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epoger@google.comec3ed6a2011-07-28 14:26:00 +00001/*
2 * Copyright 2006 The Android Open Source Project
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
bsalomon1978ce22016-05-31 10:42:16 -07008#include <cmath>
djsollen@google.com94e75ee2012-06-08 18:30:46 +00009#include "SkBuffer.h"
caryclark9aacd902015-12-14 08:38:09 -080010#include "SkCubicClipper.h"
reed220f9262014-12-17 08:21:04 -080011#include "SkGeometry.h"
reed@android.com8a1c16f2008-12-17 15:59:43 +000012#include "SkMath.h"
reed026beb52015-06-10 14:23:15 -070013#include "SkPathPriv.h"
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +000014#include "SkPathRef.h"
reed@google.com4ed0fb72012-12-12 20:48:18 +000015#include "SkRRect.h"
reed@android.com8a1c16f2008-12-17 15:59:43 +000016
17////////////////////////////////////////////////////////////////////////////
18
reed@google.com3563c9e2011-11-14 19:34:57 +000019/**
20 * Path.bounds is defined to be the bounds of all the control points.
21 * If we called bounds.join(r) we would skip r if r was empty, which breaks
22 * our promise. Hence we have a custom joiner that doesn't look at emptiness
23 */
24static void joinNoEmptyChecks(SkRect* dst, const SkRect& src) {
25 dst->fLeft = SkMinScalar(dst->fLeft, src.fLeft);
26 dst->fTop = SkMinScalar(dst->fTop, src.fTop);
27 dst->fRight = SkMaxScalar(dst->fRight, src.fRight);
28 dst->fBottom = SkMaxScalar(dst->fBottom, src.fBottom);
29}
30
bsalomon@google.comfb6f0f62012-01-31 18:44:34 +000031static bool is_degenerate(const SkPath& path) {
32 SkPath::Iter iter(path, false);
33 SkPoint pts[4];
34 return SkPath::kDone_Verb == iter.next(pts);
35}
36
bsalomon@google.com30c174b2012-11-13 14:36:42 +000037class SkAutoDisableDirectionCheck {
38public:
39 SkAutoDisableDirectionCheck(SkPath* path) : fPath(path) {
herb9f4dbca2015-09-28 11:05:47 -070040 fSaved = static_cast<SkPathPriv::FirstDirection>(fPath->fFirstDirection.load());
bsalomon@google.com30c174b2012-11-13 14:36:42 +000041 }
42
43 ~SkAutoDisableDirectionCheck() {
reed026beb52015-06-10 14:23:15 -070044 fPath->fFirstDirection = fSaved;
bsalomon@google.com30c174b2012-11-13 14:36:42 +000045 }
46
47private:
reed026beb52015-06-10 14:23:15 -070048 SkPath* fPath;
49 SkPathPriv::FirstDirection fSaved;
bsalomon@google.com30c174b2012-11-13 14:36:42 +000050};
commit-bot@chromium.orge61a86c2013-11-18 16:03:59 +000051#define SkAutoDisableDirectionCheck(...) SK_REQUIRE_LOCAL_VAR(SkAutoDisableDirectionCheck)
bsalomon@google.com30c174b2012-11-13 14:36:42 +000052
reed@android.com8a1c16f2008-12-17 15:59:43 +000053/* This guy's constructor/destructor bracket a path editing operation. It is
54 used when we know the bounds of the amount we are going to add to the path
55 (usually a new contour, but not required).
reed@google.comabf15c12011-01-18 20:35:51 +000056
reed@android.com8a1c16f2008-12-17 15:59:43 +000057 It captures some state about the path up front (i.e. if it already has a
robertphillips@google.comca0c8382013-09-26 12:18:23 +000058 cached bounds), and then if it can, it updates the cache bounds explicitly,
reed@android.comd252db02009-04-01 18:31:44 +000059 avoiding the need to revisit all of the points in getBounds().
reed@google.comabf15c12011-01-18 20:35:51 +000060
bsalomon@google.comfb6f0f62012-01-31 18:44:34 +000061 It also notes if the path was originally degenerate, and if so, sets
62 isConvex to true. Thus it can only be used if the contour being added is
robertphillips@google.com466310d2013-12-03 16:43:54 +000063 convex.
reed@android.com8a1c16f2008-12-17 15:59:43 +000064 */
65class SkAutoPathBoundsUpdate {
66public:
67 SkAutoPathBoundsUpdate(SkPath* path, const SkRect& r) : fRect(r) {
68 this->init(path);
69 }
70
71 SkAutoPathBoundsUpdate(SkPath* path, SkScalar left, SkScalar top,
72 SkScalar right, SkScalar bottom) {
73 fRect.set(left, top, right, bottom);
74 this->init(path);
75 }
reed@google.comabf15c12011-01-18 20:35:51 +000076
reed@android.com8a1c16f2008-12-17 15:59:43 +000077 ~SkAutoPathBoundsUpdate() {
reed@google.com44699382013-10-31 17:28:30 +000078 fPath->setConvexity(fDegenerate ? SkPath::kConvex_Convexity
79 : SkPath::kUnknown_Convexity);
robertphillips@google.comca0c8382013-09-26 12:18:23 +000080 if (fEmpty || fHasValidBounds) {
81 fPath->setBounds(fRect);
reed@android.com8a1c16f2008-12-17 15:59:43 +000082 }
83 }
reed@google.comabf15c12011-01-18 20:35:51 +000084
reed@android.com8a1c16f2008-12-17 15:59:43 +000085private:
reed@android.com6b82d1a2009-06-03 02:35:01 +000086 SkPath* fPath;
87 SkRect fRect;
robertphillips@google.comca0c8382013-09-26 12:18:23 +000088 bool fHasValidBounds;
bsalomon@google.comfb6f0f62012-01-31 18:44:34 +000089 bool fDegenerate;
reed@android.com6b82d1a2009-06-03 02:35:01 +000090 bool fEmpty;
reed@google.comabf15c12011-01-18 20:35:51 +000091
reed@android.com6b82d1a2009-06-03 02:35:01 +000092 void init(SkPath* path) {
robertphillips@google.comca0c8382013-09-26 12:18:23 +000093 // Cannot use fRect for our bounds unless we know it is sorted
94 fRect.sort();
reed@android.com8a1c16f2008-12-17 15:59:43 +000095 fPath = path;
reed@google.coma8790de2012-10-24 21:04:04 +000096 // Mark the path's bounds as dirty if (1) they are, or (2) the path
97 // is non-finite, and therefore its bounds are not meaningful
robertphillips@google.comca0c8382013-09-26 12:18:23 +000098 fHasValidBounds = path->hasComputedBounds() && path->isFinite();
reed@android.com8a1c16f2008-12-17 15:59:43 +000099 fEmpty = path->isEmpty();
robertphillips@google.comca0c8382013-09-26 12:18:23 +0000100 if (fHasValidBounds && !fEmpty) {
101 joinNoEmptyChecks(&fRect, fPath->getBounds());
102 }
103 fDegenerate = is_degenerate(*path);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000104 }
105};
commit-bot@chromium.orge61a86c2013-11-18 16:03:59 +0000106#define SkAutoPathBoundsUpdate(...) SK_REQUIRE_LOCAL_VAR(SkAutoPathBoundsUpdate)
reed@android.com8a1c16f2008-12-17 15:59:43 +0000107
reed@android.com8a1c16f2008-12-17 15:59:43 +0000108////////////////////////////////////////////////////////////////////////////
109
110/*
111 Stores the verbs and points as they are given to us, with exceptions:
schenney@chromium.org4da06ab2011-12-20 15:14:18 +0000112 - we only record "Close" if it was immediately preceeded by Move | Line | Quad | Cubic
reed@android.com8a1c16f2008-12-17 15:59:43 +0000113 - we insert a Move(0,0) if Line | Quad | Cubic is our first command
114
115 The iterator does more cleanup, especially if forceClose == true
schenney@chromium.org4da06ab2011-12-20 15:14:18 +0000116 1. If we encounter degenerate segments, remove them
117 2. if we encounter Close, return a cons'd up Line() first (if the curr-pt != start-pt)
118 3. if we encounter Move without a preceeding Close, and forceClose is true, goto #2
119 4. if we encounter Line | Quad | Cubic after Close, cons up a Move
reed@android.com8a1c16f2008-12-17 15:59:43 +0000120*/
121
122////////////////////////////////////////////////////////////////////////////
123
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000124// flag to require a moveTo if we begin with something else, like lineTo etc.
125#define INITIAL_LASTMOVETOINDEX_VALUE ~0
126
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000127SkPath::SkPath()
djsollen523cda32015-02-17 08:06:32 -0800128 : fPathRef(SkPathRef::CreateEmpty()) {
bungeman@google.coma5809a32013-06-21 15:13:34 +0000129 this->resetFields();
jvanverthb3eb6872014-10-24 07:12:51 -0700130 fIsVolatile = false;
bungeman@google.coma5809a32013-06-21 15:13:34 +0000131}
132
133void SkPath::resetFields() {
134 //fPathRef is assumed to have been emptied by the caller.
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000135 fLastMoveToIndex = INITIAL_LASTMOVETOINDEX_VALUE;
bungeman@google.coma5809a32013-06-21 15:13:34 +0000136 fFillType = kWinding_FillType;
reed@google.com04863fa2011-05-15 04:08:24 +0000137 fConvexity = kUnknown_Convexity;
reed026beb52015-06-10 14:23:15 -0700138 fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
commit-bot@chromium.org1ab9f732013-10-30 18:57:55 +0000139
140 // We don't touch Android's fSourcePath. It's used to track texture garbage collection, so we
halcanary96fcdcc2015-08-27 07:41:13 -0700141 // don't want to muck with it if it's been set to something non-nullptr.
reed@android.com6b82d1a2009-06-03 02:35:01 +0000142}
reed@android.com8a1c16f2008-12-17 15:59:43 +0000143
bungeman@google.coma5809a32013-06-21 15:13:34 +0000144SkPath::SkPath(const SkPath& that)
mtklein@google.com9c9d4a72013-08-07 19:17:53 +0000145 : fPathRef(SkRef(that.fPathRef.get())) {
bungeman@google.coma5809a32013-06-21 15:13:34 +0000146 this->copyFields(that);
147 SkDEBUGCODE(that.validate();)
reed@android.com8a1c16f2008-12-17 15:59:43 +0000148}
149
150SkPath::~SkPath() {
151 SkDEBUGCODE(this->validate();)
152}
153
bungeman@google.coma5809a32013-06-21 15:13:34 +0000154SkPath& SkPath::operator=(const SkPath& that) {
155 SkDEBUGCODE(that.validate();)
reed@android.com8a1c16f2008-12-17 15:59:43 +0000156
bungeman@google.coma5809a32013-06-21 15:13:34 +0000157 if (this != &that) {
158 fPathRef.reset(SkRef(that.fPathRef.get()));
159 this->copyFields(that);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000160 }
161 SkDEBUGCODE(this->validate();)
162 return *this;
163}
164
bungeman@google.coma5809a32013-06-21 15:13:34 +0000165void SkPath::copyFields(const SkPath& that) {
166 //fPathRef is assumed to have been set by the caller.
