mirror of
https://gitlab.winehq.org/wine/wine-gecko.git
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971 lines
36 KiB
Java
971 lines
36 KiB
Java
/* -*- Mode: Java; c-basic-offset: 4; tab-width: 20; indent-tabs-mode: nil; -*-
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* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is Mozilla Android code.
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*
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* The Initial Developer of the Original Code is Mozilla Foundation.
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* Portions created by the Initial Developer are Copyright (C) 2009-2010
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* Patrick Walton <pcwalton@mozilla.com>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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package org.mozilla.gecko.ui;
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import org.json.JSONObject;
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import org.json.JSONException;
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import org.mozilla.gecko.gfx.FloatSize;
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import org.mozilla.gecko.gfx.LayerController;
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import org.mozilla.gecko.gfx.PointUtils;
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import org.mozilla.gecko.gfx.RectUtils;
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import org.mozilla.gecko.FloatUtils;
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import org.mozilla.gecko.GeckoApp;
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import org.mozilla.gecko.GeckoAppShell;
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import org.mozilla.gecko.GeckoEvent;
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import org.mozilla.gecko.GeckoEventListener;
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import android.graphics.PointF;
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import android.graphics.RectF;
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import android.util.Log;
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import android.view.GestureDetector;
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import android.view.MotionEvent;
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import android.view.ScaleGestureDetector;
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import java.lang.Math;
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import java.util.Date;
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import java.util.Timer;
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import java.util.TimerTask;
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/*
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* Handles the kinetic scrolling and zooming physics for a layer controller.
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*
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* Many ideas are from Joe Hewitt's Scrollability:
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* https://github.com/joehewitt/scrollability/
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*/
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public class PanZoomController
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extends GestureDetector.SimpleOnGestureListener
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implements ScaleGestureDetector.OnScaleGestureListener, GeckoEventListener
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{
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private static final String LOGTAG = "GeckoPanZoomController";
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private LayerController mController;
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private static final float FRICTION = 0.85f;
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// Animation stops if the velocity is below this value.
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private static final float STOPPED_THRESHOLD = 4.0f;
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// The percentage of the surface which can be overscrolled before it must snap back.
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private static final float SNAP_LIMIT = 0.75f;
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// The rate of deceleration when the surface has overscrolled.
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private static final float OVERSCROLL_DECEL_RATE = 0.04f;
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// The distance the user has to pan before we recognize it as such (e.g. to avoid
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// 1-pixel pans between the touch-down and touch-up of a click). In units of inches.
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private static final float PAN_THRESHOLD = 0.1f;
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// Angle from axis within which we stay axis-locked
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private static final double AXIS_LOCK_ANGLE = Math.PI / 6.0; // 30 degrees
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// The maximum velocity change factor between events, per ms, in %.
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// Direction changes are excluded.
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private static final float MAX_EVENT_ACCELERATION = 0.012f;
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// Length of time to spend zooming. in ms
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public static final int ZOOM_DURATION = 200;
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/* 16 precomputed frames of the _ease-out_ animation from the CSS Transitions specification. */
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private static final float[] EASE_OUT_ANIMATION_FRAMES = {
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0.00000f, /* 0 */
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0.10211f, /* 1 */
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0.19864f, /* 2 */
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0.29043f, /* 3 */
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0.37816f, /* 4 */
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0.46155f, /* 5 */
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0.54054f, /* 6 */
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0.61496f, /* 7 */
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0.68467f, /* 8 */
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0.74910f, /* 9 */
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0.80794f, /* 10 */
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0.86069f, /* 11 */
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0.90651f, /* 12 */
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0.94471f, /* 13 */
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0.97401f, /* 14 */
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0.99309f, /* 15 */
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};
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private Timer mFlingTimer;
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/* Information about the X axis. */
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private AxisX mX;
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/* Information about the Y axis. */
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private AxisY mY;
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/* The zoom focus at the first zoom event (in page coordinates). */
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private PointF mLastZoomFocus;
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/* The time the last motion event took place. */
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private long mLastEventTime;
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private enum PanZoomState {
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NOTHING, /* no touch-start events received */
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FLING, /* all touches removed, but we're still scrolling page */
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TOUCHING, /* one touch-start event received */
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PANNING_LOCKED, /* touch-start followed by move (i.e. panning with axis lock) */
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PANNING, /* panning without axis lock */
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PANNING_HOLD, /* in panning, but not moving.
