358 mLastAccessibilityScrollEventToIndex = lastVisiblePosition; 1359 } 1360 } 1361 super.sendAccessibilityEvent(eventType); 1362 } 1363 1364 @Override 1365 public void onInitializeAccessibilityEvent(AccessibilityEvent event) { 1366 super.onInitializeAccessibilityEvent(event); 1367 event.setClassName(AbsListView.class.getName()); 1368 } 1369 1370 @Override 1371 public void onInitializeAccessibilityNodeInfo(AccessibilityNodeInfo info) { 1372 super.onInitializeAccessibilityNodeInfo(info); 1373 info.setClassName(AbsListView.class.getName()); 1374 if (isEnabled()) { 1375 if (getFirstVisiblePosition() > 0) { 1376 info.addAction(AccessibilityNodeInfo.ACTION_SCROLL_BACKWARD); 1377 } 1378 if (getLastVisiblePosition() < getCount() - 1) { 1379 info.addAction(AccessibilityNodeInfo.ACTION_SCROLL_FORWARD); 1380 } 1381 } 1382 } 1383 1384 @Override 1385 public boolean performAccessibilityAction(int action, Bundle arguments) { 1386 if (super.performAccessibilityAction(action, arguments)) { 1387 return true; 1388 } 1389 switch (action) { 1390 case AccessibilityNodeInfo.ACTION_SCROLL_FORWARD: { 1391 if (isEnabled() && getLastVisiblePosition() < getCount() - 1) { 1392 final int viewportHeight = getHeight() - mListPadding.top - mListPadding.bottom; 1393 smoothScrollBy(viewportHeight, PositionScroller.SCROLL_DURATION); 1394 return true; 1395 } 1396 } return false; 1397 case AccessibilityNodeInfo.ACTION_SCROLL_BACKWARD: { 1398 if (isEnabled() && mFirstPosition > 0) { 1399 final int viewportHeight = getHeight() - mListPadding.top - mListPadding.bottom; 1400 smoothScrollBy(-viewportHeight, PositionScroller.SCROLL_DURATION); 1401 return true; 1402 } 1403 } return false; 1404 } 1405 return false; 1406 } 1407 1408 /** 1409 * Indicates whether the children's drawing cache is used during a scroll. 1410 * By default, the drawing cache is enabled but this will consume more memory. 1411 * 1412 * @return true if the scrolling cache is enabled, false otherwise 1413 * 1414 * @see #setScrollingCacheEnabled(boolean) 1415 * @see View#setDrawingCacheEnabled(boolean) 1416 */ 1417 @ViewDebug.ExportedProperty 1418 public boolean isScrollingCacheEnabled() { 1419 return mScrollingCacheEnabled; 1420 } 1421 1422 /** 1423 * Enables or disables the children's drawing cache during a scroll. 1424 * By default, the drawing cache is enabled but this will use more memory. 1425 * 1426 * When the scrolling cache is enabled, the caches are kept after the 1427 * first scrolling. You can manually clear the cache by calling 1428 * {@link android.view.ViewGroup#setChildrenDrawingCacheEnabled(boolean)}. 1429 * 1430 * @param enabled true to enable the scroll cache, false otherwise 1431 * 1432 * @see #isScrollingCacheEnabled() 1433 * @see View#setDrawingCacheEnabled(boolean) 1434 */ 1435 public void setScrollingCacheEnabled(boolean enabled) { 1436 if (mScrollingCacheEnabled && !enabled) { 1437 clearScrollingCache(); 1438 } 1439 mScrollingCacheEnabled = enabled; 1440 } 1441 1442 /** 1443 * Enables or disables the type filter window. If enabled, typing when 1444 * this view has focus will filter the children to match the users input. 1445 * Note that the {@link Adapter} used by this view must implement the 1446 * {@link Filterable} interface. 1447 * 1448 * @param textFilterEnabled true to enable type filtering, false otherwise 1449 * 1450 * @see Filterable 1451 */ 1452 public void setTextFilterEnabled(boolean textFilterEnabled) { 1453 mTextFilterEnabled = textFilterEnabled; 1454 } 1455 1456 /** 1457 * Indicates whether type filtering is enabled for this view 1458 * 1459 * @return true if type filtering is enabled, false otherwise 1460 * 1461 * @see #setTextFilterEnabled(boolean) 1462 * @see Filterable 1463 */ 1464 @ViewDebug.ExportedProperty 1465 public boolean isTextFilterEnabled() { 1466 return mTextFilterEnabled; 1467 } 1468 1469 @Override 1470 public void getFocusedRect(Rect r) { 1471 View view = getSelectedView(); 1472 if (view != null && view.getParent() == this) { 1473 // the focused rectangle of the selected view offset into the 1474 // coordinate space of this view. 1475 view.getFocusedRect(r); 1476 offsetDescendantRectToMyCoords(view, r); 1477 } else { 1478 // otherwise, just the norm 1479 super.getFocusedRect(r); 1480 } 1481 } 1482 1483 private void useDefaultSelector() { 1484 setSelector(getResources().getDrawable( 1485 com.android.internal.R.drawable.list_selector_background)); 1486 } 1487 1488 /** 1489 * Indicates whether the content of this view is pinned to, or stacked from, 1490 * the bottom edge. 1491 * 1492 * @return true if the content is stacked from the bottom edge, false otherwise 1493 */ 1494 @ViewDebug.ExportedProperty 1495 public boolean isStackFromBottom() { 1496 return mStackFromBottom; 1497 } 1498 1499 /** 1500 * When stack from bottom is set to true, the list fills its content starting from 1501 * the bottom of the view. 1502 * 1503 * @param stackFromBottom true to pin the view's content to the bottom edge, 1504 * false to pin the view's content to the top edge 1505 */ 1506 public void setStackFromBottom(boolean stackFromBottom) { 1507 if (mStackFromBottom != stackFromBottom) { 1508 mStackFromBottom = stackFromBottom; 1509 requestLayoutIfNecessary(); 1510 } 1511 } 1512 1513 void requestLayoutIfNecessary() { 1514 if (getChildCount() > 0) { 1515 resetList(); 1516 requestLayout(); 1517 invalidate(); 1518 } 1519 } 1520 1521 static class SavedState extends BaseSavedState { 1522 long selectedId; 1523 long firstId; 1524 int viewTop; 1525 int position; 1526 int height; 1527 String filter; 1528 boolean inActionMode; 1529 int checkedItemCount; 1530 SparseBooleanArray checkState; 1531 LongSparseArray<Integer> checkIdState; 1532 1533 /** 1534 * Constructor called from {@link AbsListView#onSaveInstanceState()} 1535 */ 1536 SavedState(Parcelable superState) { 1537 super(superState); 1538 } 1539 1540 /** 1541 * Constructor called from {@link #CREATOR} 1542 */ 1543 private SavedState(Parcel in) { 1544 super(in); 1545 selectedId = in.readLong(); 1546 firstId = in.readLong(); 1547 viewTop = in.readInt(); 1548 position = in.readInt(); 1549 height = in.readInt(); 1550 filter = in.readString(); 1551 inActionMode = in.readByte() != 0; 1552 checkedItemCount = in.readInt(); 1553 checkState = in.readSparseBooleanArray(); 1554 final int N = in.readInt(); 1555 if (N > 0) { 1556 checkIdState = new LongSparseArray<Integer>(); 1557 for (int i=0; i<N; i++) { 1558 final long key = in.readLong(); 1559 final int value = in.readInt(); 1560 checkIdState.put(key, value); 1561 } 1562 } 1563 } 1564 1565 @Override 1566 public void writeToParcel(Parcel out, int flags) { 1567 super.writeToParcel(out, flags); 1568 out.writeLong(selectedId); 1569 out.writeLong(firstId); 1570 out.writeInt(viewTop); 1571 out.writeInt(position); 1572 out.writeInt(height); 1573 out.writeString(filter); 1574 out.writeByte((byte) (inActionMode ? 1 : 0)); 1575 out.writeInt(checkedItemCount); 1576 out.writeSparseBooleanArray(checkState); 1577 final int N = checkIdState != null ? checkIdState.size() : 0; 1578 out.writeInt(N); 1579 for (int i=0; i<N; i++) { 1580 out.writeLong(checkIdState.keyAt(i)); 1581 out.writeInt(checkIdState.valueAt(i)); 1582 } 1583 } 1584 1585 @Override 1586 public String toString() { 1587 return "AbsListView.SavedState{" 1588 + Integer.toHexString(System.identityHashCode(this)) 1589 + " selectedId=" + selectedId 1590 + " firstId=" + firstId 1591 + " viewTop=" + viewTop 1592 + " position=" + position 1593 + " height=" + height 1594 + " filter=" + filter 1595 + " checkState=" + checkState + "}"; 1596 } 1597 1598 public static final Parcelable.Creator<SavedState> CREATOR 1599 = new Parcelable.Creator<SavedState>() { 1600 public SavedState createFromParcel(Parcel in) { 1601 return new SavedState(in); 1602 } 1603 1604 public SavedState[] newArray(int size) { 1605 return new SavedState[size]; 1606 } 1607 }; 1608 } 1609 1610 @Override 1611 public Parcelable onSaveInstanceState() { 1612 /* 1613 * This doesn't really make sense as the place to dismiss the 1614 * popups, but there don't seem to be any other useful hooks 1615 * that happen early enough to keep from getting complaints 1616 * about having leaked the window. 1617 */ 1618 dismissPopup(); 1619 1620 Parcelable superState = super.onSaveInstanceState(); 1621 1622 SavedState ss = new SavedState(superState); 1623 1624 if (mPendingSync != null) { 1625 // Just keep what we last restored. 1626 ss.selectedId = mPendingSync.selectedId; 1627 ss.firstId = mPendingSync.firstId; 1628 ss.viewTop = mPendingSync.viewTop; 1629 ss.position = mPendingSync.position; 1630 ss.height = mPendingSync.height; 1631 ss.filter = mPendingSync.filter; 1632 ss.inActionMode = mPendingSync.inActionMode; 1633 ss.checkedItemCount = mPendingSync.checkedItemCount; 1634 ss.checkState = mPendingSync.checkState; 1635 ss.checkIdState = mPendingSync.checkIdState; 1636 return ss; 1637 } 1638 1639 boolean haveChildren = getChildCount() > 0 && mItemCount > 0; 1640 long selectedId = getSelectedItemId(); 1641 ss.selectedId = selectedId; 1642 ss.height = getHeight(); 1643 1644 if (selectedId >= 0) { 1645 // Remember the selection 1646 ss.viewTop = mSelectedTop; 1647 ss.position = getSelectedItemPosition(); 1648 ss.firstId = INVALID_POSITION; 1649 } else { 1650 if (haveChildren && mFirstPosition > 0) { 1651 // Remember the position of the first child. 1652 // We only do this if we are not currently at the top of 1653 // the list, for two reasons: 1654 // (1) The list may be in the process of becoming empty, in 1655 // which case mItemCount may not be 0, but if we try to 1656 // ask for any information about position 0 we will crash. 1657 // (2) Being "at the top" seems like a special case, anyway, 1658 // and the user wouldn't expect to end up somewhere else when 1659 // they revisit the list even if its content has changed. 1660 View v = getChildAt(0); 1661 ss.viewTop = v.getTop(); 1662 int firstPos = mFirstPosition; 1663 if (firstPos >= mItemCount) { 1664 firstPos = mItemCount - 1; 1665 } 1666 ss.position = firstPos; 1667 ss.firstId = mAdapter.getItemId(firstPos); 1668 } else { 1669 ss.viewTop = 0; 1670 ss.firstId = INVALID_POSITION; 1671 ss.position = 0; 1672 } 1673 } 1674 1675 ss.filter = null; 1676 if (mFiltered) { 1677 final EditText textFilter = mTextFilter; 1678 if (textFilter != null) { 1679 Editable filterText = textFilter.getText(); 1680 if (filterText != null) { 1681 ss.filter = filterText.toString(); 1682 } 1683 } 1684 } 1685 1686 ss.inActionMode = mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL && mChoiceActionMode != null; 1687 1688 if (mCheckStates != null) { 1689 ss.checkState = mCheckStates.clone(); 1690 } 1691 if (mCheckedIdStates != null) { 1692 final LongSparseArray<Integer> idState = new LongSparseArray<Integer>(); 1693 final int count = mCheckedIdStates.size(); 1694 for (int i = 0; i < count; i++) { 1695 idState.put(mCheckedIdStates.keyAt(i), mCheckedIdStates.valueAt(i)); 1696 } 1697 ss.checkIdState = idState; 1698 } 1699 ss.checkedItemCount = mCheckedItemCount; 1700 1701 if (mRemoteAdapter != null) { 1702 mRemoteAdapter.saveRemoteViewsCache(); 1703 } 1704 1705 return ss; 1706 } 1707 1708 @Override 1709 public void onRestoreInstanceState(Parcelable state) { 1710 SavedState ss = (SavedState) state; 1711 1712 super.onRestoreInstanceState(ss.getSuperState()); 1713 mDataChanged = true; 1714 1715 mSyncHeight = ss.height; 1716 1717 if (ss.selectedId >= 0) { 1718 mNeedSync = true; 1719 mPendingSync = ss; 1720 mSyncRowId = ss.selectedId; 1721 mSyncPosition = ss.position; 1722 mSpecificTop = ss.viewTop; 1723 mSyncMode = SYNC_SELECTED_POSITION; 1724 } else if (ss.firstId >= 0) { 1725 setSelectedPositionInt(INVALID_POSITION); 1726 // Do this before setting mNeedSync since setNextSelectedPosition looks at mNeedSync 1727 setNextSelectedPositionInt(INVALID_POSITION); 1728 mSelectorPosition = INVALID_POSITION; 1729 mNeedSync = true; 1730 mPendingSync = ss; 1731 mSyncRowId = ss.firstId; 1732 mSyncPosition = ss.position; 1733 mSpecificTop = ss.viewTop; 1734 mSyncMode = SYNC_FIRST_POSITION; 1735 } 1736 1737 setFilterText(ss.filter); 1738 1739 if (ss.checkState != null) { 1740 mCheckStates = ss.checkState; 1741 } 1742 1743 if (ss.checkIdState != null) { 1744 mCheckedIdStates = ss.checkIdState; 1745 } 1746 1747 mCheckedItemCount = ss.checkedItemCount; 1748 1749 if (ss.inActionMode && mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL && 1750 mMultiChoiceModeCallback != null) { 1751 mChoiceActionMode = startActionMode(mMultiChoiceModeCallback); 1752 } 1753 1754 requestLayout(); 1755 } 1756 1757 private boolean acceptFilter() { 1758 return mTextFilterEnabled && getAdapter() instanceof Filterable && 1759 ((Filterable) getAdapter()).getFilter() != null; 1760 } 1761 1762 /** 1763 * Sets the initial value for the text filter. 1764 * @param filterText The text to use for the filter. 1765 * 1766 * @see #setTextFilterEnabled 1767 */ 1768 public void setFilterText(String filterText) { 1769 // TODO: Should we check for acceptFilter()? 1770 if (mTextFilterEnabled && !TextUtils.isEmpty(filterText)) { 1771 createTextFilter(false); 1772 // This is going to call our listener onTextChanged, but we might not 1773 // be ready to bring up a window yet 1774 mTextFilter.setText(filterText); 1775 mTextFilter.setSelection(filterText.length()); 1776 if (mAdapter instanceof Filterable) { 1777 // if mPopup is non-null, then onTextChanged will do the filtering 1778 if (mPopup == null) { 1779 Filter f = ((Filterable) mAdapter).getFilter(); 1780 f.filter(filterText); 1781 } 1782 // Set filtered to true so we will display the filter window when our main 1783 // window is ready 1784 mFiltered = true; 1785 mDataSetObserver.clearSavedState(); 1786 } 1787 } 1788 } 1789 1790 /** 1791 * Returns the list's text filter, if available. 1792 * @return the list's text filter or null if filtering isn't enabled 1793 */ 1794 public CharSequence getTextFilter() { 1795 if (mTextFilterEnabled && mTextFilter != null) { 1796 return mTextFilter.getText(); 1797 } 1798 return null; 1799 } 1800 1801 @Override 1802 protected void onFocusChanged(boolean gainFocus, int direction, Rect previouslyFocusedRect) { 1803 super.onFocusChanged(gainFocus, direction, previouslyFocusedRect); 1804 if (gainFocus && mSelectedPosition < 0 && !isInTouchMode()) { 1805 if (!mIsAttached && mAdapter != null) { 1806 // Data may have changed while we were detached and it's valid 1807 // to change focus while detached. Refresh so we don't die. 1808 mDataChanged = true; 1809 mOldItemCount = mItemCount; 1810 mItemCount = mAdapter.getCount(); 1811 } 1812 resurrectSelection(); 1813 } 1814 } 1815 1816 @Override 1817 public void requestLayout() { 1818 if (!mBlockLayoutRequests && !mInLayout) { 1819 super.requestLayout(); 1820 } 1821 } 1822 1823 /** 1824 * The list is empty. Clear everything out. 1825 */ 1826 void resetList() { 1827 removeAllViewsInLayout(); 1828 mFirstPosition = 0; 1829 mDataChanged = false; 1830 mPositionScrollAfterLayout = null; 1831 mNeedSync = false; 1832 mPendingSync = null; 1833 mOldSelectedPosition = INVALID_POSITION; 1834 mOldSelectedRowId = INVALID_ROW_ID; 1835 setSelectedPositionInt(INVALID_POSITION); 1836 setNextSelectedPositionInt(INVALID_POSITION); 1837 mSelectedTop = 0; 1838 mSelectorPosition = INVALID_POSITION; 1839 mSelectorRect.setEmpty(); 1840 invalidate(); 1841 } 1842 1843 @Override 1844 protected int computeVerticalScrollExtent() { 1845 final int count = getChildCount(); 1846 if (count > 0) { 1847 if (mSmoothScrollbarEnabled) { 1848 int extent = count * 100; 1849 1850 View view = getChildAt(0); 1851 final int top = view.getTop(); 1852 int height = view.getHeight(); 1853 if (height > 0) { 1854 extent += (top * 100) / height; 1855 } 1856 1857 view = getChildAt(count - 1); 1858 final int bottom = view.getBottom(); 1859 height = view.getHeight(); 1860 if (height > 0) { 1861 extent -= ((bottom - getHeight()) * 100) / height; 1862 } 1863 1864 return extent; 1865 } else { 1866 return 1; 1867 } 1868 } 1869 return 0; 1870 } 1871 1872 @Override 1873 protected int computeVerticalScrollOffset() { 1874 final int firstPosition = mFirstPosition; 1875 final int childCount = getChildCount(); 1876 if (firstPosition >= 0 && childCount > 0) { 1877 if (mSmoothScrollbarEnabled) { 1878 final View view = getChildAt(0); 1879 final int top = view.getTop(); 1880 int height = view.getHeight(); 1881 if (height > 0) { 1882 return Math.max(firstPosition * 100 - (top * 100) / height + 1883 (int)((float)mScrollY / getHeight() * mItemCount * 100), 0); 1884 } 1885 } else { 1886 int index; 1887 final int count = mItemCount; 1888 if (firstPosition == 0) { 1889 index = 0; 1890 } else if (firstPosition + childCount == count) { 1891 index = count; 1892 } else { 1893 index = firstPosition + childCount / 2; 1894 } 1895 return (int) (firstPosition + childCount * (index / (float) count)); 1896 } 1897 } 1898 return 0; 1899 } 1900 1901 @Override 1902 protected int computeVerticalScrollRange() { 1903 int result; 1904 if (mSmoothScrollbarEnabled) { 1905 result = Math.max(mItemCount * 100, 0); 1906 if (mScrollY != 0) { 1907 // Compensate for overscroll 1908 result += Math.abs((int) ((float) mScrollY / getHeight() * mItemCount * 100)); 1909 } 1910 } else { 1911 result = mItemCount; 1912 } 1913 return result; 1914 } 1915 1916 @Override 1917 protected float getTopFadingEdgeStrength() { 1918 final int count = getChildCount(); 1919 final float fadeEdge = super.getTopFadingEdgeStrength(); 1920 if (count == 0) { 1921 return fadeEdge; 1922 } else { 1923 if (mFirstPosition > 0) { 1924 return 1.0f; 1925 } 1926 1927 final int top = getChildAt(0).getTop(); 1928 final float fadeLength = (float) getVerticalFadingEdgeLength(); 1929 return top < mPaddingTop ? (float) -(top - mPaddingTop) / fadeLength : fadeEdge; 1930 } 1931 } 1932 1933 @Override 1934 protected float getBottomFadingEdgeStrength() { 1935 final int count = getChildCount(); 1936 final float fadeEdge = super.getBottomFadingEdgeStrength(); 1937 if (count == 0) { 1938 return fadeEdge; 1939 } else { 1940 if (mFirstPosition + count - 1 < mItemCount - 1) { 1941 return 1.0f; 1942 } 1943 1944 final int bottom = getChildAt(count - 1).getBottom(); 1945 final int height = getHeight(); 1946 final float fadeLength = (float) getVerticalFadingEdgeLength(); 1947 return bottom > height - mPaddingBottom ? 1948 (float) (bottom - height + mPaddingBottom) / fadeLength : fadeEdge; 1949 } 1950 } 1951 1952 @Override 1953 protected void onMeasure(int widthMeasureSpec, int heightMeasureSpec) { 1954 if (mSelector == null) { 1955 useDefaultSelector(); 1956 } 1957 final Rect listPadding = mListPadding; 1958 listPadding.left = mSelectionLeftPadding + mPaddingLeft; 1959 listPadding.top = mSelectionTopPadding + mPaddingTop; 1960 listPadding.right = mSelectionRightPadding + mPaddingRight; 1961 listPadding.bottom = mSelectionBottomPadding + mPaddingBottom; 1962 1963 // Check if our previous measured size was at a point where we should scroll later. 1964 if (mTranscriptMode == TRANSCRIPT_MODE_NORMAL) { 1965 final int childCount = getChildCount(); 1966 final int listBottom = getHeight() - getPaddingBottom(); 1967 final View lastChild = getChildAt(childCount - 1); 1968 final int lastBottom = lastChild != null ? lastChild.getBottom() : listBottom; 1969 mForceTranscriptScroll = mFirstPosition + childCount >= mLastHandledItemCount && 1970 lastBottom <= listBottom; 1971 } 1972 } 1973 1974 /** 1975 * Subclasses should NOT override this method but 1976 * {@link #layoutChildren()} instead. 1977 */ 1978 @Override 1979 protected void onLayout(boolean changed, int l, int t, int r, int b) { 1980 super.onLayout(changed, l, t, r, b); 1981 mInLayout = true; 1982 if (changed) { 1983 int childCount = getChildCount(); 1984 for (int i = 0; i < childCount; i++) { 1985 getChildAt(i).forceLayout(); 1986 } 1987 mRecycler.markChildrenDirty(); 1988 } 1989 1990 if (mFastScroller != null && mItemCount != mOldItemCount) { 1991 mFastScroller.onItemCountChanged(mOldItemCount, mItemCount); 1992 } 1993 1994 layoutChildren(); 1995 mInLayout = false; 1996 1997 mOverscrollMax = (b - t) / OVERSCROLL_LIMIT_DIVISOR; 1998 } 1999 2000 /** 2001 * @hide 2002 */ 2003 @Override 2004 protected boolean setFrame(int left, int top, int right, int bottom) { 2005 final boolean changed = super.setFrame(left, top, right, bottom); 2006 2007 if (changed) { 2008 // Reposition the popup when the frame has changed. This includes 2009 // translating the widget, not just changing its dimension. The 2010 // filter popup needs to follow the widget. 