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000167 fLastMoveToIndex = that.fLastMoveToIndex;
bungeman@google.coma5809a32013-06-21 15:13:34 +0000168 fFillType = that.fFillType;
bungeman@google.coma5809a32013-06-21 15:13:34 +0000169 fConvexity = that.fConvexity;
herb9f4dbca2015-09-28 11:05:47 -0700170 // Simulate fFirstDirection = that.fFirstDirection;
171 fFirstDirection.store(that.fFirstDirection.load());
jvanverthb3eb6872014-10-24 07:12:51 -0700172 fIsVolatile = that.fIsVolatile;
bungeman@google.coma5809a32013-06-21 15:13:34 +0000173}
174
djsollen@google.com9c1a9672013-08-09 13:49:13 +0000175bool operator==(const SkPath& a, const SkPath& b) {
reed@android.com6b82d1a2009-06-03 02:35:01 +0000176 // note: don't need to look at isConvex or bounds, since just comparing the
177 // raw data is sufficient.
reed@android.com3abec1d2009-03-02 05:36:20 +0000178 return &a == &b ||
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +0000179 (a.fFillType == b.fFillType && *a.fPathRef.get() == *b.fPathRef.get());
reed@android.com3abec1d2009-03-02 05:36:20 +0000180}
181
bungeman@google.coma5809a32013-06-21 15:13:34 +0000182void SkPath::swap(SkPath& that) {
bungeman@google.coma5809a32013-06-21 15:13:34 +0000183 if (this != &that) {
bungeman77a53de2015-10-01 12:28:49 -0700184 fPathRef.swap(that.fPathRef);
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000185 SkTSwap<int>(fLastMoveToIndex, that.fLastMoveToIndex);
bungeman@google.coma5809a32013-06-21 15:13:34 +0000186 SkTSwap<uint8_t>(fFillType, that.fFillType);
bungeman@google.coma5809a32013-06-21 15:13:34 +0000187 SkTSwap<uint8_t>(fConvexity, that.fConvexity);
herb9f4dbca2015-09-28 11:05:47 -0700188 // Simulate SkTSwap<uint8_t>(fFirstDirection, that.fFirstDirection);
189 uint8_t temp = fFirstDirection;
190 fFirstDirection.store(that.fFirstDirection.load());
191 that.fFirstDirection.store(temp);
jvanverthb3eb6872014-10-24 07:12:51 -0700192 SkTSwap<SkBool8>(fIsVolatile, that.fIsVolatile);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000193 }
194}
195
caryclark8e7b19d2016-02-18 04:11:48 -0800196bool SkPath::isInterpolatable(const SkPath& compare) const {
197 int count = fPathRef->countVerbs();
198 if (count != compare.fPathRef->countVerbs()) {
199 return false;
200 }
201 if (!count) {
202 return true;
203 }
204 if (memcmp(fPathRef->verbsMemBegin(), compare.fPathRef->verbsMemBegin(),
205 count)) {
206 return false;
207 }
caryclarkdcd1fcc2016-02-18 09:00:01 -0800208 return !fPathRef->countWeights() ||
209 !SkToBool(memcmp(fPathRef->conicWeights(), compare.fPathRef->conicWeights(),
caryclark8e7b19d2016-02-18 04:11:48 -0800210 fPathRef->countWeights() * sizeof(*fPathRef->conicWeights())));
211}
212
213bool SkPath::interpolate(const SkPath& ending, SkScalar weight, SkPath* out) const {
214 int verbCount = fPathRef->countVerbs();
215 if (verbCount != ending.fPathRef->countVerbs()) {
216 return false;
217 }
caryclarka1105382016-02-18 06:13:25 -0800218 if (!verbCount) {
219 return true;
220 }
caryclark8e7b19d2016-02-18 04:11:48 -0800221 out->reset();
222 out->addPath(*this);
bungeman6bd52842016-10-27 09:30:08 -0700223 fPathRef->interpolate(*ending.fPathRef, weight, out->fPathRef.get());
caryclark8e7b19d2016-02-18 04:11:48 -0800224 return true;
225}
226
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000227static inline bool check_edge_against_rect(const SkPoint& p0,
228 const SkPoint& p1,
229 const SkRect& rect,
reed026beb52015-06-10 14:23:15 -0700230 SkPathPriv::FirstDirection dir) {
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000231 const SkPoint* edgeBegin;
232 SkVector v;
reed026beb52015-06-10 14:23:15 -0700233 if (SkPathPriv::kCW_FirstDirection == dir) {
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000234 v = p1 - p0;
235 edgeBegin = &p0;
236 } else {
237 v = p0 - p1;
238 edgeBegin = &p1;
239 }
240 if (v.fX || v.fY) {
241 // check the cross product of v with the vec from edgeBegin to each rect corner
242 SkScalar yL = SkScalarMul(v.fY, rect.fLeft - edgeBegin->fX);
243 SkScalar xT = SkScalarMul(v.fX, rect.fTop - edgeBegin->fY);
244 SkScalar yR = SkScalarMul(v.fY, rect.fRight - edgeBegin->fX);
245 SkScalar xB = SkScalarMul(v.fX, rect.fBottom - edgeBegin->fY);
246 if ((xT < yL) || (xT < yR) || (xB < yL) || (xB < yR)) {
247 return false;
248 }
249 }
250 return true;
251}
252
253bool SkPath::conservativelyContainsRect(const SkRect& rect) const {
254 // This only handles non-degenerate convex paths currently.
255 if (kConvex_Convexity != this->getConvexity()) {
256 return false;
257 }
skia.committer@gmail.comcec8de62012-11-14 02:01:22 +0000258
reed026beb52015-06-10 14:23:15 -0700259 SkPathPriv::FirstDirection direction;
260 if (!SkPathPriv::CheapComputeFirstDirection(*this, &direction)) {
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000261 return false;
262 }
263
264 SkPoint firstPt;
265 SkPoint prevPt;
266 RawIter iter(*this);
267 SkPath::Verb verb;
268 SkPoint pts[4];
269 SkDEBUGCODE(int moveCnt = 0;)
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000270 SkDEBUGCODE(int segmentCount = 0;)
271 SkDEBUGCODE(int closeCount = 0;)
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000272
273 while ((verb = iter.next(pts)) != kDone_Verb) {
274 int nextPt = -1;
275 switch (verb) {
276 case kMove_Verb:
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000277 SkASSERT(!segmentCount && !closeCount);
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000278 SkDEBUGCODE(++moveCnt);
279 firstPt = prevPt = pts[0];
280 break;
281 case kLine_Verb:
282 nextPt = 1;
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000283 SkASSERT(moveCnt && !closeCount);
284 SkDEBUGCODE(++segmentCount);
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000285 break;
286 case kQuad_Verb:
reed@google.com277c3f82013-05-31 15:17:50 +0000287 case kConic_Verb:
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000288 SkASSERT(moveCnt && !closeCount);
289 SkDEBUGCODE(++segmentCount);
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000290 nextPt = 2;
291 break;
292 case kCubic_Verb:
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000293 SkASSERT(moveCnt && !closeCount);
294 SkDEBUGCODE(++segmentCount);
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000295 nextPt = 3;
296 break;
297 case kClose_Verb:
commit-bot@chromium.org62df5262013-08-01 15:35:06 +0000298 SkDEBUGCODE(++closeCount;)
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000299 break;
300 default:
301 SkDEBUGFAIL("unknown verb");
302 }
303 if (-1 != nextPt) {
reed220f9262014-12-17 08:21:04 -0800304 if (SkPath::kConic_Verb == verb) {
305 SkConic orig;
306 orig.set(pts, iter.conicWeight());
307 SkPoint quadPts[5];
308 int count = orig.chopIntoQuadsPOW2(quadPts, 1);
djsollenf2b340f2016-01-29 08:51:04 -0800309 SkASSERT_RELEASE(2 == count);
reed220f9262014-12-17 08:21:04 -0800310
311 if (!check_edge_against_rect(quadPts[0], quadPts[2], rect, direction)) {
312 return false;
313 }
314 if (!check_edge_against_rect(quadPts[2], quadPts[4], rect, direction)) {
315 return false;
316 }
317 } else {
318 if (!check_edge_against_rect(prevPt, pts[nextPt], rect, direction)) {
319 return false;
320 }
bsalomon@google.com9bee33a2012-11-13 21:51:38 +0000321 }
322 prevPt = pts[nextPt];
323 }
324 }
325
326 return check_edge_against_rect(prevPt, firstPt, rect, direction);
327}
328
robertphillips@google.com7101abe2013-10-29 22:45:37 +0000329uint32_t SkPath::getGenerationID() const {
commit-bot@chromium.org1ab9f732013-10-30 18:57:55 +0000330 uint32_t genID = fPathRef->genID();
djsollen523cda32015-02-17 08:06:32 -0800331#ifdef SK_BUILD_FOR_ANDROID_FRAMEWORK
commit-bot@chromium.org1ab9f732013-10-30 18:57:55 +0000332 SkASSERT((unsigned)fFillType < (1 << (32 - kPathRefGenIDBitCnt)));
333 genID |= static_cast<uint32_t>(fFillType) << kPathRefGenIDBitCnt;
334#endif
335 return genID;
djsollen@google.comf5dbe2f2011-04-15 13:41:26 +0000336}
djsollen@google.come63793a2012-03-21 15:39:03 +0000337
reed@android.com8a1c16f2008-12-17 15:59:43 +0000338void SkPath::reset() {
339 SkDEBUGCODE(this->validate();)
340
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000341 fPathRef.reset(SkPathRef::CreateEmpty());
bungeman@google.coma5809a32013-06-21 15:13:34 +0000342 this->resetFields();
reed@android.com8a1c16f2008-12-17 15:59:43 +0000343}
344
345void SkPath::rewind() {
346 SkDEBUGCODE(this->validate();)
347
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000348 SkPathRef::Rewind(&fPathRef);
bungeman@google.coma5809a32013-06-21 15:13:34 +0000349 this->resetFields();
reed@android.com8a1c16f2008-12-17 15:59:43 +0000350}
351
fsb1475b02016-01-20 09:51:07 -0800352bool SkPath::isLastContourClosed() const {
353 int verbCount = fPathRef->countVerbs();
354 if (0 == verbCount) {
355 return false;
356 }
357 return kClose_Verb == fPathRef->atVerb(verbCount - 1);
358}
359
reed@google.com7e6c4d12012-05-10 14:05:43 +0000360bool SkPath::isLine(SkPoint line[2]) const {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000361 int verbCount = fPathRef->countVerbs();
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000362
commit-bot@chromium.orga62efcc2013-08-05 13:23:13 +0000363 if (2 == verbCount) {
364 SkASSERT(kMove_Verb == fPathRef->atVerb(0));
365 if (kLine_Verb == fPathRef->atVerb(1)) {
366 SkASSERT(2 == fPathRef->countPoints());
reed@google.com7e6c4d12012-05-10 14:05:43 +0000367 if (line) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000368 const SkPoint* pts = fPathRef->points();
reed@google.com7e6c4d12012-05-10 14:05:43 +0000369 line[0] = pts[0];
370 line[1] = pts[1];
371 }
372 return true;
373 }
374 }
375 return false;
376}
377
caryclark@google.comf1316942011-07-26 19:54:45 +0000378/*
379 Determines if path is a rect by keeping track of changes in direction
380 and looking for a loop either clockwise or counterclockwise.
