1 /*
2  * Copyright (C) 2017 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 package com.android.wallpaper.util;
17 
18 import android.content.Context;
19 import android.content.res.Resources;
20 import android.graphics.Point;
21 import android.graphics.PointF;
22 import android.graphics.Rect;
23 import android.os.Build.VERSION;
24 import android.os.Build.VERSION_CODES;
25 import android.view.Display;
26 import android.view.View;
27 
28 import com.android.systemui.shared.system.WallpaperManagerCompat;
29 
30 /**
31  * Static utility methods for wallpaper cropping operations.
32  */
33 public final class WallpaperCropUtils {
34 
35     private static final float WALLPAPER_SCREENS_SPAN = 2f;
36     private static final float ASPECT_RATIO_LANDSCAPE = 16 / 10f;
37     private static final float ASPECT_RATIO_PORTRAIT = 10 / 16f;
38     private static final float WALLPAPER_WIDTH_TO_SCREEN_RATIO_LANDSCAPE = 1.2f;
39     private static final float WALLPAPER_WIDTH_TO_SCREEN_RATIO_PORTRAIT = 1.5f;
40 
41     // Suppress default constructor for noninstantiability.
WallpaperCropUtils()42     private WallpaperCropUtils() {
43         throw new AssertionError();
44     }
45 
46     /**
47      * Calculates parallax travel (i.e., extra width) for a screen with the given resolution.
48      */
wallpaperTravelToScreenWidthRatio(int width, int height)49     public static float wallpaperTravelToScreenWidthRatio(int width, int height) {
50         float aspectRatio = width / (float) height;
51 
52         // At an aspect ratio of 16/10, the wallpaper parallax effect should span 1.2 * screen width
53         // At an aspect ratio of 10/16, the wallpaper parallax effect should span 1.5 * screen width
54         // We will use these two data points to extrapolate how much the wallpaper parallax effect
55         // to span (i.e., travel) at any aspect ratio. We use the following two linear formulas,
56         // where
57         // the coefficient on x is the aspect ratio (width/height):
58         //   (16/10)x + y = 1.2
59         //   (10/16)x + y = 1.5
60         // We solve for x and y and end up with a final formula:
61         float x = (WALLPAPER_WIDTH_TO_SCREEN_RATIO_LANDSCAPE
62                 - WALLPAPER_WIDTH_TO_SCREEN_RATIO_PORTRAIT)
63                 / (ASPECT_RATIO_LANDSCAPE - ASPECT_RATIO_PORTRAIT);
64         float y = WALLPAPER_WIDTH_TO_SCREEN_RATIO_PORTRAIT - x * ASPECT_RATIO_PORTRAIT;
65         return x * aspectRatio + y;
66     }
67 
68     /**
69      * Calculates ideal crop surface size for a device such that there is room for parallax in both
70      * landscape and portrait screen orientations.
71      */
getDefaultCropSurfaceSize(Resources resources, Display display)72     public static Point getDefaultCropSurfaceSize(Resources resources, Display display) {
73         Point minDims = new Point();
74         Point maxDims = new Point();
75         display.getCurrentSizeRange(minDims, maxDims);
76 
77         int maxDim = Math.max(maxDims.x, maxDims.y);
78         int minDim = Math.max(minDims.x, minDims.y);
79 
80         if (VERSION.SDK_INT >= VERSION_CODES.JELLY_BEAN_MR1) {
81             Point realSize = new Point();
82             display.getRealSize(realSize);
83             maxDim = Math.max(realSize.x, realSize.y);
84             minDim = Math.min(realSize.x, realSize.y);
85         }
86 
87         return calculateCropSurfaceSize(resources, maxDim, minDim, display.getWidth(),
88                 display.getHeight());
89     }
90 
91     /**
92      * Calculates ideal crop surface size for a surface of dimensions maxDim x minDim such that
93      * there is room for parallax in both* landscape and portrait screen orientations.
94      */
calculateCropSurfaceSize(Resources resources, int maxDim, int minDim, int width, int height)95     public static Point calculateCropSurfaceSize(Resources resources, int maxDim, int minDim,
96             int width, int height) {
97         final int defaultWidth, defaultHeight;
98         if (resources.getConfiguration().smallestScreenWidthDp >= 720) {
99             defaultWidth = (int) (maxDim * wallpaperTravelToScreenWidthRatio(maxDim, minDim));
100         } else {
101             defaultWidth = Math.max((int) (minDim * WALLPAPER_SCREENS_SPAN), maxDim);
102         }
103         defaultHeight = width < height ? maxDim : minDim;
104 
105         return new Point(defaultWidth, defaultHeight);
106     }
107 
108     /**
109      * Calculates the relative position between an outer and inner rectangle when the outer one is
110      * center-cropped to the inner one.