2011 final boolean visible = getWindowVisibility() == View.VISIBLE; 2012 if (mFiltered && visible && mPopup != null && mPopup.isShowing()) { 2013 positionPopup(); 2014 } 2015 } 2016 2017 return changed; 2018 } 2019 2020 /** 2021 * Subclasses must override this method to layout their children. 2022 */ 2023 protected void layoutChildren() { 2024 } 2025 2026 void updateScrollIndicators() { 2027 if (mScrollUp != null) { 2028 boolean canScrollUp; 2029 // 0th element is not visible 2030 canScrollUp = mFirstPosition > 0; 2031 2032 // ... Or top of 0th element is not visible 2033 if (!canScrollUp) { 2034 if (getChildCount() > 0) { 2035 View child = getChildAt(0); 2036 canScrollUp = child.getTop() < mListPadding.top; 2037 } 2038 } 2039 2040 mScrollUp.setVisibility(canScrollUp ? View.VISIBLE : View.INVISIBLE); 2041 } 2042 2043 if (mScrollDown != null) { 2044 boolean canScrollDown; 2045 int count = getChildCount(); 2046 2047 // Last item is not visible 2048 canScrollDown = (mFirstPosition + count) < mItemCount; 2049 2050 // ... Or bottom of the last element is not visible 2051 if (!canScrollDown && count > 0) { 2052 View child = getChildAt(count - 1); 2053 canScrollDown = child.getBottom() > mBottom - mListPadding.bottom; 2054 } 2055 2056 mScrollDown.setVisibility(canScrollDown ? View.VISIBLE : View.INVISIBLE); 2057 } 2058 } 2059 2060 @Override 2061 @ViewDebug.ExportedProperty 2062 public View getSelectedView() { 2063 if (mItemCount > 0 && mSelectedPosition >= 0) { 2064 return getChildAt(mSelectedPosition - mFirstPosition); 2065 } else { 2066 return null; 2067 } 2068 } 2069 2070 /** 2071 * List padding is the maximum of the normal view's padding and the padding of the selector. 2072 * 2073 * @see android.view.View#getPaddingTop() 2074 * @see #getSelector() 2075 * 2076 * @return The top list padding. 2077 */ 2078 public int getListPaddingTop() { 2079 return mListPadding.top; 2080 } 2081 2082 /** 2083 * List padding is the maximum of the normal view's padding and the padding of the selector. 2084 * 2085 * @see android.view.View#getPaddingBottom() 2086 * @see #getSelector() 2087 * 2088 * @return The bottom list padding. 2089 */ 2090 public int getListPaddingBottom() { 2091 return mListPadding.bottom; 2092 } 2093 2094 /** 2095 * List padding is the maximum of the normal view's padding and the padding of the selector. 2096 * 2097 * @see android.view.View#getPaddingLeft() 2098 * @see #getSelector() 2099 * 2100 * @return The left list padding. 2101 */ 2102 public int getListPaddingLeft() { 2103 return mListPadding.left; 2104 } 2105 2106 /** 2107 * List padding is the maximum of the normal view's padding and the padding of the selector. 2108 * 2109 * @see android.view.View#getPaddingRight() 2110 * @see #getSelector() 2111 * 2112 * @return The right list padding. 2113 */ 2114 public int getListPaddingRight() { 2115 return mListPadding.right; 2116 } 2117 2118 /** 2119 * Get a view and have it show the data associated with the specified 2120 * position. This is called when we have already discovered that the view is 2121 * not available for reuse in the recycle bin. The only choices left are 2122 * converting an old view or making a new one. 2123 * 2124 * @param position The position to display 2125 * @param isScrap Array of at least 1 boolean, the first entry will become true if 2126 * the returned view was taken from the scrap heap, false if otherwise. 2127 * 2128 * @return A view displaying the data associated with the specified position 2129 */ 2130 View obtainView(int position, boolean[] isScrap) { 2131 isScrap[0] = false; 2132 View scrapView; 2133 2134 scrapView = mRecycler.getTransientStateView(position); 2135 if (scrapView != null) { 2136 return scrapView; 2137 } 2138 2139 scrapView = mRecycler.getScrapView(position); 2140 2141 View child; 2142 if (scrapView != null) { 2143 child = mAdapter.getView(position, scrapView, this); 2144 2145 if (child.getImportantForAccessibility() == IMPORTANT_FOR_ACCESSIBILITY_AUTO) { 2146 child.setImportantForAccessibility(IMPORTANT_FOR_ACCESSIBILITY_YES); 2147 } 2148 2149 if (child != scrapView) { 2150 mRecycler.addScrapView(scrapView, position); 2151 if (mCacheColorHint != 0) { 2152 child.setDrawingCacheBackgroundColor(mCacheColorHint); 2153 } 2154 } else { 2155 isScrap[0] = true; 2156 child.dispatchFinishTemporaryDetach(); 2157 } 2158 } else { 2159 child = mAdapter.getView(position, null, this); 2160 2161 if (child.getImportantForAccessibility() == IMPORTANT_FOR_ACCESSIBILITY_AUTO) { 2162 child.setImportantForAccessibility(IMPORTANT_FOR_ACCESSIBILITY_YES); 2163 } 2164 2165 if (mCacheColorHint != 0) { 2166 child.setDrawingCacheBackgroundColor(mCacheColorHint); 2167 } 2168 } 2169 2170 if (mAdapterHasStableIds) { 2171 final ViewGroup.LayoutParams vlp = child.getLayoutParams(); 2172 LayoutParams lp; 2173 if (vlp == null) { 2174 lp = (LayoutParams) generateDefaultLayoutParams(); 2175 } else if (!checkLayoutParams(vlp)) { 2176 lp = (LayoutParams) generateLayoutParams(vlp); 2177 } else { 2178 lp = (LayoutParams) vlp; 2179 } 2180 lp.itemId = mAdapter.getItemId(position); 2181 child.setLayoutParams(lp); 2182 } 2183 2184 if (AccessibilityManager.getInstance(mContext).isEnabled()) { 2185 if (mAccessibilityDelegate == null) { 2186 mAccessibilityDelegate = new ListItemAccessibilityDelegate(); 2187 } 2188 if (child.getAccessibilityDelegate() == null) { 2189 child.setAccessibilityDelegate(mAccessibilityDelegate); 2190 } 2191 } 2192 2193 return child; 2194 } 2195 2196 class ListItemAccessibilityDelegate extends AccessibilityDelegate { 2197 @Override 2198 public void onInitializeAccessibilityNodeInfo(View host, AccessibilityNodeInfo info) { 2199 super.onInitializeAccessibilityNodeInfo(host, info); 2200 2201 final int position = getPositionForView(host); 2202 final ListAdapter adapter = getAdapter(); 2203 2204 if ((position == INVALID_POSITION) || (adapter == null)) { 2205 return; 2206 } 2207 2208 if (!isEnabled() || !adapter.isEnabled(position)) { 2209 return; 2210 } 2211 2212 if (position == getSelectedItemPosition()) { 2213 info.setSelected(true); 2214 info.addAction(AccessibilityNodeInfo.ACTION_CLEAR_SELECTION); 2215 } else { 2216 info.addAction(AccessibilityNodeInfo.ACTION_SELECT); 2217 } 2218 2219 if (isClickable()) { 2220 info.addAction(AccessibilityNodeInfo.ACTION_CLICK); 2221 info.setClickable(true); 2222 } 2223 2224 if (isLongClickable()) { 2225 info.addAction(AccessibilityNodeInfo.ACTION_LONG_CLICK); 2226 info.setLongClickable(true); 2227 } 2228 2229 } 2230 2231 @Override 2232 public boolean performAccessibilityAction(View host, int action, Bundle arguments) { 2233 if (super.performAccessibilityAction(host, action, arguments)) { 2234 return true; 2235 } 2236 2237 final int position = getPositionForView(host); 2238 final ListAdapter adapter = getAdapter(); 2239 2240 if ((position == INVALID_POSITION) || (adapter == null)) { 2241 // Cannot perform actions on invalid items. 2242 return false; 2243 } 2244 2245 if (!isEnabled() || !adapter.isEnabled(position)) { 2246 // Cannot perform actions on disabled items. 2247 return false; 2248 } 2249 2250 final long id = getItemIdAtPosition(position); 2251 2252 switch (action) { 2253 case AccessibilityNodeInfo.ACTION_CLEAR_SELECTION: { 2254 if (getSelectedItemPosition() == position) { 2255 setSelection(INVALID_POSITION); 2256 return true; 2257 } 2258 } return false; 2259 case AccessibilityNodeInfo.ACTION_SELECT: { 2260 if (getSelectedItemPosition() != position) { 2261 setSelection(position); 2262 return true; 2263 } 2264 } return false; 2265 case AccessibilityNodeInfo.ACTION_CLICK: { 2266 if (isClickable()) { 2267 return performItemClick(host, position, id); 2268 } 2269 } return false; 2270 case AccessibilityNodeInfo.ACTION_LONG_CLICK: { 2271 if (isLongClickable()) { 2272 return performLongPress(host, position, id); 2273 } 2274 } return false; 2275 } 2276 2277 return false; 2278 } 2279 } 2280 2281 void positionSelector(int position, View sel) { 2282 if (position != INVALID_POSITION) { 2283 mSelectorPosition = position; 2284 } 2285 2286 final Rect selectorRect = mSelectorRect; 2287 selectorRect.set(sel.getLeft(), sel.getTop(), sel.getRight(), sel.getBottom()); 2288 if (sel instanceof SelectionBoundsAdjuster) { 2289 ((SelectionBoundsAdjuster)sel).adjustListItemSelectionBounds(selectorRect); 2290 } 2291 positionSelector(selectorRect.left, selectorRect.top, selectorRect.right, 2292 selectorRect.bottom); 2293 2294 final boolean isChildViewEnabled = mIsChildViewEnabled; 2295 if (sel.isEnabled() != isChildViewEnabled) { 2296 mIsChildViewEnabled = !isChildViewEnabled; 2297 if (getSelectedItemPosition() != INVALID_POSITION) { 2298 refreshDrawableState(); 2299 } 2300 } 2301 } 2302 2303 private void positionSelector(int l, int t, int r, int b) { 2304 mSelectorRect.set(l - mSelectionLeftPadding, t - mSelectionTopPadding, r 2305 + mSelectionRightPadding, b + mSelectionBottomPadding); 2306 } 2307 2308 @Override 2309 protected void dispatchDraw(Canvas canvas) { 2310 int saveCount = 0; 2311 final boolean clipToPadding = (mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK; 2312 if (clipToPadding) { 2313 saveCount = canvas.save(); 2314 final int scrollX = mScrollX; 2315 final int scrollY = mScrollY; 2316 canvas.clipRect(scrollX + mPaddingLeft, scrollY + mPaddingTop, 2317 scrollX + mRight - mLeft - mPaddingRight, 2318 scrollY + mBottom - mTop - mPaddingBottom); 2319 mGroupFlags &= ~CLIP_TO_PADDING_MASK; 2320 } 2321 2322 final boolean drawSelectorOnTop = mDrawSelectorOnTop; 2323 if (!drawSelectorOnTop) { 2324 drawSelector(canvas); 2325 } 2326 2327 super.dispatchDraw(canvas); 2328 2329 if (drawSelectorOnTop) { 2330 drawSelector(canvas); 2331 } 2332 2333 if (clipToPadding) { 2334 canvas.restoreToCount(saveCount); 2335 mGroupFlags |= CLIP_TO_PADDING_MASK; 2336 } 2337 } 2338 2339 @Override 2340 protected boolean isPaddingOffsetRequired() { 2341 return (mGroupFlags & CLIP_TO_PADDING_MASK) != CLIP_TO_PADDING_MASK; 2342 } 2343 2344 @Override 2345 protected int getLeftPaddingOffset() { 2346 return (mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK ? 0 : -mPaddingLeft; 2347 } 2348 2349 @Override 2350 protected int getTopPaddingOffset() { 2351 return (mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK ? 0 : -mPaddingTop; 2352 } 2353 2354 @Override 2355 protected int getRightPaddingOffset() { 2356 return (mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK ? 0 : mPaddingRight; 2357 } 2358 2359 @Override 2360 protected int getBottomPaddingOffset() { 2361 return (mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK ? 0 : mPaddingBottom; 2362 } 2363 2364 @Override 2365 protected void onSizeChanged(int w, int h, int oldw, int oldh) { 2366 if (getChildCount() > 0) { 2367 mDataChanged = true; 2368 rememberSyncState(); 2369 } 2370 2371 if (mFastScroller != null) { 2372 mFastScroller.onSizeChanged(w, h, oldw, oldh); 2373 } 2374 } 2375 2376 /** 2377 * @return True if the current touch mode requires that we draw the selector in the pressed 2378 * state. 2379 */ 2380 boolean touchModeDrawsInPressedState() { 2381 // FIXME use isPressed for this 2382 switch (mTouchMode) { 2383 case TOUCH_MODE_TAP: 2384 case TOUCH_MODE_DONE_WAITING: 2385 return true; 2386 default: 2387 return false; 2388 } 2389 } 2390 2391 /** 2392 * Indicates whether this view is in a state where the selector should be drawn. This will 2393 * happen if we have focus but are not in touch mode, or we are in the middle of displaying 2394 * the pressed state for an item. 2395 * 2396 * @return True if the selector should be shown 2397 */ 2398 boolean shouldShowSelector() { 2399 return (hasFocus() && !isInTouchMode()) || touchModeDrawsInPressedState(); 2400 } 2401 2402 private void drawSelector(Canvas canvas) { 2403 if (!mSelectorRect.isEmpty()) { 2404 final Drawable selector = mSelector; 2405 selector.setBounds(mSelectorRect); 2406 selector.draw(canvas); 2407 } 2408 } 2409 2410 /** 2411 * Controls whether the selection highlight drawable should be drawn on top of the item or 2412 * behind it. 2413 * 2414 * @param onTop If true, the selector will be drawn on the item it is highlighting. The default 2415 * is false. 2416 * 2417 * @attr ref android.R.styleable#AbsListView_drawSelectorOnTop 2418 */ 2419 public void setDrawSelectorOnTop(boolean onTop) { 2420 mDrawSelectorOnTop = onTop; 2421 } 2422 2423 /** 2424 * Set a Drawable that should be used to highlight the currently selected item. 2425 * 2426 * @param resID A Drawable resource to use as the selection highlight. 2427 * 2428 * @attr ref android.R.styleable#AbsListView_listSelector 2429 */ 2430 public void setSelector(int resID) { 2431 setSelector(getResources().getDrawable(resID)); 2432 } 2433 2434 public void setSelector(Drawable sel) { 2435 if (mSelector != null) { 2436 mSelector.setCallback(null); 2437 unscheduleDrawable(mSelector); 2438 } 2439 mSelector = sel; 2440 Rect padding = new Rect(); 2441 sel.getPadding(padding); 2442 mSelectionLeftPadding = padding.left; 2443 mSelectionTopPadding = padding.top; 2444 mSelectionRightPadding = padding.right; 2445 mSelectionBottomPadding = padding.bottom; 2446 sel.setCallback(this); 2447 updateSelectorState(); 2448 } 2449 2450 /** 2451 * Returns the selector {@link android.graphics.drawable.Drawable} that is used to draw the 2452 * selection in the list. 2453 * 2454 * @return the drawable used to display the selector 2455 */ 2456 public Drawable getSelector() { 2457 return mSelector; 2458 } 2459 2460 /** 2461 * Sets the selector state to "pressed" and posts a CheckForKeyLongPress to see if 2462 * this is a long press. 2463 */ 2464 void keyPressed() { 2465 if (!isEnabled() || !isClickable()) { 2466 return; 2467 } 2468 2469 Drawable selector = mSelector; 2470 Rect selectorRect = mSelectorRect; 2471 if (selector != null && (isFocused() || touchModeDrawsInPressedState()) 2472 && !selectorRect.isEmpty()) { 2473 2474 final View v = getChildAt(mSelectedPosition - mFirstPosition); 2475 2476 if (v != null) { 2477 if (v.hasFocusable()) return; 2478 v.setPressed(true); 2479 } 2480 setPressed(true); 2481 2482 final boolean longClickable = isLongClickable(); 2483 Drawable d = selector.getCurrent(); 2484 if (d != null && d instanceof TransitionDrawable) { 2485 if (longClickable) { 2486 ((TransitionDrawable) d).startTransition( 2487 ViewConfiguration.getLongPressTimeout()); 2488 } else { 2489 ((TransitionDrawable) d).resetTransition(); 2490 } 2491 } 2492 if (longClickable && !mDataChanged) { 2493 if (mPendingCheckForKeyLongPress == null) { 2494 mPendingCheckForKeyLongPress = new CheckForKeyLongPress(); 2495 } 2496 mPendingCheckForKeyLongPress.rememberWindowAttachCount(); 2497 postDelayed(mPendingCheckForKeyLongPress, ViewConfiguration.getLongPressTimeout()); 2498 } 2499 } 2500 } 2501 2502 public void setScrollIndicators(View up, View down) { 2503 mScrollUp = up; 2504 mScrollDown = down; 2505 } 2506 2507 void updateSelectorState() { 2508 if (mSelector != null) { 2509 if (shouldShowSelector()) { 2510 mSelector.setState(getDrawableState()); 2511 } else { 2512 mSelector.setState(StateSet.NOTHING); 2513 } 2514 } 2515 } 2516 2517 @Override 2518 protected void drawableStateChanged() { 2519 super.drawableStateChanged(); 2520 updateSelectorState(); 2521 } 2522 2523 @Override 2524 protected int[] onCreateDrawableState(int extraSpace) { 2525 // If the child view is enabled then do the default behavior. 2526 if (mIsChildViewEnabled) { 2527 // Common case 2528 return super.onCreateDrawableState(extraSpace); 2529 } 2530 2531 // The selector uses this View's drawable state. The selected child view 2532 // is disabled, so we need to remove the enabled state from the drawable 2533 // states. 2534 final int enabledState = ENABLED_STATE_SET[0]; 2535 2536 // If we don't have any extra space, it will return one of the static state arrays, 2537 // and clearing the enabled state on those arrays is a bad thing! If we specify 2538 // we need extra space, it will create+copy into a new array that safely mutable. 2539 int[] state = super.onCreateDrawableState(extraSpace + 1); 2540 int enabledPos = -1; 2541 for (int i = state.length - 1; i >= 0; i--) { 2542 if (state[i] == enabledState) { 2543 enabledPos = i; 2544 break; 2545 } 2546 } 2547 2548 // Remove the enabled state 2549 if (enabledPos >= 0) { 2550 System.arraycopy(state, enabledPos + 1, state, enabledPos, 2551 state.length - enabledPos - 1); 2552 } 2553 2554 return state; 2555 } 2556 2557 @Override 2558 public boolean verifyDrawable(Drawable dr) { 2559 return mSelector == dr || super.verifyDrawable(dr); 2560 } 2561 2562 @Override 2563 public void jumpDrawablesToCurrentState() { 2564 super.jumpDrawablesToCurrentState(); 2565 if (mSelector != null) mSelector.jumpToCurrentState(); 2566 } 2567 2568 @Override 2569 protected void onAttachedToWindow() { 2570 super.onAttachedToWindow(); 2571 2572 final ViewTreeObserver treeObserver = getViewTreeObserver(); 2573 treeObserver.addOnTouchModeChangeListener(this); 2574 if (mTextFilterEnabled && mPopup != null && !mGlobalLayoutListenerAddedFilter) { 2575 treeObserver.addOnGlobalLayoutListener(this); 2576 } 2577 2578 if (mAdapter != null && mDataSetObserver == null) { 2579 mDataSetObserver = new AdapterDataSetObserver(); 2580 mAdapter.registerDataSetObserver(mDataSetObserver); 2581 2582 // Data may have changed while we were detached. Refresh. 2583 mDataChanged = true; 2584 mOldItemCount = mItemCount; 2585 mItemCount = mAdapter.getCount(); 2586 } 2587 mIsAttached = true; 2588 } 2589 2590 @Override 2591 protected void onDetachedFromWindow() { 2592 super.onDetachedFromWindow(); 2593 2594 // Dismiss the popup in case onSaveInstanceState() was not invoked 2595 dismissPopup(); 2596 2597 // Detach any view left in the scrap heap 2598 mRecycler.clear(); 2599 2600 final ViewTreeObserver treeObserver = getViewTreeObserver(); 2601 treeObserver.removeOnTouchModeChangeListener(this); 2602 if (mTextFilterEnabled && mPopup != null) { 2603 treeObserver.removeOnGlobalLayoutListener(this); 2604 mGlobalLayoutListenerAddedFilter = false; 2605 } 2606 2607 if (mAdapter != null) { 2608 mAdapter.unregisterDataSetObserver(mDataSetObserver); 2609 mDataSetObserver = null; 2610 } 2611 2612 if (mScrollStrictSpan != null) { 2613 mScrollStrictSpan.finish(); 2614 mScrollStrictSpan = null; 2615 } 2616 2617 if (mFlingStrictSpan != null) { 2618 mFlingStrictSpan.finish(); 2619 mFlingStrictSpan = null; 2620 } 2621 2622 if (mFlingRunnable != null) { 2623 removeCallbacks(mFlingRunnable); 2624 } 2625 2626 if (mPositionScroller != null) { 2627 mPositionScroller.stop(); 2628 } 2629 2630 if (mClearScrollingCache != null) { 2631 removeCallbacks(mClearScrollingCache); 2632 } 2633 2634 if (mPerformClick != null) { 2635 removeCallbacks(mPerformClick); 2636 } 2637 2638 if (mTouchModeReset != null) { 2639 removeCallbacks(mTouchModeReset); 2640 mTouchModeReset = null; 2641 } 2642 mIsAttached = false; 2643 } 2644 2645 @Override 2646 public void onWindowFocusChanged(boolean hasWindowFocus) { 2647 super.onWindowFocusChanged(hasWindowFocus); 2648 2649 final int touchMode = isInTouchMode() ? TOUCH_MODE_ON : TOUCH_MODE_OFF; 2650 2651 if (!hasWindowFocus) { 2652 setChildrenDrawingCacheEnabled(false); 2653 if (mFlingRunnable != null) { 2654 removeCallbacks(mFlingRunnable); 2655 // let the fling runnable report it's new state which 2656 // should be idle 2657 mFlingRunnable.endFling(); 2658 if (mPositionScroller != null) { 2659 mPositionScroller.stop(); 2660 } 2661 if (mScrollY != 0) { 2662 mScrollY = 0; 2663 invalidateParentCaches(); 2664 finishGlows(); 2665 invalidate(); 2666 } 2667 } 2668 // Always hide the type filter 2669 dismissPopup(); 2670 2671 if (touchMode == TOUCH_MODE_OFF) { 2672 // Remember the last selected element 2673 mResurrectToPosition = mSelectedPosition; 2674 } 2675 } else { 2676 if (mFiltered && !mPopupHidden) { 2677 // Show the type filter only if a filter is in effect 2678 showPopup(); 2679 } 2680 2681 // If we changed touch mode since the last time we had focus 2682 if (touchMode != mLastTouchMode && mLastTouchMode != TOUCH_MODE_UNKNOWN) { 2683 // If we come back in trackball mode, we bring the selection back 2684 if (touchMode == TOUCH_MODE_OFF) { 2685 // This will trigger a layout 2686 resurrectSelection(); 2687 2688 // If we come back in touch mode, then we want to hide the selector 2689 } else { 2690 hideSelector(); 2691 mLayoutMode = LAYOUT_NORMAL; 2692 layoutChildren(); 2693 } 2694 } 2695 } 2696 2697 mLastTouchMode = touchMode; 2698 } 2699 2700 /** 2701 * Creates the ContextMenuInfo returned from {@link #getContextMenuInfo()}. This 2702 * methods knows the view, position and ID of the item that received the 2703 * long press. 