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000381
caryclark@google.comf1316942011-07-26 19:54:45 +0000382 The direction is computed such that:
383 0: vertical up
caryclark@google.comf68154a2012-11-21 15:18:06 +0000384 1: horizontal left
caryclark@google.comf1316942011-07-26 19:54:45 +0000385 2: vertical down
caryclark@google.comf68154a2012-11-21 15:18:06 +0000386 3: horizontal right
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000387
caryclark@google.comf1316942011-07-26 19:54:45 +0000388A rectangle cycles up/right/down/left or up/left/down/right.
389
390The test fails if:
391 The path is closed, and followed by a line.
392 A second move creates a new endpoint.
393 A diagonal line is parsed.
394 There's more than four changes of direction.
395 There's a discontinuity on the line (e.g., a move in the middle)
396 The line reverses direction.
caryclark@google.comf1316942011-07-26 19:54:45 +0000397 The path contains a quadratic or cubic.
398 The path contains fewer than four points.
commit-bot@chromium.org05ec2232014-01-15 18:00:57 +0000399 *The rectangle doesn't complete a cycle.
400 *The final point isn't equal to the first point.
401
402 *These last two conditions we relax if we have a 3-edge path that would
403 form a rectangle if it were closed (as we do when we fill a path)
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000404
caryclark@google.comf1316942011-07-26 19:54:45 +0000405It's OK if the path has:
406 Several colinear line segments composing a rectangle side.
407 Single points on the rectangle side.
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000408
caryclark@google.comf1316942011-07-26 19:54:45 +0000409The direction takes advantage of the corners found since opposite sides
410must travel in opposite directions.
411
412FIXME: Allow colinear quads and cubics to be treated like lines.
413FIXME: If the API passes fill-only, return true if the filled stroke
414 is a rectangle, though the caller failed to close the path.
commit-bot@chromium.org05ec2232014-01-15 18:00:57 +0000415
416 first,last,next direction state-machine:
417 0x1 is set if the segment is horizontal
418 0x2 is set if the segment is moving to the right or down
419 thus:
420 two directions are opposites iff (dirA ^ dirB) == 0x2
421 two directions are perpendicular iff (dirA ^ dirB) == 0x1
skia.committer@gmail.comf5e67c12014-01-16 07:01:48 +0000422
caryclark@google.comf1316942011-07-26 19:54:45 +0000423 */
commit-bot@chromium.org05ec2232014-01-15 18:00:57 +0000424static int rect_make_dir(SkScalar dx, SkScalar dy) {
425 return ((0 != dx) << 0) | ((dx > 0 || dy > 0) << 1);
426}
caryclark@google.comf68154a2012-11-21 15:18:06 +0000427bool SkPath::isRectContour(bool allowPartial, int* currVerb, const SkPoint** ptsPtr,
428 bool* isClosed, Direction* direction) const {
caryclark@google.comf1316942011-07-26 19:54:45 +0000429 int corners = 0;
430 SkPoint first, last;
caryclark@google.com56f233a2012-11-19 13:06:06 +0000431 const SkPoint* pts = *ptsPtr;
halcanary96fcdcc2015-08-27 07:41:13 -0700432 const SkPoint* savePts = nullptr;
tomhudson@google.com2c2508d2011-07-29 13:44:30 +0000433 first.set(0, 0);
434 last.set(0, 0);
435 int firstDirection = 0;
436 int lastDirection = 0;
437 int nextDirection = 0;
438 bool closedOrMoved = false;
caryclark@google.comf1316942011-07-26 19:54:45 +0000439 bool autoClose = false;
caryclark95bc5f32015-04-08 08:34:15 -0700440 bool insertClose = false;
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000441 int verbCnt = fPathRef->countVerbs();
caryclark@google.com56f233a2012-11-19 13:06:06 +0000442 while (*currVerb < verbCnt && (!allowPartial || !autoClose)) {
caryclark95bc5f32015-04-08 08:34:15 -0700443 uint8_t verb = insertClose ? (uint8_t) kClose_Verb : fPathRef->atVerb(*currVerb);
444 switch (verb) {
caryclark@google.comf1316942011-07-26 19:54:45 +0000445 case kClose_Verb:
caryclark@google.com56f233a2012-11-19 13:06:06 +0000446 savePts = pts;
447 pts = *ptsPtr;
caryclark@google.comf1316942011-07-26 19:54:45 +0000448 autoClose = true;
caryclark95bc5f32015-04-08 08:34:15 -0700449 insertClose = false;
caryclark@google.comf1316942011-07-26 19:54:45 +0000450 case kLine_Verb: {
451 SkScalar left = last.fX;
452 SkScalar top = last.fY;
453 SkScalar right = pts->fX;
454 SkScalar bottom = pts->fY;
455 ++pts;
456 if (left != right && top != bottom) {
457 return false; // diagonal
458 }
459 if (left == right && top == bottom) {
460 break; // single point on side OK
461 }
commit-bot@chromium.org05ec2232014-01-15 18:00:57 +0000462 nextDirection = rect_make_dir(right - left, bottom - top);
caryclark@google.comf1316942011-07-26 19:54:45 +0000463 if (0 == corners) {
464 firstDirection = nextDirection;
465 first = last;
466 last = pts[-1];
467 corners = 1;
468 closedOrMoved = false;
469 break;
470 }
471 if (closedOrMoved) {
472 return false; // closed followed by a line
473 }
caryclark@google.combfe90372012-11-21 13:56:20 +0000474 if (autoClose && nextDirection == firstDirection) {
475 break; // colinear with first
476 }
caryclark@google.comf1316942011-07-26 19:54:45 +0000477 closedOrMoved = autoClose;
478 if (lastDirection != nextDirection) {
479 if (++corners > 4) {
480 return false; // too many direction changes
481 }
482 }
483 last = pts[-1];
484 if (lastDirection == nextDirection) {
485 break; // colinear segment
486 }
487 // Possible values for corners are 2, 3, and 4.
488 // When corners == 3, nextDirection opposes firstDirection.
489 // Otherwise, nextDirection at corner 2 opposes corner 4.
tomhudson@google.com2c2508d2011-07-29 13:44:30 +0000490 int turn = firstDirection ^ (corners - 1);
caryclark@google.comf1316942011-07-26 19:54:45 +0000491 int directionCycle = 3 == corners ? 0 : nextDirection ^ turn;
492 if ((directionCycle ^ turn) != nextDirection) {
493 return false; // direction didn't follow cycle
494 }
495 break;
496 }
497 case kQuad_Verb:
reed@google.com277c3f82013-05-31 15:17:50 +0000498 case kConic_Verb:
caryclark@google.comf1316942011-07-26 19:54:45 +0000499 case kCubic_Verb:
500 return false; // quadratic, cubic not allowed
501 case kMove_Verb:
caryclark95bc5f32015-04-08 08:34:15 -0700502 if (allowPartial && !autoClose && firstDirection) {
503 insertClose = true;
504 *currVerb -= 1; // try move again afterwards
505 goto addMissingClose;
506 }
caryclark@google.comf1316942011-07-26 19:54:45 +0000507 last = *pts++;
508 closedOrMoved = true;
509 break;
reed@google.com277c3f82013-05-31 15:17:50 +0000510 default:
mtklein@google.com330313a2013-08-22 15:37:26 +0000511 SkDEBUGFAIL("unexpected verb");
reed@google.com277c3f82013-05-31 15:17:50 +0000512 break;
caryclark@google.comf1316942011-07-26 19:54:45 +0000513 }
caryclark@google.com56f233a2012-11-19 13:06:06 +0000514 *currVerb += 1;
caryclark@google.comf1316942011-07-26 19:54:45 +0000515 lastDirection = nextDirection;
caryclark95bc5f32015-04-08 08:34:15 -0700516addMissingClose:
517 ;
caryclark@google.comf1316942011-07-26 19:54:45 +0000518 }
519 // Success if 4 corners and first point equals last
caryclark@google.combfe90372012-11-21 13:56:20 +0000520 bool result = 4 == corners && (first == last || autoClose);
commit-bot@chromium.org05ec2232014-01-15 18:00:57 +0000521 if (!result) {
522 // check if we are just an incomplete rectangle, in which case we can
523 // return true, but not claim to be closed.
524 // e.g.
525 // 3 sided rectangle
526 // 4 sided but the last edge is not long enough to reach the start
527 //
528 SkScalar closeX = first.x() - last.x();
529 SkScalar closeY = first.y() - last.y();
530 if (closeX && closeY) {
531 return false; // we're diagonal, abort (can we ever reach this?)
