163 lines
6.6 KiB
Java
163 lines
6.6 KiB
Java
/*
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* Copyright (C) 2014 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package android.transition;
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import android.graphics.Rect;
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import android.transition.Slide.GravityFlag;
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import android.view.Gravity;
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import android.view.View;
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import android.view.ViewGroup;
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/**
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* A <code>TransitionPropagation</code> that propagates based on the distance to the side
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* and, orthogonally, the distance to epicenter. If the transitioning View is visible in
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* the start of the transition, then it will transition sooner when closer to the side and
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* later when farther. If the view is not visible in the start of the transition, then
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* it will transition later when closer to the side and sooner when farther from the edge.
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* This is the default TransitionPropagation used with {@link android.transition.Slide}.
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*/
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public class SidePropagation extends VisibilityPropagation {
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private static final String TAG = "SlidePropagation";
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private float mPropagationSpeed = 3.0f;
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private int mSide = Gravity.BOTTOM;
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/**
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* Sets the side that is used to calculate the transition propagation. If the transitioning
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* View is visible in the start of the transition, then it will transition sooner when
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* closer to the side and later when farther. If the view is not visible in the start of
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* the transition, then it will transition later when closer to the side and sooner when
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* farther from the edge. The default is {@link Gravity#BOTTOM}.
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*
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* @param side The side that is used to calculate the transition propagation. Must be one of
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* {@link Gravity#LEFT}, {@link Gravity#TOP}, {@link Gravity#RIGHT},
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* {@link Gravity#BOTTOM}, {@link Gravity#START}, or {@link Gravity#END}.
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*/
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public void setSide(@GravityFlag int side) {
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mSide = side;
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}
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/**
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* Sets the speed at which transition propagation happens, relative to the duration of the
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* Transition. A <code>propagationSpeed</code> of 1 means that a View centered at the side
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* set in {@link #setSide(int)} and View centered at the opposite edge will have a difference
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* in start delay of approximately the duration of the Transition. A speed of 2 means the
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* start delay difference will be approximately half of the duration of the transition. A
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* value of 0 is illegal, but negative values will invert the propagation.
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*
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* @param propagationSpeed The speed at which propagation occurs, relative to the duration
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* of the transition. A speed of 4 means it works 4 times as fast
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* as the duration of the transition. May not be 0.
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*/
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public void setPropagationSpeed(float propagationSpeed) {
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if (propagationSpeed == 0) {
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throw new IllegalArgumentException("propagationSpeed may not be 0");
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}
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mPropagationSpeed = propagationSpeed;
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}
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@Override
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public long getStartDelay(ViewGroup sceneRoot, Transition transition,
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TransitionValues startValues, TransitionValues endValues) {
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if (startValues == null && endValues == null) {
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return 0;
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}
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int directionMultiplier = 1;
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Rect epicenter = transition.getEpicenter();
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TransitionValues positionValues;
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if (endValues == null || getViewVisibility(startValues) == View.VISIBLE) {
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positionValues = startValues;
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directionMultiplier = -1;
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} else {
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positionValues = endValues;
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}
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int viewCenterX = getViewX(positionValues);
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int viewCenterY = getViewY(positionValues);
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int[] loc = new int[2];
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sceneRoot.getLocationOnScreen(loc);
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int left = loc[0] + Math.round(sceneRoot.getTranslationX());
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int top = loc[1] + Math.round(sceneRoot.getTranslationY());
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int right = left + sceneRoot.getWidth();
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int bottom = top + sceneRoot.getHeight();
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int epicenterX;
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int epicenterY;
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if (epicenter != null) {
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epicenterX = epicenter.centerX();
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epicenterY = epicenter.centerY();
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} else {
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epicenterX = (left + right) / 2;
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epicenterY = (top + bottom) / 2;
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}
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float distance = distance(sceneRoot, viewCenterX, viewCenterY, epicenterX, epicenterY,
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left, top, right, bottom);
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float maxDistance = getMaxDistance(sceneRoot);
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float distanceFraction = distance/maxDistance;
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long duration = transition.getDuration();
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if (duration < 0) {
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duration = 300;
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}
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return Math.round(duration * directionMultiplier / mPropagationSpeed * distanceFraction);
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}
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private int distance(View sceneRoot, int viewX, int viewY, int epicenterX, int epicenterY,
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int left, int top, int right, int bottom) {
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final int side;
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if (mSide == Gravity.START) {
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final boolean isRtl = sceneRoot.getLayoutDirection() == View.LAYOUT_DIRECTION_RTL;
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side = isRtl ? Gravity.RIGHT : Gravity.LEFT;
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} else if (mSide == Gravity.END) {
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final boolean isRtl = sceneRoot.getLayoutDirection() == View.LAYOUT_DIRECTION_RTL;
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side = isRtl ? Gravity.LEFT : Gravity.RIGHT;
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} else {
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side = mSide;
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}
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int distance = 0;
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switch (side) {
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case Gravity.LEFT:
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distance = right - viewX + Math.abs(epicenterY - viewY);
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break;
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case Gravity.TOP:
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distance = bottom - viewY + Math.abs(epicenterX - viewX);
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break;
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case Gravity.RIGHT:
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distance = viewX - left + Math.abs(epicenterY - viewY);
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break;
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case Gravity.BOTTOM:
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distance = viewY - top + Math.abs(epicenterX - viewX);
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break;
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}
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return distance;
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}
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private int getMaxDistance(ViewGroup sceneRoot) {
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switch (mSide) {
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case Gravity.LEFT:
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case Gravity.RIGHT:
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case Gravity.START:
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case Gravity.END:
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return sceneRoot.getWidth();
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default:
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return sceneRoot.getHeight();
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}
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}
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}
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