mirror of
https://github.com/mozilla/gecko-dev.git
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325 lines
14 KiB
Java
325 lines
14 KiB
Java
/* -*- Mode: Java; c-basic-offset: 4; tab-width: 20; indent-tabs-mode: nil; -*-
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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package org.mozilla.gecko.gfx;
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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.PrefsHelper;
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import org.mozilla.gecko.TouchEventInterceptor;
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import org.mozilla.gecko.util.FloatUtils;
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import org.mozilla.gecko.util.ThreadUtils;
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import android.graphics.PointF;
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import android.graphics.RectF;
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import android.os.SystemClock;
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import android.util.Log;
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import android.view.animation.DecelerateInterpolator;
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import android.view.MotionEvent;
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import android.view.View;
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public class LayerMarginsAnimator implements TouchEventInterceptor {
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private static final String LOGTAG = "GeckoLayerMarginsAnimator";
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// The duration of the animation in ns
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private static final long MARGIN_ANIMATION_DURATION = 250000000;
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private static final String PREF_SHOW_MARGINS_THRESHOLD = "browser.ui.show-margins-threshold";
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/* This is the proportion of the viewport rect, minus maximum margins,
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* that needs to be travelled before margins will be exposed.
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*/
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private float SHOW_MARGINS_THRESHOLD = 0.20f;
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/* This rect stores the maximum value margins can grow to when scrolling. When writing
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* to this member variable, or when reading from this member variable on a non-UI thread,
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* you must synchronize on the LayerMarginsAnimator instance. */
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private final RectF mMaxMargins;
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/* If this boolean is true, scroll changes will not affect margins */
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private boolean mMarginsPinned;
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/* The task that handles showing/hiding margins */
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private LayerMarginsAnimationTask mAnimationTask;
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/* This interpolator is used for the above mentioned animation */
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private final DecelerateInterpolator mInterpolator;
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/* The GeckoLayerClient whose margins will be animated */
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private final GeckoLayerClient mTarget;
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/* The distance that has been scrolled since either the first touch event,
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* or since the margins were last fully hidden */
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private final PointF mTouchTravelDistance;
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/* The ID of the prefs listener for the show-marginss threshold */
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private Integer mPrefObserverId;
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public LayerMarginsAnimator(GeckoLayerClient aTarget, LayerView aView) {
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// Assign member variables from parameters
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mTarget = aTarget;
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// Create other member variables
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mMaxMargins = new RectF();
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mInterpolator = new DecelerateInterpolator();
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mTouchTravelDistance = new PointF();
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// Listen to the dynamic toolbar pref
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mPrefObserverId = PrefsHelper.getPref(PREF_SHOW_MARGINS_THRESHOLD, new PrefsHelper.PrefHandlerBase() {
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@Override
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public void prefValue(String pref, int value) {
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SHOW_MARGINS_THRESHOLD = (float)value / 100.0f;
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}
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@Override
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public boolean isObserver() {
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return true;
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}
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});
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// Listen to touch events, for auto-pinning
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aView.addTouchInterceptor(this);
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}
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public void destroy() {
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if (mPrefObserverId != null) {
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PrefsHelper.removeObserver(mPrefObserverId);
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mPrefObserverId = null;
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}
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}
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/**
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* Sets the maximum values for margins to grow to, in pixels.
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*/
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public synchronized void setMaxMargins(float left, float top, float right, float bottom) {
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ThreadUtils.assertOnUiThread();
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mMaxMargins.set(left, top, right, bottom);
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// Update the Gecko-side global for fixed viewport margins.
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GeckoAppShell.sendEventToGecko(
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GeckoEvent.createBroadcastEvent("Viewport:FixedMarginsChanged",
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"{ \"top\" : " + top + ", \"right\" : " + right
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+ ", \"bottom\" : " + bottom + ", \"left\" : " + left + " }"));
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}
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RectF getMaxMargins() {
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return mMaxMargins;
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}
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private void animateMargins(final float left, final float top, final float right, final float bottom, boolean immediately) {
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if (mAnimationTask != null) {
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mTarget.getView().removeRenderTask(mAnimationTask);
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mAnimationTask = null;
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}
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if (immediately) {
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ImmutableViewportMetrics newMetrics = mTarget.getViewportMetrics().setMargins(left, top, right, bottom);
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mTarget.forceViewportMetrics(newMetrics, true, true);
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return;
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}
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ImmutableViewportMetrics metrics = mTarget.getViewportMetrics();
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mAnimationTask = new LayerMarginsAnimationTask(false, metrics, left, top, right, bottom);
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mTarget.getView().postRenderTask(mAnimationTask);
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}
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/**
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* Exposes the margin area by growing the margin components of the current
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* metrics to the values set in setMaxMargins.
