Path_Delegate.java revision 3b3795601051f9ae7008e2b3e29e683f5d4a2e53
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
17package android.graphics;
18
19import com.android.ide.common.rendering.api.LayoutLog;
20import com.android.layoutlib.bridge.Bridge;
21import com.android.layoutlib.bridge.impl.DelegateManager;
22import com.android.tools.layoutlib.annotations.LayoutlibDelegate;
23
24import android.graphics.Path.Direction;
25import android.graphics.Path.FillType;
26
27import java.awt.Shape;
28import java.awt.geom.AffineTransform;
29import java.awt.geom.Arc2D;
30import java.awt.geom.Area;
31import java.awt.geom.Ellipse2D;
32import java.awt.geom.GeneralPath;
33import java.awt.geom.PathIterator;
34import java.awt.geom.Point2D;
35import java.awt.geom.Rectangle2D;
36import java.awt.geom.RoundRectangle2D;
37
38/**
39 * Delegate implementing the native methods of android.graphics.Path
40 *
41 * Through the layoutlib_create tool, the original native methods of Path have been replaced
42 * by calls to methods of the same name in this delegate class.
43 *
44 * This class behaves like the original native implementation, but in Java, keeping previously
45 * native data into its own objects and mapping them to int that are sent back and forth between
46 * it and the original Path class.
47 *
48 * @see DelegateManager
49 *
50 */
51public final class Path_Delegate {
52
53    // ---- delegate manager ----
54    private static final DelegateManager<Path_Delegate> sManager =
55            new DelegateManager<Path_Delegate>(Path_Delegate.class);
56
57    // ---- delegate data ----
58    private FillType mFillType = FillType.WINDING;
59    private GeneralPath mPath = new GeneralPath();
60
61    private float mLastX = 0;
62    private float mLastY = 0;
63
64    // ---- Public Helper methods ----
65
66    public static Path_Delegate getDelegate(long nPath) {
67        return sManager.getDelegate(nPath);
68    }
69
70    public Shape getJavaShape() {
71        return mPath;
72    }
73
74    public void setJavaShape(Shape shape) {
75        mPath.reset();
76        mPath.append(shape, false /*connect*/);
77    }
78
79    public void reset() {
80        mPath.reset();
81    }
82
83    public void setPathIterator(PathIterator iterator) {
84        mPath.reset();
85        mPath.append(iterator, false /*connect*/);
86    }
87
88    // ---- native methods ----
89
90    @LayoutlibDelegate
91    /*package*/ static long init1() {
92        // create the delegate
93        Path_Delegate newDelegate = new Path_Delegate();
94
95        return sManager.addNewDelegate(newDelegate);
96    }
97
98    @LayoutlibDelegate
99    /*package*/ static long init2(long nPath) {
100        // create the delegate
101        Path_Delegate newDelegate = new Path_Delegate();
102
103        // get the delegate to copy, which could be null if nPath is 0
104        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
105        if (pathDelegate != null) {
106            newDelegate.set(pathDelegate);
107        }
108
109        return sManager.addNewDelegate(newDelegate);
110    }
111
112    @LayoutlibDelegate
113    /*package*/ static void native_reset(long nPath) {
114        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
115        if (pathDelegate == null) {
116            return;
117        }
118
119        pathDelegate.mPath.reset();
120    }
121
122    @LayoutlibDelegate
123    /*package*/ static void native_rewind(long nPath) {
124        // call out to reset since there's nothing to optimize in
125        // terms of data structs.