2704 * 2705 * @param view The view that received the long press. 2706 * @param position The position of the item that received the long press. 2707 * @param id The ID of the item that received the long press. 2708 * @return The extra information that should be returned by 2709 * {@link #getContextMenuInfo()}. 2710 */ 2711 ContextMenuInfo createContextMenuInfo(View view, int position, long id) { 2712 return new AdapterContextMenuInfo(view, position, id); 2713 } 2714 2715 /** 2716 * A base class for Runnables that will check that their view is still attached to 2717 * the original window as when the Runnable was created. 2718 * 2719 */ 2720 private class WindowRunnnable { 2721 private int mOriginalAttachCount; 2722 2723 public void rememberWindowAttachCount() { 2724 mOriginalAttachCount = getWindowAttachCount(); 2725 } 2726 2727 public boolean sameWindow() { 2728 return hasWindowFocus() && getWindowAttachCount() == mOriginalAttachCount; 2729 } 2730 } 2731 2732 private class PerformClick extends WindowRunnnable implements Runnable { 2733 int mClickMotionPosition; 2734 2735 public void run() { 2736 // The data has changed since we posted this action in the event queue, 2737 // bail out before bad things happen 2738 if (mDataChanged) return; 2739 2740 final ListAdapter adapter = mAdapter; 2741 final int motionPosition = mClickMotionPosition; 2742 if (adapter != null && mItemCount > 0 && 2743 motionPosition != INVALID_POSITION && 2744 motionPosition < adapter.getCount() && sameWindow()) { 2745 final View view = getChildAt(motionPosition - mFirstPosition); 2746 // If there is no view, something bad happened (the view scrolled off the 2747 // screen, etc.) and we should cancel the click 2748 if (view != null) { 2749 performItemClick(view, motionPosition, adapter.getItemId(motionPosition)); 2750 } 2751 } 2752 } 2753 } 2754 2755 private class CheckForLongPress extends WindowRunnnable implements Runnable { 2756 public void run() { 2757 final int motionPosition = mMotionPosition; 2758 final View child = getChildAt(motionPosition - mFirstPosition); 2759 if (child != null) { 2760 final int longPressPosition = mMotionPosition; 2761 final long longPressId = mAdapter.getItemId(mMotionPosition); 2762 2763 boolean handled = false; 2764 if (sameWindow() && !mDataChanged) { 2765 handled = performLongPress(child, longPressPosition, longPressId); 2766 } 2767 if (handled) { 2768 mTouchMode = TOUCH_MODE_REST; 2769 setPressed(false); 2770 child.setPressed(false); 2771 } else { 2772 mTouchMode = TOUCH_MODE_DONE_WAITING; 2773 } 2774 } 2775 } 2776 } 2777 2778 private class CheckForKeyLongPress extends WindowRunnnable implements Runnable { 2779 public void run() { 2780 if (isPressed() && mSelectedPosition >= 0) { 2781 int index = mSelectedPosition - mFirstPosition; 2782 View v = getChildAt(index); 2783 2784 if (!mDataChanged) { 2785 boolean handled = false; 2786 if (sameWindow()) { 2787 handled = performLongPress(v, mSelectedPosition, mSelectedRowId); 2788 } 2789 if (handled) { 2790 setPressed(false); 2791 v.setPressed(false); 2792 } 2793 } else { 2794 setPressed(false); 2795 if (v != null) v.setPressed(false); 2796 } 2797 } 2798 } 2799 } 2800 2801 boolean performLongPress(final View child, 2802 final int longPressPosition, final long longPressId) { 2803 // CHOICE_MODE_MULTIPLE_MODAL takes over long press. 2804 if (mChoiceMode == CHOICE_MODE_MULTIPLE_MODAL) { 2805 if (mChoiceActionMode == null && 2806 (mChoiceActionMode = startActionMode(mMultiChoiceModeCallback)) != null) { 2807 setItemChecked(longPressPosition, true); 2808 performHapticFeedback(HapticFeedbackConstants.LONG_PRESS); 2809 } 2810 return true; 2811 } 2812 2813 boolean handled = false; 2814 if (mOnItemLongClickListener != null) { 2815 handled = mOnItemLongClickListener.onItemLongClick(AbsListView.this, child, 2816 longPressPosition, longPressId); 2817 } 2818 if (!handled) { 2819 mContextMenuInfo = createContextMenuInfo(child, longPressPosition, longPressId); 2820 handled = super.showContextMenuForChild(AbsListView.this); 2821 } 2822 if (handled) { 2823 performHapticFeedback(HapticFeedbackConstants.LONG_PRESS); 2824 } 2825 return handled; 2826 } 2827 2828 @Override 2829 protected ContextMenuInfo getContextMenuInfo() { 2830 return mContextMenuInfo; 2831 } 2832 2833 /** @hide */ 2834 @Override 2835 public boolean showContextMenu(float x, float y, int metaState) { 2836 final int position = pointToPosition((int)x, (int)y); 2837 if (position != INVALID_POSITION) { 2838 final long id = mAdapter.getItemId(position); 2839 View child = getChildAt(position - mFirstPosition); 2840 if (child != null) { 2841 mContextMenuInfo = createContextMenuInfo(child, position, id); 2842 return super.showContextMenuForChild(AbsListView.this); 2843 } 2844 } 2845 return super.showContextMenu(x, y, metaState); 2846 } 2847 2848 @Override 2849 public boolean showContextMenuForChild(View originalView) { 2850 final int longPressPosition = getPositionForView(originalView); 2851 if (longPressPosition >= 0) { 2852 final long longPressId = mAdapter.getItemId(longPressPosition); 2853 boolean handled = false; 2854 2855 if (mOnItemLongClickListener != null) { 2856 handled = mOnItemLongClickListener.onItemLongClick(AbsListView.this, originalView, 2857 longPressPosition, longPressId); 2858 } 2859 if (!handled) { 2860 mContextMenuInfo = createContextMenuInfo( 2861 getChildAt(longPressPosition - mFirstPosition), 2862 longPressPosition, longPressId); 2863 handled = super.showContextMenuForChild(originalView); 2864 } 2865 2866 return handled; 2867 } 2868 return false; 2869 } 2870 2871 @Override 2872 public boolean onKeyDown(int keyCode, KeyEvent event) { 2873 return false; 2874 } 2875 2876 @Override 2877 public boolean onKeyUp(int keyCode, KeyEvent event) { 2878 switch (keyCode) { 2879 case KeyEvent.KEYCODE_DPAD_CENTER: 2880 case KeyEvent.KEYCODE_ENTER: 2881 if (!isEnabled()) { 2882 return true; 2883 } 2884 if (isClickable() && isPressed() && 2885 mSelectedPosition >= 0 && mAdapter != null && 2886 mSelectedPosition < mAdapter.getCount()) { 2887 2888 final View view = getChildAt(mSelectedPosition - mFirstPosition); 2889 if (view != null) { 2890 performItemClick(view, mSelectedPosition, mSelectedRowId); 2891 view.setPressed(false); 2892 } 2893 setPressed(false); 2894 return true; 2895 } 2896 break; 2897 } 2898 return super.onKeyUp(keyCode, event); 2899 } 2900 2901 @Override 2902 protected void dispatchSetPressed(boolean pressed) { 2903 // Don't dispatch setPressed to our children. We call setPressed on ourselves to 2904 // get the selector in the right state, but we don't want to press each child. 2905 } 2906 2907 /** 2908 * Maps a point to a position in the list. 2909 * 2910 * @param x X in local coordinate 2911 * @param y Y in local coordinate 2912 * @return The position of the item which contains the specified point, or 2913 * {@link #INVALID_POSITION} if the point does not intersect an item. 2914 */ 2915 public int pointToPosition(int x, int y) { 2916 Rect frame = mTouchFrame; 2917 if (frame == null) { 2918 mTouchFrame = new Rect(); 2919 frame = mTouchFrame; 2920 } 2921 2922 final int count = getChildCount(); 2923 for (int i = count - 1; i >= 0; i--) { 2924 final View child = getChildAt(i); 2925 if (child.getVisibility() == View.VISIBLE) { 2926 child.getHitRect(frame); 2927 if (frame.contains(x, y)) { 2928 return mFirstPosition + i; 2929 } 2930 } 2931 } 2932 return INVALID_POSITION; 2933 } 2934 2935 2936 /** 2937 * Maps a point to a the rowId of the item which intersects that point. 2938 * 2939 * @param x X in local coordinate 2940 * @param y Y in local coordinate 2941 * @return The rowId of the item which contains the specified point, or {@link #INVALID_ROW_ID} 2942 * if the point does not intersect an item. 2943 */ 2944 public long pointToRowId(int x, int y) { 2945 int position = pointToPosition(x, y); 2946 if (position >= 0) { 2947 return mAdapter.getItemId(position); 2948 } 2949 return INVALID_ROW_ID; 2950 } 2951 2952 final class CheckForTap implements Runnable { 2953 public void run() { 2954 if (mTouchMode == TOUCH_MODE_DOWN) { 2955 mTouchMode = TOUCH_MODE_TAP; 2956 final View child = getChildAt(mMotionPosition - mFirstPosition); 2957 if (child != null && !child.hasFocusable()) { 2958 mLayoutMode = LAYOUT_NORMAL; 2959 2960 if (!mDataChanged) { 2961 child.setPressed(true); 2962 setPressed(true); 2963 layoutChildren(); 2964 positionSelector(mMotionPosition, child); 2965 refreshDrawableState(); 2966 2967 final int longPressTimeout = ViewConfiguration.getLongPressTimeout(); 2968 final boolean longClickable = isLongClickable(); 2969 2970 if (mSelector != null) { 2971 Drawable d = mSelector.getCurrent(); 2972 if (d != null && d instanceof TransitionDrawable) { 2973 if (longClickable) { 2974 ((TransitionDrawable) d).startTransition(longPressTimeout); 2975 } else { 2976 ((TransitionDrawable) d).resetTransition(); 2977 } 2978 } 2979 } 2980 2981 if (longClickable) { 2982 if (mPendingCheckForLongPress == null) { 2983 mPendingCheckForLongPress = new CheckForLongPress(); 2984 } 2985 mPendingCheckForLongPress.rememberWindowAttachCount(); 2986 postDelayed(mPendingCheckForLongPress, longPressTimeout); 2987 } else { 2988 mTouchMode = TOUCH_MODE_DONE_WAITING; 2989 } 2990 } else { 2991 mTouchMode = TOUCH_MODE_DONE_WAITING; 2992 } 2993 } 2994 } 2995 } 2996 } 2997 2998 private boolean startScrollIfNeeded(int y) { 2999 // Check if we have moved far enough that it looks more like a 3000 // scroll than a tap 3001 final int deltaY = y - mMotionY; 3002 final int distance = Math.abs(deltaY); 3003 final boolean overscroll = mScrollY != 0; 3004 if (overscroll || distance > mTouchSlop) { 3005 createScrollingCache(); 3006 if (overscroll) { 3007 mTouchMode = TOUCH_MODE_OVERSCROLL; 3008 mMotionCorrection = 0; 3009 } else { 3010 mTouchMode = TOUCH_MODE_SCROLL; 3011 mMotionCorrection = deltaY > 0 ? mTouchSlop : -mTouchSlop; 3012 } 3013 final Handler handler = getHandler(); 3014 // Handler should not be null unless the AbsListView is not attached to a 3015 // window, which would make it very hard to scroll it... but the monkeys 3016 // say it's possible. 3017 if (handler != null) { 3018 handler.removeCallbacks(mPendingCheckForLongPress); 3019 } 3020 setPressed(false); 3021 View motionView = getChildAt(mMotionPosition - mFirstPosition); 3022 if (motionView != null) { 3023 motionView.setPressed(false); 3024 } 3025 reportScrollStateChange(OnScrollListener.SCROLL_STATE_TOUCH_SCROLL); 3026 // Time to start stealing events! Once we've stolen them, don't let anyone 3027 // steal from us 3028 final ViewParent parent = getParent(); 3029 if (parent != null) { 3030 parent.requestDisallowInterceptTouchEvent(true); 3031 } 3032 scrollIfNeeded(y); 3033 return true; 3034 } 3035 3036 return false; 3037 } 3038 3039 private void scrollIfNeeded(int y) { 3040 final int rawDeltaY = y - mMotionY; 3041 final int deltaY = rawDeltaY - mMotionCorrection; 3042 int incrementalDeltaY = mLastY != Integer.MIN_VALUE ? y - mLastY : deltaY; 3043 3044 if (mTouchMode == TOUCH_MODE_SCROLL) { 3045 if (PROFILE_SCROLLING) { 3046 if (!mScrollProfilingStarted) { 3047 Debug.startMethodTracing("AbsListViewScroll"); 3048 mScrollProfilingStarted = true; 3049 } 3050 } 3051 3052 if (mScrollStrictSpan == null) { 3053 // If it's non-null, we're already in a scroll. 3054 mScrollStrictSpan = StrictMode.enterCriticalSpan("AbsListView-scroll"); 3055 } 3056 3057 if (y != mLastY) { 3058 // We may be here after stopping a fling and continuing to scroll. 3059 // If so, we haven't disallowed intercepting touch events yet. 3060 // Make sure that we do so in case we're in a parent that can intercept. 3061 if ((mGroupFlags & FLAG_DISALLOW_INTERCEPT) == 0 && 3062 Math.abs(rawDeltaY) > mTouchSlop) { 3063 final ViewParent parent = getParent(); 3064 if (parent != null) { 3065 parent.requestDisallowInterceptTouchEvent(true); 3066 } 3067 } 3068 3069 final int motionIndex; 3070 if (mMotionPosition >= 0) { 3071 motionIndex = mMotionPosition - mFirstPosition; 3072 } else { 3073 // If we don't have a motion position that we can reliably track, 3074 // pick something in the middle to make a best guess at things below. 3075 motionIndex = getChildCount() / 2; 3076 } 3077 3078 int motionViewPrevTop = 0; 3079 View motionView = this.getChildAt(motionIndex); 3080 if (motionView != null) { 3081 motionViewPrevTop = motionView.getTop(); 3082 } 3083 3084 // No need to do all this work if we're not going to move anyway 3085 boolean atEdge = false; 3086 if (incrementalDeltaY != 0) { 3087 atEdge = trackMotionScroll(deltaY, incrementalDeltaY); 3088 } 3089 3090 // Check to see if we have bumped into the scroll limit 3091 motionView = this.getChildAt(motionIndex); 3092 if (motionView != null) { 3093 // Check if the top of the motion view is where it is 3094 // supposed to be 3095 final int motionViewRealTop = motionView.getTop(); 3096 if (atEdge) { 3097 // Apply overscroll 3098 3099 int overscroll = -incrementalDeltaY - 3100 (motionViewRealTop - motionViewPrevTop); 3101 overScrollBy(0, overscroll, 0, mScrollY, 0, 0, 3102 0, mOverscrollDistance, true); 3103 if (Math.abs(mOverscrollDistance) == Math.abs(mScrollY)) { 3104 // Don't allow overfling if we're at the edge. 3105 if (mVelocityTracker != null) { 3106 mVelocityTracker.clear(); 3107 } 3108 } 3109 3110 final int overscrollMode = getOverScrollMode(); 3111 if (overscrollMode == OVER_SCROLL_ALWAYS || 3112 (overscrollMode == OVER_SCROLL_IF_CONTENT_SCROLLS && 3113 !contentFits())) { 3114 mDirection = 0; // Reset when entering overscroll. 3115 mTouchMode = TOUCH_MODE_OVERSCROLL; 3116 if (rawDeltaY > 0) { 3117 mEdgeGlowTop.onPull((float) overscroll / getHeight()); 3118 if (!mEdgeGlowBottom.isFinished()) { 3119 mEdgeGlowBottom.onRelease(); 3120 } 3121 invalidate(mEdgeGlowTop.getBounds(false)); 3122 } else if (rawDeltaY < 0) { 3123 mEdgeGlowBottom.onPull((float) overscroll / getHeight()); 3124 if (!mEdgeGlowTop.isFinished()) { 3125 mEdgeGlowTop.onRelease(); 3126 } 3127 invalidate(mEdgeGlowBottom.getBounds(true)); 3128 } 3129 } 3130 } 3131 mMotionY = y; 3132 } 3133 mLastY = y; 3134 } 3135 } else if (mTouchMode == TOUCH_MODE_OVERSCROLL) { 3136 if (y != mLastY) { 3137 final int oldScroll = mScrollY; 3138 final int newScroll = oldScroll - incrementalDeltaY; 3139 int newDirection = y > mLastY ? 1 : -1; 3140 3141 if (mDirection == 0) { 3142 mDirection = newDirection; 3143 } 3144 3145 int overScrollDistance = -incrementalDeltaY; 3146 if ((newScroll < 0 && oldScroll >= 0) || (newScroll > 0 && oldScroll <= 0)) { 3147 overScrollDistance = -oldScroll; 3148 incrementalDeltaY += overScrollDistance; 3149 } else { 3150 incrementalDeltaY = 0; 3151 } 3152 3153 if (overScrollDistance != 0) { 3154 overScrollBy(0, overScrollDistance, 0, mScrollY, 0, 0, 3155 0, mOverscrollDistance, true); 3156 final int overscrollMode = getOverScrollMode(); 3157 if (overscrollMode == OVER_SCROLL_ALWAYS || 3158 (overscrollMode == OVER_SCROLL_IF_CONTENT_SCROLLS && 3159 !contentFits())) { 3160 if (rawDeltaY > 0) { 3161 mEdgeGlowTop.onPull((float) overScrollDistance / getHeight()); 3162 if (!mEdgeGlowBottom.isFinished()) { 3163 mEdgeGlowBottom.onRelease(); 3164 } 3165 invalidate(mEdgeGlowTop.getBounds(false)); 3166 } else if (rawDeltaY < 0) { 3167 mEdgeGlowBottom.onPull((float) overScrollDistance / getHeight()); 3168 if (!mEdgeGlowTop.isFinished()) { 3169 mEdgeGlowTop.onRelease(); 3170 } 3171 invalidate(mEdgeGlowBottom.getBounds(true)); 3172 } 3173 } 3174 } 3175 3176 if (incrementalDeltaY != 0) { 3177 // Coming back to 'real' list scrolling 3178 if (mScrollY != 0) { 3179 mScrollY = 0; 3180 invalidateParentIfNeeded(); 3181 } 3182 3183 trackMotionScroll(incrementalDeltaY, incrementalDeltaY); 3184 3185 mTouchMode = TOUCH_MODE_SCROLL; 3186 3187 // We did not scroll the full amount. Treat this essentially like the 3188 // start of a new touch scroll 3189 final int motionPosition = findClosestMotionRow(y); 3190 3191 mMotionCorrection = 0; 3192 View motionView = getChildAt(motionPosition - mFirstPosition); 3193 mMotionViewOriginalTop = motionView != null ? motionView.getTop() : 0; 3194 mMotionY = y; 3195 mMotionPosition = motionPosition; 3196 } 3197 mLastY = y; 3198 mDirection = newDirection; 3199 } 3200 } 3201 } 3202 3203 public void onTouchModeChanged(boolean isInTouchMode) { 3204 if (isInTouchMode) { 3205 // Get rid of the selection when we enter touch mode 3206 hideSelector(); 3207 // Layout, but only if we already have done so previously. 3208 // (Otherwise may clobber a LAYOUT_SYNC layout that was requested to restore 3209 // state.) 3210 if (getHeight() > 0 && getChildCount() > 0) { 3211 // We do not lose focus initiating a touch (since AbsListView is focusable in 3212 // touch mode). Force an initial layout to get rid of the selection. 3213 layoutChildren(); 3214 } 3215 updateSelectorState(); 3216 } else { 3217 int touchMode = mTouchMode; 3218 if (touchMode == TOUCH_MODE_OVERSCROLL || touchMode == TOUCH_MODE_OVERFLING) { 3219 if (mFlingRunnable != null) { 3220 mFlingRunnable.endFling(); 3221 } 3222 if (mPositionScroller != null) { 3223 mPositionScroller.stop(); 3224 } 3225 3226 if (mScrollY != 0) { 3227 mScrollY = 0; 3228 invalidateParentCaches(); 3229 finishGlows(); 3230 invalidate(); 3231 } 3232 } 3233 } 3234 } 3235 3236 @Override 3237 public boolean onTouchEvent(MotionEvent ev) { 3238 if (!isEnabled()) { 3239 // A disabled view that is clickable still consumes the touch 3240 // events, it just doesn't respond to them. 3241 return isClickable() || isLongClickable(); 3242 } 3243 3244 if (mPositionScroller != null) { 3245 mPositionScroller.stop(); 3246 } 3247 3248 if (!mIsAttached) { 3249 // Something isn't right. 3250 // Since we rely on being attached to get data set change notifications, 3251 // don't risk doing anything where we might try to resync and find things 3252 // in a bogus state. 3253 return false; 3254 } 3255 3256 if (mFastScroller != null) { 3257 boolean intercepted = mFastScroller.onTouchEvent(ev); 3258 if (intercepted) { 3259 return true; 3260 } 3261 } 3262 3263 final int action = ev.getAction(); 3264 3265 View v; 3266 3267 initVelocityTrackerIfNotExists(); 3268 mVelocityTracker.addMovement(ev); 3269 3270 switch (action & MotionEvent.ACTION_MASK) { 3271 case MotionEvent.ACTION_DOWN: { 3272 switch (mTouchMode) { 3273 case TOUCH_MODE_OVERFLING: { 3274 mFlingRunnable.endFling(); 3275 if (mPositionScroller != null) { 3276 mPositionScroller.stop(); 3277 } 3278 mTouchMode = TOUCH_MODE_OVERSCROLL; 3279 mMotionX = (int) ev.getX(); 3280 mMotionY = mLastY = (int) ev.getY(); 3281 mMotionCorrection = 0; 3282 mActivePointerId = ev.getPointerId(0); 3283 mDirection = 0; 3284 break; 3285 } 3286 3287 default: { 3288 mActivePointerId = ev.getPointerId(0); 3289 final int x = (int) ev.getX(); 3290 final int y = (int) ev.getY(); 3291 int motionPosition = pointToPosition(x, y); 3292 if (!mDataChanged) { 3293 if ((mTouchMode != TOUCH_MODE_FLING) && (motionPosition >= 0) 3294 && (getAdapter().isEnabled(motionPosition))) { 3295 // User clicked on an actual view (and was not stopping a fling). 3296 // It might be a click or a scroll. Assume it is a click until 3297 // proven otherwise 3298 mTouchMode = TOUCH_MODE_DOWN; 3299 // FIXME Debounce 3300 if (mPendingCheckForTap == null) { 3301 mPendingCheckForTap = new CheckForTap(); 3302 } 3303 postDelayed(mPendingCheckForTap, ViewConfiguration.getTapTimeout()); 3304 } else { 3305 if (mTouchMode == TOUCH_MODE_FLING) { 3306 // Stopped a fling. It is a scroll. 