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*/
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public synchronized void showMargins(boolean immediately) {
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animateMargins(mMaxMargins.left, mMaxMargins.top, mMaxMargins.right, mMaxMargins.bottom, immediately);
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}
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public synchronized void hideMargins(boolean immediately) {
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animateMargins(0, 0, 0, 0, immediately);
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}
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public void setMarginsPinned(boolean pin) {
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if (pin == mMarginsPinned) {
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return;
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}
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mMarginsPinned = pin;
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}
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public boolean areMarginsShown() {
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final ImmutableViewportMetrics metrics = mTarget.getViewportMetrics();
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return metrics.marginLeft != 0 ||
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metrics.marginRight != 0 ||
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metrics.marginTop != 0 ||
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metrics.marginBottom != 0;
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}
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/**
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* This function will scroll a margin down to zero, or up to the maximum
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* specified margin size and return the left-over delta.
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* aMargins are in/out parameters. In specifies the current margin size,
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* and out specifies the modified margin size. They are specified in the
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* order of start-margin, then end-margin.
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* This function will also take into account how far the touch point has
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* moved and react accordingly. If a touch point hasn't moved beyond a
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* certain threshold, margins can only be hidden and not shown.
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* aNegativeOffset can be used if the remaining delta should be determined
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* by the end-margin instead of the start-margin (for example, in rtl
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* pages).
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*/
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private float scrollMargin(float[] aMargins, float aDelta,
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float aOverscrollStart, float aOverscrollEnd,
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float aTouchTravelDistance,
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float aViewportStart, float aViewportEnd,
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float aPageStart, float aPageEnd,
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float aMaxMarginStart, float aMaxMarginEnd,
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boolean aNegativeOffset) {
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float marginStart = aMargins[0];
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float marginEnd = aMargins[1];
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float viewportSize = aViewportEnd - aViewportStart;
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float exposeThreshold = viewportSize * SHOW_MARGINS_THRESHOLD;
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if (aDelta >= 0) {
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float marginDelta = Math.max(0, aDelta - aOverscrollStart);
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aMargins[0] = marginStart - Math.min(marginDelta, marginStart);
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if (aTouchTravelDistance < exposeThreshold && marginEnd == 0) {
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// We only want the margin to be newly exposed after the touch
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// has moved a certain distance.
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marginDelta = Math.max(0, marginDelta - (aPageEnd - aViewportEnd));
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}
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aMargins[1] = marginEnd + Math.min(marginDelta, aMaxMarginEnd - marginEnd);
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} else {
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float marginDelta = Math.max(0, -aDelta - aOverscrollEnd);
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aMargins[1] = marginEnd - Math.min(marginDelta, marginEnd);
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if (-aTouchTravelDistance < exposeThreshold && marginStart == 0) {
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marginDelta = Math.max(0, marginDelta - (aViewportStart - aPageStart));
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}
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aMargins[0] = marginStart + Math.min(marginDelta, aMaxMarginStart - marginStart);
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}
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if (aNegativeOffset) {
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return aDelta - (marginEnd - aMargins[1]);
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}
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return aDelta - (marginStart - aMargins[0]);
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}
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/*
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* Taking maximum margins into account, offsets the margins and then the
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* viewport origin and returns the modified metrics.
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*/
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ImmutableViewportMetrics scrollBy(ImmutableViewportMetrics aMetrics, float aDx, float aDy) {
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float[] newMarginsX = { aMetrics.marginLeft, aMetrics.marginRight };
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float[] newMarginsY = { aMetrics.marginTop, aMetrics.marginBottom };
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// Only alter margins if the toolbar isn't pinned
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if (!mMarginsPinned) {
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// Make sure to cancel any margin animations when margin-scrolling begins
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if (mAnimationTask != null) {
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mTarget.getView().removeRenderTask(mAnimationTask);
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mAnimationTask = null;
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}
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// Reset the touch travel when changing direction
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if ((aDx >= 0) != (mTouchTravelDistance.x >= 0)) {
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mTouchTravelDistance.x = 0;
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}
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if ((aDy >= 0) != (mTouchTravelDistance.y >= 0)) {
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mTouchTravelDistance.y = 0;
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}
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mTouchTravelDistance.offset(aDx, aDy);
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RectF overscroll = aMetrics.getOverscroll();
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// Only allow margins to scroll if the page can fill the viewport.
