/* * Copyright (C) 2008 The Android Open Source Project * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ package com.android.launcher2; import android.graphics.Bitmap; import android.graphics.BlurMaskFilter; import android.graphics.Canvas; import android.graphics.Paint; import android.graphics.PorterDuff; import android.graphics.PorterDuffXfermode; public class HolographicOutlineHelper { private final Paint mHolographicPaint = new Paint(); private final Paint mExpensiveBlurPaint = new Paint(); private final Paint mErasePaint = new Paint(); private static final BlurMaskFilter mThickOuterBlurMaskFilter = new BlurMaskFilter(6.0f, BlurMaskFilter.Blur.OUTER); private static final BlurMaskFilter mThinOuterBlurMaskFilter = new BlurMaskFilter(1.0f, BlurMaskFilter.Blur.OUTER); private static final BlurMaskFilter mThickInnerBlurMaskFilter = new BlurMaskFilter(4.0f, BlurMaskFilter.Blur.NORMAL); HolographicOutlineHelper() { mHolographicPaint.setFilterBitmap(true); mHolographicPaint.setAntiAlias(true); mExpensiveBlurPaint.setFilterBitmap(true); mErasePaint.setXfermode(new PorterDuffXfermode(PorterDuff.Mode.DST_OUT)); mErasePaint.setFilterBitmap(true); mErasePaint.setAntiAlias(true); } /** * Returns the interpolated holographic highlight alpha for the effect we want when scrolling * pages. */ public float highlightAlphaInterpolator(float r) { float maxAlpha = 0.8f; return (float) Math.pow(maxAlpha * (1.0f - r), 1.5f); } /** * Returns the interpolated view alpha for the effect we want when scrolling pages. */ public float viewAlphaInterpolator(float r) { final float pivot = 0.95f; if (r < pivot) { return (float) Math.pow(r / pivot, 1.5f); } else { return 1.0f; } } /** * Applies a more expensive and accurate outline to whatever is currently drawn in a specified * bitmap. */ void applyExpensiveOutlineWithBlur(Bitmap srcDst, Canvas srcDstCanvas, int color, int outlineColor) { // calculate the outer blur first mExpensiveBlurPaint.setMaskFilter(mThickOuterBlurMaskFilter); int[] outerBlurOffset = new int[2]; Bitmap thickOuterBlur = srcDst.extractAlpha(mExpensiveBlurPaint, outerBlurOffset); mExpensiveBlurPaint.setMaskFilter(mThinOuterBlurMaskFilter); int[] thinOuterBlurOffset = new int[2]; Bitmap thinOuterBlur = srcDst.extractAlpha(mExpensiveBlurPaint, thinOuterBlurOffset); // calculate the inner blur srcDstCanvas.drawColor(0xFF000000, PorterDuff.Mode.SRC_OUT); mExpensiveBlurPaint.setMaskFilter(mThickInnerBlurMaskFilter); int[] thickInnerBlurOffset = new int[2]; Bitmap thickInnerBlur = srcDst.extractAlpha(mExpensiveBlurPaint, thickInnerBlurOffset); // mask out the inner blur srcDstCanvas.setBitmap(thickInnerBlur); srcDstCanvas.drawBitmap(srcDst, -thickInnerBlurOffset[0], -thickInnerBlurOffset[1], mErasePaint); srcDstCanvas.drawRect(0, 0, -thickInnerBlurOffset[0], thickInnerBlur.getHeight(), mErasePaint); srcDstCanvas.drawRect(0, 0, thickInnerBlur.getWidth(), -thickInnerBlurOffset[1], mErasePaint); // draw the inner and outer blur srcDstCanvas.setBitmap(srcDst); srcDstCanvas.drawColor(0x00000000, PorterDuff.Mode.CLEAR); mHolographicPaint.setColor(color); srcDstCanvas.drawBitmap(thickInnerBlur, thickInnerBlurOffset[0], thickInnerBlurOffset[1], mHolographicPaint); srcDstCanvas.drawBitmap(thickOuterBlur, outerBlurOffset[0], outerBlurOffset[1], mHolographicPaint); // draw the bright outline mHolographicPaint.setColor(outlineColor); srcDstCanvas.drawBitmap(thinOuterBlur, thinOuterBlurOffset[0], thinOuterBlurOffset[1], mHolographicPaint); // cleanup thinOuterBlur.recycle(); thickOuterBlur.recycle(); thickInnerBlur.recycle(); } }