mirror of
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136 lines
6.0 KiB
Java
Executable File
136 lines
6.0 KiB
Java
Executable File
/*
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* Copyright (C) 2010 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 com.nineoldandroids.animation;
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import android.view.animation.Interpolator;
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import com.nineoldandroids.animation.Keyframe.IntKeyframe;
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import java.util.ArrayList;
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/**
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* This class holds a collection of IntKeyframe objects and is called by ValueAnimator to calculate
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* values between those keyframes for a given animation. The class internal to the animation
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* package because it is an implementation detail of how Keyframes are stored and used.
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*
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* <p>This type-specific subclass of KeyframeSet, along with the other type-specific subclass for
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* float, exists to speed up the getValue() method when there is no custom
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* TypeEvaluator set for the animation, so that values can be calculated without autoboxing to the
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* Object equivalents of these primitive types.</p>
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*/
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class IntKeyframeSet extends KeyframeSet {
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private int firstValue;
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private int lastValue;
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private int deltaValue;
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private boolean firstTime = true;
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public IntKeyframeSet(IntKeyframe... keyframes) {
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super(keyframes);
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}
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@Override
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public Object getValue(float fraction) {
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return getIntValue(fraction);
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}
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@Override
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public IntKeyframeSet clone() {
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ArrayList<Keyframe> keyframes = mKeyframes;
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int numKeyframes = mKeyframes.size();
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IntKeyframe[] newKeyframes = new IntKeyframe[numKeyframes];
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for (int i = 0; i < numKeyframes; ++i) {
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newKeyframes[i] = (IntKeyframe) keyframes.get(i).clone();
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}
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IntKeyframeSet newSet = new IntKeyframeSet(newKeyframes);
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return newSet;
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}
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public int getIntValue(float fraction) {
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if (mNumKeyframes == 2) {
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if (firstTime) {
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firstTime = false;
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firstValue = ((IntKeyframe) mKeyframes.get(0)).getIntValue();
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lastValue = ((IntKeyframe) mKeyframes.get(1)).getIntValue();
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deltaValue = lastValue - firstValue;
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}
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if (mInterpolator != null) {
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fraction = mInterpolator.getInterpolation(fraction);
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}
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if (mEvaluator == null) {
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return firstValue + (int)(fraction * deltaValue);
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} else {
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return ((Number)mEvaluator.evaluate(fraction, firstValue, lastValue)).intValue();
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}
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}
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if (fraction <= 0f) {
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final IntKeyframe prevKeyframe = (IntKeyframe) mKeyframes.get(0);
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final IntKeyframe nextKeyframe = (IntKeyframe) mKeyframes.get(1);
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int prevValue = prevKeyframe.getIntValue();
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int nextValue = nextKeyframe.getIntValue();
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float prevFraction = prevKeyframe.getFraction();
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float nextFraction = nextKeyframe.getFraction();
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final /*Time*/Interpolator interpolator = nextKeyframe.getInterpolator();
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if (interpolator != null) {
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fraction = interpolator.getInterpolation(fraction);
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}
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float intervalFraction = (fraction - prevFraction) / (nextFraction - prevFraction);
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return mEvaluator == null ?
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prevValue + (int)(intervalFraction * (nextValue - prevValue)) :
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((Number)mEvaluator.evaluate(intervalFraction, prevValue, nextValue)).
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intValue();
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} else if (fraction >= 1f) {
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final IntKeyframe prevKeyframe = (IntKeyframe) mKeyframes.get(mNumKeyframes - 2);
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final IntKeyframe nextKeyframe = (IntKeyframe) mKeyframes.get(mNumKeyframes - 1);
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int prevValue = prevKeyframe.getIntValue();
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int nextValue = nextKeyframe.getIntValue();
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float prevFraction = prevKeyframe.getFraction();
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float nextFraction = nextKeyframe.getFraction();
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final /*Time*/Interpolator interpolator = nextKeyframe.getInterpolator();
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if (interpolator != null) {
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fraction = interpolator.getInterpolation(fraction);
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}
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float intervalFraction = (fraction - prevFraction) / (nextFraction - prevFraction);
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return mEvaluator == null ?
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prevValue + (int)(intervalFraction * (nextValue - prevValue)) :
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((Number)mEvaluator.evaluate(intervalFraction, prevValue, nextValue)).intValue();
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}
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IntKeyframe prevKeyframe = (IntKeyframe) mKeyframes.get(0);
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for (int i = 1; i < mNumKeyframes; ++i) {
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IntKeyframe nextKeyframe = (IntKeyframe) mKeyframes.get(i);
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if (fraction < nextKeyframe.getFraction()) {
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final /*Time*/Interpolator interpolator = nextKeyframe.getInterpolator();
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if (interpolator != null) {
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fraction = interpolator.getInterpolation(fraction);
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}
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float intervalFraction = (fraction - prevKeyframe.getFraction()) /
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(nextKeyframe.getFraction() - prevKeyframe.getFraction());
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int prevValue = prevKeyframe.getIntValue();
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int nextValue = nextKeyframe.getIntValue();
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return mEvaluator == null ?
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prevValue + (int)(intervalFraction * (nextValue - prevValue)) :
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((Number)mEvaluator.evaluate(intervalFraction, prevValue, nextValue)).
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intValue();
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}
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prevKeyframe = nextKeyframe;
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}
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// shouldn't get here
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return ((Number)mKeyframes.get(mNumKeyframes - 1).getValue()).intValue();
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}
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}
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