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* similar to TOUCHING but after starting a pan */
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PANNING_HOLD_LOCKED, /* like PANNING_HOLD, but axis lock still in effect */
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PINCHING, /* nth touch-start, where n > 1. this mode allows pan and zoom */
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ANIMATED_ZOOM /* animated zoom to a new rect */
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}
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private PanZoomState mState;
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private boolean mOverridePanning;
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private boolean mOverrideScrollAck;
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private boolean mOverrideScrollPending;
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public PanZoomController(LayerController controller) {
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mController = controller;
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mX = new AxisX(); mY = new AxisY();
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mState = PanZoomState.NOTHING;
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GeckoAppShell.registerGeckoEventListener("Browser:ZoomToRect", this);
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GeckoAppShell.registerGeckoEventListener("Browser:ZoomToPageWidth", this);
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GeckoAppShell.registerGeckoEventListener("Panning:Override", this);
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GeckoAppShell.registerGeckoEventListener("Panning:CancelOverride", this);
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GeckoAppShell.registerGeckoEventListener("Gesture:ScrollAck", this);
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}
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protected void finalize() throws Throwable {
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GeckoAppShell.unregisterGeckoEventListener("Browser:ZoomToRect", this);
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GeckoAppShell.unregisterGeckoEventListener("Browser:ZoomToPageWidth", this);
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GeckoAppShell.unregisterGeckoEventListener("Panning:Override", this);
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GeckoAppShell.unregisterGeckoEventListener("Panning:CancelOverride", this);
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GeckoAppShell.unregisterGeckoEventListener("Gesture:ScrollAck", this);
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super.finalize();
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}
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public void handleMessage(String event, JSONObject message) {
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Log.i(LOGTAG, "Got message: " + event);
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try {
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if ("Panning:Override".equals(event)) {
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mOverridePanning = true;
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mOverrideScrollAck = true;
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} else if ("Panning:CancelOverride".equals(event)) {
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mOverridePanning = false;
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} else if ("Gesture:ScrollAck".equals(event)) {
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mController.post(new Runnable() {
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public void run() {
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mOverrideScrollAck = true;
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if (mOverridePanning && mOverrideScrollPending)
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updatePosition();
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}
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});
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} else if (event.equals("Browser:ZoomToRect")) {
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if (mController != null) {
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float scale = mController.getZoomFactor();
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float x = (float)message.getDouble("x");
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float y = (float)message.getDouble("y");
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final RectF zoomRect = new RectF(x, y,
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x + (float)message.getDouble("w"),
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y + (float)message.getDouble("h"));
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mController.post(new Runnable() {
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public void run() {
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animatedZoomTo(zoomRect);
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}
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});
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}
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} else if (event.equals("Browser:ZoomToPageWidth")) {
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if (mController != null) {
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float scale = mController.getZoomFactor();
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FloatSize pageSize = mController.getPageSize();
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RectF viewableRect = mController.getViewport();
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float y = viewableRect.top;
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// attempt to keep zoom keep focused on the center of the viewport
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float dh = viewableRect.height()*(1 - pageSize.width/viewableRect.width()); // increase in the height
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final RectF r = new RectF(0.0f,
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y + dh/2,
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pageSize.width,
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(y + pageSize.width * viewableRect.height()/viewableRect.width()));
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mController.post(new Runnable() {
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public void run() {
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animatedZoomTo(r);
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}
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});
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}
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}
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} catch (Exception e) {
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Log.e(LOGTAG, "Exception handling message \"" + event + "\":", e);
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}
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}
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public boolean onTouchEvent(MotionEvent event) {
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switch (event.getAction() & event.ACTION_MASK) {
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case MotionEvent.ACTION_DOWN: return onTouchStart(event);
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case MotionEvent.ACTION_MOVE: return onTouchMove(event);
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case MotionEvent.ACTION_UP: return onTouchEnd(event);
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case MotionEvent.ACTION_CANCEL: return onTouchCancel(event);
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default: return false;
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}
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}
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public void geometryChanged(boolean aAbortFling) {
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if (aAbortFling) {
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// this happens when gecko changes the viewport on us. if that's the case, abort
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// any fling that's in progress and re-fling so that the page snaps to edges. for
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// other cases (where the user's finger(s) are down) don't do anything special.