532 }
533 int closeDirection = rect_make_dir(closeX, closeY);
534 // make sure the close-segment doesn't double-back on itself
535 if (3 == corners || (4 == corners && closeDirection == lastDirection)) {
536 result = true;
537 autoClose = false; // we are not closed
538 }
539 }
caryclark@google.combfe90372012-11-21 13:56:20 +0000540 if (savePts) {
541 *ptsPtr = savePts;
542 }
caryclark@google.comf68154a2012-11-21 15:18:06 +0000543 if (result && isClosed) {
544 *isClosed = autoClose;
545 }
546 if (result && direction) {
sugoi@google.com12b4e272012-12-06 20:13:11 +0000547 *direction = firstDirection == ((lastDirection + 1) & 3) ? kCCW_Direction : kCW_Direction;
caryclark@google.comf68154a2012-11-21 15:18:06 +0000548 }
caryclark@google.com56f233a2012-11-19 13:06:06 +0000549 return result;
550}
551
robertphillips4f662e62014-12-29 14:06:51 -0800552bool SkPath::isRect(SkRect* rect, bool* isClosed, Direction* direction) const {
caryclark@google.com56f233a2012-11-19 13:06:06 +0000553 SkDEBUGCODE(this->validate();)
554 int currVerb = 0;
555 const SkPoint* pts = fPathRef->points();
robertphillipsfe7c4272014-12-29 11:36:39 -0800556 const SkPoint* first = pts;
robertphillips4f662e62014-12-29 14:06:51 -0800557 if (!this->isRectContour(false, &currVerb, &pts, isClosed, direction)) {
robertphillipsfe7c4272014-12-29 11:36:39 -0800558 return false;
caryclark@google.comf1316942011-07-26 19:54:45 +0000559 }
robertphillipsfe7c4272014-12-29 11:36:39 -0800560 if (rect) {
robertphillips4f662e62014-12-29 14:06:51 -0800561 int32_t num = SkToS32(pts - first);
562 if (num) {
563 rect->set(first, num);
robertphillipsfe7c4272014-12-29 11:36:39 -0800564 } else {
565 // 'pts' isn't updated for open rects
566 *rect = this->getBounds();
567 }
568 }
569 return true;
robertphillips@google.com8fd16032013-06-25 15:39:58 +0000570}
skia.committer@gmail.com020b25b2013-06-22 07:00:58 +0000571
caryclark95bc5f32015-04-08 08:34:15 -0700572bool SkPath::isNestedFillRects(SkRect rects[2], Direction dirs[2]) const {
caryclark@google.com56f233a2012-11-19 13:06:06 +0000573 SkDEBUGCODE(this->validate();)
574 int currVerb = 0;
575 const SkPoint* pts = fPathRef->points();
576 const SkPoint* first = pts;
robertphillips@google.com83d1a682013-05-17 12:50:27 +0000577 Direction testDirs[2];
halcanary96fcdcc2015-08-27 07:41:13 -0700578 if (!isRectContour(true, &currVerb, &pts, nullptr, &testDirs[0])) {
caryclark@google.com56f233a2012-11-19 13:06:06 +0000579 return false;
580 }
581 const SkPoint* last = pts;
582 SkRect testRects[2];
caryclark95bc5f32015-04-08 08:34:15 -0700583 bool isClosed;
584 if (isRectContour(false, &currVerb, &pts, &isClosed, &testDirs[1])) {
scroggo@google.com614f9e32013-05-09 18:05:32 +0000585 testRects[0].set(first, SkToS32(last - first));
caryclark95bc5f32015-04-08 08:34:15 -0700586 if (!isClosed) {
587 pts = fPathRef->points() + fPathRef->countPoints();
588 }
scroggo@google.com614f9e32013-05-09 18:05:32 +0000589 testRects[1].set(last, SkToS32(pts - last));
caryclark@google.com56f233a2012-11-19 13:06:06 +0000590 if (testRects[0].contains(testRects[1])) {
591 if (rects) {
592 rects[0] = testRects[0];
593 rects[1] = testRects[1];
594 }
robertphillips@google.com83d1a682013-05-17 12:50:27 +0000595 if (dirs) {
596 dirs[0] = testDirs[0];
597 dirs[1] = testDirs[1];
598 }
caryclark@google.com56f233a2012-11-19 13:06:06 +0000599 return true;
600 }
601 if (testRects[1].contains(testRects[0])) {
602 if (rects) {
603 rects[0] = testRects[1];
604 rects[1] = testRects[0];
605 }
robertphillips@google.com83d1a682013-05-17 12:50:27 +0000606 if (dirs) {
607 dirs[0] = testDirs[1];
608 dirs[1] = testDirs[0];
609 }
caryclark@google.com56f233a2012-11-19 13:06:06 +0000610 return true;
611 }
612 }
613 return false;
614}
615
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000616int SkPath::countPoints() const {
617 return fPathRef->countPoints();
618}
619
bsalomon@google.comdf9d6562012-06-07 21:43:15 +0000620int SkPath::getPoints(SkPoint dst[], int max) const {
reed@android.com8a1c16f2008-12-17 15:59:43 +0000621 SkDEBUGCODE(this->validate();)
622
623 SkASSERT(max >= 0);
bsalomon@google.comdf9d6562012-06-07 21:43:15 +0000624 SkASSERT(!max || dst);
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000625 int count = SkMin32(max, fPathRef->countPoints());
mtklein8bf5d172015-12-09 13:15:07 -0800626 sk_careful_memcpy(dst, fPathRef->points(), count * sizeof(SkPoint));
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000627 return fPathRef->countPoints();
reed@android.com8a1c16f2008-12-17 15:59:43 +0000628}
629
reed@android.comd3aa4ff2010-02-09 16:38:45 +0000630SkPoint SkPath::getPoint(int index) const {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000631 if ((unsigned)index < (unsigned)fPathRef->countPoints()) {
632 return fPathRef->atPoint(index);
reed@android.comd3aa4ff2010-02-09 16:38:45 +0000633 }
634 return SkPoint::Make(0, 0);
635}
636
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000637int SkPath::countVerbs() const {
638 return fPathRef->countVerbs();
639}
640
641static inline void copy_verbs_reverse(uint8_t* inorderDst,
642 const uint8_t* reversedSrc,
643 int count) {
644 for (int i = 0; i < count; ++i) {
645 inorderDst[i] = reversedSrc[~i];
646 }
647}
648
bsalomon@google.comdf9d6562012-06-07 21:43:15 +0000649int SkPath::getVerbs(uint8_t dst[], int max) const {
650 SkDEBUGCODE(this->validate();)
651
652 SkASSERT(max >= 0);
653 SkASSERT(!max || dst);
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000654 int count = SkMin32(max, fPathRef->countVerbs());
655 copy_verbs_reverse(dst, fPathRef->verbs(), count);
656 return fPathRef->countVerbs();
bsalomon@google.comdf9d6562012-06-07 21:43:15 +0000657}
658
reed@google.com294dd7b2011-10-11 11:58:32 +0000659bool SkPath::getLastPt(SkPoint* lastPt) const {
reed@android.com8a1c16f2008-12-17 15:59:43 +0000660 SkDEBUGCODE(this->validate();)
661
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000662 int count = fPathRef->countPoints();
reed@google.com294dd7b2011-10-11 11:58:32 +0000663 if (count > 0) {
664 if (lastPt) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000665 *lastPt = fPathRef->atPoint(count - 1);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000666 }
reed@google.com294dd7b2011-10-11 11:58:32 +0000667 return true;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000668 }
reed@google.com294dd7b2011-10-11 11:58:32 +0000669 if (lastPt) {
670 lastPt->set(0, 0);
671 }
672 return false;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000673}
674
caryclarkaec25102015-04-29 08:28:30 -0700675void SkPath::setPt(int index, SkScalar x, SkScalar y) {
676 SkDEBUGCODE(this->validate();)
677
678 int count = fPathRef->countPoints();
679 if (count <= index) {
680 return;
681 } else {
682 SkPathRef::Editor ed(&fPathRef);
683 ed.atPoint(index)->set(x, y);
684 }
685}
686
reed@android.com8a1c16f2008-12-17 15:59:43 +0000687void SkPath::setLastPt(SkScalar x, SkScalar y) {
688 SkDEBUGCODE(this->validate();)
689
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000690 int count = fPathRef->countPoints();
reed@android.com8a1c16f2008-12-17 15:59:43 +0000691 if (count == 0) {
692 this->moveTo(x, y);
693 } else {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000694 SkPathRef::Editor ed(&fPathRef);
695 ed.atPoint(count-1)->set(x, y);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000696 }
697}
698
reed@google.com04863fa2011-05-15 04:08:24 +0000699void SkPath::setConvexity(Convexity c) {
700 if (fConvexity != c) {
701 fConvexity = c;
reed@google.com04863fa2011-05-15 04:08:24 +0000702 }
703}
704
reed@android.com8a1c16f2008-12-17 15:59:43 +0000705//////////////////////////////////////////////////////////////////////////////
706// Construction methods
707
reed026beb52015-06-10 14:23:15 -0700708#define DIRTY_AFTER_EDIT \
709 do { \
710 fConvexity = kUnknown_Convexity; \
711 fFirstDirection = SkPathPriv::kUnknown_FirstDirection; \
reed@google.comb54455e2011-05-16 14:16:04 +0000712 } while (0)
713
reed@android.com8a1c16f2008-12-17 15:59:43 +0000714void SkPath::incReserve(U16CPU inc) {
715 SkDEBUGCODE(this->validate();)
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000716 SkPathRef::Editor(&fPathRef, inc, inc);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000717 SkDEBUGCODE(this->validate();)
718}
719
720void SkPath::moveTo(SkScalar x, SkScalar y) {
721 SkDEBUGCODE(this->validate();)
722
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000723 SkPathRef::Editor ed(&fPathRef);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000724
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000725 // remember our index
726 fLastMoveToIndex = fPathRef->countPoints();
727
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000728 ed.growForVerb(kMove_Verb)->set(x, y);
bsalomonb17c1292014-08-28 14:04:55 -0700729
730 DIRTY_AFTER_EDIT;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000731}
732
733void SkPath::rMoveTo(SkScalar x, SkScalar y) {
734 SkPoint pt;
735 this->getLastPt(&pt);
736 this->moveTo(pt.fX + x, pt.fY + y);
737}
738
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000739void SkPath::injectMoveToIfNeeded() {
740 if (fLastMoveToIndex < 0) {
741 SkScalar x, y;
742 if (fPathRef->countVerbs() == 0) {
743 x = y = 0;
744 } else {
745 const SkPoint& pt = fPathRef->atPoint(~fLastMoveToIndex);
746 x = pt.fX;
747 y = pt.fY;
748 }
749 this->moveTo(x, y);
750 }
751}
752
reed@android.com8a1c16f2008-12-17 15:59:43 +0000753void SkPath::lineTo(SkScalar x, SkScalar y) {
754 SkDEBUGCODE(this->validate();)
755
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000756 this->injectMoveToIfNeeded();
757
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000758 SkPathRef::Editor ed(&fPathRef);
759 ed.growForVerb(kLine_Verb)->set(x, y);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000760
reed@google.comb54455e2011-05-16 14:16:04 +0000761 DIRTY_AFTER_EDIT;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000762}
763
764void SkPath::rLineTo(SkScalar x, SkScalar y) {
commit-bot@chromium.org9d54aeb2013-08-09 19:48:26 +0000765 this->injectMoveToIfNeeded(); // This can change the result of this->getLastPt().