126        native_reset(nPath);
127    }
128
129    @LayoutlibDelegate
130    /*package*/ static void native_set(long native_dst, long native_src) {
131        Path_Delegate pathDstDelegate = sManager.getDelegate(native_dst);
132        if (pathDstDelegate == null) {
133            return;
134        }
135
136        Path_Delegate pathSrcDelegate = sManager.getDelegate(native_src);
137        if (pathSrcDelegate == null) {
138            return;
139        }
140
141        pathDstDelegate.set(pathSrcDelegate);
142    }
143
144    @LayoutlibDelegate
145    /*package*/ static boolean native_isConvex(long nPath) {
146        Bridge.getLog().fidelityWarning(LayoutLog.TAG_UNSUPPORTED,
147                "Path.isConvex is not supported.", null, null);
148        return true;
149    }
150
151    @LayoutlibDelegate
152    /*package*/ static int native_getFillType(long nPath) {
153        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
154        if (pathDelegate == null) {
155            return 0;
156        }
157
158        return pathDelegate.mFillType.nativeInt;
159    }
160
161    @LayoutlibDelegate
162    /*package*/ static void native_setFillType(long nPath, int ft) {
163        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
164        if (pathDelegate == null) {
165            return;
166        }
167
168        pathDelegate.mFillType = Path.sFillTypeArray[ft];
169    }
170
171    @LayoutlibDelegate
172    /*package*/ static boolean native_isEmpty(long nPath) {
173        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
174        if (pathDelegate == null) {
175            return true;
176        }
177
178        return pathDelegate.isEmpty();
179    }
180
181    @LayoutlibDelegate
182    /*package*/ static boolean native_isRect(long nPath, RectF rect) {
183        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
184        if (pathDelegate == null) {
185            return false;
186        }
187
188        // create an Area that can test if the path is a rect
189        Area area = new Area(pathDelegate.mPath);
190        if (area.isRectangular()) {
191            if (rect != null) {
192                pathDelegate.fillBounds(rect);
193            }
194
195            return true;
196        }
197
198        return false;
199    }
200
201    @LayoutlibDelegate
202    /*package*/ static void native_computeBounds(long nPath, RectF bounds) {
203        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
204        if (pathDelegate == null) {
205            return;
206        }
207
208        pathDelegate.fillBounds(bounds);
209    }
210
211    @LayoutlibDelegate
212    /*package*/ static void native_incReserve(long nPath, int extraPtCount) {
213        // since we use a java2D path, there's no way to pre-allocate new points,
214        // so we do nothing.
215    }
216
217    @LayoutlibDelegate
218    /*package*/ static void native_moveTo(long nPath, float x, float y) {
219        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
220        if (pathDelegate == null) {
221            return;
222        }
223
224        pathDelegate.moveTo(x, y);
225    }
226
227    @LayoutlibDelegate
228    /*package*/ static void native_rMoveTo(long nPath, float dx, float dy) {
229        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
230        if (pathDelegate == null) {
231            return;
232        }
233
234        pathDelegate.rMoveTo(dx, dy);
235    }
236
237    @LayoutlibDelegate
238    /*package*/ static void native_lineTo(long nPath, float x, float y) {
239        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
240        if (pathDelegate == null) {
241            return;
242        }
243
244        pathDelegate.lineTo(x, y);
245    }
246
247    @LayoutlibDelegate
248    /*package*/ static void native_rLineTo(long nPath, float dx, float dy) {
249        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
250        if (pathDelegate == null) {
251            return;
252        }
253
254        pathDelegate.rLineTo(dx, dy);
255    }
256
257    @LayoutlibDelegate
258    /*package*/ static void native_quadTo(long nPath, float x1, float y1, float x2, float y2) {
259        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
260        if (pathDelegate == null) {
261            return;
262        }
263
264        pathDelegate.quadTo(x1, y1, x2, y2);
265    }
266
267    @LayoutlibDelegate
268    /*package*/ static void native_rQuadTo(long nPath, float dx1, float dy1, float dx2, float dy2) {
269        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
270        if (pathDelegate == null) {
271            return;
272        }