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switch (mState) {
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case FLING:
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mX.velocity = mY.velocity = 0.0f;
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mState = PanZoomState.NOTHING;
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// fall through
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case NOTHING:
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fling();
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break;
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}
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}
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}
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/*
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* Panning/scrolling
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*/
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private boolean onTouchStart(MotionEvent event) {
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// user is taking control of movement, so stop
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// any auto-movement we have going
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if (mFlingTimer != null) {
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mFlingTimer.cancel();
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mFlingTimer = null;
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}
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mOverridePanning = false;
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switch (mState) {
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case ANIMATED_ZOOM:
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return false;
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case FLING:
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case NOTHING:
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mState = PanZoomState.TOUCHING;
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mX.velocity = mY.velocity = 0.0f;
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mX.locked = mY.locked = false;
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mX.lastTouchPos = mX.firstTouchPos = mX.touchPos = event.getX(0);
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mY.lastTouchPos = mY.firstTouchPos = mY.touchPos = event.getY(0);
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mLastEventTime = event.getEventTime();
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return false;
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case TOUCHING:
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case PANNING:
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case PANNING_LOCKED:
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case PANNING_HOLD:
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case PANNING_HOLD_LOCKED:
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case PINCHING:
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mState = PanZoomState.PINCHING;
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return false;
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}
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Log.e(LOGTAG, "Unhandled case " + mState + " in onTouchStart");
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return false;
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}
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private boolean onTouchMove(MotionEvent event) {
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switch (mState) {
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case NOTHING:
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case FLING:
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// should never happen
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Log.e(LOGTAG, "Received impossible touch move while in " + mState);
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return false;
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case TOUCHING:
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if (panDistance(event) < PAN_THRESHOLD * GeckoAppShell.getDpi())
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return false;
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cancelTouch();
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// fall through
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case PANNING_HOLD_LOCKED:
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mState = PanZoomState.PANNING_LOCKED;
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// fall through
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case PANNING_LOCKED:
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track(event);
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return true;
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case PANNING_HOLD:
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mState = PanZoomState.PANNING;
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// fall through
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case PANNING:
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track(event);
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return true;
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case ANIMATED_ZOOM:
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case PINCHING:
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// scale gesture listener will handle this
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return false;
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}
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Log.e(LOGTAG, "Unhandled case " + mState + " in onTouchMove");
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return false;
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}
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private boolean onTouchEnd(MotionEvent event) {
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switch (mState) {
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case NOTHING:
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case FLING:
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// should never happen
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Log.e(LOGTAG, "Received impossible touch end while in " + mState);
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return false;
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case TOUCHING:
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mState = PanZoomState.NOTHING;
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// the switch into TOUCHING might have happened while the page was
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// snapping back after overscroll. we need to finish the snap if that
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// was the case
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fling();
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return false;
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case PANNING:
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case PANNING_LOCKED:
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case PANNING_HOLD:
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case PANNING_HOLD_LOCKED:
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mState = PanZoomState.FLING;
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fling();
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return true;
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case PINCHING:
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int points = event.getPointerCount();
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if (points == 1) {
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// last touch up
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mState = PanZoomState.NOTHING;
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} else if (points == 2) {
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int pointRemovedIndex = event.getActionIndex();
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int pointRemainingIndex = 1 - pointRemovedIndex; // kind of a hack
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mState = PanZoomState.TOUCHING;
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mX.firstTouchPos = mX.touchPos = event.getX(pointRemainingIndex);
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mX.firstTouchPos = mY.touchPos = event.getY(pointRemainingIndex);
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} else {
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// still pinching, do nothing
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}
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return true;
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case ANIMATED_ZOOM:
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return false;
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}
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Log.e(LOGTAG, "Unhandled case " + mState + " in onTouchEnd");
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return false;
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}
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private boolean onTouchCancel(MotionEvent event) {
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mState = PanZoomState.NOTHING;
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// ensure we snap back if we're overscrolled
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fling();
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return false;
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}
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private float panDistance(MotionEvent move) {
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float dx = mX.firstTouchPos - move.getX(0);
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float dy = mY.firstTouchPos - move.getY(0);
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return (float)Math.sqrt(dx * dx + dy * dy);
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}
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private float clampByFactor(float oldValue, float newValue, float factor) {
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float maxChange = Math.abs(oldValue * factor);
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return Math.min(oldValue + maxChange, Math.max(oldValue - maxChange, newValue));
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}
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private void track(float x, float y, float lastX, float lastY, float timeDelta) {
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if (mState == PanZoomState.PANNING_LOCKED) {
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// check to see if we should break the axis lock
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double angle = Math.atan2(y - mY.firstTouchPos, x - mX.firstTouchPos); // range [-pi, pi]
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angle = Math.abs(angle); // range [0, pi]
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if (angle < AXIS_LOCK_ANGLE || angle > (Math.PI - AXIS_LOCK_ANGLE)) {
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// lock to x-axis
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mX.locked = false;
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mY.locked = true;
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} else if (Math.abs(angle - (Math.PI / 2)) < AXIS_LOCK_ANGLE) {
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// lock to y-axis
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mX.locked = true;
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mY.locked = false;
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} else {
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// break axis lock but log the angle so we can fine-tune this when people complain
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mState = PanZoomState.PANNING;
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mX.locked = mY.locked = false;
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angle = Math.abs(angle - (Math.PI / 2)); // range [0, pi/2]
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Log.i(LOGTAG, "Breaking axis lock at " + (angle * 180.0 / Math.PI) + " degrees");
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}
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}
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float newVelocityX = ((lastX - x) / timeDelta) * (1000.0f/60.0f);
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float newVelocityY = ((lastY - y) / timeDelta) * (1000.0f/60.0f);
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float maxChange = MAX_EVENT_ACCELERATION * timeDelta;
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// If there's a direction change, or current velocity is very low,
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// allow setting of the velocity outright. Otherwise, use the current
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// velocity and a maximum change factor to set the new velocity.
