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1 /*
2  * Copyright (C) 2010 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 
17 package android.graphics;
18 
19 import com.android.ide.common.rendering.api.LayoutLog;
20 import com.android.layoutlib.bridge.Bridge;
21 import com.android.layoutlib.bridge.impl.DelegateManager;
22 import com.android.tools.layoutlib.annotations.LayoutlibDelegate;
23 
24 /**
25  * Delegate implementing the native methods of android.graphics.SweepGradient
26  *
27  * Through the layoutlib_create tool, the original native methods of SweepGradient have been
28  * replaced by calls to methods of the same name in this delegate class.
29  *
30  * This class behaves like the original native implementation, but in Java, keeping previously
31  * native data into its own objects and mapping them to int that are sent back and forth between
32  * it and the original SweepGradient class.
33  *
34  * Because this extends {@link Shader_Delegate}, there's no need to use a {@link DelegateManager},
35  * as all the Shader classes will be added to the manager owned by {@link Shader_Delegate}.
36  *
37  * @see Shader_Delegate
38  *
39  */
40 public class SweepGradient_Delegate extends Gradient_Delegate {
41 
42     // ---- delegate data ----
43     private java.awt.Paint mJavaPaint;
44 
45     // ---- Public Helper methods ----
46 
47     @Override
getJavaPaint()48     public java.awt.Paint getJavaPaint() {
49         return mJavaPaint;
50     }
51 
52     // ---- native methods ----
53 
54     @LayoutlibDelegate
nativeCreate1(float x, float y, int colors[], float positions[])55     /*package*/ static int nativeCreate1(float x, float y, int colors[], float positions[]) {
56         SweepGradient_Delegate newDelegate = new SweepGradient_Delegate(x, y, colors, positions);
57         return sManager.addNewDelegate(newDelegate);
58     }
59 
60     @LayoutlibDelegate
nativeCreate2(float x, float y, int color0, int color1)61     /*package*/ static int nativeCreate2(float x, float y, int color0, int color1) {
62         return nativeCreate1(x, y, new int[] { color0, color1 }, null /*positions*/);
63     }
64 
65     @LayoutlibDelegate
nativePostCreate1(int native_shader, float cx, float cy, int[] colors, float[] positions)66     /*package*/ static int nativePostCreate1(int native_shader, float cx, float cy,
67             int[] colors, float[] positions) {
68         // nothing to be done here.
69         return 0;
70     }
71 
72     @LayoutlibDelegate
nativePostCreate2(int native_shader, float cx, float cy, int color0, int color1)73     /*package*/ static int nativePostCreate2(int native_shader, float cx, float cy,
74             int color0, int color1) {
75         // nothing to be done here.
76         return 0;
77     }
78 
79     // ---- Private delegate/helper methods ----
80 
81     /**
82      * A subclass of Shader that draws a sweep gradient around a center point.
83      *
84      * @param cx       The x-coordinate of the center
85      * @param cy       The y-coordinate of the center
86      * @param colors   The colors to be distributed between around the center.
87      *                 There must be at least 2 colors in the array.
88      * @param positions May be NULL. The relative position of
89      *                 each corresponding color in the colors array, beginning
90      *                 with 0 and ending with 1.0. If the values are not
91      *                 monotonic, the drawing may produce unexpected results.
92      *                 If positions is NULL, then the colors are automatically
93      *                 spaced evenly.