273
274        pathDelegate.rQuadTo(dx1, dy1, dx2, dy2);
275    }
276
277    @LayoutlibDelegate
278    /*package*/ static void native_cubicTo(long nPath, float x1, float y1,
279            float x2, float y2, float x3, float y3) {
280        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
281        if (pathDelegate == null) {
282            return;
283        }
284
285        pathDelegate.cubicTo(x1, y1, x2, y2, x3, y3);
286    }
287
288    @LayoutlibDelegate
289    /*package*/ static void native_rCubicTo(long nPath, float x1, float y1,
290            float x2, float y2, float x3, float y3) {
291        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
292        if (pathDelegate == null) {
293            return;
294        }
295
296        pathDelegate.rCubicTo(x1, y1, x2, y2, x3, y3);
297    }
298
299    @LayoutlibDelegate
300    /*package*/ static void native_arcTo(long nPath, float left, float top, float right,
301            float bottom,
302                    float startAngle, float sweepAngle, boolean forceMoveTo) {
303        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
304        if (pathDelegate == null) {
305            return;
306        }
307
308        pathDelegate.arcTo(left, top, right, bottom, startAngle, sweepAngle, forceMoveTo);
309    }
310
311    @LayoutlibDelegate
312    /*package*/ static void native_close(long nPath) {
313        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
314        if (pathDelegate == null) {
315            return;
316        }
317
318        pathDelegate.close();
319    }
320
321    @LayoutlibDelegate
322    /*package*/ static void native_addRect(long nPath,
323            float left, float top, float right, float bottom, int dir) {
324        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
325        if (pathDelegate == null) {
326            return;
327        }
328
329        pathDelegate.addRect(left, top, right, bottom, dir);
330    }
331
332    @LayoutlibDelegate
333    /*package*/ static void native_addOval(long nPath, float left, float top, float right,
334            float bottom, int dir) {
335        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
336        if (pathDelegate == null) {
337            return;
338        }
339
340        pathDelegate.mPath.append(new Ellipse2D.Float(
341                left, top, right - left, bottom - top), false);
342    }
343
344    @LayoutlibDelegate
345    /*package*/ static void native_addCircle(long nPath, float x, float y, float radius, int dir) {
346        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
347        if (pathDelegate == null) {
348            return;
349        }
350
351        // because x/y is the center of the circle, need to offset this by the radius
352        pathDelegate.mPath.append(new Ellipse2D.Float(
353                x - radius, y - radius, radius * 2, radius * 2), false);
354    }
355
356    @LayoutlibDelegate
357    /*package*/ static void native_addArc(long nPath, float left, float top, float right,
358            float bottom, float startAngle, float sweepAngle) {
359        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
360        if (pathDelegate == null) {
361            return;
362        }
363
364        // because x/y is the center of the circle, need to offset this by the radius
365        pathDelegate.mPath.append(new Arc2D.Float(
366                left, top, right - left, bottom - top,
367                -startAngle, -sweepAngle, Arc2D.OPEN), false);
368    }
369
370    @LayoutlibDelegate
371    /*package*/ static void native_addRoundRect(long nPath, float left, float top, float right,
372            float bottom, float rx, float ry, int dir) {
373
374        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
375        if (pathDelegate == null) {
376            return;
377        }
378
379        pathDelegate.mPath.append(new RoundRectangle2D.Float(
380                left, top, right - left, bottom - top, rx * 2, ry * 2), false);
381    }
382
383    @LayoutlibDelegate
384    /*package*/ static void native_addRoundRect(long nPath, float left, float top, float right,
385            float bottom, float[] radii, int dir) {
386        // Java2D doesn't support different rounded corners in each corner, so just use the
387        // first value.
388        native_addRoundRect(nPath, left, top, right, bottom, radii[0], radii[1], dir);
389
390        // there can be a case where this API is used but with similar values for all corners, so
391        // in that case we don't warn.
392        // we only care if 2 corners are different so just compare to the next one.
