77 lines
2.8 KiB
Java
77 lines
2.8 KiB
Java
package org.torproject.android;
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import android.graphics.Camera;
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import android.graphics.Matrix;
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import android.view.animation.Animation;
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import android.view.animation.Transformation;
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/**
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* An animation that rotates the view on the Y axis between two specified angles.
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* This animation also adds a translation on the Z axis (depth) to improve the effect.
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*/
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public class Rotate3dAnimation extends Animation {
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private final float mFromDegrees;
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private final float mToDegrees;
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private final float mCenterX;
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private final float mCenterY;
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private final float mDepthZ;
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private final boolean mReverse;
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private Camera mCamera;
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/**
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* Creates a new 3D rotation on the Y axis. The rotation is defined by its
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* start angle and its end angle. Both angles are in degrees. The rotation
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* is performed around a center point on the 2D space, definied by a pair
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* of X and Y coordinates, called centerX and centerY. When the animation
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* starts, a translation on the Z axis (depth) is performed. The length
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* of the translation can be specified, as well as whether the translation
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* should be reversed in time.
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*
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* @param fromDegrees the start angle of the 3D rotation
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* @param toDegrees the end angle of the 3D rotation
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* @param centerX the X center of the 3D rotation
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* @param centerY the Y center of the 3D rotation
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* @param reverse true if the translation should be reversed, false otherwise
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*/
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public Rotate3dAnimation(float fromDegrees, float toDegrees,
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float centerX, float centerY, float depthZ, boolean reverse) {
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mFromDegrees = fromDegrees;
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mToDegrees = toDegrees;
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mCenterX = centerX;
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mCenterY = centerY;
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mDepthZ = depthZ;
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mReverse = reverse;
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}
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@Override
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public void initialize(int width, int height, int parentWidth, int parentHeight) {
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super.initialize(width, height, parentWidth, parentHeight);
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mCamera = new Camera();
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}
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@Override
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protected void applyTransformation(float interpolatedTime, Transformation t) {
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final float fromDegrees = mFromDegrees;
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float degrees = fromDegrees + ((mToDegrees - fromDegrees) * interpolatedTime);
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final float centerX = mCenterX;
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final float centerY = mCenterY;
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final Camera camera = mCamera;
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final Matrix matrix = t.getMatrix();
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camera.save();
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if (mReverse) {
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camera.translate(0.0f, 0.0f, mDepthZ * interpolatedTime);
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} else {
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camera.translate(0.0f, 0.0f, mDepthZ * (1.0f - interpolatedTime));
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}
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camera.rotateY(degrees);
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camera.getMatrix(matrix);
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camera.restore();
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matrix.preTranslate(-centerX, -centerY);
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matrix.postTranslate(centerX, centerY);
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}
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}
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