reed@android.com8a1c16f2008-12-17 15:59:43 +0000766 SkPoint pt;
767 this->getLastPt(&pt);
768 this->lineTo(pt.fX + x, pt.fY + y);
769}
770
771void SkPath::quadTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2) {
772 SkDEBUGCODE(this->validate();)
skia.committer@gmail.com26da7f02013-06-01 07:01:39 +0000773
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000774 this->injectMoveToIfNeeded();
775
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000776 SkPathRef::Editor ed(&fPathRef);
777 SkPoint* pts = ed.growForVerb(kQuad_Verb);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000778 pts[0].set(x1, y1);
779 pts[1].set(x2, y2);
skia.committer@gmail.com26da7f02013-06-01 07:01:39 +0000780
reed@google.comb54455e2011-05-16 14:16:04 +0000781 DIRTY_AFTER_EDIT;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000782}
783
784void SkPath::rQuadTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2) {
commit-bot@chromium.org9d54aeb2013-08-09 19:48:26 +0000785 this->injectMoveToIfNeeded(); // This can change the result of this->getLastPt().
reed@android.com8a1c16f2008-12-17 15:59:43 +0000786 SkPoint pt;
787 this->getLastPt(&pt);
788 this->quadTo(pt.fX + x1, pt.fY + y1, pt.fX + x2, pt.fY + y2);
789}
790
reed@google.com277c3f82013-05-31 15:17:50 +0000791void SkPath::conicTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2,
792 SkScalar w) {
793 // check for <= 0 or NaN with this test
794 if (!(w > 0)) {
795 this->lineTo(x2, y2);
796 } else if (!SkScalarIsFinite(w)) {
797 this->lineTo(x1, y1);
798 this->lineTo(x2, y2);
799 } else if (SK_Scalar1 == w) {
800 this->quadTo(x1, y1, x2, y2);
801 } else {
802 SkDEBUGCODE(this->validate();)
skia.committer@gmail.com26da7f02013-06-01 07:01:39 +0000803
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000804 this->injectMoveToIfNeeded();
805
reed@google.com277c3f82013-05-31 15:17:50 +0000806 SkPathRef::Editor ed(&fPathRef);
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +0000807 SkPoint* pts = ed.growForVerb(kConic_Verb, w);
reed@google.com277c3f82013-05-31 15:17:50 +0000808 pts[0].set(x1, y1);
809 pts[1].set(x2, y2);
skia.committer@gmail.com26da7f02013-06-01 07:01:39 +0000810
reed@google.com277c3f82013-05-31 15:17:50 +0000811 DIRTY_AFTER_EDIT;
812 }
813}
814
815void SkPath::rConicTo(SkScalar dx1, SkScalar dy1, SkScalar dx2, SkScalar dy2,
816 SkScalar w) {
commit-bot@chromium.org9d54aeb2013-08-09 19:48:26 +0000817 this->injectMoveToIfNeeded(); // This can change the result of this->getLastPt().
reed@google.com277c3f82013-05-31 15:17:50 +0000818 SkPoint pt;
819 this->getLastPt(&pt);
820 this->conicTo(pt.fX + dx1, pt.fY + dy1, pt.fX + dx2, pt.fY + dy2, w);
821}
822
reed@android.com8a1c16f2008-12-17 15:59:43 +0000823void SkPath::cubicTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2,
824 SkScalar x3, SkScalar y3) {
825 SkDEBUGCODE(this->validate();)
826
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000827 this->injectMoveToIfNeeded();
828
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000829 SkPathRef::Editor ed(&fPathRef);
830 SkPoint* pts = ed.growForVerb(kCubic_Verb);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000831 pts[0].set(x1, y1);
832 pts[1].set(x2, y2);
833 pts[2].set(x3, y3);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000834
reed@google.comb54455e2011-05-16 14:16:04 +0000835 DIRTY_AFTER_EDIT;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000836}
837
838void SkPath::rCubicTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2,
839 SkScalar x3, SkScalar y3) {
commit-bot@chromium.org9d54aeb2013-08-09 19:48:26 +0000840 this->injectMoveToIfNeeded(); // This can change the result of this->getLastPt().
reed@android.com8a1c16f2008-12-17 15:59:43 +0000841 SkPoint pt;
842 this->getLastPt(&pt);
843 this->cubicTo(pt.fX + x1, pt.fY + y1, pt.fX + x2, pt.fY + y2,
844 pt.fX + x3, pt.fY + y3);
845}
846
847void SkPath::close() {
848 SkDEBUGCODE(this->validate();)
849
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000850 int count = fPathRef->countVerbs();
reed@android.com8a1c16f2008-12-17 15:59:43 +0000851 if (count > 0) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000852 switch (fPathRef->atVerb(count - 1)) {
reed@android.com8a1c16f2008-12-17 15:59:43 +0000853 case kLine_Verb:
854 case kQuad_Verb:
reed@google.com277c3f82013-05-31 15:17:50 +0000855 case kConic_Verb:
reed@android.com8a1c16f2008-12-17 15:59:43 +0000856 case kCubic_Verb:
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000857 case kMove_Verb: {
858 SkPathRef::Editor ed(&fPathRef);
859 ed.growForVerb(kClose_Verb);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000860 break;
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +0000861 }
reed@google.com277c3f82013-05-31 15:17:50 +0000862 case kClose_Verb:
reed@google.comfa2f2a42013-05-30 15:29:48 +0000863 // don't add a close if it's the first verb or a repeat
reed@google.com7950a9e2013-05-30 14:57:55 +0000864 break;
reed@google.com277c3f82013-05-31 15:17:50 +0000865 default:
mtklein@google.com330313a2013-08-22 15:37:26 +0000866 SkDEBUGFAIL("unexpected verb");
reed@google.com277c3f82013-05-31 15:17:50 +0000867 break;
reed@android.com8a1c16f2008-12-17 15:59:43 +0000868 }
869 }
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +0000870
871 // signal that we need a moveTo to follow us (unless we're done)
872#if 0
873 if (fLastMoveToIndex >= 0) {
874 fLastMoveToIndex = ~fLastMoveToIndex;
875 }
876#else
877 fLastMoveToIndex ^= ~fLastMoveToIndex >> (8 * sizeof(fLastMoveToIndex) - 1);
878#endif
reed@android.com8a1c16f2008-12-17 15:59:43 +0000879}
880
881///////////////////////////////////////////////////////////////////////////////
reed@google.comabf15c12011-01-18 20:35:51 +0000882
fmalitac08d53e2015-11-17 09:53:29 -0800883namespace {
884
885template <unsigned N>
886class PointIterator {
887public:
888 PointIterator(SkPath::Direction dir, unsigned startIndex)
889 : fCurrent(startIndex % N)
890 , fAdvance(dir == SkPath::kCW_Direction ? 1 : N - 1) { }
891
892 const SkPoint& current() const {
893 SkASSERT(fCurrent < N);
894 return fPts[fCurrent];
895 }
896
897 const SkPoint& next() {
898 fCurrent = (fCurrent + fAdvance) % N;
899 return this->current();
900 }
901
902protected:
903 SkPoint fPts[N];
904
905private:
906 unsigned fCurrent;
907 unsigned fAdvance;
908};
909
910class RectPointIterator : public PointIterator<4> {
911public:
912 RectPointIterator(const SkRect& rect, SkPath::Direction dir, unsigned startIndex)
913 : PointIterator(dir, startIndex) {
914
915 fPts[0] = SkPoint::Make(rect.fLeft, rect.fTop);
916 fPts[1] = SkPoint::Make(rect.fRight, rect.fTop);
917 fPts[2] = SkPoint::Make(rect.fRight, rect.fBottom);
918 fPts[3] = SkPoint::Make(rect.fLeft, rect.fBottom);
919 }
920};
921
922class OvalPointIterator : public PointIterator<4> {
923public:
924 OvalPointIterator(const SkRect& oval, SkPath::Direction dir, unsigned startIndex)
925 : PointIterator(dir, startIndex) {
926
927 const SkScalar cx = oval.centerX();
928 const SkScalar cy = oval.centerY();
929
930 fPts[0] = SkPoint::Make(cx, oval.fTop);
931 fPts[1] = SkPoint::Make(oval.fRight, cy);
932 fPts[2] = SkPoint::Make(cx, oval.fBottom);
933 fPts[3] = SkPoint::Make(oval.fLeft, cy);
934 }
935};
936
937class RRectPointIterator : public PointIterator<8> {
938public:
939 RRectPointIterator(const SkRRect& rrect, SkPath::Direction dir, unsigned startIndex)
940 : PointIterator(dir, startIndex) {
941
942 const SkRect& bounds = rrect.getBounds();
943 const SkScalar L = bounds.fLeft;
944 const SkScalar T = bounds.fTop;
945 const SkScalar R = bounds.fRight;
946 const SkScalar B = bounds.fBottom;
947
948 fPts[0] = SkPoint::Make(L + rrect.radii(SkRRect::kUpperLeft_Corner).fX, T);
949 fPts[1] = SkPoint::Make(R - rrect.radii(SkRRect::kUpperRight_Corner).fX, T);
950 fPts[2] = SkPoint::Make(R, T + rrect.radii(SkRRect::kUpperRight_Corner).fY);
951 fPts[3] = SkPoint::Make(R, B - rrect.radii(SkRRect::kLowerRight_Corner).fY);
952 fPts[4] = SkPoint::Make(R - rrect.radii(SkRRect::kLowerRight_Corner).fX, B);
953 fPts[5] = SkPoint::Make(L + rrect.radii(SkRRect::kLowerLeft_Corner).fX, B);
954 fPts[6] = SkPoint::Make(L, B - rrect.radii(SkRRect::kLowerLeft_Corner).fY);
955 fPts[7] = SkPoint::Make(L, T + rrect.radii(SkRRect::kUpperLeft_Corner).fY);
956 }
957};
958
959} // anonymous namespace
960
reed@google.coma8a3b3d2012-11-26 18:16:27 +0000961static void assert_known_direction(int dir) {
962 SkASSERT(SkPath::kCW_Direction == dir || SkPath::kCCW_Direction == dir);
963}
964
reed@android.com8a1c16f2008-12-17 15:59:43 +0000965void SkPath::addRect(const SkRect& rect, Direction dir) {
fmalitac08d53e2015-11-17 09:53:29 -0800966 this->addRect(rect, dir, 0);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000967}
968
969void SkPath::addRect(SkScalar left, SkScalar top, SkScalar right,
970 SkScalar bottom, Direction dir) {
fmalitac08d53e2015-11-17 09:53:29 -0800971 this->addRect(SkRect::MakeLTRB(left, top, right, bottom), dir, 0);
972}
973
974void SkPath::addRect(const SkRect &rect, Direction dir, unsigned startIndex) {
reed@google.coma8a3b3d2012-11-26 18:16:27 +0000975 assert_known_direction(dir);
reed026beb52015-06-10 14:23:15 -0700976 fFirstDirection = this->hasOnlyMoveTos() ?