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if (aMetrics.getPageWidth() >= aMetrics.getWidth()) {
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aDx = scrollMargin(newMarginsX, aDx,
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overscroll.left, overscroll.right,
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mTouchTravelDistance.x,
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aMetrics.viewportRectLeft, aMetrics.viewportRectRight,
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aMetrics.pageRectLeft, aMetrics.pageRectRight,
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mMaxMargins.left, mMaxMargins.right,
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aMetrics.isRTL);
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}
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if (aMetrics.getPageHeight() >= aMetrics.getHeight()) {
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aDy = scrollMargin(newMarginsY, aDy,
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overscroll.top, overscroll.bottom,
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mTouchTravelDistance.y,
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aMetrics.viewportRectTop, aMetrics.viewportRectBottom,
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aMetrics.pageRectTop, aMetrics.pageRectBottom,
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mMaxMargins.top, mMaxMargins.bottom,
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false);
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}
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}
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return aMetrics.setMargins(newMarginsX[0], newMarginsY[0], newMarginsX[1], newMarginsY[1]).offsetViewportBy(aDx, aDy);
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}
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/** Implementation of TouchEventInterceptor */
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@Override
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public boolean onTouch(View view, MotionEvent event) {
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return false;
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}
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/** Implementation of TouchEventInterceptor */
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@Override
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public boolean onInterceptTouchEvent(View view, MotionEvent event) {
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int action = event.getActionMasked();
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if (action == MotionEvent.ACTION_DOWN && event.getPointerCount() == 1) {
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mTouchTravelDistance.set(0.0f, 0.0f);
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}
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return false;
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}
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class LayerMarginsAnimationTask extends RenderTask {
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private float mStartLeft, mStartTop, mStartRight, mStartBottom;
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private float mTop, mBottom, mLeft, mRight;
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private boolean mContinueAnimation;
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public LayerMarginsAnimationTask(boolean runAfter, ImmutableViewportMetrics metrics,
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float left, float top, float right, float bottom) {
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super(runAfter);
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mContinueAnimation = true;
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this.mStartLeft = metrics.marginLeft;
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this.mStartTop = metrics.marginTop;
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this.mStartRight = metrics.marginRight;
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this.mStartBottom = metrics.marginBottom;
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this.mLeft = left;
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this.mRight = right;
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this.mTop = top;
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this.mBottom = bottom;
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}
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@Override
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public boolean internalRun(long timeDelta, long currentFrameStartTime) {
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if (!mContinueAnimation) {
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return false;
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}
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// Calculate the progress (between 0 and 1)
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float progress = mInterpolator.getInterpolation(
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Math.min(1.0f, (System.nanoTime() - getStartTime())
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/ (float)MARGIN_ANIMATION_DURATION));
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// Calculate the new metrics accordingly
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synchronized (mTarget.getLock()) {
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ImmutableViewportMetrics oldMetrics = mTarget.getViewportMetrics();
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ImmutableViewportMetrics newMetrics = oldMetrics.setMargins(
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FloatUtils.interpolate(mStartLeft, mLeft, progress),
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FloatUtils.interpolate(mStartTop, mTop, progress),
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FloatUtils.interpolate(mStartRight, mRight, progress),
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FloatUtils.interpolate(mStartBottom, mBottom, progress));
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PointF oldOffset = oldMetrics.getMarginOffset();
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PointF newOffset = newMetrics.getMarginOffset();
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newMetrics =
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newMetrics.offsetViewportByAndClamp(newOffset.x - oldOffset.x,
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newOffset.y - oldOffset.y);
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if (progress >= 1.0f) {
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mContinueAnimation = false;
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// Force a redraw and update Gecko
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mTarget.forceViewportMetrics(newMetrics, true, true);
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} else {
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mTarget.forceViewportMetrics(newMetrics, false, false);
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}
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}
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return mContinueAnimation;
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}
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}
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}
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