393        for (int i = 0 ; i < 3 ; i++) {
394            if (radii[i * 2] != radii[(i + 1) * 2] || radii[i * 2 + 1] != radii[(i + 1) * 2 + 1]) {
395                Bridge.getLog().fidelityWarning(LayoutLog.TAG_UNSUPPORTED,
396                        "Different corner sizes are not supported in Path.addRoundRect.",
397                        null, null /*data*/);
398                break;
399            }
400        }
401    }
402
403    @LayoutlibDelegate
404    /*package*/ static void native_addPath(long nPath, long src, float dx, float dy) {
405        addPath(nPath, src, AffineTransform.getTranslateInstance(dx, dy));
406    }
407
408    @LayoutlibDelegate
409    /*package*/ static void native_addPath(long nPath, long src) {
410        addPath(nPath, src, null /*transform*/);
411    }
412
413    @LayoutlibDelegate
414    /*package*/ static void native_addPath(long nPath, long src, long matrix) {
415        Matrix_Delegate matrixDelegate = Matrix_Delegate.getDelegate(matrix);
416        if (matrixDelegate == null) {
417            return;
418        }
419
420        addPath(nPath, src, matrixDelegate.getAffineTransform());
421    }
422
423    @LayoutlibDelegate
424    /*package*/ static void native_offset(long nPath, float dx, float dy, long dst_path) {
425        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
426        if (pathDelegate == null) {
427            return;
428        }
429
430        // could be null if the int is 0;
431        Path_Delegate dstDelegate = sManager.getDelegate(dst_path);
432
433        pathDelegate.offset(dx, dy, dstDelegate);
434    }
435
436    @LayoutlibDelegate
437    /*package*/ static void native_offset(long nPath, float dx, float dy) {
438        native_offset(nPath, dx, dy, 0);
439    }
440
441    @LayoutlibDelegate
442    /*package*/ static void native_setLastPoint(long nPath, float dx, float dy) {
443        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
444        if (pathDelegate == null) {
445            return;
446        }
447
448        pathDelegate.mLastX = dx;
449        pathDelegate.mLastY = dy;
450    }
451
452    @LayoutlibDelegate
453    /*package*/ static void native_transform(long nPath, long matrix,
454                                                long dst_path) {
455        Path_Delegate pathDelegate = sManager.getDelegate(nPath);
456        if (pathDelegate == null) {
457            return;
458        }
459
460        Matrix_Delegate matrixDelegate = Matrix_Delegate.getDelegate(matrix);
461        if (matrixDelegate == null) {
462            return;
463        }
464
465        // this can be null if dst_path is 0
466        Path_Delegate dstDelegate = sManager.getDelegate(dst_path);
467
468        pathDelegate.transform(matrixDelegate, dstDelegate);
469    }
470
471    @LayoutlibDelegate
472    /*package*/ static void native_transform(long nPath, long matrix) {
473        native_transform(nPath, matrix, 0);
474    }
475
476    @LayoutlibDelegate
477    /*package*/ static boolean native_op(long nPath1, long nPath2, int op, long result) {
478        Bridge.getLog().error(LayoutLog.TAG_UNSUPPORTED, "Path.op() not supported", null);
479        return false;
480    }
481
482    @LayoutlibDelegate
483    /*package*/ static void finalizer(long nPath) {
484        sManager.removeJavaReferenceFor(nPath);
485    }
486
487    @LayoutlibDelegate
488    /*package*/ static float[] native_approximate(long nPath, float error) {
489        Bridge.getLog().error(LayoutLog.TAG_UNSUPPORTED, "Path.approximate() not supported", null);
490        return new float[0];
491    }
492
493    // ---- Private helper methods ----
494
495    private void set(Path_Delegate delegate) {
496        mPath.reset();
497        setFillType(delegate.mFillType);
498        mPath.append(delegate.mPath, false /*connect*/);
499    }
500
501    private void setFillType(FillType fillType) {
502        mFillType = fillType;
503        mPath.setWindingRule(getWindingRule(fillType));
504    }
505
506    /**
507     * Returns the Java2D winding rules matching a given Android {@link FillType}.
508     * @param type the android fill type
509     * @return the matching java2d winding rule.