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if (Math.abs(mX.velocity) < 1.0f ||
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(((mX.velocity > 0) != (newVelocityX > 0)) &&
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!FloatUtils.fuzzyEquals(newVelocityX, 0.0f)))
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mX.velocity = newVelocityX;
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else
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mX.velocity = clampByFactor(mX.velocity, newVelocityX, maxChange);
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if (Math.abs(mY.velocity) < 1.0f ||
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(((mY.velocity > 0) != (newVelocityY > 0)) &&
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!FloatUtils.fuzzyEquals(newVelocityY, 0.0f)))
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mY.velocity = newVelocityY;
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else
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mY.velocity = clampByFactor(mY.velocity, newVelocityY, maxChange);
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}
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private void track(MotionEvent event) {
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mX.lastTouchPos = mX.touchPos;
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mY.lastTouchPos = mY.touchPos;
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for (int i = 0; i < event.getHistorySize(); i++) {
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float x = event.getHistoricalX(0, i);
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float y = event.getHistoricalY(0, i);
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long time = event.getHistoricalEventTime(i);
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float timeDelta = (float)(time - mLastEventTime);
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mLastEventTime = time;
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track(x, y, mX.touchPos, mY.touchPos, timeDelta);
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mX.touchPos = x; mY.touchPos = y;
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}
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float timeDelta = (float)(event.getEventTime() - mLastEventTime);
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mLastEventTime = event.getEventTime();
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track(event.getX(0), event.getY(0), mX.touchPos, mY.touchPos, timeDelta);
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mX.touchPos = event.getX(0);
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mY.touchPos = event.getY(0);
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if (stopped()) {
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if (mState == PanZoomState.PANNING) {
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mState = PanZoomState.PANNING_HOLD;
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} else if (mState == PanZoomState.PANNING_LOCKED) {
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mState = PanZoomState.PANNING_HOLD_LOCKED;
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} else {
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// should never happen, but handle anyway for robustness
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Log.e(LOGTAG, "Impossible case " + mState + " when stopped in track");
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mState = PanZoomState.PANNING_HOLD_LOCKED;
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}
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}
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mX.setFlingState(Axis.FlingStates.PANNING);
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mY.setFlingState(Axis.FlingStates.PANNING);
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if (!mOverridePanning) {
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mX.applyEdgeResistance();
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mY.applyEdgeResistance();
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}
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mX.displace();
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mY.displace();
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|
|
|
updatePosition();
|
|
}
|
|
|
|
private void fling() {
|
|
if (mState != PanZoomState.FLING)
|
|
mX.velocity = mY.velocity = 0.0f;
|
|
|
|
mX.disableSnap = mY.disableSnap = mOverridePanning;
|
|
|
|
mX.displace(); mY.displace();
|
|
updatePosition();
|
|
|
|
if (mFlingTimer != null)
|
|
mFlingTimer.cancel();
|
|
|
|
boolean stopped = stopped();
|
|
mX.startFling(stopped); mY.startFling(stopped);
|
|
|
|
mFlingTimer = new Timer();
|
|
mFlingTimer.scheduleAtFixedRate(new TimerTask() {
|
|
public void run() { mController.post(new FlingRunnable()); }
|
|
}, 0, 1000L/60L);
|
|
}
|
|
|
|
private boolean stopped() {
|
|
float absVelocity = (float)Math.sqrt(mX.velocity * mX.velocity +
|
|
mY.velocity * mY.velocity);
|
|
return absVelocity < STOPPED_THRESHOLD;
|
|
}
|
|
|
|
private void updatePosition() {
|
|
if (mOverridePanning) {
|
|
if (!mOverrideScrollAck) {
|
|
mOverrideScrollPending = true;
|
|
return;
|
|
}
|
|
|
|
mOverrideScrollPending = false;
|
|
JSONObject json = new JSONObject();
|
|
|
|
try {
|
|
json.put("x", mX.displacement);
|
|
json.put("y", mY.displacement);
|
|
} catch (JSONException e) {
|
|
Log.e(LOGTAG, "Error forming Gesture:Scroll message: " + e);
|
|
}
|
|
|
|
GeckoEvent e = new GeckoEvent("Gesture:Scroll", json.toString());
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
mOverrideScrollAck = false;
|
|
} else {
|
|
mController.scrollBy(new PointF(mX.displacement, mY.displacement));
|
|
}
|
|
|
|
mX.displacement = mY.displacement = 0;
|
|
}
|
|
|
|
// The callback that performs the fling animation.