fmalitac08d53e2015-11-17 09:53:29 -0800977 (SkPathPriv::FirstDirection)dir : SkPathPriv::kUnknown_FirstDirection;
bsalomon@google.com30c174b2012-11-13 14:36:42 +0000978 SkAutoDisableDirectionCheck addc(this);
fmalitac08d53e2015-11-17 09:53:29 -0800979 SkAutoPathBoundsUpdate apbu(this, rect);
bsalomon@google.com30c174b2012-11-13 14:36:42 +0000980
fmalitac08d53e2015-11-17 09:53:29 -0800981 SkDEBUGCODE(int initialVerbCount = this->countVerbs());
reed@android.com8a1c16f2008-12-17 15:59:43 +0000982
fmalitac08d53e2015-11-17 09:53:29 -0800983 const int kVerbs = 5; // moveTo + 3x lineTo + close
984 this->incReserve(kVerbs);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000985
fmalitac08d53e2015-11-17 09:53:29 -0800986 RectPointIterator iter(rect, dir, startIndex);
987
988 this->moveTo(iter.current());
989 this->lineTo(iter.next());
990 this->lineTo(iter.next());
991 this->lineTo(iter.next());
reed@android.com8a1c16f2008-12-17 15:59:43 +0000992 this->close();
fmalitac08d53e2015-11-17 09:53:29 -0800993
994 SkASSERT(this->countVerbs() == initialVerbCount + kVerbs);
reed@android.com8a1c16f2008-12-17 15:59:43 +0000995}
996
reed@google.com744faba2012-05-29 19:54:52 +0000997void SkPath::addPoly(const SkPoint pts[], int count, bool close) {
998 SkDEBUGCODE(this->validate();)
999 if (count <= 0) {
1000 return;
1001 }
1002
commit-bot@chromium.org5e1a7f22014-02-12 17:44:30 +00001003 fLastMoveToIndex = fPathRef->countPoints();
1004
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +00001005 // +close makes room for the extra kClose_Verb
1006 SkPathRef::Editor ed(&fPathRef, count+close, count);
1007
1008 ed.growForVerb(kMove_Verb)->set(pts[0].fX, pts[0].fY);
reed@google.com744faba2012-05-29 19:54:52 +00001009 if (count > 1) {
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +00001010 SkPoint* p = ed.growForRepeatedVerb(kLine_Verb, count - 1);
1011 memcpy(p, &pts[1], (count-1) * sizeof(SkPoint));
reed@google.com744faba2012-05-29 19:54:52 +00001012 }
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +00001013
reed@google.com744faba2012-05-29 19:54:52 +00001014 if (close) {
robertphillips@google.com6b8dbb62013-12-12 23:03:51 +00001015 ed.growForVerb(kClose_Verb);
caryclark63c684a2015-02-25 09:04:04 -08001016 fLastMoveToIndex ^= ~fLastMoveToIndex >> (8 * sizeof(fLastMoveToIndex) - 1);
reed@google.com744faba2012-05-29 19:54:52 +00001017 }
1018
reed@google.com744faba2012-05-29 19:54:52 +00001019 DIRTY_AFTER_EDIT;
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001020 SkDEBUGCODE(this->validate();)
reed@google.com744faba2012-05-29 19:54:52 +00001021}
1022
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001023#include "SkGeometry.h"
1024
reedf90ea012015-01-29 12:03:58 -08001025static bool arc_is_lone_point(const SkRect& oval, SkScalar startAngle, SkScalar sweepAngle,
1026 SkPoint* pt) {
1027 if (0 == sweepAngle && (0 == startAngle || SkIntToScalar(360) == startAngle)) {
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001028 // Chrome uses this path to move into and out of ovals. If not
1029 // treated as a special case the moves can distort the oval's
1030 // bounding box (and break the circle special case).
reedf90ea012015-01-29 12:03:58 -08001031 pt->set(oval.fRight, oval.centerY());
1032 return true;
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001033 } else if (0 == oval.width() && 0 == oval.height()) {
1034 // Chrome will sometimes create 0 radius round rects. Having degenerate
1035 // quad segments in the path prevents the path from being recognized as
1036 // a rect.
1037 // TODO: optimizing the case where only one of width or height is zero
1038 // should also be considered. This case, however, doesn't seem to be
1039 // as common as the single point case.
reedf90ea012015-01-29 12:03:58 -08001040 pt->set(oval.fRight, oval.fTop);
1041 return true;
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001042 }
reedf90ea012015-01-29 12:03:58 -08001043 return false;
1044}
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001045
reedd5d27d92015-02-09 13:54:43 -08001046// Return the unit vectors pointing at the start/stop points for the given start/sweep angles
1047//
1048static void angles_to_unit_vectors(SkScalar startAngle, SkScalar sweepAngle,
1049 SkVector* startV, SkVector* stopV, SkRotationDirection* dir) {
1050 startV->fY = SkScalarSinCos(SkDegreesToRadians(startAngle), &startV->fX);
1051 stopV->fY = SkScalarSinCos(SkDegreesToRadians(startAngle + sweepAngle), &stopV->fX);
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001052
1053 /* If the sweep angle is nearly (but less than) 360, then due to precision
reedd5d27d92015-02-09 13:54:43 -08001054 loss in radians-conversion and/or sin/cos, we may end up with coincident
1055 vectors, which will fool SkBuildQuadArc into doing nothing (bad) instead
1056 of drawing a nearly complete circle (good).
1057 e.g. canvas.drawArc(0, 359.99, ...)
1058 -vs- canvas.drawArc(0, 359.9, ...)
1059 We try to detect this edge case, and tweak the stop vector
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001060 */
reedd5d27d92015-02-09 13:54:43 -08001061 if (*startV == *stopV) {
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001062 SkScalar sw = SkScalarAbs(sweepAngle);
1063 if (sw < SkIntToScalar(360) && sw > SkIntToScalar(359)) {
1064 SkScalar stopRad = SkDegreesToRadians(startAngle + sweepAngle);
1065 // make a guess at a tiny angle (in radians) to tweak by
1066 SkScalar deltaRad = SkScalarCopySign(SK_Scalar1/512, sweepAngle);
1067 // not sure how much will be enough, so we use a loop
1068 do {
1069 stopRad -= deltaRad;
reedd5d27d92015-02-09 13:54:43 -08001070 stopV->fY = SkScalarSinCos(stopRad, &stopV->fX);
1071 } while (*startV == *stopV);
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001072 }
1073 }
reedd5d27d92015-02-09 13:54:43 -08001074 *dir = sweepAngle > 0 ? kCW_SkRotationDirection : kCCW_SkRotationDirection;
1075}
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001076
reed9e779d42015-02-17 11:43:14 -08001077/**
1078 * If this returns 0, then the caller should just line-to the singlePt, else it should
1079 * ignore singlePt and append the specified number of conics.
1080 */
reedd5d27d92015-02-09 13:54:43 -08001081static int build_arc_conics(const SkRect& oval, const SkVector& start, const SkVector& stop,
reed9e779d42015-02-17 11:43:14 -08001082 SkRotationDirection dir, SkConic conics[SkConic::kMaxConicsForArc],
1083 SkPoint* singlePt) {
reedd5d27d92015-02-09 13:54:43 -08001084 SkMatrix matrix;
1085
1086 matrix.setScale(SkScalarHalf(oval.width()), SkScalarHalf(oval.height()));
1087 matrix.postTranslate(oval.centerX(), oval.centerY());
1088
reed9e779d42015-02-17 11:43:14 -08001089 int count = SkConic::BuildUnitArc(start, stop, dir, &matrix, conics);
1090 if (0 == count) {
xidachen95e34a32016-10-19 10:24:28 -07001091 matrix.mapXY(stop.x(), stop.y(), singlePt);
reed9e779d42015-02-17 11:43:14 -08001092 }
1093 return count;
reedd5d27d92015-02-09 13:54:43 -08001094}
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001095
robertphillips@google.com4e18c7a2012-12-17 21:48:19 +00001096void SkPath::addRoundRect(const SkRect& rect, const SkScalar radii[],
reed@android.com8a1c16f2008-12-17 15:59:43 +00001097 Direction dir) {
robertphillips@google.com4e18c7a2012-12-17 21:48:19 +00001098 SkRRect rrect;
1099 rrect.setRectRadii(rect, (const SkVector*) radii);
1100 this->addRRect(rrect, dir);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001101}
1102
reed@google.com4ed0fb72012-12-12 20:48:18 +00001103void SkPath::addRRect(const SkRRect& rrect, Direction dir) {
fmalitac08d53e2015-11-17 09:53:29 -08001104 // legacy start indices: 6 (CW) and 7(CCW)
1105 this->addRRect(rrect, dir, dir == kCW_Direction ? 6 : 7);
1106}
robertphillips@google.com4e18c7a2012-12-17 21:48:19 +00001107
fmalitac08d53e2015-11-17 09:53:29 -08001108void SkPath::addRRect(const SkRRect &rrect, Direction dir, unsigned startIndex) {
1109 assert_known_direction(dir);
robertphillips@google.com4e18c7a2012-12-17 21:48:19 +00001110
fmalitac08d53e2015-11-17 09:53:29 -08001111 if (rrect.isEmpty()) {
1112 return;
reed1b28a3a2014-12-17 14:42:09 -08001113 }
fmalitac08d53e2015-11-17 09:53:29 -08001114
caryclarkda707bf2015-11-19 14:47:43 -08001115 bool isRRect = hasOnlyMoveTos();
fmalitac08d53e2015-11-17 09:53:29 -08001116 const SkRect& bounds = rrect.getBounds();
1117
1118 if (rrect.isRect()) {
1119 // degenerate(rect) => radii points are collapsing
1120 this->addRect(bounds, dir, (startIndex + 1) / 2);
1121 } else if (rrect.isOval()) {
1122 // degenerate(oval) => line points are collapsing
1123 this->addOval(bounds, dir, startIndex / 2);
1124 } else {
1125 fFirstDirection = this->hasOnlyMoveTos() ?