3307 createScrollingCache(); 3308 mTouchMode = TOUCH_MODE_SCROLL; 3309 mMotionCorrection = 0; 3310 motionPosition = findMotionRow(y); 3311 mFlingRunnable.flywheelTouch(); 3312 } 3313 } 3314 } 3315 3316 if (motionPosition >= 0) { 3317 // Remember where the motion event started 3318 v = getChildAt(motionPosition - mFirstPosition); 3319 mMotionViewOriginalTop = v.getTop(); 3320 } 3321 mMotionX = x; 3322 mMotionY = y; 3323 mMotionPosition = motionPosition; 3324 mLastY = Integer.MIN_VALUE; 3325 break; 3326 } 3327 } 3328 3329 if (performButtonActionOnTouchDown(ev)) { 3330 if (mTouchMode == TOUCH_MODE_DOWN) { 3331 removeCallbacks(mPendingCheckForTap); 3332 } 3333 } 3334 break; 3335 } 3336 3337 case MotionEvent.ACTION_MOVE: { 3338 int pointerIndex = ev.findPointerIndex(mActivePointerId); 3339 if (pointerIndex == -1) { 3340 pointerIndex = 0; 3341 mActivePointerId = ev.getPointerId(pointerIndex); 3342 } 3343 final int y = (int) ev.getY(pointerIndex); 3344 3345 if (mDataChanged) { 3346 // Re-sync everything if data has been changed 3347 // since the scroll operation can query the adapter. 3348 layoutChildren(); 3349 } 3350 3351 switch (mTouchMode) { 3352 case TOUCH_MODE_DOWN: 3353 case TOUCH_MODE_TAP: 3354 case TOUCH_MODE_DONE_WAITING: 3355 // Check if we have moved far enough that it looks more like a 3356 // scroll than a tap 3357 startScrollIfNeeded(y); 3358 break; 3359 case TOUCH_MODE_SCROLL: 3360 case TOUCH_MODE_OVERSCROLL: 3361 scrollIfNeeded(y); 3362 break; 3363 } 3364 break; 3365 } 3366 3367 case MotionEvent.ACTION_UP: { 3368 switch (mTouchMode) { 3369 case TOUCH_MODE_DOWN: 3370 case TOUCH_MODE_TAP: 3371 case TOUCH_MODE_DONE_WAITING: 3372 final int motionPosition = mMotionPosition; 3373 final View child = getChildAt(motionPosition - mFirstPosition); 3374 3375 final float x = ev.getX(); 3376 final boolean inList = x > mListPadding.left && x < getWidth() - mListPadding.right; 3377 3378 if (child != null && !child.hasFocusable() && inList) { 3379 if (mTouchMode != TOUCH_MODE_DOWN) { 3380 child.setPressed(false); 3381 } 3382 3383 if (mPerformClick == null) { 3384 mPerformClick = new PerformClick(); 3385 } 3386 3387 final AbsListView.PerformClick performClick = mPerformClick; 3388 performClick.mClickMotionPosition = motionPosition; 3389 performClick.rememberWindowAttachCount(); 3390 3391 mResurrectToPosition = motionPosition; 3392 3393 if (mTouchMode == TOUCH_MODE_DOWN || mTouchMode == TOUCH_MODE_TAP) { 3394 final Handler handler = getHandler(); 3395 if (handler != null) { 3396 handler.removeCallbacks(mTouchMode == TOUCH_MODE_DOWN ? 3397 mPendingCheckForTap : mPendingCheckForLongPress); 3398 } 3399 mLayoutMode = LAYOUT_NORMAL; 3400 if (!mDataChanged && mAdapter.isEnabled(motionPosition)) { 3401 mTouchMode = TOUCH_MODE_TAP; 3402 setSelectedPositionInt(mMotionPosition); 3403 layoutChildren(); 3404 child.setPressed(true); 3405 positionSelector(mMotionPosition, child); 3406 setPressed(true); 3407 if (mSelector != null) { 3408 Drawable d = mSelector.getCurrent(); 3409 if (d != null && d instanceof TransitionDrawable) { 3410 ((TransitionDrawable) d).resetTransition(); 3411 } 3412 } 3413 if (mTouchModeReset != null) { 3414 removeCallbacks(mTouchModeReset); 3415 } 3416 mTouchModeReset = new Runnable() { 3417 @Override 3418 public void run() { 3419 mTouchMode = TOUCH_MODE_REST; 3420 child.setPressed(false); 3421 setPressed(false); 3422 if (!mDataChanged) { 3423 performClick.run(); 3424 } 3425 } 3426 }; 3427 postDelayed(mTouchModeReset, 3428 ViewConfiguration.getPressedStateDuration()); 3429 } else { 3430 mTouchMode = TOUCH_MODE_REST; 3431 updateSelectorState(); 3432 } 3433 return true; 3434 } else if (!mDataChanged && mAdapter.isEnabled(motionPosition)) { 3435 performClick.run(); 3436 } 3437 } 3438 mTouchMode = TOUCH_MODE_REST; 3439 updateSelectorState(); 3440 break; 3441 case TOUCH_MODE_SCROLL: 3442 final int childCount = getChildCount(); 3443 if (childCount > 0) { 3444 final int firstChildTop = getChildAt(0).getTop(); 3445 final int lastChildBottom = getChildAt(childCount - 1).getBottom(); 3446 final int contentTop = mListPadding.top; 3447 final int contentBottom = getHeight() - mListPadding.bottom; 3448 if (mFirstPosition == 0 && firstChildTop >= contentTop && 3449 mFirstPosition + childCount < mItemCount && 3450 lastChildBottom <= getHeight() - contentBottom) { 3451 mTouchMode = TOUCH_MODE_REST; 3452 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 3453 } else { 3454 final VelocityTracker velocityTracker = mVelocityTracker; 3455 velocityTracker.computeCurrentVelocity(1000, mMaximumVelocity); 3456 3457 final int initialVelocity = (int) 3458 (velocityTracker.getYVelocity(mActivePointerId) * mVelocityScale); 3459 // Fling if we have enough velocity and we aren't at a boundary. 3460 // Since we can potentially overfling more than we can overscroll, don't 3461 // allow the weird behavior where you can scroll to a boundary then 3462 // fling further. 3463 if (Math.abs(initialVelocity) > mMinimumVelocity && 3464 !((mFirstPosition == 0 && 3465 firstChildTop == contentTop - mOverscrollDistance) || 3466 (mFirstPosition + childCount == mItemCount && 3467 lastChildBottom == contentBottom + mOverscrollDistance))) { 3468 if (mFlingRunnable == null) { 3469 mFlingRunnable = new FlingRunnable(); 3470 } 3471 reportScrollStateChange(OnScrollListener.SCROLL_STATE_FLING); 3472 3473 mFlingRunnable.start(-initialVelocity); 3474 } else { 3475 mTouchMode = TOUCH_MODE_REST; 3476 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 3477 if (mFlingRunnable != null) { 3478 mFlingRunnable.endFling(); 3479 } 3480 if (mPositionScroller != null) { 3481 mPositionScroller.stop(); 3482 } 3483 } 3484 } 3485 } else { 3486 mTouchMode = TOUCH_MODE_REST; 3487 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 3488 } 3489 break; 3490 3491 case TOUCH_MODE_OVERSCROLL: 3492 if (mFlingRunnable == null) { 3493 mFlingRunnable = new FlingRunnable(); 3494 } 3495 final VelocityTracker velocityTracker = mVelocityTracker; 3496 velocityTracker.computeCurrentVelocity(1000, mMaximumVelocity); 3497 final int initialVelocity = (int) velocityTracker.getYVelocity(mActivePointerId); 3498 3499 reportScrollStateChange(OnScrollListener.SCROLL_STATE_FLING); 3500 if (Math.abs(initialVelocity) > mMinimumVelocity) { 3501 mFlingRunnable.startOverfling(-initialVelocity); 3502 } else { 3503 mFlingRunnable.startSpringback(); 3504 } 3505 3506 break; 3507 } 3508 3509 setPressed(false); 3510 3511 if (mEdgeGlowTop != null) { 3512 mEdgeGlowTop.onRelease(); 3513 mEdgeGlowBottom.onRelease(); 3514 } 3515 3516 // Need to redraw since we probably aren't drawing the selector anymore 3517 invalidate(); 3518 3519 final Handler handler = getHandler(); 3520 if (handler != null) { 3521 handler.removeCallbacks(mPendingCheckForLongPress); 3522 } 3523 3524 recycleVelocityTracker(); 3525 3526 mActivePointerId = INVALID_POINTER; 3527 3528 if (PROFILE_SCROLLING) { 3529 if (mScrollProfilingStarted) { 3530 Debug.stopMethodTracing(); 3531 mScrollProfilingStarted = false; 3532 } 3533 } 3534 3535 if (mScrollStrictSpan != null) { 3536 mScrollStrictSpan.finish(); 3537 mScrollStrictSpan = null; 3538 } 3539 break; 3540 } 3541 3542 case MotionEvent.ACTION_CANCEL: { 3543 switch (mTouchMode) { 3544 case TOUCH_MODE_OVERSCROLL: 3545 if (mFlingRunnable == null) { 3546 mFlingRunnable = new FlingRunnable(); 3547 } 3548 mFlingRunnable.startSpringback(); 3549 break; 3550 3551 case TOUCH_MODE_OVERFLING: 3552 // Do nothing - let it play out. 3553 break; 3554 3555 default: 3556 mTouchMode = TOUCH_MODE_REST; 3557 setPressed(false); 3558 View motionView = this.getChildAt(mMotionPosition - mFirstPosition); 3559 if (motionView != null) { 3560 motionView.setPressed(false); 3561 } 3562 clearScrollingCache(); 3563 3564 final Handler handler = getHandler(); 3565 if (handler != null) { 3566 handler.removeCallbacks(mPendingCheckForLongPress); 3567 } 3568 3569 recycleVelocityTracker(); 3570 } 3571 3572 if (mEdgeGlowTop != null) { 3573 mEdgeGlowTop.onRelease(); 3574 mEdgeGlowBottom.onRelease(); 3575 } 3576 mActivePointerId = INVALID_POINTER; 3577 break; 3578 } 3579 3580 case MotionEvent.ACTION_POINTER_UP: { 3581 onSecondaryPointerUp(ev); 3582 final int x = mMotionX; 3583 final int y = mMotionY; 3584 final int motionPosition = pointToPosition(x, y); 3585 if (motionPosition >= 0) { 3586 // Remember where the motion event started 3587 v = getChildAt(motionPosition - mFirstPosition); 3588 mMotionViewOriginalTop = v.getTop(); 3589 mMotionPosition = motionPosition; 3590 } 3591 mLastY = y; 3592 break; 3593 } 3594 3595 case MotionEvent.ACTION_POINTER_DOWN: { 3596 // New pointers take over dragging duties 3597 final int index = ev.getActionIndex(); 3598 final int id = ev.getPointerId(index); 3599 final int x = (int) ev.getX(index); 3600 final int y = (int) ev.getY(index); 3601 mMotionCorrection = 0; 3602 mActivePointerId = id; 3603 mMotionX = x; 3604 mMotionY = y; 3605 final int motionPosition = pointToPosition(x, y); 3606 if (motionPosition >= 0) { 3607 // Remember where the motion event started 3608 v = getChildAt(motionPosition - mFirstPosition); 3609 mMotionViewOriginalTop = v.getTop(); 3610 mMotionPosition = motionPosition; 3611 } 3612 mLastY = y; 3613 break; 3614 } 3615 } 3616 3617 return true; 3618 } 3619 3620 @Override 3621 protected void onOverScrolled(int scrollX, int scrollY, boolean clampedX, boolean clampedY) { 3622 if (mScrollY != scrollY) { 3623 onScrollChanged(mScrollX, scrollY, mScrollX, mScrollY); 3624 mScrollY = scrollY; 3625 invalidateParentIfNeeded(); 3626 3627 awakenScrollBars(); 3628 } 3629 } 3630 3631 @Override 3632 public boolean onGenericMotionEvent(MotionEvent event) { 3633 if ((event.getSource() & InputDevice.SOURCE_CLASS_POINTER) != 0) { 3634 switch (event.getAction()) { 3635 case MotionEvent.ACTION_SCROLL: { 3636 if (mTouchMode == TOUCH_MODE_REST) { 3637 final float vscroll = event.getAxisValue(MotionEvent.AXIS_VSCROLL); 3638 if (vscroll != 0) { 3639 final int delta = (int) (vscroll * getVerticalScrollFactor()); 3640 if (!trackMotionScroll(delta, delta)) { 3641 return true; 3642 } 3643 } 3644 } 3645 } 3646 } 3647 } 3648 return super.onGenericMotionEvent(event); 3649 } 3650 3651 @Override 3652 public void draw(Canvas canvas) { 3653 super.draw(canvas); 3654 if (mEdgeGlowTop != null) { 3655 final int scrollY = mScrollY; 3656 if (!mEdgeGlowTop.isFinished()) { 3657 final int restoreCount = canvas.save(); 3658 final int leftPadding = mListPadding.left + mGlowPaddingLeft; 3659 final int rightPadding = mListPadding.right + mGlowPaddingRight; 3660 final int width = getWidth() - leftPadding - rightPadding; 3661 3662 int edgeY = Math.min(0, scrollY + mFirstPositionDistanceGuess); 3663 canvas.translate(leftPadding, edgeY); 3664 mEdgeGlowTop.setSize(width, getHeight()); 3665 if (mEdgeGlowTop.draw(canvas)) { 3666 mEdgeGlowTop.setPosition(leftPadding, edgeY); 3667 invalidate(mEdgeGlowTop.getBounds(false)); 3668 } 3669 canvas.restoreToCount(restoreCount); 3670 } 3671 if (!mEdgeGlowBottom.isFinished()) { 3672 final int restoreCount = canvas.save(); 3673 final int leftPadding = mListPadding.left + mGlowPaddingLeft; 3674 final int rightPadding = mListPadding.right + mGlowPaddingRight; 3675 final int width = getWidth() - leftPadding - rightPadding; 3676 final int height = getHeight(); 3677 3678 int edgeX = -width + leftPadding; 3679 int edgeY = Math.max(height, scrollY + mLastPositionDistanceGuess); 3680 canvas.translate(edgeX, edgeY); 3681 canvas.rotate(180, width, 0); 3682 mEdgeGlowBottom.setSize(width, height); 3683 if (mEdgeGlowBottom.draw(canvas)) { 3684 // Account for the rotation 3685 mEdgeGlowBottom.setPosition(edgeX + width, edgeY); 3686 invalidate(mEdgeGlowBottom.getBounds(true)); 3687 } 3688 canvas.restoreToCount(restoreCount); 3689 } 3690 } 3691 if (mFastScroller != null) { 3692 final int scrollY = mScrollY; 3693 if (scrollY != 0) { 3694 // Pin to the top/bottom during overscroll 3695 int restoreCount = canvas.save(); 3696 canvas.translate(0, (float) scrollY); 3697 mFastScroller.draw(canvas); 3698 canvas.restoreToCount(restoreCount); 3699 } else { 3700 mFastScroller.draw(canvas); 3701 } 3702 } 3703 } 3704 3705 /** 3706 * @hide 3707 */ 3708 public void setOverScrollEffectPadding(int leftPadding, int rightPadding) { 3709 mGlowPaddingLeft = leftPadding; 3710 mGlowPaddingRight = rightPadding; 3711 } 3712 3713 private void initOrResetVelocityTracker() { 3714 if (mVelocityTracker == null) { 3715 mVelocityTracker = VelocityTracker.obtain(); 3716 } else { 3717 mVelocityTracker.clear(); 3718 } 3719 } 3720 3721 private void initVelocityTrackerIfNotExists() { 3722 if (mVelocityTracker == null) { 3723 mVelocityTracker = VelocityTracker.obtain(); 3724 } 3725 } 3726 3727 private void recycleVelocityTracker() { 3728 if (mVelocityTracker != null) { 3729 mVelocityTracker.recycle(); 3730 mVelocityTracker = null; 3731 } 3732 } 3733 3734 @Override 3735 public void requestDisallowInterceptTouchEvent(boolean disallowIntercept) { 3736 if (disallowIntercept) { 3737 recycleVelocityTracker(); 3738 } 3739 super.requestDisallowInterceptTouchEvent(disallowIntercept); 3740 } 3741 3742 @Override 3743 public boolean onInterceptTouchEvent(MotionEvent ev) { 3744 int action = ev.getAction(); 3745 View v; 3746 3747 if (mPositionScroller != null) { 3748 mPositionScroller.stop(); 3749 } 3750 3751 if (!mIsAttached) { 3752 // Something isn't right. 3753 // Since we rely on being attached to get data set change notifications, 3754 // don't risk doing anything where we might try to resync and find things 3755 // in a bogus state. 3756 return false; 3757 } 3758 3759 if (mFastScroller != null) { 3760 boolean intercepted = mFastScroller.onInterceptTouchEvent(ev); 3761 if (intercepted) { 3762 return true; 3763 } 3764 } 3765 3766 switch (action & MotionEvent.ACTION_MASK) { 3767 case MotionEvent.ACTION_DOWN: { 3768 int touchMode = mTouchMode; 3769 if (touchMode == TOUCH_MODE_OVERFLING || touchMode == TOUCH_MODE_OVERSCROLL) { 3770 mMotionCorrection = 0; 3771 return true; 3772 } 3773 3774 final int x = (int) ev.getX(); 3775 final int y = (int) ev.getY(); 3776 mActivePointerId = ev.getPointerId(0); 3777 3778 int motionPosition = findMotionRow(y); 3779 if (touchMode != TOUCH_MODE_FLING && motionPosition >= 0) { 3780 // User clicked on an actual view (and was not stopping a fling). 3781 // Remember where the motion event started 3782 v = getChildAt(motionPosition - mFirstPosition); 3783 mMotionViewOriginalTop = v.getTop(); 3784 mMotionX = x; 3785 mMotionY = y; 3786 mMotionPosition = motionPosition; 3787 mTouchMode = TOUCH_MODE_DOWN; 3788 clearScrollingCache(); 3789 } 3790 mLastY = Integer.MIN_VALUE; 3791 initOrResetVelocityTracker(); 3792 mVelocityTracker.addMovement(ev); 3793 if (touchMode == TOUCH_MODE_FLING) { 3794 return true; 3795 } 3796 break; 3797 } 3798 3799 case MotionEvent.ACTION_MOVE: { 3800 switch (mTouchMode) { 3801 case TOUCH_MODE_DOWN: 3802 int pointerIndex = ev.findPointerIndex(mActivePointerId); 3803 if (pointerIndex == -1) { 3804 pointerIndex = 0; 3805 mActivePointerId = ev.getPointerId(pointerIndex); 3806 } 3807 final int y = (int) ev.getY(pointerIndex); 3808 initVelocityTrackerIfNotExists(); 3809 mVelocityTracker.addMovement(ev); 3810 if (startScrollIfNeeded(y)) { 3811 return true; 3812 } 3813 break; 3814 } 3815 break; 3816 } 3817 3818 case MotionEvent.ACTION_CANCEL: 3819 case MotionEvent.ACTION_UP: { 3820 mTouchMode = TOUCH_MODE_REST; 3821 mActivePointerId = INVALID_POINTER; 3822 recycleVelocityTracker(); 3823 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 3824 break; 3825 } 3826 3827 case MotionEvent.ACTION_POINTER_UP: { 3828 onSecondaryPointerUp(ev); 3829 break; 3830 } 3831 } 3832 3833 return false; 3834 } 3835 3836 private void onSecondaryPointerUp(MotionEvent ev) { 3837 final int pointerIndex = (ev.getAction() & MotionEvent.ACTION_POINTER_INDEX_MASK) >> 3838 MotionEvent.ACTION_POINTER_INDEX_SHIFT; 3839 final int pointerId = ev.getPointerId(pointerIndex); 3840 if (pointerId == mActivePointerId) { 3841 // This was our active pointer going up. Choose a new 3842 // active pointer and adjust accordingly. 3843 // TODO: Make this decision more intelligent. 3844 final int newPointerIndex = pointerIndex == 0 ? 1 : 0; 3845 mMotionX = (int) ev.getX(newPointerIndex); 3846 mMotionY = (int) ev.getY(newPointerIndex); 3847 mMotionCorrection = 0; 3848 mActivePointerId = ev.getPointerId(newPointerIndex); 3849 } 3850 } 3851 3852 /** 3853 * {@inheritDoc} 3854 */ 3855 @Override 3856 public void addTouchables(ArrayList<View> views) { 3857 final int count = getChildCount(); 3858 final int firstPosition = mFirstPosition; 3859 final ListAdapter adapter = mAdapter; 3860 3861 if (adapter == null) { 3862 return; 3863 } 3864 3865 for (int i = 0; i < count; i++) { 3866 final View child = getChildAt(i); 3867 if (adapter.isEnabled(firstPosition + i)) { 3868 views.add(child); 3869 } 3870 child.addTouchables(views); 3871 } 3872 } 3873 3874 /** 3875 * Fires an "on scroll state changed" event to the registered 3876 * {@link android.widget.AbsListView.OnScrollListener}, if any. The state change 3877 * is fired only if the specified state is different from the previously known state. 3878 * 3879 * @param newState The new scroll state. 3880 */ 3881 void reportScrollStateChange(int newState) { 3882 if (newState != mLastScrollState) { 3883 if (mOnScrollListener != null) { 3884 mLastScrollState = newState; 3885 mOnScrollListener.onScrollStateChanged(this, newState); 3886 } 3887 } 3888 } 3889 3890 /** 3891 * Responsible for fling behavior. Use {@link #start(int)} to 3892 * initiate a fling. Each frame of the fling is handled in {@link #run()}. 