|
|
private class FlingRunnable implements Runnable {
|
|
public void run() {
|
|
mX.advanceFling(); mY.advanceFling();
|
|
|
|
if (!mOverridePanning) {
|
|
// If both X and Y axes are overscrolled, we have to wait until both axes have stopped
|
|
// to snap back to avoid a jarring effect.
|
|
boolean waitingToSnapX = mX.getFlingState() == Axis.FlingStates.WAITING_TO_SNAP;
|
|
boolean waitingToSnapY = mY.getFlingState() == Axis.FlingStates.WAITING_TO_SNAP;
|
|
if ((mX.getOverscroll() == Axis.Overscroll.PLUS || mX.getOverscroll() == Axis.Overscroll.MINUS) &&
|
|
(mY.getOverscroll() == Axis.Overscroll.PLUS || mY.getOverscroll() == Axis.Overscroll.MINUS))
|
|
{
|
|
if (waitingToSnapX && waitingToSnapY) {
|
|
mX.startSnap(); mY.startSnap();
|
|
}
|
|
} else {
|
|
if (waitingToSnapX)
|
|
mX.startSnap();
|
|
if (waitingToSnapY)
|
|
mY.startSnap();
|
|
}
|
|
}
|
|
|
|
mX.displace(); mY.displace();
|
|
updatePosition();
|
|
|
|
if (mX.getFlingState() == Axis.FlingStates.STOPPED &&
|
|
mY.getFlingState() == Axis.FlingStates.STOPPED) {
|
|
stop();
|
|
}
|
|
}
|
|
|
|
private void stop() {
|
|
mState = PanZoomState.NOTHING;
|
|
|
|
if (mFlingTimer != null) {
|
|
mFlingTimer.cancel();
|
|
mFlingTimer = null;
|
|
}
|
|
|
|
// Force a viewport synchronisation
|
|
mController.setForceRedraw();
|
|
mController.notifyLayerClientOfGeometryChange();
|
|
}
|
|
}
|
|
|
|
private float computeElasticity(float excess, float viewportLength) {
|
|
return 1.0f - excess / (viewportLength * SNAP_LIMIT);
|
|
}
|
|
|
|
// Physics information for one axis (X or Y).
|
|
private abstract static class Axis {
|
|
public enum FlingStates {
|
|
STOPPED,
|
|
PANNING,
|
|
FLINGING,
|
|
WAITING_TO_SNAP,
|
|
SNAPPING,
|
|
}
|
|
|
|
public enum Overscroll {
|
|
NONE,
|
|
MINUS, // Overscrolled in the negative direction
|
|
PLUS, // Overscrolled in the positive direction
|
|
BOTH, // Overscrolled in both directions (page is zoomed to smaller than screen)
|
|
}
|
|
|
|
public float firstTouchPos; /* Position of the first touch event on the current drag. */
|
|
public float touchPos; /* Position of the most recent touch event on the current drag. */
|
|
public float lastTouchPos; /* Position of the touch event before touchPos. */
|
|
public float velocity; /* Velocity in this direction. */
|
|
public boolean locked; /* Whether movement on this axis is locked. */
|
|
public boolean disableSnap; /* Whether overscroll snapping is disabled. */
|
|
|
|
private FlingStates mFlingState; /* The fling state we're in on this axis. */
|
|
|
|
public abstract float getOrigin();
|
|
protected abstract float getViewportLength();
|
|
protected abstract float getPageLength();
|
|
|
|
public float displacement;
|
|
|
|
private int mSnapFrame;
|
|
private float mSnapPos, mSnapEndPos;
|
|
|
|
public Axis() { mSnapFrame = -1; }
|
|
|
|
public FlingStates getFlingState() { return mFlingState; }
|
|
|
|
public void setFlingState(FlingStates aFlingState) {
|
|
mFlingState = aFlingState;
|
|
}
|
|
|
|
private float getViewportEnd() { return getOrigin() + getViewportLength(); }
|
|
|
|
public Overscroll getOverscroll() {
|
|
boolean minus = (getOrigin() < 0.0f);
|
|
boolean plus = (getViewportEnd() > getPageLength());
|
|
if (minus && plus)
|
|
return Overscroll.BOTH;
|
|
else if (minus)
|
|
return Overscroll.MINUS;
|
|
else if (plus)
|
|
return Overscroll.PLUS;
|
|
else
|
|
return Overscroll.NONE;
|
|
}
|
|
|
|
// Returns the amount that the page has been overscrolled. If the page hasn't been
|
|
// overscrolled on this axis, returns 0.