510     */
511    private static int getWindingRule(FillType type) {
512        switch (type) {
513            case WINDING:
514            case INVERSE_WINDING:
515                return GeneralPath.WIND_NON_ZERO;
516            case EVEN_ODD:
517            case INVERSE_EVEN_ODD:
518                return GeneralPath.WIND_EVEN_ODD;
519        }
520
521        assert false;
522        throw new IllegalArgumentException();
523    }
524
525    private static Direction getDirection(int direction) {
526        for (Direction d : Direction.values()) {
527            if (direction == d.nativeInt) {
528                return d;
529            }
530        }
531
532        assert false;
533        return null;
534    }
535
536    private static void addPath(long destPath, long srcPath, AffineTransform transform) {
537        Path_Delegate destPathDelegate = sManager.getDelegate(destPath);
538        if (destPathDelegate == null) {
539            return;
540        }
541
542        Path_Delegate srcPathDelegate = sManager.getDelegate(srcPath);
543        if (srcPathDelegate == null) {
544            return;
545        }
546
547        if (transform != null) {
548            destPathDelegate.mPath.append(
549                    srcPathDelegate.mPath.getPathIterator(transform), false);
550        } else {
551            destPathDelegate.mPath.append(srcPathDelegate.mPath, false);
552        }
553    }
554
555
556    /**
557     * Returns whether the path is empty.
558     * @return true if the path is empty.
559     */
560    private boolean isEmpty() {
561        return mPath.getCurrentPoint() == null;
562    }
563
564    /**
565     * Fills the given {@link RectF} with the path bounds.
566     * @param bounds the RectF to be filled.
567     */
568    private void fillBounds(RectF bounds) {
569        Rectangle2D rect = mPath.getBounds2D();
570        bounds.left = (float)rect.getMinX();
571        bounds.right = (float)rect.getMaxX();
572        bounds.top = (float)rect.getMinY();
573        bounds.bottom = (float)rect.getMaxY();
574    }
575
576    /**
577     * Set the beginning of the next contour to the point (x,y).
578     *
579     * @param x The x-coordinate of the start of a new contour
580     * @param y The y-coordinate of the start of a new contour
581     */
582    private void moveTo(float x, float y) {
583        mPath.moveTo(mLastX = x, mLastY = y);
584    }
585
586    /**
587     * Set the beginning of the next contour relative to the last point on the
588     * previous contour. If there is no previous contour, this is treated the
589     * same as moveTo().
590     *
591     * @param dx The amount to add to the x-coordinate of the end of the
592     *           previous contour, to specify the start of a new contour
593     * @param dy The amount to add to the y-coordinate of the end of the
594     *           previous contour, to specify the start of a new contour
595     */
596    private void rMoveTo(float dx, float dy) {
597        dx += mLastX;
598        dy += mLastY;
599        mPath.moveTo(mLastX = dx, mLastY = dy);
600    }
601
602    /**
603     * Add a line from the last point to the specified point (x,y).
604     * If no moveTo() call has been made for this contour, the first point is
605     * automatically set to (0,0).
606     *
607     * @param x The x-coordinate of the end of a line
608     * @param y The y-coordinate of the end of a line
609     */
610    private void lineTo(float x, float y) {
611        if (isEmpty()) {
612            mPath.moveTo(mLastX = 0, mLastY = 0);
613        }
614        mPath.lineTo(mLastX = x, mLastY = y);
615    }
616
617    /**
618     * Same as lineTo, but the coordinates are considered relative to the last
619     * point on this contour. If there is no previous point, then a moveTo(0,0)
620     * is inserted automatically.
621     *
622     * @param dx The amount to add to the x-coordinate of the previous point on
623     *           this contour, to specify a line
624     * @param dy The amount to add to the y-coordinate of the previous point on
625     *           this contour, to specify a line
626     */
627    private void rLineTo(float dx, float dy) {
628        if (isEmpty()) {
629            mPath.moveTo(mLastX = 0, mLastY = 0);
630        }
631        dx += mLastX;
632        dy += mLastY;
633        mPath.lineTo(mLastX = dx, mLastY = dy);
634    }
635
636    /**
637     * Add a quadratic bezier from the last point, approaching control point
638     * (x1,y1), and ending at (x2,y2). If no moveTo() call has been made for
639     * this contour, the first point is automatically set to (0,0).