1126 (SkPathPriv::FirstDirection)dir : SkPathPriv::kUnknown_FirstDirection;
1127
1128 SkAutoPathBoundsUpdate apbu(this, bounds);
1129 SkAutoDisableDirectionCheck addc(this);
1130
1131 // we start with a conic on odd indices when moving CW vs. even indices when moving CCW
1132 const bool startsWithConic = ((startIndex & 1) == (dir == kCW_Direction));
1133 const SkScalar weight = SK_ScalarRoot2Over2;
1134
1135 SkDEBUGCODE(int initialVerbCount = this->countVerbs());
1136 const int kVerbs = startsWithConic
1137 ? 9 // moveTo + 4x conicTo + 3x lineTo + close
1138 : 10; // moveTo + 4x lineTo + 4x conicTo + close
1139 this->incReserve(kVerbs);
1140
1141 RRectPointIterator rrectIter(rrect, dir, startIndex);
1142 // Corner iterator indices follow the collapsed radii model,
1143 // adjusted such that the start pt is "behind" the radii start pt.
1144 const unsigned rectStartIndex = startIndex / 2 + (dir == kCW_Direction ? 0 : 1);
1145 RectPointIterator rectIter(bounds, dir, rectStartIndex);
1146
1147 this->moveTo(rrectIter.current());
1148 if (startsWithConic) {
1149 for (unsigned i = 0; i < 3; ++i) {
1150 this->conicTo(rectIter.next(), rrectIter.next(), weight);
1151 this->lineTo(rrectIter.next());
1152 }
1153 this->conicTo(rectIter.next(), rrectIter.next(), weight);
1154 // final lineTo handled by close().
1155 } else {
1156 for (unsigned i = 0; i < 4; ++i) {
1157 this->lineTo(rrectIter.next());
1158 this->conicTo(rectIter.next(), rrectIter.next(), weight);
1159 }
1160 }
1161 this->close();
1162
caryclarkda707bf2015-11-19 14:47:43 -08001163 SkPathRef::Editor ed(&fPathRef);
bsalomon78d58d12016-05-27 09:17:04 -07001164 ed.setIsRRect(isRRect, dir, startIndex % 8);
caryclarkda707bf2015-11-19 14:47:43 -08001165
fmalitac08d53e2015-11-17 09:53:29 -08001166 SkASSERT(this->countVerbs() == initialVerbCount + kVerbs);
1167 }
1168
1169 SkDEBUGCODE(fPathRef->validate();)
reed@google.com4ed0fb72012-12-12 20:48:18 +00001170}
1171
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001172bool SkPath::hasOnlyMoveTos() const {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001173 int count = fPathRef->countVerbs();
1174 const uint8_t* verbs = const_cast<const SkPathRef*>(fPathRef.get())->verbsMemBegin();
1175 for (int i = 0; i < count; ++i) {
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001176 if (*verbs == kLine_Verb ||
1177 *verbs == kQuad_Verb ||
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00001178 *verbs == kConic_Verb ||
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001179 *verbs == kCubic_Verb) {
1180 return false;
1181 }
1182 ++verbs;
1183 }
1184 return true;
1185}
1186
caryclarkd49a86a2016-02-22 12:44:54 -08001187bool SkPath::isZeroLength() const {
1188 int count = fPathRef->countPoints();
1189 if (count < 2) {
1190 return true;
1191 }
1192 const SkPoint* pts = fPathRef.get()->points();
1193 const SkPoint& first = *pts;
1194 for (int index = 1; index < count; ++index) {
1195 if (first != pts[index]) {
1196 return false;
1197 }
1198 }
1199 return true;
1200}
1201
mike@reedtribe.orgb16033a2013-01-04 03:16:52 +00001202void SkPath::addRoundRect(const SkRect& rect, SkScalar rx, SkScalar ry,
1203 Direction dir) {
1204 assert_known_direction(dir);
skia.committer@gmail.com32840172013-04-09 07:01:27 +00001205
humper@google.com75e3ca12013-04-08 21:44:11 +00001206 if (rx < 0 || ry < 0) {
humper@google.com75e3ca12013-04-08 21:44:11 +00001207 return;
1208 }
skia.committer@gmail.comd9f65e32013-01-04 12:07:46 +00001209
commit-bot@chromium.org42feaaf2013-11-08 15:51:12 +00001210 SkRRect rrect;
1211 rrect.setRectXY(rect, rx, ry);
1212 this->addRRect(rrect, dir);
mike@reedtribe.orgb16033a2013-01-04 03:16:52 +00001213}
1214
reed@android.com8a1c16f2008-12-17 15:59:43 +00001215void SkPath::addOval(const SkRect& oval, Direction dir) {
fmalitac08d53e2015-11-17 09:53:29 -08001216 // legacy start index: 1
1217 this->addOval(oval, dir, 1);
1218}
1219
1220void SkPath::addOval(const SkRect &oval, Direction dir, unsigned startPointIndex) {
reed@google.coma8a3b3d2012-11-26 18:16:27 +00001221 assert_known_direction(dir);
1222
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001223 /* If addOval() is called after previous moveTo(),
1224 this path is still marked as an oval. This is used to
1225 fit into WebKit's calling sequences.
1226 We can't simply check isEmpty() in this case, as additional
1227 moveTo() would mark the path non empty.
1228 */
robertphillips@google.com466310d2013-12-03 16:43:54 +00001229 bool isOval = hasOnlyMoveTos();
1230 if (isOval) {
reed026beb52015-06-10 14:23:15 -07001231 fFirstDirection = (SkPathPriv::FirstDirection)dir;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001232 } else {
reed026beb52015-06-10 14:23:15 -07001233 fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001234 }
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001235
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001236 SkAutoDisableDirectionCheck addc(this);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001237 SkAutoPathBoundsUpdate apbu(this, oval);
1238
fmalitac08d53e2015-11-17 09:53:29 -08001239 SkDEBUGCODE(int initialVerbCount = this->countVerbs());
1240 const int kVerbs = 6; // moveTo + 4x conicTo + close
1241 this->incReserve(kVerbs);
1242
1243 OvalPointIterator ovalIter(oval, dir, startPointIndex);
1244 // The corner iterator pts are tracking "behind" the oval/radii pts.
1245 RectPointIterator rectIter(oval, dir, startPointIndex + (dir == kCW_Direction ? 0 : 1));
reed220f9262014-12-17 08:21:04 -08001246 const SkScalar weight = SK_ScalarRoot2Over2;
1247
fmalitac08d53e2015-11-17 09:53:29 -08001248 this->moveTo(ovalIter.current());
1249 for (unsigned i = 0; i < 4; ++i) {
1250 this->conicTo(rectIter.next(), ovalIter.next(), weight);
reed220f9262014-12-17 08:21:04 -08001251 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001252 this->close();
reed@android.com8a1c16f2008-12-17 15:59:43 +00001253
fmalitac08d53e2015-11-17 09:53:29 -08001254 SkASSERT(this->countVerbs() == initialVerbCount + kVerbs);
1255
robertphillips@google.com466310d2013-12-03 16:43:54 +00001256 SkPathRef::Editor ed(&fPathRef);
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001257
bsalomon78d58d12016-05-27 09:17:04 -07001258 ed.setIsOval(isOval, kCCW_Direction == dir, startPointIndex % 4);
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001259}
1260
reed@android.com8a1c16f2008-12-17 15:59:43 +00001261void SkPath::addCircle(SkScalar x, SkScalar y, SkScalar r, Direction dir) {
1262 if (r > 0) {
fmalitac08d53e2015-11-17 09:53:29 -08001263 this->addOval(SkRect::MakeLTRB(x - r, y - r, x + r, y + r), dir);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001264 }
1265}
1266
reed@android.com8a1c16f2008-12-17 15:59:43 +00001267void SkPath::arcTo(const SkRect& oval, SkScalar startAngle, SkScalar sweepAngle,
1268 bool forceMoveTo) {
1269 if (oval.width() < 0 || oval.height() < 0) {
1270 return;
1271 }
1272
reedf90ea012015-01-29 12:03:58 -08001273 if (fPathRef->countVerbs() == 0) {
1274 forceMoveTo = true;
1275 }
1276
1277 SkPoint lonePt;
1278 if (arc_is_lone_point(oval, startAngle, sweepAngle, &lonePt)) {
1279 forceMoveTo ? this->moveTo(lonePt) : this->lineTo(lonePt);
1280 return;
1281 }
1282
reedd5d27d92015-02-09 13:54:43 -08001283 SkVector startV, stopV;
1284 SkRotationDirection dir;
1285 angles_to_unit_vectors(startAngle, sweepAngle, &startV, &stopV, &dir);
1286
reed9e779d42015-02-17 11:43:14 -08001287 SkPoint singlePt;
xidachen6069dda2016-10-06 05:42:23 -07001288
1289 // At this point, we know that the arc is not a lone point, but startV == stopV
1290 // indicates that the sweepAngle is too small such that angles_to_unit_vectors
1291 // cannot handle it.
1292 if (startV == stopV) {
1293 SkScalar endAngle = SkDegreesToRadians(startAngle + sweepAngle);
1294 SkScalar radiusX = oval.width() / 2;
1295 SkScalar radiusY = oval.height() / 2;
1296 // We cannot use SkScalarSinCos function in the next line because
1297 // SkScalarSinCos has a threshold *SkScalarNearlyZero*. When sin(startAngle)
1298 // is 0 and sweepAngle is very small and radius is huge, the expected
Mike Kleine54c75f2016-10-13 14:18:09 -04001299 // behavior here is to draw a line. But calling SkScalarSinCos will
xidachen6069dda2016-10-06 05:42:23 -07001300 // make sin(endAngle) to be 0 which will then draw a dot.