|
|
private float getExcess() {
|
|
switch (getOverscroll()) {
|
|
case MINUS: return Math.min(-getOrigin(), getPageLength() - getViewportEnd());
|
|
case PLUS: return Math.min(getOrigin(), getViewportEnd() - getPageLength());
|
|
default: return 0.0f;
|
|
}
|
|
}
|
|
|
|
// Applies resistance along the edges when tracking.
|
|
public void applyEdgeResistance() {
|
|
float excess = getExcess();
|
|
if (excess > 0.0f)
|
|
velocity *= SNAP_LIMIT - excess / getViewportLength();
|
|
}
|
|
|
|
public void startFling(boolean stopped) {
|
|
if (!stopped) {
|
|
setFlingState(FlingStates.FLINGING);
|
|
return;
|
|
}
|
|
|
|
if (disableSnap || FloatUtils.fuzzyEquals(getExcess(), 0.0f))
|
|
setFlingState(FlingStates.STOPPED);
|
|
else
|
|
setFlingState(FlingStates.WAITING_TO_SNAP);
|
|
}
|
|
|
|
// Advances a fling animation by one step.
|
|
public void advanceFling() {
|
|
switch (mFlingState) {
|
|
case FLINGING:
|
|
scroll();
|
|
return;
|
|
case WAITING_TO_SNAP:
|
|
// We don't do anything until the controller switches us into the snapping state.
|
|
return;
|
|
case SNAPPING:
|
|
snap();
|
|
return;
|
|
}
|
|
}
|
|
|
|
// Performs one frame of a scroll operation if applicable.
|
|
private void scroll() {
|
|
// If we aren't overscrolled, just apply friction.
|
|
float excess = getExcess();
|
|
if (disableSnap || FloatUtils.fuzzyEquals(excess, 0.0f)) {
|
|
velocity *= FRICTION;
|
|
if (Math.abs(velocity) < 0.1f) {
|
|
velocity = 0.0f;
|
|
setFlingState(FlingStates.STOPPED);
|
|
}
|
|
return;
|
|
}
|
|
|
|
// Otherwise, decrease the velocity linearly.
|
|
float elasticity = 1.0f - excess / (getViewportLength() * SNAP_LIMIT);
|
|
if (getOverscroll() == Overscroll.MINUS)
|
|
velocity = Math.min((velocity + OVERSCROLL_DECEL_RATE) * elasticity, 0.0f);
|
|
else // must be Overscroll.PLUS
|
|
velocity = Math.max((velocity - OVERSCROLL_DECEL_RATE) * elasticity, 0.0f);
|
|
|
|
if (Math.abs(velocity) < 0.3f) {
|
|
velocity = 0.0f;
|
|
setFlingState(FlingStates.WAITING_TO_SNAP);
|
|
}
|
|
}
|
|
|
|
// Starts a snap-into-place operation.
|
|
public void startSnap() {
|
|
switch (getOverscroll()) {
|
|
case MINUS:
|
|
mSnapFrame = 0;
|
|
mSnapEndPos = getExcess();
|
|
break;
|
|
case PLUS:
|
|
mSnapFrame = 0;
|
|
mSnapEndPos = -getExcess();
|
|
break;
|
|
default:
|
|
// no overscroll to deal with, so we're done
|
|
setFlingState(FlingStates.STOPPED);
|
|
return;
|
|
}
|
|
|
|
displacement = 0;
|
|
mSnapPos = 0.0f;
|
|
setFlingState(FlingStates.SNAPPING);
|
|
}
|
|
|
|
// Performs one frame of a snap-into-place operation.
|
|
private void snap() {
|
|
mSnapFrame++;
|
|
if (mSnapFrame == EASE_OUT_ANIMATION_FRAMES.length) {
|
|
mSnapFrame = -1;
|
|
displacement += mSnapEndPos - mSnapPos;
|
|
mSnapPos = mSnapEndPos;
|
|
|
|
setFlingState(FlingStates.STOPPED);
|
|
return;
|
|
}
|
|
|
|
float t = EASE_OUT_ANIMATION_FRAMES[mSnapFrame];
|
|
float newSnapPos = FloatUtils.interpolate(0.0f, mSnapEndPos, t);
|
|
displacement += newSnapPos - mSnapPos;
|
|
mSnapPos = newSnapPos;
|
|
}
|
|
|
|
// Performs displacement of the viewport position according to the current velocity.