640     *
641     * @param x1 The x-coordinate of the control point on a quadratic curve
642     * @param y1 The y-coordinate of the control point on a quadratic curve
643     * @param x2 The x-coordinate of the end point on a quadratic curve
644     * @param y2 The y-coordinate of the end point on a quadratic curve
645     */
646    private void quadTo(float x1, float y1, float x2, float y2) {
647        mPath.quadTo(x1, y1, mLastX = x2, mLastY = y2);
648    }
649
650    /**
651     * Same as quadTo, but the coordinates are considered relative to the last
652     * point on this contour. If there is no previous point, then a moveTo(0,0)
653     * is inserted automatically.
654     *
655     * @param dx1 The amount to add to the x-coordinate of the last point on
656     *            this contour, for the control point of a quadratic curve
657     * @param dy1 The amount to add to the y-coordinate of the last point on
658     *            this contour, for the control point of a quadratic curve
659     * @param dx2 The amount to add to the x-coordinate of the last point on
660     *            this contour, for the end point of a quadratic curve
661     * @param dy2 The amount to add to the y-coordinate of the last point on
662     *            this contour, for the end point of a quadratic curve
663     */
664    private void rQuadTo(float dx1, float dy1, float dx2, float dy2) {
665        if (isEmpty()) {
666            mPath.moveTo(mLastX = 0, mLastY = 0);
667        }
668        dx1 += mLastX;
669        dy1 += mLastY;
670        dx2 += mLastX;
671        dy2 += mLastY;
672        mPath.quadTo(dx1, dy1, mLastX = dx2, mLastY = dy2);
673    }
674
675    /**
676     * Add a cubic bezier from the last point, approaching control points
677     * (x1,y1) and (x2,y2), and ending at (x3,y3). If no moveTo() call has been
678     * made for this contour, the first point is automatically set to (0,0).
679     *
680     * @param x1 The x-coordinate of the 1st control point on a cubic curve
681     * @param y1 The y-coordinate of the 1st control point on a cubic curve
682     * @param x2 The x-coordinate of the 2nd control point on a cubic curve
683     * @param y2 The y-coordinate of the 2nd control point on a cubic curve
684     * @param x3 The x-coordinate of the end point on a cubic curve
685     * @param y3 The y-coordinate of the end point on a cubic curve
686     */
687    private void cubicTo(float x1, float y1, float x2, float y2,
688                        float x3, float y3) {
689        mPath.curveTo(x1, y1, x2, y2, mLastX = x3, mLastY = y3);
690    }
691
692    /**
693     * Same as cubicTo, but the coordinates are considered relative to the
694     * current point on this contour. If there is no previous point, then a
695     * moveTo(0,0) is inserted automatically.
696     */
697    private void rCubicTo(float dx1, float dy1, float dx2, float dy2,
698                         float dx3, float dy3) {
699        if (isEmpty()) {
700            mPath.moveTo(mLastX = 0, mLastY = 0);
701        }
702        dx1 += mLastX;
703        dy1 += mLastY;
704        dx2 += mLastX;
705        dy2 += mLastY;
706        dx3 += mLastX;
707        dy3 += mLastY;
708        mPath.curveTo(dx1, dy1, dx2, dy2, mLastX = dx3, mLastY = dy3);
709    }
710
711    /**
712     * Append the specified arc to the path as a new contour. If the start of
713     * the path is different from the path's current last point, then an
714     * automatic lineTo() is added to connect the current contour to the
715     * start of the arc. However, if the path is empty, then we call moveTo()
716     * with the first point of the arc. The sweep angle is tread mod 360.