3893 * A FlingRunnable will keep re-posting itself until the fling is done. 3894 * 3895 */ 3896 private class FlingRunnable implements Runnable { 3897 /** 3898 * Tracks the decay of a fling scroll 3899 */ 3900 private final OverScroller mScroller; 3901 3902 /** 3903 * Y value reported by mScroller on the previous fling 3904 */ 3905 private int mLastFlingY; 3906 3907 private final Runnable mCheckFlywheel = new Runnable() { 3908 public void run() { 3909 final int activeId = mActivePointerId; 3910 final VelocityTracker vt = mVelocityTracker; 3911 final OverScroller scroller = mScroller; 3912 if (vt == null || activeId == INVALID_POINTER) { 3913 return; 3914 } 3915 3916 vt.computeCurrentVelocity(1000, mMaximumVelocity); 3917 final float yvel = -vt.getYVelocity(activeId); 3918 3919 if (Math.abs(yvel) >= mMinimumVelocity 3920 && scroller.isScrollingInDirection(0, yvel)) { 3921 // Keep the fling alive a little longer 3922 postDelayed(this, FLYWHEEL_TIMEOUT); 3923 } else { 3924 endFling(); 3925 mTouchMode = TOUCH_MODE_SCROLL; 3926 reportScrollStateChange(OnScrollListener.SCROLL_STATE_TOUCH_SCROLL); 3927 } 3928 } 3929 }; 3930 3931 private static final int FLYWHEEL_TIMEOUT = 40; // milliseconds 3932 3933 FlingRunnable() { 3934 mScroller = new OverScroller(getContext()); 3935 } 3936 3937 void start(int initialVelocity) { 3938 int initialY = initialVelocity < 0 ? Integer.MAX_VALUE : 0; 3939 mLastFlingY = initialY; 3940 mScroller.setInterpolator(null); 3941 mScroller.fling(0, initialY, 0, initialVelocity, 3942 0, Integer.MAX_VALUE, 0, Integer.MAX_VALUE); 3943 mTouchMode = TOUCH_MODE_FLING; 3944 postOnAnimation(this); 3945 3946 if (PROFILE_FLINGING) { 3947 if (!mFlingProfilingStarted) { 3948 Debug.startMethodTracing("AbsListViewFling"); 3949 mFlingProfilingStarted = true; 3950 } 3951 } 3952 3953 if (mFlingStrictSpan == null) { 3954 mFlingStrictSpan = StrictMode.enterCriticalSpan("AbsListView-fling"); 3955 } 3956 } 3957 3958 void startSpringback() { 3959 if (mScroller.springBack(0, mScrollY, 0, 0, 0, 0)) { 3960 mTouchMode = TOUCH_MODE_OVERFLING; 3961 invalidate(); 3962 postOnAnimation(this); 3963 } else { 3964 mTouchMode = TOUCH_MODE_REST; 3965 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 3966 } 3967 } 3968 3969 void startOverfling(int initialVelocity) { 3970 mScroller.setInterpolator(null); 3971 mScroller.fling(0, mScrollY, 0, initialVelocity, 0, 0, 3972 Integer.MIN_VALUE, Integer.MAX_VALUE, 0, getHeight()); 3973 mTouchMode = TOUCH_MODE_OVERFLING; 3974 invalidate(); 3975 postOnAnimation(this); 3976 } 3977 3978 void edgeReached(int delta) { 3979 mScroller.notifyVerticalEdgeReached(mScrollY, 0, mOverflingDistance); 3980 final int overscrollMode = getOverScrollMode(); 3981 if (overscrollMode == OVER_SCROLL_ALWAYS || 3982 (overscrollMode == OVER_SCROLL_IF_CONTENT_SCROLLS && !contentFits())) { 3983 mTouchMode = TOUCH_MODE_OVERFLING; 3984 final int vel = (int) mScroller.getCurrVelocity(); 3985 if (delta > 0) { 3986 mEdgeGlowTop.onAbsorb(vel); 3987 } else { 3988 mEdgeGlowBottom.onAbsorb(vel); 3989 } 3990 } else { 3991 mTouchMode = TOUCH_MODE_REST; 3992 if (mPositionScroller != null) { 3993 mPositionScroller.stop(); 3994 } 3995 } 3996 invalidate(); 3997 postOnAnimation(this); 3998 } 3999 4000 void startScroll(int distance, int duration, boolean linear) { 4001 int initialY = distance < 0 ? Integer.MAX_VALUE : 0; 4002 mLastFlingY = initialY; 4003 mScroller.setInterpolator(linear ? sLinearInterpolator : null); 4004 mScroller.startScroll(0, initialY, 0, distance, duration); 4005 mTouchMode = TOUCH_MODE_FLING; 4006 postOnAnimation(this); 4007 } 4008 4009 void endFling() { 4010 mTouchMode = TOUCH_MODE_REST; 4011 4012 removeCallbacks(this); 4013 removeCallbacks(mCheckFlywheel); 4014 4015 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 4016 clearScrollingCache(); 4017 mScroller.abortAnimation(); 4018 4019 if (mFlingStrictSpan != null) { 4020 mFlingStrictSpan.finish(); 4021 mFlingStrictSpan = null; 4022 } 4023 } 4024 4025 void flywheelTouch() { 4026 postDelayed(mCheckFlywheel, FLYWHEEL_TIMEOUT); 4027 } 4028 4029 public void run() { 4030 switch (mTouchMode) { 4031 default: 4032 endFling(); 4033 return; 4034 4035 case TOUCH_MODE_SCROLL: 4036 if (mScroller.isFinished()) { 4037 return; 4038 } 4039 // Fall through 4040 case TOUCH_MODE_FLING: { 4041 if (mDataChanged) { 4042 layoutChildren(); 4043 } 4044 4045 if (mItemCount == 0 || getChildCount() == 0) { 4046 endFling(); 4047 return; 4048 } 4049 4050 final OverScroller scroller = mScroller; 4051 boolean more = scroller.computeScrollOffset(); 4052 final int y = scroller.getCurrY(); 4053 4054 // Flip sign to convert finger direction to list items direction 4055 // (e.g. finger moving down means list is moving towards the top) 4056 int delta = mLastFlingY - y; 4057 4058 // Pretend that each frame of a fling scroll is a touch scroll 4059 if (delta > 0) { 4060 // List is moving towards the top. Use first view as mMotionPosition 4061 mMotionPosition = mFirstPosition; 4062 final View firstView = getChildAt(0); 4063 mMotionViewOriginalTop = firstView.getTop(); 4064 4065 // Don't fling more than 1 screen 4066 delta = Math.min(getHeight() - mPaddingBottom - mPaddingTop - 1, delta); 4067 } else { 4068 // List is moving towards the bottom. Use last view as mMotionPosition 4069 int offsetToLast = getChildCount() - 1; 4070 mMotionPosition = mFirstPosition + offsetToLast; 4071 4072 final View lastView = getChildAt(offsetToLast); 4073 mMotionViewOriginalTop = lastView.getTop(); 4074 4075 // Don't fling more than 1 screen 4076 delta = Math.max(-(getHeight() - mPaddingBottom - mPaddingTop - 1), delta); 4077 } 4078 4079 // Check to see if we have bumped into the scroll limit 4080 View motionView = getChildAt(mMotionPosition - mFirstPosition); 4081 int oldTop = 0; 4082 if (motionView != null) { 4083 oldTop = motionView.getTop(); 4084 } 4085 4086 // Don't stop just because delta is zero (it could have been rounded) 4087 final boolean atEdge = trackMotionScroll(delta, delta); 4088 final boolean atEnd = atEdge && (delta != 0); 4089 if (atEnd) { 4090 if (motionView != null) { 4091 // Tweak the scroll for how far we overshot 4092 int overshoot = -(delta - (motionView.getTop() - oldTop)); 4093 overScrollBy(0, overshoot, 0, mScrollY, 0, 0, 4094 0, mOverflingDistance, false); 4095 } 4096 if (more) { 4097 edgeReached(delta); 4098 } 4099 break; 4100 } 4101 4102 if (more && !atEnd) { 4103 if (atEdge) invalidate(); 4104 mLastFlingY = y; 4105 postOnAnimation(this); 4106 } else { 4107 endFling(); 4108 4109 if (PROFILE_FLINGING) { 4110 if (mFlingProfilingStarted) { 4111 Debug.stopMethodTracing(); 4112 mFlingProfilingStarted = false; 4113 } 4114 4115 if (mFlingStrictSpan != null) { 4116 mFlingStrictSpan.finish(); 4117 mFlingStrictSpan = null; 4118 } 4119 } 4120 } 4121 break; 4122 } 4123 4124 case TOUCH_MODE_OVERFLING: { 4125 final OverScroller scroller = mScroller; 4126 if (scroller.computeScrollOffset()) { 4127 final int scrollY = mScrollY; 4128 final int currY = scroller.getCurrY(); 4129 final int deltaY = currY - scrollY; 4130 if (overScrollBy(0, deltaY, 0, scrollY, 0, 0, 4131 0, mOverflingDistance, false)) { 4132 final boolean crossDown = scrollY <= 0 && currY > 0; 4133 final boolean crossUp = scrollY >= 0 && currY < 0; 4134 if (crossDown || crossUp) { 4135 int velocity = (int) scroller.getCurrVelocity(); 4136 if (crossUp) velocity = -velocity; 4137 4138 // Don't flywheel from this; we're just continuing things. 4139 scroller.abortAnimation(); 4140 start(velocity); 4141 } else { 4142 startSpringback(); 4143 } 4144 } else { 4145 invalidate(); 4146 postOnAnimation(this); 4147 } 4148 } else { 4149 endFling(); 4150 } 4151 break; 4152 } 4153 } 4154 } 4155 } 4156 4157 class PositionScroller implements Runnable { 4158 private static final int SCROLL_DURATION = 200; 4159 4160 private static final int MOVE_DOWN_POS = 1; 4161 private static final int MOVE_UP_POS = 2; 4162 private static final int MOVE_DOWN_BOUND = 3; 4163 private static final int MOVE_UP_BOUND = 4; 4164 private static final int MOVE_OFFSET = 5; 4165 4166 private int mMode; 4167 private int mTargetPos; 4168 private int mBoundPos; 4169 private int mLastSeenPos; 4170 private int mScrollDuration; 4171 private final int mExtraScroll; 4172 4173 private int mOffsetFromTop; 4174 4175 PositionScroller() { 4176 mExtraScroll = ViewConfiguration.get(mContext).getScaledFadingEdgeLength(); 4177 } 4178 4179 void start(final int position) { 4180 stop(); 4181 4182 if (mDataChanged) { 4183 // Wait until we're back in a stable state to try this. 4184 mPositionScrollAfterLayout = new Runnable() { 4185 @Override public void run() { 4186 start(position); 4187 } 4188 }; 4189 return; 4190 } 4191 4192 final int childCount = getChildCount(); 4193 if (childCount == 0) { 4194 // Can't scroll without children. 4195 return; 4196 } 4197 4198 final int firstPos = mFirstPosition; 4199 final int lastPos = firstPos + childCount - 1; 4200 4201 int viewTravelCount; 4202 int clampedPosition = Math.max(0, Math.min(getCount() - 1, position)); 4203 if (clampedPosition < firstPos) { 4204 viewTravelCount = firstPos - clampedPosition + 1; 4205 mMode = MOVE_UP_POS; 4206 } else if (clampedPosition > lastPos) { 4207 viewTravelCount = clampedPosition - lastPos + 1; 4208 mMode = MOVE_DOWN_POS; 4209 } else { 4210 scrollToVisible(clampedPosition, INVALID_POSITION, SCROLL_DURATION); 4211 return; 4212 } 4213 4214 if (viewTravelCount > 0) { 4215 mScrollDuration = SCROLL_DURATION / viewTravelCount; 4216 } else { 4217 mScrollDuration = SCROLL_DURATION; 4218 } 4219 mTargetPos = clampedPosition; 4220 mBoundPos = INVALID_POSITION; 4221 mLastSeenPos = INVALID_POSITION; 4222 4223 postOnAnimation(this); 4224 } 4225 4226 void start(final int position, final int boundPosition) { 4227 stop(); 4228 4229 if (boundPosition == INVALID_POSITION) { 4230 start(position); 4231 return; 4232 } 4233 4234 if (mDataChanged) { 4235 // Wait until we're back in a stable state to try this. 4236 mPositionScrollAfterLayout = new Runnable() { 4237 @Override public void run() { 4238 start(position, boundPosition); 4239 } 4240 }; 4241 return; 4242 } 4243 4244 final int childCount = getChildCount(); 4245 if (childCount == 0) { 4246 // Can't scroll without children. 4247 return; 4248 } 4249 4250 final int firstPos = mFirstPosition; 4251 final int lastPos = firstPos + childCount - 1; 4252 4253 int viewTravelCount; 4254 int clampedPosition = Math.max(0, Math.min(getCount() - 1, position)); 4255 if (clampedPosition < firstPos) { 4256 final int boundPosFromLast = lastPos - boundPosition; 4257 if (boundPosFromLast < 1) { 4258 // Moving would shift our bound position off the screen. Abort. 4259 return; 4260 } 4261 4262 final int posTravel = firstPos - clampedPosition + 1; 4263 final int boundTravel = boundPosFromLast - 1; 4264 if (boundTravel < posTravel) { 4265 viewTravelCount = boundTravel; 4266 mMode = MOVE_UP_BOUND; 4267 } else { 4268 viewTravelCount = posTravel; 4269 mMode = MOVE_UP_POS; 4270 } 4271 } else if (clampedPosition > lastPos) { 4272 final int boundPosFromFirst = boundPosition - firstPos; 4273 if (boundPosFromFirst < 1) { 4274 // Moving would shift our bound position off the screen. Abort. 4275 return; 4276 } 4277 4278 final int posTravel = clampedPosition - lastPos + 1; 4279 final int boundTravel = boundPosFromFirst - 1; 4280 if (boundTravel < posTravel) { 4281 viewTravelCount = boundTravel; 4282 mMode = MOVE_DOWN_BOUND; 4283 } else { 4284 viewTravelCount = posTravel; 4285 mMode = MOVE_DOWN_POS; 4286 } 4287 } else { 4288 scrollToVisible(clampedPosition, boundPosition, SCROLL_DURATION); 4289 return; 4290 } 4291 4292 if (viewTravelCount > 0) { 4293 mScrollDuration = SCROLL_DURATION / viewTravelCount; 4294 } else { 4295 mScrollDuration = SCROLL_DURATION; 4296 } 4297 mTargetPos = clampedPosition; 4298 mBoundPos = boundPosition; 4299 mLastSeenPos = INVALID_POSITION; 4300 4301 postOnAnimation(this); 4302 } 4303 4304 void startWithOffset(int position, int offset) { 4305 startWithOffset(position, offset, SCROLL_DURATION); 4306 } 4307 4308 void startWithOffset(final int position, int offset, final int duration) { 4309 stop(); 4310 4311 if (mDataChanged) { 4312 // Wait until we're back in a stable state to try this. 4313 final int postOffset = offset; 4314 mPositionScrollAfterLayout = new Runnable() { 4315 @Override public void run() { 4316 startWithOffset(position, postOffset, duration); 4317 } 4318 }; 4319 return; 4320 } 4321 4322 final int childCount = getChildCount(); 4323 if (childCount == 0) { 4324 // Can't scroll without children. 4325 return; 4326 } 4327 4328 offset += getPaddingTop(); 4329 4330 mTargetPos = Math.max(0, Math.min(getCount() - 1, position)); 4331 mOffsetFromTop = offset; 4332 mBoundPos = INVALID_POSITION; 4333 mLastSeenPos = INVALID_POSITION; 4334 mMode = MOVE_OFFSET; 4335 4336 final int firstPos = mFirstPosition; 4337 final int lastPos = firstPos + childCount - 1; 4338 4339 int viewTravelCount; 4340 if (mTargetPos < firstPos) { 4341 viewTravelCount = firstPos - mTargetPos; 4342 } else if (mTargetPos > lastPos) { 4343 viewTravelCount = mTargetPos - lastPos; 4344 } else { 4345 // On-screen, just scroll. 4346 final int targetTop = getChildAt(mTargetPos - firstPos).getTop(); 4347 smoothScrollBy(targetTop - offset, duration, true); 4348 return; 4349 } 4350 4351 // Estimate how many screens we should travel 4352 final float screenTravelCount = (float) viewTravelCount / childCount; 4353 mScrollDuration = screenTravelCount < 1 ? 4354 duration : (int) (duration / screenTravelCount); 4355 mLastSeenPos = INVALID_POSITION; 4356 4357 postOnAnimation(this); 4358 } 4359 4360 /** 4361 * Scroll such that targetPos is in the visible padded region without scrolling 4362 * boundPos out of view. Assumes targetPos is onscreen. 4363 */ 4364 void scrollToVisible(int targetPos, int boundPos, int duration) { 4365 final int firstPos = mFirstPosition; 4366 final int childCount = getChildCount(); 4367 final int lastPos = firstPos + childCount - 1; 4368 final int paddedTop = mListPadding.top; 4369 final int paddedBottom = getHeight() - mListPadding.bottom; 4370 4371 if (targetPos < firstPos || targetPos > lastPos) { 4372 Log.w(TAG, "scrollToVisible called with targetPos " + targetPos + 4373 " not visible [" + firstPos + ", " + lastPos + "]"); 4374 } 4375 if (boundPos < firstPos || boundPos > lastPos) { 4376 // boundPos doesn't matter, it's already offscreen. 4377 boundPos = INVALID_POSITION; 4378 } 4379 4380 final View targetChild = getChildAt(targetPos - firstPos); 4381 final int targetTop = targetChild.getTop(); 4382 final int targetBottom = targetChild.getBottom(); 4383 int scrollBy = 0; 4384 4385 if (targetBottom > paddedBottom) { 4386 scrollBy = targetBottom - paddedBottom; 4387 } 4388 if (targetTop < paddedTop) { 4389 scrollBy = targetTop - paddedTop; 4390 } 4391 4392 if (scrollBy == 0) { 4393 return; 4394 } 4395 4396 if (boundPos >= 0) { 4397 final View boundChild = getChildAt(boundPos - firstPos); 4398 final int boundTop = boundChild.getTop(); 4399 final int boundBottom = boundChild.getBottom(); 4400 final int absScroll = Math.abs(scrollBy); 4401 4402 if (scrollBy < 0 && boundBottom + absScroll > paddedBottom) { 4403 // Don't scroll the bound view off the bottom of the screen. 4404 scrollBy = Math.max(0, boundBottom - paddedBottom); 4405 } else if (scrollBy > 0 && boundTop - absScroll < paddedTop) { 4406 // Don't scroll the bound view off the top of the screen. 4407 scrollBy = Math.min(0, boundTop - paddedTop); 4408 } 4409 } 4410 4411 smoothScrollBy(scrollBy, duration); 4412 } 4413 4414 void stop() { 4415 removeCallbacks(this); 4416 } 4417 4418 public void run() { 4419 final int listHeight = getHeight(); 4420 final int firstPos = mFirstPosition; 4421 4422 switch (mMode) { 4423 case MOVE_DOWN_POS: { 4424 final int lastViewIndex = getChildCount() - 1; 4425 final int lastPos = firstPos + lastViewIndex; 4426 4427 if (lastViewIndex < 0) { 4428 return; 4429 } 4430 4431 if (lastPos == mLastSeenPos) { 4432 // No new views, let things keep going. 4433 postOnAnimation(this); 4434 return; 4435 } 4436 4437 final View lastView = getChildAt(lastViewIndex); 4438 final int lastViewHeight = lastView.getHeight(); 4439 final int lastViewTop = lastView.getTop(); 4440 final int lastViewPixelsShowing = listHeight - lastViewTop; 4441 final int extraScroll = lastPos < mItemCount - 1 ? 4442 Math.max(mListPadding.bottom, mExtraScroll) : mListPadding.bottom; 4443 4444 final int scrollBy = lastViewHeight - lastViewPixelsShowing + extraScroll; 4445 smoothScrollBy(scrollBy, mScrollDuration, true); 4446 4447 mLastSeenPos = lastPos; 4448 if (lastPos < mTargetPos) { 4449 postOnAnimation(this); 4450 } 4451 break; 4452 } 4453 4454 case MOVE_DOWN_BOUND: { 4455 final int nextViewIndex = 1; 4456 final int childCount = getChildCount(); 4457 4458 if (firstPos == mBoundPos || childCount <= nextViewIndex 4459 || firstPos + childCount >= mItemCount) { 4460 return; 4461 } 4462 final int nextPos = firstPos + nextViewIndex; 4463 4464 if (nextPos == mLastSeenPos) { 4465 // No new views, let things keep going. 4466 postOnAnimation(this); 4467 return; 4468 } 4469 4470 final View nextView = getChildAt(nextViewIndex); 4471 final int nextViewHeight = nextView.getHeight(); 4472 final int nextViewTop = nextView.getTop(); 4473 final int extraScroll = Math.max(mListPadding.bottom, mExtraScroll); 4474 if (nextPos < mBoundPos) { 4475 smoothScrollBy(Math.max(0, nextViewHeight + nextViewTop - extraScroll), 4476 mScrollDuration, true); 4477 4478 mLastSeenPos = nextPos; 4479 4480 postOnAnimation(this); 4481 } else { 4482 if (nextViewTop > extraScroll) { 4483 smoothScrollBy(nextViewTop - extraScroll, mScrollDuration, true); 4484 } 4485 } 4486 break; 4487 } 4488 4489 case MOVE_UP_POS: { 4490 if (firstPos == mLastSeenPos) { 4491 // No new views, let things keep going. 4492 postOnAnimation(this); 4493 return; 4494 } 4495 4496 final View firstView = getChildAt(0); 4497 if (firstView == null) { 4498 return; 4499 } 4500 final int firstViewTop = firstView.getTop(); 4501 final int extraScroll = firstPos > 0 ? 4502 Math.max(mExtraScroll, mListPadding.top) : mListPadding.top; 4503 4504 smoothScrollBy(firstViewTop - extraScroll, mScrollDuration, true); 4505 4506 mLastSeenPos = firstPos; 4507 4508 if (firstPos > mTargetPos) { 4509 postOnAnimation(this); 4510 } 4511 break; 4512 } 4513 4514 case MOVE_UP_BOUND: { 4515 final int lastViewIndex = getChildCount() - 2; 4516 if (lastViewIndex < 0) { 4517 return; 4518 } 4519 final int lastPos = firstPos + lastViewIndex; 4520 4521 if (lastPos == mLastSeenPos) { 4522 // No new views, let things keep going. 4523 postOnAnimation(this); 4524 return; 4525 } 4526 4527 final View lastView = getChildAt(lastViewIndex); 4528 final int lastViewHeight = lastView.getHeight(); 4529 final int lastViewTop = lastView.getTop(); 4530 final int lastViewPixelsShowing = listHeight - lastViewTop; 4531 final int extraScroll = Math.max(mListPadding.top, mExtraScroll); 4532 mLastSeenPos = lastPos; 4533 if (lastPos > mBoundPos) { 4534 smoothScrollBy(-(lastViewPixelsShowing - extraScroll), mScrollDuration, true); 4535 postOnAnimation(this); 4536 } else { 4537 final int bottom = listHeight - extraScroll; 4538 final int lastViewBottom = lastViewTop + lastViewHeight; 4539 if (bottom > lastViewBottom) { 4540 smoothScrollBy(-(bottom - lastViewBottom), mScrollDuration, true); 4541 } 4542 } 4543 break; 4544 } 4545 4546 case MOVE_OFFSET: { 4547 if (mLastSeenPos == firstPos) { 4548 // No new views, let things keep going. 4549 postOnAnimation(this); 4550 return; 4551 } 4552 4553 mLastSeenPos = firstPos; 4554 4555 final int childCount = getChildCount(); 4556 final int position = mTargetPos; 4557 final int lastPos = firstPos + childCount - 1; 4558 4559 int viewTravelCount = 0; 4560 if (position < firstPos) { 4561 viewTravelCount = firstPos - position + 1; 4562 } else if (position > lastPos) { 4563 viewTravelCount = position - lastPos; 4564 } 4565 4566 // Estimate how many screens we should travel 4567 final float screenTravelCount = (float) viewTravelCount / childCount; 4568 4569 final float modifier = Math.min(Math.abs(screenTravelCount), 1.f); 4570 if (position < firstPos) { 4571 final int distance = (int) (-getHeight() * modifier); 4572 final int duration = (int) (mScrollDuration * modifier); 4573 smoothScrollBy(distance, duration, true); 4574 postOnAnimation(this); 4575 } else if (position > lastPos) { 4576 final int distance = (int) (getHeight() * modifier); 4577 final int duration = (int) (mScrollDuration * modifier); 4578 smoothScrollBy(distance, duration, true); 4579 postOnAnimation(this); 4580 } else { 4581 // On-screen, just scroll. 4582 final int targetTop = getChildAt(position - firstPos).getTop(); 4583 final int distance = targetTop - mOffsetFromTop; 4584 final int duration = (int) (mScrollDuration * 4585 ((float) Math.abs(distance) / getHeight())); 4586 smoothScrollBy(distance, duration, true); 4587 } 4588 break; 4589 } 4590 4591 default: 4592 break; 4593 } 4594 } 4595 } 4596 4597 /** 4598 * The amount of friction applied to flings. The default value 4599 * is {@link ViewConfiguration#getScrollFriction}. 4600 * 4601 * @return A scalar dimensionless value representing the coefficient of 4602 * friction. 4603 */ 4604 public void setFriction(float friction) { 4605 if (mFlingRunnable == null) { 4606 mFlingRunnable = new FlingRunnable(); 4607 } 4608 mFlingRunnable.mScroller.setFriction(friction); 4609 } 4610 4611 /** 4612 * Sets a scale factor for the fling velocity. The initial scale 4613 * factor is 1.0. 4614 * 4615 * @param scale The scale factor to multiply the velocity by. 4616 */ 4617 public void setVelocityScale(float scale) { 4618 mVelocityScale = scale; 4619 } 4620 4621 /** 4622 * Smoothly scroll to the specified adapter position. The view will 4623 * scroll such that the indicated position is displayed. 4624 * @param position Scroll to this adapter position. 4625 */ 4626 public void smoothScrollToPosition(int position) { 4627 if (mPositionScroller == null) { 4628 mPositionScroller = new PositionScroller(); 4629 } 4630 mPositionScroller.start(position); 4631 } 4632 4633 /** 4634 * Smoothly scroll to the specified adapter position. The view will scroll 4635 * such that the indicated position is displayed <code>offset</code> pixels from 4636 * the top edge of the view. If this is impossible, (e.g. the offset would scroll 4637 * the first or last item beyond the boundaries of the list) it will get as close 4638 * as possible. The scroll will take <code>duration</code> milliseconds to complete. 4639 * 4640 * @param position Position to scroll to 4641 * @param offset Desired distance in pixels of <code>position</code> from the top 4642 * of the view when scrolling is finished 4643 * @param duration Number of milliseconds to use for the scroll 4644 */ 4645 public void smoothScrollToPositionFromTop(int position, int offset, int duration) { 4646 if (mPositionScroller == null) { 4647 mPositionScroller = new PositionScroller(); 4648 } 4649 mPositionScroller.startWithOffset(position, offset, duration); 4650 } 4651 4652 /** 4653 * Smoothly scroll to the specified adapter position. The view will scroll 4654 * such that the indicated position is displayed <code>offset</code> pixels from 4655 * the top edge of the view. If this is impossible, (e.g. the offset would scroll 4656 * the first or last item beyond the boundaries of the list) it will get as close 4657 * as possible. 