|
|
public void displace() {
|
|
if (locked)
|
|
return;
|
|
|
|
if (mFlingState == FlingStates.PANNING)
|
|
displacement += lastTouchPos - touchPos;
|
|
else
|
|
displacement += velocity;
|
|
}
|
|
}
|
|
|
|
private class AxisX extends Axis {
|
|
@Override
|
|
public float getOrigin() { return mController.getOrigin().x; }
|
|
@Override
|
|
protected float getViewportLength() { return mController.getViewportSize().width; }
|
|
@Override
|
|
protected float getPageLength() { return mController.getPageSize().width; }
|
|
}
|
|
|
|
private class AxisY extends Axis {
|
|
@Override
|
|
public float getOrigin() { return mController.getOrigin().y; }
|
|
@Override
|
|
protected float getViewportLength() { return mController.getViewportSize().height; }
|
|
@Override
|
|
protected float getPageLength() { return mController.getPageSize().height; }
|
|
}
|
|
|
|
/*
|
|
* Zooming
|
|
*/
|
|
@Override
|
|
public boolean onScale(ScaleGestureDetector detector) {
|
|
if (mState == PanZoomState.ANIMATED_ZOOM)
|
|
return false;
|
|
|
|
float newZoomFactor = mController.getZoomFactor() *
|
|
(detector.getCurrentSpan() / detector.getPreviousSpan());
|
|
|
|
mController.scrollBy(new PointF(mLastZoomFocus.x - detector.getFocusX(),
|
|
mLastZoomFocus.y - detector.getFocusY()));
|
|
mController.scaleWithFocus(newZoomFactor, new PointF(detector.getFocusX(), detector.getFocusY()));
|
|
|
|
mLastZoomFocus.set(detector.getFocusX(), detector.getFocusY());
|
|
|
|
return true;
|
|
}
|
|
|
|
@Override
|
|
public boolean onScaleBegin(ScaleGestureDetector detector) {
|
|
if (mState == PanZoomState.ANIMATED_ZOOM)
|
|
return false;
|
|
|
|
mState = PanZoomState.PINCHING;
|
|
mLastZoomFocus = new PointF(detector.getFocusX(), detector.getFocusY());
|
|
GeckoApp.mAppContext.hidePluginViews();
|
|
cancelTouch();
|
|
|
|
return true;
|
|
}
|
|
|
|
@Override
|
|
public void onScaleEnd(ScaleGestureDetector detector) {
|
|
PointF o = mController.getOrigin();
|
|
if (mState == PanZoomState.ANIMATED_ZOOM)
|
|
return;
|
|
|
|
mState = PanZoomState.PANNING_HOLD_LOCKED;
|
|
mX.firstTouchPos = mX.lastTouchPos = mX.touchPos = detector.getFocusX();
|
|
mY.firstTouchPos = mY.lastTouchPos = mY.touchPos = detector.getFocusY();
|
|
|
|
RectF viewport = mController.getViewport();
|
|
|
|
FloatSize pageSize = mController.getPageSize();
|
|
RectF pageRect = new RectF(0,0, pageSize.width, pageSize.height);
|
|
|
|
if (!pageRect.contains(viewport)) {
|
|
// animatedZoomTo will ensure that our destRect is within the page bounds
|
|
animatedZoomTo(viewport);
|
|
} else {
|
|
// Force a viewport synchronisation
|
|
mController.setForceRedraw();
|
|
mController.notifyLayerClientOfGeometryChange();
|
|
GeckoApp.mAppContext.showPluginViews();
|
|
}
|
|
}
|
|
|
|
@Override
|
|
public void onLongPress(MotionEvent motionEvent) {
|
|
JSONObject ret = new JSONObject();
|
|
try {
|
|
PointF point = new PointF(motionEvent.getX(), motionEvent.getY());
|
|
point = mController.convertViewPointToLayerPoint(point);
|
|
if (point == null) {
|
|
return;
|
|
}
|
|
ret.put("x", (int)Math.round(point.x));
|
|
ret.put("y", (int)Math.round(point.y));
|
|
} catch(Exception ex) {
|
|
Log.w(LOGTAG, "Error building return: " + ex);
|
|
}
|
|
|
|
GeckoEvent e = new GeckoEvent("Gesture:LongPress", ret.toString());
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
}
|
|
|
|
public boolean getRedrawHint() {
|
|
return (mState != PanZoomState.PINCHING);
|
|
}
|
|
|
|
@Override
|
|
public boolean onDown(MotionEvent motionEvent) {
|
|
JSONObject ret = new JSONObject();
|
|
try {
|
|
PointF point = new PointF(motionEvent.getX(), motionEvent.getY());
|
|