94      */
SweepGradient_Delegate(float cx, float cy, int colors[], float positions[])95     private SweepGradient_Delegate(float cx, float cy,
96                          int colors[], float positions[]) {
97         super(colors, positions);
98         mJavaPaint = new SweepGradientPaint(cx, cy, mColors, mPositions);
99     }
100 
101     private class SweepGradientPaint extends GradientPaint {
102 
103         private final float mCx;
104         private final float mCy;
105 
SweepGradientPaint(float cx, float cy, int[] colors, float[] positions)106         public SweepGradientPaint(float cx, float cy, int[] colors,
107                 float[] positions) {
108             super(colors, positions, null /*tileMode*/);
109             mCx = cx;
110             mCy = cy;
111         }
112 
113         @Override
createContext( java.awt.image.ColorModel colorModel, java.awt.Rectangle deviceBounds, java.awt.geom.Rectangle2D userBounds, java.awt.geom.AffineTransform xform, java.awt.RenderingHints hints)114         public java.awt.PaintContext createContext(
115                 java.awt.image.ColorModel     colorModel,
116                 java.awt.Rectangle            deviceBounds,
117                 java.awt.geom.Rectangle2D     userBounds,
118                 java.awt.geom.AffineTransform xform,
119                 java.awt.RenderingHints       hints) {
120             precomputeGradientColors();
121 
122             java.awt.geom.AffineTransform canvasMatrix;
123             try {
124                 canvasMatrix = xform.createInverse();
125             } catch (java.awt.geom.NoninvertibleTransformException e) {
126                 Bridge.getLog().fidelityWarning(LayoutLog.TAG_MATRIX_INVERSE,
127                         "Unable to inverse matrix in SweepGradient", e, null /*data*/);
128                 canvasMatrix = new java.awt.geom.AffineTransform();
129             }
130 
131             java.awt.geom.AffineTransform localMatrix = getLocalMatrix();
132             try {
133                 localMatrix = localMatrix.createInverse();
134             } catch (java.awt.geom.NoninvertibleTransformException e) {
135                 Bridge.getLog().fidelityWarning(LayoutLog.TAG_MATRIX_INVERSE,
136                         "Unable to inverse matrix in SweepGradient", e, null /*data*/);
137                 localMatrix = new java.awt.geom.AffineTransform();
138             }
139 
140             return new SweepGradientPaintContext(canvasMatrix, localMatrix, colorModel);
141         }
142 
143         private class SweepGradientPaintContext implements java.awt.PaintContext {
144 
145             private final java.awt.geom.AffineTransform mCanvasMatrix;
146             private final java.awt.geom.AffineTransform mLocalMatrix;
147             private final java.awt.image.ColorModel mColorModel;
148 
SweepGradientPaintContext( java.awt.geom.AffineTransform canvasMatrix, java.awt.geom.AffineTransform localMatrix, java.awt.image.ColorModel colorModel)149             public SweepGradientPaintContext(
150                     java.awt.geom.AffineTransform canvasMatrix,
151                     java.awt.geom.AffineTransform localMatrix,
152                     java.awt.image.ColorModel colorModel) {
153                 mCanvasMatrix = canvasMatrix;
154                 mLocalMatrix = localMatrix;
155                 mColorModel = colorModel;
156             }
157 
158             @Override
dispose()159             public void dispose() {
160             }
161 
162             @Override
getColorModel()163             public java.awt.image.ColorModel getColorModel() {
164                 return mColorModel;
165             }
166 
167             @Override
getRaster(int x, int y, int w, int h)168             public java.awt.image.Raster getRaster(int x, int y, int w, int h) {
169                 java.awt.image.BufferedImage image = new java.awt.image.BufferedImage(w, h,
170                         java.awt.image.BufferedImage.TYPE_INT_ARGB);
171 
172                 int[] data = new int[w*h];
173 
174                 // compute angle from each point to the center, and figure out the distance from
175                 // it.
176                 int index = 0;
177                 float[] pt1 = new float[2];
178                 float[] pt2 = new float[2];
179                 for (int iy = 0 ; iy < h ; iy++) {
180                     for (int ix = 0 ; ix < w ; ix++) {
181                         // handle the canvas transform
182                         pt1[0] = x + ix;
183                         pt1[1] = y + iy;
184                         mCanvasMatrix.transform(pt1, 0, pt2, 0, 1);
185 
186                         // handle the local matrix
187                         pt1[0] = pt2[0] - mCx;
188                         pt1[1] = pt2[1] - mCy;
189                         mLocalMatrix.transform(pt1, 0, pt2, 0, 1);
190 
191                         float dx = pt2[0];
192                         float dy = pt2[1];
193 
194                         float angle;
195                         if (dx == 0) {
196                             angle = (float) (dy < 0 ? 3 * Math.PI / 2 : Math.PI / 2);
197                         } else if (dy == 0) {
198                             angle = (float) (dx < 0 ? Math.PI : 0);
199                         } else {
200                             angle = (float) Math.atan(dy / dx);
201                             if (dx > 0) {
202                                 if (dy < 0) {
203                                     angle += Math.PI * 2;
204                                 }
205                             } else {
206                                 angle += Math.PI;
207                             }
208                         }
209 
210                         // convert to 0-1. value and get color
211                         data[index++] = getGradientColor((float) (angle / (2 * Math.PI)));
212                     }
213                 }
214 
215                 image.setRGB(0 /*startX*/, 0 /*startY*/, w, h, data, 0 /*offset*/, w /*scansize*/);
216 
217                 return image.getRaster();
218             }
219 
220         }
221     }
222 }
223