4658 * 4659 * @param position Position to scroll to 4660 * @param offset Desired distance in pixels of <code>position</code> from the top 4661 * of the view when scrolling is finished 4662 */ 4663 public void smoothScrollToPositionFromTop(int position, int offset) { 4664 if (mPositionScroller == null) { 4665 mPositionScroller = new PositionScroller(); 4666 } 4667 mPositionScroller.startWithOffset(position, offset); 4668 } 4669 4670 /** 4671 * Smoothly scroll to the specified adapter position. The view will 4672 * scroll such that the indicated position is displayed, but it will 4673 * stop early if scrolling further would scroll boundPosition out of 4674 * view. 4675 * @param position Scroll to this adapter position. 4676 * @param boundPosition Do not scroll if it would move this adapter 4677 * position out of view. 4678 */ 4679 public void smoothScrollToPosition(int position, int boundPosition) { 4680 if (mPositionScroller == null) { 4681 mPositionScroller = new PositionScroller(); 4682 } 4683 mPositionScroller.start(position, boundPosition); 4684 } 4685 4686 /** 4687 * Smoothly scroll by distance pixels over duration milliseconds. 4688 * @param distance Distance to scroll in pixels. 4689 * @param duration Duration of the scroll animation in milliseconds. 4690 */ 4691 public void smoothScrollBy(int distance, int duration) { 4692 smoothScrollBy(distance, duration, false); 4693 } 4694 4695 void smoothScrollBy(int distance, int duration, boolean linear) { 4696 if (mFlingRunnable == null) { 4697 mFlingRunnable = new FlingRunnable(); 4698 } 4699 4700 // No sense starting to scroll if we're not going anywhere 4701 final int firstPos = mFirstPosition; 4702 final int childCount = getChildCount(); 4703 final int lastPos = firstPos + childCount; 4704 final int topLimit = getPaddingTop(); 4705 final int bottomLimit = getHeight() - getPaddingBottom(); 4706 4707 if (distance == 0 || mItemCount == 0 || childCount == 0 || 4708 (firstPos == 0 && getChildAt(0).getTop() == topLimit && distance < 0) || 4709 (lastPos == mItemCount && 4710 getChildAt(childCount - 1).getBottom() == bottomLimit && distance > 0)) { 4711 mFlingRunnable.endFling(); 4712 if (mPositionScroller != null) { 4713 mPositionScroller.stop(); 4714 } 4715 } else { 4716 reportScrollStateChange(OnScrollListener.SCROLL_STATE_FLING); 4717 mFlingRunnable.startScroll(distance, duration, linear); 4718 } 4719 } 4720 4721 /** 4722 * Allows RemoteViews to scroll relatively to a position. 4723 */ 4724 void smoothScrollByOffset(int position) { 4725 int index = -1; 4726 if (position < 0) { 4727 index = getFirstVisiblePosition(); 4728 } else if (position > 0) { 4729 index = getLastVisiblePosition(); 4730 } 4731 4732 if (index > -1) { 4733 View child = getChildAt(index - getFirstVisiblePosition()); 4734 if (child != null) { 4735 Rect visibleRect = new Rect(); 4736 if (child.getGlobalVisibleRect(visibleRect)) { 4737 // the child is partially visible 4738 int childRectArea = child.getWidth() * child.getHeight(); 4739 int visibleRectArea = visibleRect.width() * visibleRect.height(); 4740 float visibleArea = (visibleRectArea / (float) childRectArea); 4741 final float visibleThreshold = 0.75f; 4742 if ((position < 0) && (visibleArea < visibleThreshold)) { 4743 // the top index is not perceivably visible so offset 4744 // to account for showing that top index as well 4745 ++index; 4746 } else if ((position > 0) && (visibleArea < visibleThreshold)) { 4747 // the bottom index is not perceivably visible so offset 4748 // to account for showing that bottom index as well 4749 --index; 4750 } 4751 } 4752 smoothScrollToPosition(Math.max(0, Math.min(getCount(), index + position))); 4753 } 4754 } 4755 } 4756 4757 private void createScrollingCache() { 4758 if (mScrollingCacheEnabled && !mCachingStarted && !isHardwareAccelerated()) { 4759 setChildrenDrawnWithCacheEnabled(true); 4760 setChildrenDrawingCacheEnabled(true); 4761 mCachingStarted = mCachingActive = true; 4762 } 4763 } 4764 4765 private void clearScrollingCache() { 4766 if (!isHardwareAccelerated()) { 4767 if (mClearScrollingCache == null) { 4768 mClearScrollingCache = new Runnable() { 4769 public void run() { 4770 if (mCachingStarted) { 4771 mCachingStarted = mCachingActive = false; 4772 setChildrenDrawnWithCacheEnabled(false); 4773 if ((mPersistentDrawingCache & PERSISTENT_SCROLLING_CACHE) == 0) { 4774 setChildrenDrawingCacheEnabled(false); 4775 } 4776 if (!isAlwaysDrawnWithCacheEnabled()) { 4777 invalidate(); 4778 } 4779 } 4780 } 4781 }; 4782 } 4783 post(mClearScrollingCache); 4784 } 4785 } 4786 4787 /** 4788 * Track a motion scroll 4789 * 4790 * @param deltaY Amount to offset mMotionView. This is the accumulated delta since the motion 4791 * began. Positive numbers mean the user's finger is moving down the screen. 4792 * @param incrementalDeltaY Change in deltaY from the previous event. 4793 * @return true if we're already at the beginning/end of the list and have nothing to do. 4794 */ 4795 boolean trackMotionScroll(int deltaY, int incrementalDeltaY) { 4796 final int childCount = getChildCount(); 4797 if (childCount == 0) { 4798 return true; 4799 } 4800 4801 final int firstTop = getChildAt(0).getTop(); 4802 final int lastBottom = getChildAt(childCount - 1).getBottom(); 4803 4804 final Rect listPadding = mListPadding; 4805 4806 // "effective padding" In this case is the amount of padding that affects 4807 // how much space should not be filled by items. If we don't clip to padding 4808 // there is no effective padding. 4809 int effectivePaddingTop = 0; 4810 int effectivePaddingBottom = 0; 4811 if ((mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK) { 4812 effectivePaddingTop = listPadding.top; 4813 effectivePaddingBottom = listPadding.bottom; 4814 } 4815 4816 // FIXME account for grid vertical spacing too? 4817 final int spaceAbove = effectivePaddingTop - firstTop; 4818 final int end = getHeight() - effectivePaddingBottom; 4819 final int spaceBelow = lastBottom - end; 4820 4821 final int height = getHeight() - mPaddingBottom - mPaddingTop; 4822 if (deltaY < 0) { 4823 deltaY = Math.max(-(height - 1), deltaY); 4824 } else { 4825 deltaY = Math.min(height - 1, deltaY); 4826 } 4827 4828 if (incrementalDeltaY < 0) { 4829 incrementalDeltaY = Math.max(-(height - 1), incrementalDeltaY); 4830 } else { 4831 incrementalDeltaY = Math.min(height - 1, incrementalDeltaY); 4832 } 4833 4834 final int firstPosition = mFirstPosition; 4835 4836 // Update our guesses for where the first and last views are 4837 if (firstPosition == 0) { 4838 mFirstPositionDistanceGuess = firstTop - listPadding.top; 4839 } else { 4840 mFirstPositionDistanceGuess += incrementalDeltaY; 4841 } 4842 if (firstPosition + childCount == mItemCount) { 4843 mLastPositionDistanceGuess = lastBottom + listPadding.bottom; 4844 } else { 4845 mLastPositionDistanceGuess += incrementalDeltaY; 4846 } 4847 4848 final boolean cannotScrollDown = (firstPosition == 0 && 4849 firstTop >= listPadding.top && incrementalDeltaY >= 0); 4850 final boolean cannotScrollUp = (firstPosition + childCount == mItemCount && 4851 lastBottom <= getHeight() - listPadding.bottom && incrementalDeltaY <= 0); 4852 4853 if (cannotScrollDown || cannotScrollUp) { 4854 return incrementalDeltaY != 0; 4855 } 4856 4857 final boolean down = incrementalDeltaY < 0; 4858 4859 final boolean inTouchMode = isInTouchMode(); 4860 if (inTouchMode) { 4861 hideSelector(); 4862 } 4863 4864 final int headerViewsCount = getHeaderViewsCount(); 4865 final int footerViewsStart = mItemCount - getFooterViewsCount(); 4866 4867 int start = 0; 4868 int count = 0; 4869 4870 if (down) { 4871 int top = -incrementalDeltaY; 4872 if ((mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK) { 4873 top += listPadding.top; 4874 } 4875 for (int i = 0; i < childCount; i++) { 4876 final View child = getChildAt(i); 4877 if (child.getBottom() >= top) { 4878 break; 4879 } else { 4880 count++; 4881 int position = firstPosition + i; 4882 if (position >= headerViewsCount && position < footerViewsStart) { 4883 mRecycler.addScrapView(child, position); 4884 } 4885 } 4886 } 4887 } else { 4888 int bottom = getHeight() - incrementalDeltaY; 4889 if ((mGroupFlags & CLIP_TO_PADDING_MASK) == CLIP_TO_PADDING_MASK) { 4890 bottom -= listPadding.bottom; 4891 } 4892 for (int i = childCount - 1; i >= 0; i--) { 4893 final View child = getChildAt(i); 4894 if (child.getTop() <= bottom) { 4895 break; 4896 } else { 4897 start = i; 4898 count++; 4899 int position = firstPosition + i; 4900 if (position >= headerViewsCount && position < footerViewsStart) { 4901 mRecycler.addScrapView(child, position); 4902 } 4903 } 4904 } 4905 } 4906 4907 mMotionViewNewTop = mMotionViewOriginalTop + deltaY; 4908 4909 mBlockLayoutRequests = true; 4910 4911 if (count > 0) { 4912 detachViewsFromParent(start, count); 4913 mRecycler.removeSkippedScrap(); 4914 } 4915 4916 // invalidate before moving the children to avoid unnecessary invalidate 4917 // calls to bubble up from the children all the way to the top 4918 if (!awakenScrollBars()) { 4919 invalidate(); 4920 } 4921 4922 offsetChildrenTopAndBottom(incrementalDeltaY); 4923 4924 if (down) { 4925 mFirstPosition += count; 4926 } 4927 4928 final int absIncrementalDeltaY = Math.abs(incrementalDeltaY); 4929 if (spaceAbove < absIncrementalDeltaY || spaceBelow < absIncrementalDeltaY) { 4930 fillGap(down); 4931 } 4932 4933 if (!inTouchMode && mSelectedPosition != INVALID_POSITION) { 4934 final int childIndex = mSelectedPosition - mFirstPosition; 4935 if (childIndex >= 0 && childIndex < getChildCount()) { 4936 positionSelector(mSelectedPosition, getChildAt(childIndex)); 4937 } 4938 } else if (mSelectorPosition != INVALID_POSITION) { 4939 final int childIndex = mSelectorPosition - mFirstPosition; 4940 if (childIndex >= 0 && childIndex < getChildCount()) { 4941 positionSelector(INVALID_POSITION, getChildAt(childIndex)); 4942 } 4943 } else { 4944 mSelectorRect.setEmpty(); 4945 } 4946 4947 mBlockLayoutRequests = false; 4948 4949 invokeOnItemScrollListener(); 4950 4951 return false; 4952 } 4953 4954 /** 4955 * Returns the number of header views in the list. Header views are special views 4956 * at the top of the list that should not be recycled during a layout. 4957 * 4958 * @return The number of header views, 0 in the default implementation. 4959 */ 4960 int getHeaderViewsCount() { 4961 return 0; 4962 } 4963 4964 /** 4965 * Returns the number of footer views in the list. Footer views are special views 4966 * at the bottom of the list that should not be recycled during a layout. 4967 * 4968 * @return The number of footer views, 0 in the default implementation. 4969 */ 4970 int getFooterViewsCount() { 4971 return 0; 4972 } 4973 4974 /** 4975 * Fills the gap left open by a touch-scroll. During a touch scroll, children that 4976 * remain on screen are shifted and the other ones are discarded. The role of this 4977 * method is to fill the gap thus created by performing a partial layout in the 4978 * empty space. 4979 * 4980 * @param down true if the scroll is going down, false if it is going up 4981 */ 4982 abstract void fillGap(boolean down); 4983 4984 void hideSelector() { 4985 if (mSelectedPosition != INVALID_POSITION) { 4986 if (mLayoutMode != LAYOUT_SPECIFIC) { 4987 mResurrectToPosition = mSelectedPosition; 4988 } 4989 if (mNextSelectedPosition >= 0 && mNextSelectedPosition != mSelectedPosition) { 4990 mResurrectToPosition = mNextSelectedPosition; 4991 } 4992 setSelectedPositionInt(INVALID_POSITION); 4993 setNextSelectedPositionInt(INVALID_POSITION); 4994 mSelectedTop = 0; 4995 } 4996 } 4997 4998 /** 4999 * @return A position to select. First we try mSelectedPosition. If that has been clobbered by 5000 * entering touch mode, we then try mResurrectToPosition. Values are pinned to the range 5001 * of items available in the adapter 5002 */ 5003 int reconcileSelectedPosition() { 5004 int position = mSelectedPosition; 5005 if (position < 0) { 5006 position = mResurrectToPosition; 5007 } 5008 position = Math.max(0, position); 5009 position = Math.min(position, mItemCount - 1); 5010 return position; 5011 } 5012 5013 /** 5014 * Find the row closest to y. This row will be used as the motion row when scrolling 5015 * 5016 * @param y Where the user touched 5017 * @return The position of the first (or only) item in the row containing y 5018 */ 5019 abstract int findMotionRow(int y); 5020 5021 /** 5022 * Find the row closest to y. This row will be used as the motion row when scrolling. 5023 * 5024 * @param y Where the user touched 5025 * @return The position of the first (or only) item in the row closest to y 5026 */ 5027 int findClosestMotionRow(int y) { 5028 final int childCount = getChildCount(); 5029 if (childCount == 0) { 5030 return INVALID_POSITION; 5031 } 5032 5033 final int motionRow = findMotionRow(y); 5034 return motionRow != INVALID_POSITION ? motionRow : mFirstPosition + childCount - 1; 5035 } 5036 5037 /** 5038 * Causes all the views to be rebuilt and redrawn. 5039 */ 5040 public void invalidateViews() { 5041 mDataChanged = true; 5042 rememberSyncState(); 5043 requestLayout(); 5044 invalidate(); 5045 } 5046 5047 /** 5048 * If there is a selection returns false. 5049 * Otherwise resurrects the selection and returns true if resurrected. 5050 */ 5051 boolean resurrectSelectionIfNeeded() { 5052 if (mSelectedPosition < 0 && resurrectSelection()) { 5053 updateSelectorState(); 5054 return true; 5055 } 5056 return false; 5057 } 5058 5059 /** 5060 * Makes the item at the supplied position selected. 5061 * 5062 * @param position the position of the new selection 5063 */ 5064 abstract void setSelectionInt(int position); 5065 5066 /** 5067 * Attempt to bring the selection back if the user is switching from touch 5068 * to trackball mode 5069 * @return Whether selection was set to something. 5070 */ 5071 boolean resurrectSelection() { 5072 final int childCount = getChildCount(); 5073 5074 if (childCount <= 0) { 5075 return false; 5076 } 5077 5078 int selectedTop = 0; 5079 int selectedPos; 5080 int childrenTop = mListPadding.top; 5081 int childrenBottom = mBottom - mTop - mListPadding.bottom; 5082 final int firstPosition = mFirstPosition; 5083 final int toPosition = mResurrectToPosition; 5084 boolean down = true; 5085 5086 if (toPosition >= firstPosition && toPosition < firstPosition + childCount) { 5087 selectedPos = toPosition; 5088 5089 final View selected = getChildAt(selectedPos - mFirstPosition); 5090 selectedTop = selected.getTop(); 5091 int selectedBottom = selected.getBottom(); 5092 5093 // We are scrolled, don't get in the fade 5094 if (selectedTop < childrenTop) { 5095 selectedTop = childrenTop + getVerticalFadingEdgeLength(); 5096 } else if (selectedBottom > childrenBottom) { 5097 selectedTop = childrenBottom - selected.getMeasuredHeight() 5098 - getVerticalFadingEdgeLength(); 5099 } 5100 } else { 5101 if (toPosition < firstPosition) { 5102 // Default to selecting whatever is first 5103 selectedPos = firstPosition; 5104 for (int i = 0; i < childCount; i++) { 5105 final View v = getChildAt(i); 5106 final int top = v.getTop(); 5107 5108 if (i == 0) { 5109 // Remember the position of the first item 5110 selectedTop = top; 5111 // See if we are scrolled at all 5112 if (firstPosition > 0 || top < childrenTop) { 5113 // If we are scrolled, don't select anything that is 5114 // in the fade region 5115 childrenTop += getVerticalFadingEdgeLength(); 5116 } 5117 } 5118 if (top >= childrenTop) { 5119 // Found a view whose top is fully visisble 5120 selectedPos = firstPosition + i; 5121 selectedTop = top; 5122 break; 5123 } 5124 } 5125 } else { 5126 final int itemCount = mItemCount; 5127 down = false; 5128 selectedPos = firstPosition + childCount - 1; 5129 5130 for (int i = childCount - 1; i >= 0; i--) { 5131 final View v = getChildAt(i); 5132 final int top = v.getTop(); 5133 final int bottom = v.getBottom(); 5134 5135 if (i == childCount - 1) { 5136 selectedTop = top; 5137 if (firstPosition + childCount < itemCount || bottom > childrenBottom) { 5138 childrenBottom -= getVerticalFadingEdgeLength(); 5139 } 5140 } 5141 5142 if (bottom <= childrenBottom) { 5143 selectedPos = firstPosition + i; 5144 selectedTop = top; 5145 break; 5146 } 5147 } 5148 } 5149 } 5150 5151 mResurrectToPosition = INVALID_POSITION; 5152 removeCallbacks(mFlingRunnable); 5153 if (mPositionScroller != null) { 5154 mPositionScroller.stop(); 5155 } 5156 mTouchMode = TOUCH_MODE_REST; 5157 clearScrollingCache(); 5158 mSpecificTop = selectedTop; 5159 selectedPos = lookForSelectablePosition(selectedPos, down); 5160 if (selectedPos >= firstPosition && selectedPos <= getLastVisiblePosition()) { 5161 mLayoutMode = LAYOUT_SPECIFIC; 5162 updateSelectorState(); 5163 setSelectionInt(selectedPos); 5164 invokeOnItemScrollListener(); 5165 } else { 5166 selectedPos = INVALID_POSITION; 5167 } 5168 reportScrollStateChange(OnScrollListener.SCROLL_STATE_IDLE); 5169 5170 return selectedPos >= 0; 5171 } 5172 5173 void confirmCheckedPositionsById() { 5174 // Clear out the positional check states, we'll rebuild it below from IDs. 5175 mCheckStates.clear(); 5176 5177 boolean checkedCountChanged = false; 5178 for (int checkedIndex = 0; checkedIndex < mCheckedIdStates.size(); checkedIndex++) { 5179 final long id = mCheckedIdStates.keyAt(checkedIndex); 5180 final int lastPos = mCheckedIdStates.valueAt(checkedIndex); 5181 5182 final long lastPosId = mAdapter.getItemId(lastPos); 5183 if (id != lastPosId) { 5184 // Look around to see if the ID is nearby. If not, uncheck it. 5185 final int start = Math.max(0, lastPos - CHECK_POSITION_SEARCH_DISTANCE); 5186 final int end = Math.min(lastPos + CHECK_POSITION_SEARCH_DISTANCE, mItemCount); 5187 boolean found = false; 5188 for (int searchPos = start; searchPos < end; searchPos++) { 5189 final long searchId = mAdapter.getItemId(searchPos); 5190 if (id == searchId) { 5191 found = true; 5192 mCheckStates.put(searchPos, true); 5193 mCheckedIdStates.setValueAt(checkedIndex, searchPos); 5194 break; 5195 } 5196 } 5197 5198 if (!found) { 5199 mCheckedIdStates.delete(id); 5200 checkedIndex--; 5201 mCheckedItemCount--; 5202 checkedCountChanged = true; 5203 if (mChoiceActionMode != null && mMultiChoiceModeCallback != null) { 5204 mMultiChoiceModeCallback.onItemCheckedStateChanged(mChoiceActionMode, 5205 lastPos, id, false); 5206 } 5207 } 5208 } else { 5209 mCheckStates.put(lastPos, true); 5210 } 5211 } 5212 5213 if (checkedCountChanged && mChoiceActionMode != null) { 5214 mChoiceActionMode.invalidate(); 5215 } 5216 } 5217 5218 @Override 5219 protected void handleDataChanged() { 5220 int count = mItemCount; 5221 int lastHandledItemCount = mLastHandledItemCount; 5222 mLastHandledItemCount = mItemCount; 5223 5224 if (mChoiceMode != CHOICE_MODE_NONE && mAdapter != null && mAdapter.hasStableIds()) { 5225 confirmCheckedPositionsById(); 5226 } 5227 5228 // TODO: In the future we can recycle these views based on stable ID instead. 5229 mRecycler.clearTransientStateViews(); 5230 5231 if (count > 0) { 5232 int newPos; 5233 int selectablePos; 5234 5235 // Find the row we are supposed to sync to 5236 if (mNeedSync) { 5237 // Update this first, since setNextSelectedPositionInt inspects it 5238 mNeedSync = false; 5239 mPendingSync = null; 5240 5241 if (mTranscriptMode == TRANSCRIPT_MODE_ALWAYS_SCROLL) { 5242 mLayoutMode = LAYOUT_FORCE_BOTTOM; 5243 return; 5244 } else if (mTranscriptMode == TRANSCRIPT_MODE_NORMAL) { 5245 if (mForceTranscriptScroll) { 5246 mForceTranscriptScroll = false; 5247 mLayoutMode = LAYOUT_FORCE_BOTTOM; 5248 return; 5249 } 5250 final int childCount = getChildCount(); 5251 final int listBottom = getHeight() - getPaddingBottom(); 5252 final View lastChild = getChildAt(childCount - 1); 5253 final int lastBottom = lastChild != null ? lastChild.getBottom() : listBottom; 5254 if (mFirstPosition + childCount >= lastHandledItemCount && 5255 lastBottom <= listBottom) { 5256 mLayoutMode = LAYOUT_FORCE_BOTTOM; 5257 return; 5258 } 5259 // Something new came in and we didn't scroll; give the user a clue that 5260 // there's something new. 5261 awakenScrollBars(); 5262 } 5263 5264 switch (mSyncMode) { 5265 case SYNC_SELECTED_POSITION: 5266 if (isInTouchMode()) { 5267 // We saved our state when not in touch mode. (We know this because 5268 // mSyncMode is SYNC_SELECTED_POSITION.) Now we are trying to 5269 // restore in touch mode. Just leave mSyncPosition as it is (possibly 5270 // adjusting if the available range changed) and return. 