111      *
112      * @param outer      Size of outer rectangle as a Point (x,y).
113      * @param inner      Size of inner rectangle as a Point (x,y).
114      * @param alignStart Whether the inner rectangle should be aligned to the start of the layout
115      *                   with the outer one and ignore horizontal centering.
116      * @param isRtl      Whether the layout direction is RTL (or false for LTR).
117      * @return Position relative to the top left corner of the outer rectangle, where the size of
118      * each rectangle is represented by Points, in coordinates (x,y) relative to the outer rectangle
119      * where the top left corner is (0,0)
120      * @throws IllegalArgumentException if inner rectangle is not contained within outer rectangle
121      *                                  which would return a position with at least one negative
122      *                                  coordinate.
123      */
124     public static Point calculateCenterPosition(Point outer, Point inner, boolean alignStart,
125             boolean isRtl) {
126         if (inner.x > outer.x || inner.y > outer.y) {
127             throw new IllegalArgumentException("Inner rectangle " + inner + " should be contained"
128                     + " completely within the outer rectangle " + outer + ".");
129         }
130 
131         Point relativePosition = new Point();
132 
133         if (alignStart) {
134             relativePosition.x = isRtl ? outer.x - inner.x : 0;
135         } else {
136             relativePosition.x = Math.round((outer.x - inner.x) / 2f);
137         }
138         relativePosition.y = Math.round((outer.y - inner.y) / 2f);
139 
140         return relativePosition;
141     }
142 
143     /**
144      * Calculates the minimum zoom such that the maximum surface area of the outer rectangle is
145      * visible within the inner rectangle.
146      *
147      * @param outer Size of outer rectangle as a Point (x,y).
148      * @param inner Size of inner rectangle as a Point (x,y).
149      */
calculateMinZoom(Point outer, Point inner)150     public static float calculateMinZoom(Point outer, Point inner) {
151         float minZoom;
152         if (inner.x / (float) inner.y > outer.x / (float) outer.y) {
153             minZoom = inner.x / (float) outer.x;
154         } else {
155             minZoom = inner.y / (float) outer.y;
156         }
157         return minZoom;
158     }
159 
160 
161     /**
162      * Calculates the center position of a wallpaper of the given size, based on a "crop surface"
163      * (with extra width to account for parallax) superimposed on the screen. Trying to show as
164      * much of the wallpaper as possible on the crop surface and align screen to crop surface such
165      * that the centered wallpaper matches what would be seen by the user in the left-most home
166      * screen.
167      *
168      * @param wallpaperSize full size of the wallpaper
169      * @param visibleWallpaperRect visible area available for the wallpaper
170      * @return a point corresponding to the position of wallpaper that should be in the center
171      *      of the screen.
172      */
calculateDefaultCenter(Context context, Point wallpaperSize, Rect visibleWallpaperRect)173     public static PointF calculateDefaultCenter(Context context, Point wallpaperSize,
174             Rect visibleWallpaperRect) {
175 
176         WallpaperCropUtils.adjustCurrentWallpaperCropRect(context, wallpaperSize,
177                 visibleWallpaperRect);
178 
179         return new PointF(visibleWallpaperRect.centerX(),
180                 visibleWallpaperRect.centerY());
181     }
182 
183     /**
184      * Calculates the rectangle to crop a wallpaper of the given size, and considering the given
185      * scrollX and scrollY offsets
186      * @param wallpaperZoom zoom applied to the raw wallpaper image
187      * @param wallpaperSize full ("raw") wallpaper size
188      * @param defaultCropSurfaceSize @see #getDefaultCropSurfaceSize(Resources, Display)
189      * @param targetHostSize target size where the wallpaper will be rendered (eg, the display size)
190      * @param scrollX x-axis offset the cropping area from the wallpaper's 0,0 position
191      * @param scrollY y-axis offset the cropping area from the wallpaper's 0,0 position
192      * @return a Rect representing the area of the wallpaper to crop.
193      */
calculateCropRect(Context context, float wallpaperZoom, Point wallpaperSize, Point defaultCropSurfaceSize, Point targetHostSize, int scrollX, int scrollY)194     public static Rect calculateCropRect(Context context, float wallpaperZoom, Point wallpaperSize,
195             Point defaultCropSurfaceSize, Point targetHostSize, int scrollX, int scrollY) {
196         // Calculate Rect of wallpaper in physical pixel terms (i.e., scaled to current zoom).