point = mController.convertViewPointToLayerPoint(point);
|
|
ret.put("x", (int)Math.round(point.x));
|
|
ret.put("y", (int)Math.round(point.y));
|
|
} catch(Exception ex) {
|
|
throw new RuntimeException(ex);
|
|
}
|
|
|
|
GeckoEvent e = new GeckoEvent("Gesture:ShowPress", ret.toString());
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
return false;
|
|
}
|
|
|
|
@Override
|
|
public boolean onSingleTapConfirmed(MotionEvent motionEvent) {
|
|
JSONObject ret = new JSONObject();
|
|
try {
|
|
PointF point = new PointF(motionEvent.getX(), motionEvent.getY());
|
|
point = mController.convertViewPointToLayerPoint(point);
|
|
ret.put("x", (int)Math.round(point.x));
|
|
ret.put("y", (int)Math.round(point.y));
|
|
} catch(Exception ex) {
|
|
throw new RuntimeException(ex);
|
|
}
|
|
|
|
GeckoEvent e = new GeckoEvent("Gesture:SingleTap", ret.toString());
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
return true;
|
|
}
|
|
|
|
private void cancelTouch() {
|
|
GeckoEvent e = new GeckoEvent("Gesture:CancelTouch", "");
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
}
|
|
|
|
@Override
|
|
public boolean onDoubleTap(MotionEvent motionEvent) {
|
|
JSONObject ret = new JSONObject();
|
|
try {
|
|
PointF point = new PointF(motionEvent.getX(), motionEvent.getY());
|
|
point = mController.convertViewPointToLayerPoint(point);
|
|
ret.put("x", (int)Math.round(point.x));
|
|
ret.put("y", (int)Math.round(point.y));
|
|
} catch(Exception ex) {
|
|
throw new RuntimeException(ex);
|
|
}
|
|
|
|
GeckoEvent e = new GeckoEvent("Gesture:DoubleTap", ret.toString());
|
|
GeckoAppShell.sendEventToGecko(e);
|
|
return true;
|
|
}
|
|
|
|
private Timer mZoomTimer;
|
|
public boolean animatedZoomTo(RectF zoomToRect) {
|
|
GeckoApp.mAppContext.hidePluginViews();
|
|
|
|
if (mZoomTimer != null) {
|
|
mZoomTimer.cancel();
|
|
}
|
|
|
|
mState = PanZoomState.ANIMATED_ZOOM;
|
|
final float startZoom = mController.getZoomFactor();
|
|
final PointF startPoint = mController.getOrigin();
|
|
|
|
RectF viewport = mController.getViewport();
|
|
|
|
float newHeight = zoomToRect.width() * viewport.height() / viewport.width();
|
|
// if the requested rect would not fill the screen, shift it to be centered
|
|
if (zoomToRect.height() < newHeight) {
|
|
zoomToRect.top -= (newHeight - zoomToRect.height())/2;
|
|
zoomToRect.bottom = zoomToRect.top + newHeight;
|
|
}
|
|
|
|
zoomToRect = mController.restrictToPageSize(zoomToRect);
|
|
final float finalZoom = viewport.width() * startZoom / zoomToRect.width();
|
|
zoomToRect = RectUtils.scale(zoomToRect, finalZoom/startZoom);
|
|
final PointF finalPoint = new PointF(zoomToRect.left, zoomToRect.top);
|
|
|
|
mZoomTimer = new Timer();
|
|
final long startTime = new Date().getTime();
|
|
|
|
mZoomTimer.scheduleAtFixedRate(new TimerTask() {
|
|
public void run() {
|
|
long now = new Date().getTime();
|
|
final float dt = (float)(now - startTime)/ZOOM_DURATION;
|
|
|
|
if (dt < 1) {
|
|
mController.post(new Runnable() {
|
|
public void run() {
|
|
PointF currentPoint = PointUtils.interpolate(finalPoint, startPoint, dt);
|
|
float currentScale = startZoom + (finalZoom-startZoom)*dt;
|
|
mController.scaleWithOrigin(currentScale, currentPoint);
|
|
}
|
|
});
|
|
} else {
|
|
mController.post(new Runnable() {
|
|
public void run() {
|
|
mController.scaleWithOrigin(finalZoom, finalPoint);
|
|
mController.setForceRedraw();
|
|
GeckoApp.mAppContext.showPluginViews();
|
|
mController.notifyLayerClientOfGeometryChange();
|
|
}
|
|
});
|
|
mZoomTimer.cancel();
|
|
mZoomTimer = null;
|
|
mState = PanZoomState.NOTHING;
|
|
}
|
|
}
|
|
}, 0, 1000L/60L);
|
|
return true;
|
|
}
|
|
}
|