5271 mLayoutMode = LAYOUT_SYNC; 5272 mSyncPosition = Math.min(Math.max(0, mSyncPosition), count - 1); 5273 5274 return; 5275 } else { 5276 // See if we can find a position in the new data with the same 5277 // id as the old selection. This will change mSyncPosition. 5278 newPos = findSyncPosition(); 5279 if (newPos >= 0) { 5280 // Found it. Now verify that new selection is still selectable 5281 selectablePos = lookForSelectablePosition(newPos, true); 5282 if (selectablePos == newPos) { 5283 // Same row id is selected 5284 mSyncPosition = newPos; 5285 5286 if (mSyncHeight == getHeight()) { 5287 // If we are at the same height as when we saved state, try 5288 // to restore the scroll position too. 5289 mLayoutMode = LAYOUT_SYNC; 5290 } else { 5291 // We are not the same height as when the selection was saved, so 5292 // don't try to restore the exact position 5293 mLayoutMode = LAYOUT_SET_SELECTION; 5294 } 5295 5296 // Restore selection 5297 setNextSelectedPositionInt(newPos); 5298 return; 5299 } 5300 } 5301 } 5302 break; 5303 case SYNC_FIRST_POSITION: 5304 // Leave mSyncPosition as it is -- just pin to available range 5305 mLayoutMode = LAYOUT_SYNC; 5306 mSyncPosition = Math.min(Math.max(0, mSyncPosition), count - 1); 5307 5308 return; 5309 } 5310 } 5311 5312 if (!isInTouchMode()) { 5313 // We couldn't find matching data -- try to use the same position 5314 newPos = getSelectedItemPosition(); 5315 5316 // Pin position to the available range 5317 if (newPos >= count) { 5318 newPos = count - 1; 5319 } 5320 if (newPos < 0) { 5321 newPos = 0; 5322 } 5323 5324 // Make sure we select something selectable -- first look down 5325 selectablePos = lookForSelectablePosition(newPos, true); 5326 5327 if (selectablePos >= 0) { 5328 setNextSelectedPositionInt(selectablePos); 5329 return; 5330 } else { 5331 // Looking down didn't work -- try looking up 5332 selectablePos = lookForSelectablePosition(newPos, false); 5333 if (selectablePos >= 0) { 5334 setNextSelectedPositionInt(selectablePos); 5335 return; 5336 } 5337 } 5338 } else { 5339 5340 // We already know where we want to resurrect the selection 5341 if (mResurrectToPosition >= 0) { 5342 return; 5343 } 5344 } 5345 5346 } 5347 5348 // Nothing is selected. Give up and reset everything. 5349 mLayoutMode = mStackFromBottom ? LAYOUT_FORCE_BOTTOM : LAYOUT_FORCE_TOP; 5350 mSelectedPosition = INVALID_POSITION; 5351 mSelectedRowId = INVALID_ROW_ID; 5352 mNextSelectedPosition = INVALID_POSITION; 5353 mNextSelectedRowId = INVALID_ROW_ID; 5354 mNeedSync = false; 5355 mPendingSync = null; 5356 mSelectorPosition = INVALID_POSITION; 5357 checkSelectionChanged(); 5358 } 5359 5360 @Override 5361 protected void onDisplayHint(int hint) { 5362 super.onDisplayHint(hint); 5363 switch (hint) { 5364 case INVISIBLE: 5365 if (mPopup != null && mPopup.isShowing()) { 5366 dismissPopup(); 5367 } 5368 break; 5369 case VISIBLE: 5370 if (mFiltered && mPopup != null && !mPopup.isShowing()) { 5371 showPopup(); 5372 } 5373 break; 5374 } 5375 mPopupHidden = hint == INVISIBLE; 5376 } 5377 5378 /** 5379 * Removes the filter window 5380 */ 5381 private void dismissPopup() { 5382 if (mPopup != null) { 5383 mPopup.dismiss(); 5384 } 5385 } 5386 5387 /** 5388 * Shows the filter window 5389 */ 5390 private void showPopup() { 5391 // Make sure we have a window before showing the popup 5392 if (getWindowVisibility() == View.VISIBLE) { 5393 createTextFilter(true); 5394 positionPopup(); 5395 // Make sure we get focus if we are showing the popup 5396 checkFocus(); 5397 } 5398 } 5399 5400 private void positionPopup() { 5401 int screenHeight = getResources().getDisplayMetrics().heightPixels; 5402 final int[] xy = new int[2]; 5403 getLocationOnScreen(xy); 5404 // TODO: The 20 below should come from the theme 5405 // TODO: And the gravity should be defined in the theme as well 5406 final int bottomGap = screenHeight - xy[1] - getHeight() + (int) (mDensityScale * 20); 5407 if (!mPopup.isShowing()) { 5408 mPopup.showAtLocation(this, Gravity.BOTTOM | Gravity.CENTER_HORIZONTAL, 5409 xy[0], bottomGap); 5410 } else { 5411 mPopup.update(xy[0], bottomGap, -1, -1); 5412 } 5413 } 5414 5415 /** 5416 * What is the distance between the source and destination rectangles given the direction of 5417 * focus navigation between them? The direction basically helps figure out more quickly what is 5418 * self evident by the relationship between the rects... 5419 * 5420 * @param source the source rectangle 5421 * @param dest the destination rectangle 5422 * @param direction the direction 5423 * @return the distance between the rectangles 5424 */ 5425 static int getDistance(Rect source, Rect dest, int direction) { 5426 int sX, sY; // source x, y 5427 int dX, dY; // dest x, y 5428 switch (direction) { 5429 case View.FOCUS_RIGHT: 5430 sX = source.right; 5431 sY = source.top + source.height() / 2; 5432 dX = dest.left; 5433 dY = dest.top + dest.height() / 2; 5434 break; 5435 case View.FOCUS_DOWN: 5436 sX = source.left + source.width() / 2; 5437 sY = source.bottom; 5438 dX = dest.left + dest.width() / 2; 5439 dY = dest.top; 5440 break; 5441 case View.FOCUS_LEFT: 5442 sX = source.left; 5443 sY = source.top + source.height() / 2; 5444 dX = dest.right; 5445 dY = dest.top + dest.height() / 2; 5446 break; 5447 case View.FOCUS_UP: 5448 sX = source.left + source.width() / 2; 5449 sY = source.top; 5450 dX = dest.left + dest.width() / 2; 5451 dY = dest.bottom; 5452 break; 5453 case View.FOCUS_FORWARD: 5454 case View.FOCUS_BACKWARD: 5455 sX = source.right + source.width() / 2; 5456 sY = source.top + source.height() / 2; 5457 dX = dest.left + dest.width() / 2; 5458 dY = dest.top + dest.height() / 2; 5459 break; 5460 default: 5461 throw new IllegalArgumentException("direction must be one of " 5462 + "{FOCUS_UP, FOCUS_DOWN, FOCUS_LEFT, FOCUS_RIGHT, " 5463 + "FOCUS_FORWARD, FOCUS_BACKWARD}."); 5464 } 5465 int deltaX = dX - sX; 5466 int deltaY = dY - sY; 5467 return deltaY * deltaY + deltaX * deltaX; 5468 } 5469 5470 @Override 5471 protected boolean isInFilterMode() { 5472 return mFiltered; 5473 } 5474 5475 /** 5476 * Sends a key to the text filter window 5477 * 5478 * @param keyCode The keycode for the event 5479 * @param event The actual key event 5480 * 5481 * @return True if the text filter handled the event, false otherwise. 5482 */ 5483 boolean sendToTextFilter(int keyCode, int count, KeyEvent event) { 5484 if (!acceptFilter()) { 5485 return false; 5486 } 5487 5488 boolean handled = false; 5489 boolean okToSend = true; 5490 switch (keyCode) { 5491 case KeyEvent.KEYCODE_DPAD_UP: 5492 case KeyEvent.KEYCODE_DPAD_DOWN: 5493 case KeyEvent.KEYCODE_DPAD_LEFT: 5494 case KeyEvent.KEYCODE_DPAD_RIGHT: 5495 case KeyEvent.KEYCODE_DPAD_CENTER: 5496 case KeyEvent.KEYCODE_ENTER: 5497 okToSend = false; 5498 break; 5499 case KeyEvent.KEYCODE_BACK: 5500 if (mFiltered && mPopup != null && mPopup.isShowing()) { 5501 if (event.getAction() == KeyEvent.ACTION_DOWN 5502 && event.getRepeatCount() == 0) { 5503 KeyEvent.DispatcherState state = getKeyDispatcherState(); 5504 if (state != null) { 5505 state.startTracking(event, this); 5506 } 5507 handled = true; 5508 } else if (event.getAction() == KeyEvent.ACTION_UP 5509 && event.isTracking() && !event.isCanceled()) { 5510 handled = true; 5511 mTextFilter.setText(""); 5512 } 5513 } 5514 okToSend = false; 5515 break; 5516 case KeyEvent.KEYCODE_SPACE: 5517 // Only send spaces once we are filtered 5518 okToSend = mFiltered; 5519 break; 5520 } 5521 5522 if (okToSend) { 5523 createTextFilter(true); 5524 5525 KeyEvent forwardEvent = event; 5526 if (forwardEvent.getRepeatCount() > 0) { 5527 forwardEvent = KeyEvent.changeTimeRepeat(event, event.getEventTime(), 0); 5528 } 5529 5530 int action = event.getAction(); 5531 switch (action) { 5532 case KeyEvent.ACTION_DOWN: 5533 handled = mTextFilter.onKeyDown(keyCode, forwardEvent); 5534 break; 5535 5536 case KeyEvent.ACTION_UP: 5537 handled = mTextFilter.onKeyUp(keyCode, forwardEvent); 5538 break; 5539 5540 case KeyEvent.ACTION_MULTIPLE: 5541 handled = mTextFilter.onKeyMultiple(keyCode, count, event); 5542 break; 5543 } 5544 } 5545 return handled; 5546 } 5547 5548 /** 5549 * Return an InputConnection for editing of the filter text. 5550 */ 5551 @Override 5552 public InputConnection onCreateInputConnection(EditorInfo outAttrs) { 5553 if (isTextFilterEnabled()) { 5554 // XXX we need to have the text filter created, so we can get an 5555 // InputConnection to proxy to. Unfortunately this means we pretty 5556 // much need to make it as soon as a list view gets focus. 5557 createTextFilter(false); 5558 if (mPublicInputConnection == null) { 5559 mDefInputConnection = new BaseInputConnection(this, false); 5560 mPublicInputConnection = new InputConnectionWrapper( 5561 mTextFilter.onCreateInputConnection(outAttrs), true) { 5562 @Override 5563 public boolean reportFullscreenMode(boolean enabled) { 5564 // Use our own input connection, since it is 5565 // the "real" one the IME is talking with. 5566 return mDefInputConnection.reportFullscreenMode(enabled); 5567 } 5568 5569 @Override 5570 public boolean performEditorAction(int editorAction) { 5571 // The editor is off in its own window; we need to be 5572 // the one that does this. 5573 if (editorAction == EditorInfo.IME_ACTION_DONE) { 5574 InputMethodManager imm = (InputMethodManager) 5575 getContext().getSystemService( 5576 Context.INPUT_METHOD_SERVICE); 5577 if (imm != null) { 5578 imm.hideSoftInputFromWindow(getWindowToken(), 0); 5579 } 5580 return true; 5581 } 5582 return false; 5583 } 5584 5585 @Override 5586 public boolean sendKeyEvent(KeyEvent event) { 5587 // Use our own input connection, since the filter 5588 // text view may not be shown in a window so has 5589 // no ViewAncestor to dispatch events with. 5590 return mDefInputConnection.sendKeyEvent(event); 5591 } 5592 }; 5593 } 5594 outAttrs.inputType = EditorInfo.TYPE_CLASS_TEXT 5595 | EditorInfo.TYPE_TEXT_VARIATION_FILTER; 5596 outAttrs.imeOptions = EditorInfo.IME_ACTION_DONE; 5597 return mPublicInputConnection; 5598 } 5599 return null; 5600 } 5601 5602 /** 5603 * For filtering we proxy an input connection to an internal text editor, 5604 * and this allows the proxying to happen. 5605 */ 5606 @Override 5607 public boolean checkInputConnectionProxy(View view) { 5608 return view == mTextFilter; 5609 } 5610 5611 /** 5612 * Creates the window for the text filter and populates it with an EditText field; 5613 * 5614 * @param animateEntrance true if the window should appear with an animation 5615 */ 5616 private void createTextFilter(boolean animateEntrance) { 5617 if (mPopup == null) { 5618 Context c = getContext(); 5619 PopupWindow p = new PopupWindow(c); 5620 LayoutInflater layoutInflater = (LayoutInflater) 5621 c.getSystemService(Context.LAYOUT_INFLATER_SERVICE); 5622 mTextFilter = (EditText) layoutInflater.inflate( 5623 com.android.internal.R.layout.typing_filter, null); 5624 // For some reason setting this as the "real" input type changes 5625 // the text view in some way that it doesn't work, and I don't 5626 // want to figure out why this is. 5627 mTextFilter.setRawInputType(EditorInfo.TYPE_CLASS_TEXT 5628 | EditorInfo.TYPE_TEXT_VARIATION_FILTER); 5629 mTextFilter.setImeOptions(EditorInfo.IME_FLAG_NO_EXTRACT_UI); 5630 mTextFilter.addTextChangedListener(this); 5631 p.setFocusable(false); 5632 p.setTouchable(false); 5633 p.setInputMethodMode(PopupWindow.INPUT_METHOD_NOT_NEEDED); 5634 p.setContentView(mTextFilter); 5635 p.setWidth(LayoutParams.WRAP_CONTENT); 5636 p.setHeight(LayoutParams.WRAP_CONTENT); 5637 p.setBackgroundDrawable(null); 5638 mPopup = p; 5639 getViewTreeObserver().addOnGlobalLayoutListener(this); 5640 mGlobalLayoutListenerAddedFilter = true; 5641 } 5642 if (animateEntrance) { 5643 mPopup.setAnimationStyle(com.android.internal.R.style.Animation_TypingFilter); 5644 } else { 5645 mPopup.setAnimationStyle(com.android.internal.R.style.Animation_TypingFilterRestore); 5646 } 5647 } 5648 5649 /** 5650 * Clear the text filter. 5651 */ 5652 public void clearTextFilter() { 5653 if (mFiltered) { 5654 mTextFilter.setText(""); 5655 mFiltered = false; 5656 if (mPopup != null && mPopup.isShowing()) { 5657 dismissPopup(); 5658 } 5659 } 5660 } 5661 5662 /** 5663 * Returns if the ListView currently has a text filter. 5664 */ 5665 public boolean hasTextFilter() { 5666 return mFiltered; 5667 } 5668 5669 public void onGlobalLayout() { 5670 if (isShown()) { 5671 // Show the popup if we are filtered 5672 if (mFiltered && mPopup != null && !mPopup.isShowing() && !mPopupHidden) { 5673 showPopup(); 5674 } 5675 } else { 5676 // Hide the popup when we are no longer visible 5677 if (mPopup != null && mPopup.isShowing()) { 5678 dismissPopup(); 5679 } 5680 } 5681 5682 } 5683 5684 /** 5685 * For our text watcher that is associated with the text filter. Does 5686 * nothing. 5687 */ 5688 public void beforeTextChanged(CharSequence s, int start, int count, int after) { 5689 } 5690 5691 /** 5692 * For our text watcher that is associated with the text filter. Performs 5693 * the actual filtering as the text changes, and takes care of hiding and 5694 * showing the popup displaying the currently entered filter text. 5695 */ 5696 public void onTextChanged(CharSequence s, int start, int before, int count) { 5697 if (mPopup != null && isTextFilterEnabled()) { 5698 int length = s.length(); 5699 boolean showing = mPopup.isShowing(); 5700 if (!showing && length > 0) { 5701 // Show the filter popup if necessary 5702 showPopup(); 5703 mFiltered = true; 5704 } else if (showing && length == 0) { 5705 // Remove the filter popup if the user has cleared all text 5706 dismissPopup(); 5707 mFiltered = false; 5708 } 5709 if (mAdapter instanceof Filterable) { 5710 Filter f = ((Filterable) mAdapter).getFilter(); 5711 // Filter should not be null when we reach this part 5712 if (f != null) { 5713 f.filter(s, this); 5714 } else { 5715 throw new IllegalStateException("You cannot call onTextChanged with a non " 5716 + "filterable adapter"); 5717 } 5718 } 5719 } 5720 } 5721 5722 /** 5723 * For our text watcher that is associated with the text filter. Does 5724 * nothing. 5725 */ 5726 public void afterTextChanged(Editable s) { 5727 } 5728 5729 public void onFilterComplete(int count) { 5730 if (mSelectedPosition < 0 && count > 0) { 5731 mResurrectToPosition = INVALID_POSITION; 5732 resurrectSelection(); 5733 } 5734 } 5735 5736 @Override 5737 protected ViewGroup.LayoutParams generateDefaultLayoutParams() { 5738 return new AbsListView.LayoutParams(ViewGroup.LayoutParams.MATCH_PARENT, 5739 ViewGroup.LayoutParams.WRAP_CONTENT, 0); 5740 } 5741 5742 @Override 5743 protected ViewGroup.LayoutParams generateLayoutParams(ViewGroup.LayoutParams p) { 5744 return new LayoutParams(p); 5745 } 5746 5747 @Override 5748 public LayoutParams generateLayoutParams(AttributeSet attrs) { 5749 return new AbsListView.LayoutParams(getContext(), attrs); 5750 } 5751 5752 @Override 5753 protected boolean checkLayoutParams(ViewGroup.LayoutParams p) { 5754 return p instanceof AbsListView.LayoutParams; 5755 } 5756 5757 /** 5758 * Puts the list or grid into transcript mode. In this mode the list or grid will always scroll 5759 * to the bottom to show new items. 5760 * 5761 * @param mode the transcript mode to set 5762 * 5763 * @see #TRANSCRIPT_MODE_DISABLED 5764 * @see #TRANSCRIPT_MODE_NORMAL 5765 * @see #TRANSCRIPT_MODE_ALWAYS_SCROLL 5766 */ 5767 public void setTranscriptMode(int mode) { 5768 mTranscriptMode = mode; 5769 } 5770 5771 /** 5772 * Returns the current transcript mode. 5773 * 5774 * @return {@link #TRANSCRIPT_MODE_DISABLED}, {@link #TRANSCRIPT_MODE_NORMAL} or 5775 * {@link #TRANSCRIPT_MODE_ALWAYS_SCROLL} 5776 */ 5777 public int getTranscriptMode() { 5778 return mTranscriptMode; 5779 } 5780 5781 @Override 5782 public int getSolidColor() { 5783 return mCacheColorHint; 5784 } 5785 5786 /** 5787 * When set to a non-zero value, the cache color hint indicates that this list is always drawn 5788 * on top of a solid, single-color, opaque background. 5789 * 5790 * Zero means that what's behind this object is translucent (non solid) or is not made of a 5791 * single color. This hint will not affect any existing background drawable set on this view ( 5792 * typically set via {@link #setBackgroundDrawable(Drawable)}). 5793 * 5794 * @param color The background color 5795 */ 5796 public void setCacheColorHint(int color) { 5797 if (color != mCacheColorHint) { 5798 mCacheColorHint = color; 5799 int count = getChildCount(); 5800 for (int i = 0; i < count; i++) { 5801 getChildAt(i).setDrawingCacheBackgroundColor(color); 5802 } 5803 mRecycler.setCacheColorHint(color); 5804 } 5805 } 5806 5807 /** 5808 * When set to a non-zero value, the cache color hint indicates that this list is always drawn 5809 * on top of a solid, single-color, opaque background 5810 * 5811 * @return The cache color hint 5812 */ 5813 @ViewDebug.ExportedProperty(category = "drawing") 5814 public int getCacheColorHint() { 5815 return mCacheColorHint; 5816 } 5817 5818 /** 5819 * Move all views (excluding headers and footers) held by this AbsListView into the supplied 5820 * List. This includes views displayed on the screen as well as views stored in AbsListView's 5821 * internal view recycler. 5822 * 5823 * @param views A list into which to put the reclaimed views 5824 */ 5825 public void reclaimViews(List<View> views) { 5826 int childCount = getChildCount(); 5827 RecyclerListener listener = mRecycler.mRecyclerListener; 5828 5829 // Reclaim views on screen 5830 for (int i = 0; i < childCount; i++) { 5831 View child = getChildAt(i); 5832 AbsListView.LayoutParams lp = (AbsListView.LayoutParams) child.getLayoutParams(); 5833 // Don't reclaim header or footer views, or views that should be ignored 5834 if (lp != null && mRecycler.shouldRecycleViewType(lp.viewType)) { 5835 views.add(child); 5836 child.setAccessibilityDelegate(null); 5837 if (listener != null) { 5838 // Pretend they went through the scrap heap 5839 listener.onMovedToScrapHeap(child); 5840 } 5841 } 5842 } 5843 mRecycler.reclaimScrapViews(views); 5844 removeAllViewsInLayout(); 5845 } 5846 5847 private void finishGlows() { 5848 if (mEdgeGlowTop != null) { 5849 mEdgeGlowTop.finish(); 5850 mEdgeGlowBottom.finish(); 5851 } 5852 } 5853 5854 /** 5855 * Sets up this AbsListView to use a remote views adapter which connects to a RemoteViewsService 5856 * through the specified intent. 5857 * @param intent the intent used to identify the RemoteViewsService for the adapter to connect to. 5858 */ 5859 public void setRemoteViewsAdapter(Intent intent) { 5860 // Ensure that we don't already have a RemoteViewsAdapter that is bound to an existing 5861 // service handling the specified intent. 5862 if (mRemoteAdapter != null) { 5863 Intent.FilterComparison fcNew = new Intent.FilterComparison(intent); 5864 Intent.FilterComparison fcOld = new Intent.FilterComparison( 5865 mRemoteAdapter.getRemoteViewsServiceIntent()); 5866 if (fcNew.equals(fcOld)) { 5867 return; 5868 } 5869 } 5870 mDeferNotifyDataSetChanged = false; 5871 // Otherwise, create a new RemoteViewsAdapter for binding 5872 mRemoteAdapter = new RemoteViewsAdapter(getContext(), intent, this); 5873 if (mRemoteAdapter.isDataReady()) { 5874 setAdapter(mRemoteAdapter); 5875 } 5876 } 5877 5878 /** 5879 * Sets up the onClickHandler to be used by the RemoteViewsAdapter when inflating RemoteViews 5880 * 5881 * @param handler The OnClickHandler to use when inflating RemoteViews. 5882 * 5883 * @hide 5884 */ 5885 public void setRemoteViewsOnClickHandler(OnClickHandler handler) { 5886 // Ensure that we don't already have a RemoteViewsAdapter that is bound to an existing 5887 // service handling the specified intent. 5888 if (mRemoteAdapter != null) { 5889 mRemoteAdapter.setRemoteViewsOnClickHandler(handler); 5890 } 5891 } 5892 5893 /** 5894 * This defers a notifyDataSetChanged on the pending RemoteViewsAdapter if it has not 5895 * connected yet. 5896 */ 5897 public void deferNotifyDataSetChanged() { 5898 mDeferNotifyDataSetChanged = true; 5899 } 5900 5901 /** 5902 * Called back when the adapter connects to the RemoteViewsService. 