197         int scaledWallpaperWidth = Math.round(wallpaperSize.x * wallpaperZoom);
198         int scaledWallpaperHeight = Math.round(wallpaperSize.y * wallpaperZoom);
199         Rect rect = new Rect();
200         rect.set(0, 0, scaledWallpaperWidth, scaledWallpaperHeight);
201 
202         // Crop rect should start off as the visible screen and then include extra width and height
203         // if available within wallpaper at the current zoom.
204         Rect cropRect = new Rect(scrollX, scrollY, scrollX + targetHostSize.x,
205                 scrollY + targetHostSize.y);
206 
207         int extraWidth = defaultCropSurfaceSize.x - targetHostSize.x;
208         int extraHeightTopAndBottom = (int) ((defaultCropSurfaceSize.y - targetHostSize.y) / 2f);
209 
210         // Try to increase size of screenRect to include extra width depending on the layout
211         // direction.
212         if (isRtl(context)) {
213             cropRect.left = Math.max(cropRect.left - extraWidth, rect.left);
214         } else {
215             cropRect.right = Math.min(cropRect.right + extraWidth, rect.right);
216         }
217 
218         // Try to increase the size of the cropRect to to include extra height.
219         int availableExtraHeightTop = cropRect.top - Math.max(
220                 rect.top,
221                 cropRect.top - extraHeightTopAndBottom);
222         int availableExtraHeightBottom = Math.min(
223                 rect.bottom,
224                 cropRect.bottom + extraHeightTopAndBottom) - cropRect.bottom;
225 
226         int availableExtraHeightTopAndBottom =
227                 Math.min(availableExtraHeightTop, availableExtraHeightBottom);
228         cropRect.top -= availableExtraHeightTopAndBottom;
229         cropRect.bottom += availableExtraHeightTopAndBottom;
230 
231         return cropRect;
232     }
233 
234     /**
235      * Calculates the center area of the outer rectangle which is visible in the inner rectangle
236      * after applying the minimum zoom.
237      *
238      * @param outer the size of outer rectangle as a Point (x,y).
239      * @param inner the size of inner rectangle as a Point (x,y).
240      */
calculateVisibleRect(Point outer, Point inner)241     public static Rect calculateVisibleRect(Point outer, Point inner) {
242         PointF visibleRectCenter = new PointF(outer.x / 2f, outer.y / 2f);
243         if (inner.x / (float) inner.y > outer.x / (float) outer.y) {
244             float minZoom = inner.x / (float) outer.x;
245             float visibleRectHeight = inner.y / minZoom;
246             return new Rect(0, (int) (visibleRectCenter.y - visibleRectHeight / 2),
247                     outer.x, (int) (visibleRectCenter.y + visibleRectHeight / 2));
248         } else {
249             float minZoom = inner.y / (float) outer.y;
250             float visibleRectWidth = inner.x / minZoom;
251             return new Rect((int) (visibleRectCenter.x - visibleRectWidth / 2),
252                     0, (int) (visibleRectCenter.x + visibleRectWidth / 2), outer.y);
253         }
254     }
255 
adjustCurrentWallpaperCropRect(Context context, Point assetDimensions, Rect cropRect)256     public static void adjustCurrentWallpaperCropRect(Context context, Point assetDimensions,
257             Rect cropRect) {
258         adjustCropRect(context, cropRect, true /* zoomIn */);
259     }
260 
261     /** Adjust the crop rect by zooming in with systemWallpaperMaxScale. */
adjustCropRect(Context context, Rect cropRect, boolean zoomIn)262     public static void adjustCropRect(Context context, Rect cropRect, boolean zoomIn) {
263         float centerX = cropRect.centerX();
264         float centerY = cropRect.centerY();
265         float width = cropRect.width();
266         float height = cropRect.height();
267         float systemWallpaperMaxScale = getSystemWallpaperMaximumScale(context);
268         float scale = zoomIn ? systemWallpaperMaxScale : 1.0f / systemWallpaperMaxScale;
269 
270         // Adjust the rect according to the system wallpaper's maximum scale.