717     *
718     * @param left        The left of oval defining shape and size of the arc
719     * @param top         The top of oval defining shape and size of the arc
720     * @param right       The right of oval defining shape and size of the arc
721     * @param bottom      The bottom of oval defining shape and size of the arc
722     * @param startAngle  Starting angle (in degrees) where the arc begins
723     * @param sweepAngle  Sweep angle (in degrees) measured clockwise, treated
724     *                    mod 360.
725     * @param forceMoveTo If true, always begin a new contour with the arc
726     */
727    private void arcTo(float left, float top, float right, float bottom, float startAngle,
728            float sweepAngle,
729            boolean forceMoveTo) {
730        Arc2D arc = new Arc2D.Float(left, top, right - left, bottom - top, -startAngle,
731                -sweepAngle, Arc2D.OPEN);
732        mPath.append(arc, true /*connect*/);
733
734        resetLastPointFromPath();
735    }
736
737    /**
738     * Close the current contour. If the current point is not equal to the
739     * first point of the contour, a line segment is automatically added.
740     */
741    private void close() {
742        mPath.closePath();
743    }
744
745    private void resetLastPointFromPath() {
746        Point2D last = mPath.getCurrentPoint();
747        mLastX = (float) last.getX();
748        mLastY = (float) last.getY();
749    }
750
751    /**
752     * Add a closed rectangle contour to the path
753     *
754     * @param left   The left side of a rectangle to add to the path
755     * @param top    The top of a rectangle to add to the path
756     * @param right  The right side of a rectangle to add to the path
757     * @param bottom The bottom of a rectangle to add to the path
758     * @param dir    The direction to wind the rectangle's contour
759     */
760    private void addRect(float left, float top, float right, float bottom,
761                        int dir) {
762        moveTo(left, top);
763
764        Direction direction = getDirection(dir);
765
766        switch (direction) {
767            case CW:
768                lineTo(right, top);
769                lineTo(right, bottom);
770                lineTo(left, bottom);
771                break;
772            case CCW:
773                lineTo(left, bottom);
774                lineTo(right, bottom);
775                lineTo(right, top);
776                break;
777        }
778
779        close();
780
781        resetLastPointFromPath();
782    }
783
784    /**
785     * Offset the path by (dx,dy), returning true on success
786     *
787     * @param dx  The amount in the X direction to offset the entire path
788     * @param dy  The amount in the Y direction to offset the entire path
789     * @param dst The translated path is written here. If this is null, then
790     *            the original path is modified.
791     */
792    public void offset(float dx, float dy, Path_Delegate dst) {
793        GeneralPath newPath = new GeneralPath();
794
795        PathIterator iterator = mPath.getPathIterator(new AffineTransform(0, 0, dx, 0, 0, dy));
796
797        newPath.append(iterator, false /*connect*/);
798
799        if (dst != null) {
800            dst.mPath = newPath;
801        } else {
802            mPath = newPath;
803        }
804    }
805
806    /**
807     * Transform the points in this path by matrix, and write the answer
808     * into dst. If dst is null, then the the original path is modified.
809     *
810     * @param matrix The matrix to apply to the path
811     * @param dst    The transformed path is written here. If dst is null,
812     *               then the the original path is modified
813     */
814    public void transform(Matrix_Delegate matrix, Path_Delegate dst) {
815        if (matrix.hasPerspective()) {
816            assert false;
817            Bridge.getLog().fidelityWarning(LayoutLog.TAG_MATRIX_AFFINE,
818                    "android.graphics.Path#transform() only " +
819                    "supports affine transformations.", null, null /*data*/);
820        }
821
822        GeneralPath newPath = new GeneralPath();
823
824        PathIterator iterator = mPath.getPathIterator(matrix.getAffineTransform());
825
826        newPath.append(iterator, false /*connect*/);
827
828        if (dst != null) {
829            dst.mPath = newPath;
830        } else {
831            mPath = newPath;
832        }
833    }
834}
835