5903 */ 5904 public boolean onRemoteAdapterConnected() { 5905 if (mRemoteAdapter != mAdapter) { 5906 setAdapter(mRemoteAdapter); 5907 if (mDeferNotifyDataSetChanged) { 5908 mRemoteAdapter.notifyDataSetChanged(); 5909 mDeferNotifyDataSetChanged = false; 5910 } 5911 return false; 5912 } else if (mRemoteAdapter != null) { 5913 mRemoteAdapter.superNotifyDataSetChanged(); 5914 return true; 5915 } 5916 return false; 5917 } 5918 5919 /** 5920 * Called back when the adapter disconnects from the RemoteViewsService. 5921 */ 5922 public void onRemoteAdapterDisconnected() { 5923 // If the remote adapter disconnects, we keep it around 5924 // since the currently displayed items are still cached. 5925 // Further, we want the service to eventually reconnect 5926 // when necessary, as triggered by this view requesting 5927 // items from the Adapter. 5928 } 5929 5930 /** 5931 * Hints the RemoteViewsAdapter, if it exists, about which views are currently 5932 * being displayed by the AbsListView. 5933 */ 5934 void setVisibleRangeHint(int start, int end) { 5935 if (mRemoteAdapter != null) { 5936 mRemoteAdapter.setVisibleRangeHint(start, end); 5937 } 5938 } 5939 5940 /** 5941 * Sets the recycler listener to be notified whenever a View is set aside in 5942 * the recycler for later reuse. This listener can be used to free resources 5943 * associated to the View. 5944 * 5945 * @param listener The recycler listener to be notified of views set aside 5946 * in the recycler. 5947 * 5948 * @see android.widget.AbsListView.RecycleBin 5949 * @see android.widget.AbsListView.RecyclerListener 5950 */ 5951 public void setRecyclerListener(RecyclerListener listener) { 5952 mRecycler.mRecyclerListener = listener; 5953 } 5954 5955 class AdapterDataSetObserver extends AdapterView<ListAdapter>.AdapterDataSetObserver { 5956 @Override 5957 public void onChanged() { 5958 super.onChanged(); 5959 if (mFastScroller != null) { 5960 mFastScroller.onSectionsChanged(); 5961 } 5962 } 5963 5964 @Override 5965 public void onInvalidated() { 5966 super.onInvalidated(); 5967 if (mFastScroller != null) { 5968 mFastScroller.onSectionsChanged(); 5969 } 5970 } 5971 } 5972 5973 /** 5974 * A MultiChoiceModeListener receives events for {@link AbsListView#CHOICE_MODE_MULTIPLE_MODAL}. 5975 * It acts as the {@link ActionMode.Callback} for the selection mode and also receives 5976 * {@link #onItemCheckedStateChanged(ActionMode, int, long, boolean)} events when the user 5977 * selects and deselects list items. 5978 */ 5979 public interface MultiChoiceModeListener extends ActionMode.Callback { 5980 /** 5981 * Called when an item is checked or unchecked during selection mode. 5982 * 5983 * @param mode The {@link ActionMode} providing the selection mode 5984 * @param position Adapter position of the item that was checked or unchecked 5985 * @param id Adapter ID of the item that was checked or unchecked 5986 * @param checked <code>true</code> if the item is now checked, <code>false</code> 5987 * if the item is now unchecked. 5988 */ 5989 public void onItemCheckedStateChanged(ActionMode mode, 5990 int position, long id, boolean checked); 5991 } 5992 5993 class MultiChoiceModeWrapper implements MultiChoiceModeListener { 5994 private MultiChoiceModeListener mWrapped; 5995 5996 public void setWrapped(MultiChoiceModeListener wrapped) { 5997 mWrapped = wrapped; 5998 } 5999 6000 public boolean hasWrappedCallback() { 6001 return mWrapped != null; 6002 } 6003 6004 public boolean onCreateActionMode(ActionMode mode, Menu menu) { 6005 if (mWrapped.onCreateActionMode(mode, menu)) { 6006 // Initialize checked graphic state? 6007 setLongClickable(false); 6008 return true; 6009 } 6010 return false; 6011 } 6012 6013 public boolean onPrepareActionMode(ActionMode mode, Menu menu) { 6014 return mWrapped.onPrepareActionMode(mode, menu); 6015 } 6016 6017 public boolean onActionItemClicked(ActionMode mode, MenuItem item) { 6018 return mWrapped.onActionItemClicked(mode, item); 6019 } 6020 6021 public void onDestroyActionMode(ActionMode mode) { 6022 mWrapped.onDestroyActionMode(mode); 6023 mChoiceActionMode = null; 6024 6025 // Ending selection mode means deselecting everything. 6026 clearChoices(); 6027 6028 mDataChanged = true; 6029 rememberSyncState(); 6030 requestLayout(); 6031 6032 setLongClickable(true); 6033 } 6034 6035 public void onItemCheckedStateChanged(ActionMode mode, 6036 int position, long id, boolean checked) { 6037 mWrapped.onItemCheckedStateChanged(mode, position, id, checked); 6038 6039 // If there are no items selected we no longer need the selection mode. 6040 if (getCheckedItemCount() == 0) { 6041 mode.finish(); 6042 } 6043 } 6044 } 6045 6046 /** 6047 * AbsListView extends LayoutParams to provide a place to hold the view type. 6048 */ 6049 public static class LayoutParams extends ViewGroup.LayoutParams { 6050 /** 6051 * View type for this view, as returned by 6052 * {@link android.widget.Adapter#getItemViewType(int) } 6053 */ 6054 @ViewDebug.ExportedProperty(category = "list", mapping = { 6055 @ViewDebug.IntToString(from = ITEM_VIEW_TYPE_IGNORE, to = "ITEM_VIEW_TYPE_IGNORE"), 6056 @ViewDebug.IntToString(from = ITEM_VIEW_TYPE_HEADER_OR_FOOTER, to = "ITEM_VIEW_TYPE_HEADER_OR_FOOTER") 6057 }) 6058 int viewType; 6059 6060 /** 6061 * When this boolean is set, the view has been added to the AbsListView 6062 * at least once. It is used to know whether headers/footers have already 6063 * been added to the list view and whether they should be treated as 6064 * recycled views or not. 6065 */ 6066 @ViewDebug.ExportedProperty(category = "list") 6067 boolean recycledHeaderFooter; 6068 6069 /** 6070 * When an AbsListView is measured with an AT_MOST measure spec, it needs 6071 * to obtain children views to measure itself. When doing so, the children 6072 * are not attached to the window, but put in the recycler which assumes 6073 * they've been attached before. Setting this flag will force the reused 6074 * view to be attached to the window rather than just attached to the 6075 * parent. 6076 */ 6077 @ViewDebug.ExportedProperty(category = "list") 6078 boolean forceAdd; 6079 6080 /** 6081 * The position the view was removed from when pulled out of the 6082 * scrap heap. 6083 * @hide 6084 */ 6085 int scrappedFromPosition; 6086 6087 /** 6088 * The ID the view represents 6089 */ 6090 long itemId = -1; 6091 6092 public LayoutParams(Context c, AttributeSet attrs) { 6093 super(c, attrs); 6094 } 6095 6096 public LayoutParams(int w, int h) { 6097 super(w, h); 6098 } 6099 6100 public LayoutParams(int w, int h, int viewType) { 6101 super(w, h); 6102 this.viewType = viewType; 6103 } 6104 6105 public LayoutParams(ViewGroup.LayoutParams source) { 6106 super(source); 6107 } 6108 } 6109 6110 /** 6111 * A RecyclerListener is used to receive a notification whenever a View is placed 6112 * inside the RecycleBin's scrap heap. This listener is used to free resources 6113 * associated to Views placed in the RecycleBin. 6114 * 6115 * @see android.widget.AbsListView.RecycleBin 6116 * @see android.widget.AbsListView#setRecyclerListener(android.widget.AbsListView.RecyclerListener) 6117 */ 6118 public static interface RecyclerListener { 6119 /** 6120 * Indicates that the specified View was moved into the recycler's scrap heap. 6121 * The view is not displayed on screen any more and any expensive resource 6122 * associated with the view should be discarded. 6123 * 6124 * @param view 6125 */ 6126 void onMovedToScrapHeap(View view); 6127 } 6128 6129 /** 6130 * The RecycleBin facilitates reuse of views across layouts. The RecycleBin has two levels of 6131 * storage: ActiveViews and ScrapViews. ActiveViews are those views which were onscreen at the 6132 * start of a layout. By construction, they are displaying current information. At the end of 6133 * layout, all views in ActiveViews are demoted to ScrapViews. ScrapViews are old views that 6134 * could potentially be used by the adapter to avoid allocating views unnecessarily. 6135 * 6136 * @see android.widget.AbsListView#setRecyclerListener(android.widget.AbsListView.RecyclerListener) 6137 * @see android.widget.AbsListView.RecyclerListener 6138 */ 6139 class RecycleBin { 6140 private RecyclerListener mRecyclerListener; 6141 6142 /** 6143 * The position of the first view stored in mActiveViews. 6144 */ 6145 private int mFirstActivePosition; 6146 6147 /** 6148 * Views that were on screen at the start of layout. This array is populated at the start of 6149 * layout, and at the end of layout all view in mActiveViews are moved to mScrapViews. 6150 * Views in mActiveViews represent a contiguous range of Views, with position of the first 6151 * view store in mFirstActivePosition. 6152 */ 6153 private View[] mActiveViews = new View[0]; 6154 6155 /** 6156 * Unsorted views that can be used by the adapter as a convert view. 6157 */ 6158 private ArrayList<View>[] mScrapViews; 6159 6160 private int mViewTypeCount; 6161 6162 private ArrayList<View> mCurrentScrap; 6163 6164 private ArrayList<View> mSkippedScrap; 6165 6166 private SparseArray<View> mTransientStateViews; 6167 6168 public void setViewTypeCount(int viewTypeCount) { 6169 if (viewTypeCount < 1) { 6170 throw new IllegalArgumentException("Can't have a viewTypeCount < 1"); 6171 } 6172 //noinspection unchecked 6173 ArrayList<View>[] scrapViews = new ArrayList[viewTypeCount]; 6174 for (int i = 0; i < viewTypeCount; i++) { 6175 scrapViews[i] = new ArrayList<View>(); 6176 } 6177 mViewTypeCount = viewTypeCount; 6178 mCurrentScrap = scrapViews[0]; 6179 mScrapViews = scrapViews; 6180 } 6181 6182 public void markChildrenDirty() { 6183 if (mViewTypeCount == 1) { 6184 final ArrayList<View> scrap = mCurrentScrap; 6185 final int scrapCount = scrap.size(); 6186 for (int i = 0; i < scrapCount; i++) { 6187 scrap.get(i).forceLayout(); 6188 } 6189 } else { 6190 final int typeCount = mViewTypeCount; 6191 for (int i = 0; i < typeCount; i++) { 6192 final ArrayList<View> scrap = mScrapViews[i]; 6193 final int scrapCount = scrap.size(); 6194 for (int j = 0; j < scrapCount; j++) { 6195 scrap.get(j).forceLayout(); 6196 } 6197 } 6198 } 6199 if (mTransientStateViews != null) { 6200 final int count = mTransientStateViews.size(); 6201 for (int i = 0; i < count; i++) { 6202 mTransientStateViews.valueAt(i).forceLayout(); 6203 } 6204 } 6205 } 6206 6207 public boolean shouldRecycleViewType(int viewType) { 6208 return viewType >= 0; 6209 } 6210 6211 /** 6212 * Clears the scrap heap. 6213 */ 6214 void clear() { 6215 if (mViewTypeCount == 1) { 6216 final ArrayList<View> scrap = mCurrentScrap; 6217 final int scrapCount = scrap.size(); 6218 for (int i = 0; i < scrapCount; i++) { 6219 removeDetachedView(scrap.remove(scrapCount - 1 - i), false); 6220 } 6221 } else { 6222 final int typeCount = mViewTypeCount; 6223 for (int i = 0; i < typeCount; i++) { 6224 final ArrayList<View> scrap = mScrapViews[i]; 6225 final int scrapCount = scrap.size(); 6226 for (int j = 0; j < scrapCount; j++) { 6227 removeDetachedView(scrap.remove(scrapCount - 1 - j), false); 6228 } 6229 } 6230 } 6231 if (mTransientStateViews != null) { 6232 mTransientStateViews.clear(); 6233 } 6234 } 6235 6236 /** 6237 * Fill ActiveViews with all of the children of the AbsListView. 6238 * 6239 * @param childCount The minimum number of views mActiveViews should hold 6240 * @param firstActivePosition The position of the first view that will be stored in 6241 * mActiveViews 6242 */ 6243 void fillActiveViews(int childCount, int firstActivePosition) { 6244 if (mActiveViews.length < childCount) { 6245 mActiveViews = new View[childCount]; 6246 } 6247 mFirstActivePosition = firstActivePosition; 6248 6249 final View[] activeViews = mActiveViews; 6250 for (int i = 0; i < childCount; i++) { 6251 View child = getChildAt(i); 6252 AbsListView.LayoutParams lp = (AbsListView.LayoutParams) child.getLayoutParams(); 6253 // Don't put header or footer views into the scrap heap 6254 if (lp != null && lp.viewType != ITEM_VIEW_TYPE_HEADER_OR_FOOTER) { 6255 // Note: We do place AdapterView.ITEM_VIEW_TYPE_IGNORE in active views. 6256 // However, we will NOT place them into scrap views. 6257 activeViews[i] = child; 6258 } 6259 } 6260 } 6261 6262 /** 6263 * Get the view corresponding to the specified position. The view will be removed from 6264 * mActiveViews if it is found. 6265 * 6266 * @param position The position to look up in mActiveViews 6267 * @return The view if it is found, null otherwise 6268 */ 6269 View getActiveView(int position) { 6270 int index = position - mFirstActivePosition; 6271 final View[] activeViews = mActiveViews; 6272 if (index >=0 && index < activeViews.length) { 6273 final View match = activeViews[index]; 6274 activeViews[index] = null; 6275 return match; 6276 } 6277 return null; 6278 } 6279 6280 View getTransientStateView(int position) { 6281 if (mTransientStateViews == null) { 6282 return null; 6283 } 6284 final int index = mTransientStateViews.indexOfKey(position); 6285 if (index < 0) { 6286 return null; 6287 } 6288 final View result = mTransientStateViews.valueAt(index); 6289 mTransientStateViews.removeAt(index); 6290 return result; 6291 } 6292 6293 /** 6294 * Dump any currently saved views with transient state. 6295 */ 6296 void clearTransientStateViews() { 6297 if (mTransientStateViews != null) { 6298 mTransientStateViews.clear(); 6299 } 6300 } 6301 6302 /** 6303 * @return A view from the ScrapViews collection. These are unordered. 6304 */ 6305 View getScrapView(int position) { 6306 if (mViewTypeCount == 1) { 6307 return retrieveFromScrap(mCurrentScrap, position); 6308 } else { 6309 int whichScrap = mAdapter.getItemViewType(position); 6310 if (whichScrap >= 0 && whichScrap < mScrapViews.length) { 6311 return retrieveFromScrap(mScrapViews[whichScrap], position); 6312 } 6313 } 6314 return null; 6315 } 6316 6317 /** 6318 * Put a view into the ScrapViews list. These views are unordered. 6319 * 6320 * @param scrap The view to add 6321 */ 6322 void addScrapView(View scrap, int position) { 6323 AbsListView.LayoutParams lp = (AbsListView.LayoutParams) scrap.getLayoutParams(); 6324 if (lp == null) { 6325 return; 6326 } 6327 6328 lp.scrappedFromPosition = position; 6329 6330 // Don't put header or footer views or views that should be ignored 6331 // into the scrap heap 6332 int viewType = lp.viewType; 6333 final boolean scrapHasTransientState = scrap.hasTransientState(); 6334 if (!shouldRecycleViewType(viewType) || scrapHasTransientState) { 6335 if (viewType != ITEM_VIEW_TYPE_HEADER_OR_FOOTER || scrapHasTransientState) { 6336 if (mSkippedScrap == null) { 6337 mSkippedScrap = new ArrayList<View>(); 6338 } 6339 mSkippedScrap.add(scrap); 6340 } 6341 if (scrapHasTransientState) { 6342 if (mTransientStateViews == null) { 6343 mTransientStateViews = new SparseArray<View>(); 6344 } 6345 scrap.dispatchStartTemporaryDetach(); 6346 mTransientStateViews.put(position, scrap); 6347 } 6348 return; 6349 } 6350 6351 scrap.dispatchStartTemporaryDetach(); 6352 if (mViewTypeCount == 1) { 6353 mCurrentScrap.add(scrap); 6354 } else { 6355 mScrapViews[viewType].add(scrap); 6356 } 6357 6358 scrap.setAccessibilityDelegate(null); 6359 if (mRecyclerListener != null) { 6360 mRecyclerListener.onMovedToScrapHeap(scrap); 6361 } 6362 } 6363 6364 /** 6365 * Finish the removal of any views that skipped the scrap heap. 6366 */ 6367 void removeSkippedScrap() { 6368 if (mSkippedScrap == null) { 6369 return; 6370 } 6371 final int count = mSkippedScrap.size(); 6372 for (int i = 0; i < count; i++) { 6373 removeDetachedView(mSkippedScrap.get(i), false); 6374 } 6375 mSkippedScrap.clear(); 6376 } 6377 6378 /** 6379 * Move all views remaining in mActiveViews to mScrapViews. 6380 */ 6381 void scrapActiveViews() { 6382 final View[] activeViews = mActiveViews; 6383 final boolean hasListener = mRecyclerListener != null; 6384 final boolean multipleScraps = mViewTypeCount > 1; 6385 6386 ArrayList<View> scrapViews = mCurrentScrap; 6387 final int count = activeViews.length; 6388 for (int i = count - 1; i >= 0; i--) { 6389 final View victim = activeViews[i]; 6390 if (victim != null) { 6391 final AbsListView.LayoutParams lp 6392 = (AbsListView.LayoutParams) victim.getLayoutParams(); 6393 int whichScrap = lp.viewType; 6394 6395 activeViews[i] = null; 6396 6397 final boolean scrapHasTransientState = victim.hasTransientState(); 6398 if (!shouldRecycleViewType(whichScrap) || scrapHasTransientState) { 6399 // Do not move views that should be ignored 6400 if (whichScrap != ITEM_VIEW_TYPE_HEADER_OR_FOOTER || 6401 scrapHasTransientState) { 6402 removeDetachedView(victim, false); 6403 } 6404 if (scrapHasTransientState) { 6405 if (mTransientStateViews == null) { 6406 mTransientStateViews = new SparseArray<View>(); 6407 } 6408 mTransientStateViews.put(mFirstActivePosition + i, victim); 6409 } 6410 continue; 6411 } 6412 6413 if (multipleScraps) { 6414 scrapViews = mScrapViews[whichScrap]; 6415 } 6416 victim.dispatchStartTemporaryDetach(); 6417 lp.scrappedFromPosition = mFirstActivePosition + i; 6418 scrapViews.add(victim); 6419 6420 victim.setAccessibilityDelegate(null); 6421 if (hasListener) { 6422 mRecyclerListener.onMovedToScrapHeap(victim); 6423 } 6424 } 6425 } 6426 6427 pruneScrapViews(); 6428 } 6429 6430 /** 6431 * Makes sure that the size of mScrapViews does not exceed the size of mActiveViews. 6432 * (This can happen if an adapter does not recycle its views). 6433 */ 6434 private void pruneScrapViews() { 6435 final int maxViews = mActiveViews.length; 6436 final int viewTypeCount = mViewTypeCount; 6437 final ArrayList<View>[] scrapViews = mScrapViews; 6438 for (int i = 0; i < viewTypeCount; ++i) { 6439 final ArrayList<View> scrapPile = scrapViews[i]; 6440 int size = scrapPile.size(); 6441 final int extras = size - maxViews; 6442 size--; 6443 for (int j = 0; j < extras; j++) { 6444 removeDetachedView(scrapPile.remove(size--), false); 6445 } 6446 } 6447 6448 if (mTransientStateViews != null) { 6449 for (int i = 0; i < mTransientStateViews.size(); i++) { 6450 final View v = mTransientStateViews.valueAt(i); 6451 if (!v.hasTransientState()) { 6452 mTransientStateViews.removeAt(i); 6453 i--; 6454 } 6455 } 6456 } 6457 } 6458 6459 /** 6460 * Puts all views in the scrap heap into the supplied list. 6461 */ 6462 void reclaimScrapViews(List<View> views) { 6463 if (mViewTypeCount == 1) { 6464 views.addAll(mCurrentScrap); 6465 } else { 6466 final int viewTypeCount = mViewTypeCount; 6467 final ArrayList<View>[] scrapViews = mScrapViews; 6468 for (int i = 0; i < viewTypeCount; ++i) { 6469 final ArrayList<View> scrapPile = scrapViews[i]; 6470 views.addAll(scrapPile); 6471 } 6472 } 6473 } 6474 6475 /** 6476 * Updates the cache color hint of all known views. 6477 * 6478 * @param color The new cache color hint. 6479 */ 6480 void setCacheColorHint(int color) { 6481 if (mViewTypeCount == 1) { 6482 final ArrayList<View> scrap = mCurrentScrap; 6483 final int scrapCount = scrap.size(); 6484 for (int i = 0; i < scrapCount; i++) { 6485 scrap.get(i).setDrawingCacheBackgroundColor(color); 6486 } 6487 } else { 6488 final int typeCount = mViewTypeCount; 6489 for (int i = 0; i < typeCount; i++) { 6490 final ArrayList<View> scrap = mScrapViews[i]; 6491 final int scrapCount = scrap.size(); 6492 for (int j = 0; j < scrapCount; j++) { 6493 scrap.get(j).setDrawingCacheBackgroundColor(color); 6494 } 6495 } 6496 } 6497 // Just in case this is called during a layout pass 6498 final View[] activeViews = mActiveViews; 6499 final int count = activeViews.length; 6500 for (int i = 0; i < count; ++i) { 6501 final View victim = activeViews[i]; 6502 if (victim != null) { 6503 victim.setDrawingCacheBackgroundColor(color); 6504 } 6505 } 6506 } 6507 } 6508 6509 static View retrieveFromScrap(ArrayList<View> scrapViews, int position) { 6510 int size = scrapViews.size(); 6511 if (size > 0) { 6512 // See if we still have a view for this position. 6513 for (int i=0; i<size; i++) { 6514 View view = scrapViews.get(i); 6515 if (((AbsListView.LayoutParams)view.getLayoutParams()) 6516 .scrappedFromPosition == position) { 6517 scrapViews.remove(i); 6518 return view; 6519 } 6520 } 6521 return scrapViews.remove(size - 1); 6522 } else { 6523 return null; 6524 } 6525 } 6526 } 6527