271         int left = (int) (centerX - (width / 2) / scale);
272         int top = (int) (centerY - (height / 2) / scale);
273         int right = (int) (centerX + (width / 2) / scale);
274         int bottom = (int) (centerY + (height / 2) / scale);
275         cropRect.set(left, top, right, bottom);
276     }
277 
278     /** Adjust the given Point, representing a size by  systemWallpaperMaxScale. */
scaleSize(Context context, Point size)279     public static void scaleSize(Context context, Point size) {
280         float systemWallpaperMaxScale = getSystemWallpaperMaximumScale(context);
281         size.set((int) (size.x * systemWallpaperMaxScale),
282                 (int) (size.y * systemWallpaperMaxScale));
283     }
284     /**
285      * Calculates {@link Rect} of the wallpaper which we want to crop to in physical pixel terms
286      * (i.e., scaled to current zoom) when the wallpaper is laid on a fullscreen view.
287      */
calculateCropRect(Context context, Display display, Point rawWallpaperSize, Rect visibleRawWallpaperRect, float wallpaperZoom)288     public static Rect calculateCropRect(Context context, Display display, Point rawWallpaperSize,
289             Rect visibleRawWallpaperRect, float wallpaperZoom) {
290         Point screenSize = ScreenSizeCalculator.getInstance().getScreenSize(display);
291         Point defaultCropSize = WallpaperCropUtils.getDefaultCropSurfaceSize(
292                 context.getResources(), display);
293         return calculateCropRect(context, screenSize, defaultCropSize, rawWallpaperSize,
294                 visibleRawWallpaperRect, wallpaperZoom);
295     }
296 
297     /**
298      * Calculates {@link Rect} of the wallpaper which we want to crop to in physical pixel terms
299      * (i.e., scaled to current zoom).
300      *
301      * @param hostViewSize            the size of the view hosting the wallpaper as a Point (x,y).
302      * @param cropSize                the default size of the crop as a Point (x,y).
303      * @param rawWallpaperSize        the size of the raw wallpaper as a Point (x,y).
304      * @param visibleRawWallpaperRect the area of the raw wallpaper which is expected to see.
305      * @param wallpaperZoom           the factor which is used to scale the raw wallpaper.
306      */
calculateCropRect(Context context, Point hostViewSize, Point cropSize, Point rawWallpaperSize, Rect visibleRawWallpaperRect, float wallpaperZoom)307     public static Rect calculateCropRect(Context context, Point hostViewSize, Point cropSize,
308             Point rawWallpaperSize, Rect visibleRawWallpaperRect, float wallpaperZoom) {
309         int scrollX = (int) (visibleRawWallpaperRect.left * wallpaperZoom);
310         int scrollY = (int) (visibleRawWallpaperRect.top * wallpaperZoom);
311 
312         return calculateCropRect(context, wallpaperZoom, rawWallpaperSize, cropSize, hostViewSize,
313                 scrollX, scrollY);
314     }
315 
316     /**
317      * Resize the wallpaper size so it's new size fits in a outWidth by outHeight rectangle.
318      *
319      * @param wallpaperSize Rectangle with the current wallpaper size. It will be resized.
320      * @param outWidth      the width of the rectangle in which the wallpaperSize needs to fit.
321      * @param outHeight     the height of the rectangle in which the wallpaperSize needs to fit.
322      */
fitToSize(Rect wallpaperSize, int outWidth, int outHeight)323     public static void fitToSize(Rect wallpaperSize, int outWidth, int outHeight) {
324         if (wallpaperSize.isEmpty()) {
325             return;
326         }
327         float maxSizeOut = Math.max(outWidth, outHeight);
328         float maxSizeIn = Math.max(wallpaperSize.width(), wallpaperSize.height());
329         float scale = maxSizeOut / maxSizeIn;
330 
331         // Scale the wallpaper size
332         if (scale != 1.0f) {
333             wallpaperSize.left = (int) (wallpaperSize.left * scale + 0.5f);
334             wallpaperSize.top = (int) (wallpaperSize.top * scale + 0.5f);
335             wallpaperSize.right = (int) (wallpaperSize.right * scale + 0.5f);
336             wallpaperSize.bottom = (int) (wallpaperSize.bottom * scale + 0.5f);
337         }
338     }
339 
340     /**
341      * Get the system wallpaper's maximum scale value.
342      */
getSystemWallpaperMaximumScale(Context context)343     public static float getSystemWallpaperMaximumScale(Context context) {
344         return WallpaperManagerCompat.getWallpaperZoomOutMaxScale(context);
345     }
346 
347     /**
348      * Returns whether layout direction is RTL (or false for LTR). Since native RTL layout support
349      * was added in API 17, returns false for versions lower than 17.
350      */
isRtl(Context context)351     public static boolean isRtl(Context context) {
352         return context.getResources().getConfiguration().getLayoutDirection()
353                 == View.LAYOUT_DIRECTION_RTL;
354     }
355 }
356