1301 singlePt.set(oval.centerX() + radiusX * sk_float_cos(endAngle),
1302 oval.centerY() + radiusY * sk_float_sin(endAngle));
1303 forceMoveTo ? this->moveTo(singlePt) : this->lineTo(singlePt);
1304 return;
1305 }
1306
reedd5d27d92015-02-09 13:54:43 -08001307 SkConic conics[SkConic::kMaxConicsForArc];
reed9e779d42015-02-17 11:43:14 -08001308 int count = build_arc_conics(oval, startV, stopV, dir, conics, &singlePt);
reedd5d27d92015-02-09 13:54:43 -08001309 if (count) {
1310 this->incReserve(count * 2 + 1);
1311 const SkPoint& pt = conics[0].fPts[0];
1312 forceMoveTo ? this->moveTo(pt) : this->lineTo(pt);
1313 for (int i = 0; i < count; ++i) {
1314 this->conicTo(conics[i].fPts[1], conics[i].fPts[2], conics[i].fW);
1315 }
reed9e779d42015-02-17 11:43:14 -08001316 } else {
1317 forceMoveTo ? this->moveTo(singlePt) : this->lineTo(singlePt);
reedd5d27d92015-02-09 13:54:43 -08001318 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001319}
1320
caryclark55d49052016-01-23 05:07:04 -08001321// This converts the SVG arc to conics.
1322// Partly adapted from Niko's code in kdelibs/kdecore/svgicons.
1323// Then transcribed from webkit/chrome's SVGPathNormalizer::decomposeArcToCubic()
1324// See also SVG implementation notes:
1325// http://www.w3.org/TR/SVG/implnote.html#ArcConversionEndpointToCenter
1326// Note that arcSweep bool value is flipped from the original implementation.
1327void SkPath::arcTo(SkScalar rx, SkScalar ry, SkScalar angle, SkPath::ArcSize arcLarge,
1328 SkPath::Direction arcSweep, SkScalar x, SkScalar y) {
caryclarkf1d41512016-02-09 10:30:22 -08001329 this->injectMoveToIfNeeded();
caryclark55d49052016-01-23 05:07:04 -08001330 SkPoint srcPts[2];
1331 this->getLastPt(&srcPts[0]);
1332 // If rx = 0 or ry = 0 then this arc is treated as a straight line segment (a "lineto")
1333 // joining the endpoints.
1334 // http://www.w3.org/TR/SVG/implnote.html#ArcOutOfRangeParameters
1335 if (!rx || !ry) {
caryclarkfc752532016-01-25 05:39:04 -08001336 this->lineTo(x, y);
caryclark55d49052016-01-23 05:07:04 -08001337 return;
1338 }
1339 // If the current point and target point for the arc are identical, it should be treated as a
1340 // zero length path. This ensures continuity in animations.
1341 srcPts[1].set(x, y);
1342 if (srcPts[0] == srcPts[1]) {
caryclarkfc752532016-01-25 05:39:04 -08001343 this->lineTo(x, y);
caryclark55d49052016-01-23 05:07:04 -08001344 return;
1345 }
1346 rx = SkScalarAbs(rx);
1347 ry = SkScalarAbs(ry);
1348 SkVector midPointDistance = srcPts[0] - srcPts[1];
1349 midPointDistance *= 0.5f;
1350
1351 SkMatrix pointTransform;
1352 pointTransform.setRotate(-angle);
1353
1354 SkPoint transformedMidPoint;
1355 pointTransform.mapPoints(&transformedMidPoint, &midPointDistance, 1);
1356 SkScalar squareRx = rx * rx;
1357 SkScalar squareRy = ry * ry;
1358 SkScalar squareX = transformedMidPoint.fX * transformedMidPoint.fX;
1359 SkScalar squareY = transformedMidPoint.fY * transformedMidPoint.fY;
1360
1361 // Check if the radii are big enough to draw the arc, scale radii if not.
1362 // http://www.w3.org/TR/SVG/implnote.html#ArcCorrectionOutOfRangeRadii
1363 SkScalar radiiScale = squareX / squareRx + squareY / squareRy;
1364 if (radiiScale > 1) {
1365 radiiScale = SkScalarSqrt(radiiScale);
1366 rx *= radiiScale;
1367 ry *= radiiScale;
1368 }
1369
1370 pointTransform.setScale(1 / rx, 1 / ry);
1371 pointTransform.preRotate(-angle);
1372
1373 SkPoint unitPts[2];
1374 pointTransform.mapPoints(unitPts, srcPts, (int) SK_ARRAY_COUNT(unitPts));
1375 SkVector delta = unitPts[1] - unitPts[0];
1376
1377 SkScalar d = delta.fX * delta.fX + delta.fY * delta.fY;
1378 SkScalar scaleFactorSquared = SkTMax(1 / d - 0.25f, 0.f);
1379
1380 SkScalar scaleFactor = SkScalarSqrt(scaleFactorSquared);
1381 if (SkToBool(arcSweep) != SkToBool(arcLarge)) { // flipped from the original implementation
1382 scaleFactor = -scaleFactor;
1383 }
1384 delta.scale(scaleFactor);
1385 SkPoint centerPoint = unitPts[0] + unitPts[1];
1386 centerPoint *= 0.5f;
1387 centerPoint.offset(-delta.fY, delta.fX);
1388 unitPts[0] -= centerPoint;
1389 unitPts[1] -= centerPoint;
1390 SkScalar theta1 = SkScalarATan2(unitPts[0].fY, unitPts[0].fX);
1391 SkScalar theta2 = SkScalarATan2(unitPts[1].fY, unitPts[1].fX);
1392 SkScalar thetaArc = theta2 - theta1;
1393 if (thetaArc < 0 && !arcSweep) { // arcSweep flipped from the original implementation
1394 thetaArc += SK_ScalarPI * 2;
1395 } else if (thetaArc > 0 && arcSweep) { // arcSweep flipped from the original implementation
1396 thetaArc -= SK_ScalarPI * 2;
1397 }
1398 pointTransform.setRotate(angle);
1399 pointTransform.preScale(rx, ry);
1400
1401 int segments = SkScalarCeilToInt(SkScalarAbs(thetaArc / (SK_ScalarPI / 2)));
1402 SkScalar thetaWidth = thetaArc / segments;
1403 SkScalar t = SkScalarTan(0.5f * thetaWidth);
1404 if (!SkScalarIsFinite(t)) {
1405 return;
1406 }
1407 SkScalar startTheta = theta1;
1408 SkScalar w = SkScalarSqrt(SK_ScalarHalf + SkScalarCos(thetaWidth) * SK_ScalarHalf);
1409 for (int i = 0; i < segments; ++i) {
1410 SkScalar endTheta = startTheta + thetaWidth;
1411 SkScalar cosEndTheta, sinEndTheta = SkScalarSinCos(endTheta, &cosEndTheta);
1412
1413 unitPts[1].set(cosEndTheta, sinEndTheta);
1414 unitPts[1] += centerPoint;
1415 unitPts[0] = unitPts[1];
1416 unitPts[0].offset(t * sinEndTheta, -t * cosEndTheta);
1417 SkPoint mapped[2];
1418 pointTransform.mapPoints(mapped, unitPts, (int) SK_ARRAY_COUNT(unitPts));
1419 this->conicTo(mapped[0], mapped[1], w);
1420 startTheta = endTheta;
1421 }
1422}
1423
1424void SkPath::rArcTo(SkScalar rx, SkScalar ry, SkScalar xAxisRotate, SkPath::ArcSize largeArc,
1425 SkPath::Direction sweep, SkScalar dx, SkScalar dy) {
1426 SkPoint currentPoint;
1427 this->getLastPt(&currentPoint);
1428 this->arcTo(rx, ry, xAxisRotate, largeArc, sweep, currentPoint.fX + dx, currentPoint.fY + dy);
1429}
1430
robertphillips@google.com1cc385b2013-10-17 12:17:27 +00001431void SkPath::addArc(const SkRect& oval, SkScalar startAngle, SkScalar sweepAngle) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001432 if (oval.isEmpty() || 0 == sweepAngle) {
1433 return;
1434 }
1435
1436 const SkScalar kFullCircleAngle = SkIntToScalar(360);
1437
1438 if (sweepAngle >= kFullCircleAngle || sweepAngle <= -kFullCircleAngle) {
bsalomon1978ce22016-05-31 10:42:16 -07001439 // We can treat the arc as an oval if it begins at one of our legal starting positions.
1440 // See SkPath::addOval() docs.
1441 SkScalar startOver90 = startAngle / 90.f;
1442 SkScalar startOver90I = SkScalarRoundToScalar(startOver90);
1443 SkScalar error = startOver90 - startOver90I;
1444 if (SkScalarNearlyEqual(error, 0)) {
1445 // Index 1 is at startAngle == 0.
1446 SkScalar startIndex = std::fmod(startOver90I + 1.f, 4.f);
1447 startIndex = startIndex < 0 ? startIndex + 4.f : startIndex;
1448 this->addOval(oval, sweepAngle > 0 ? kCW_Direction : kCCW_Direction,
1449 (unsigned) startIndex);
1450 return;
1451 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001452 }
bsalomon1978ce22016-05-31 10:42:16 -07001453 this->arcTo(oval, startAngle, sweepAngle, true);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001454}
1455
1456/*
1457 Need to handle the case when the angle is sharp, and our computed end-points
1458 for the arc go behind pt1 and/or p2...
1459*/
reedc7789042015-01-29 12:59:11 -08001460void SkPath::arcTo(SkScalar x1, SkScalar y1, SkScalar x2, SkScalar y2, SkScalar radius) {
reeda8b326c2014-12-09 11:50:32 -08001461 if (radius == 0) {
1462 this->lineTo(x1, y1);
1463 return;
1464 }
1465
1466 SkVector before, after;
reed@google.comabf15c12011-01-18 20:35:51 +00001467
reed@android.com8a1c16f2008-12-17 15:59:43 +00001468 // need to know our prev pt so we can construct tangent vectors
1469 {
1470 SkPoint start;
1471 this->getLastPt(&start);
senorblanco@chromium.org60eaa392010-10-13 18:47:00 +00001472 // Handle degenerate cases by adding a line to the first point and
1473 // bailing out.
reed@android.com8a1c16f2008-12-17 15:59:43 +00001474 before.setNormalize(x1 - start.fX, y1 - start.fY);
1475 after.setNormalize(x2 - x1, y2 - y1);
1476 }
reed@google.comabf15c12011-01-18 20:35:51 +00001477
reed@android.com8a1c16f2008-12-17 15:59:43 +00001478 SkScalar cosh = SkPoint::DotProduct(before, after);
1479 SkScalar sinh = SkPoint::CrossProduct(before, after);
1480
1481 if (SkScalarNearlyZero(sinh)) { // angle is too tight
senorblanco@chromium.org60eaa392010-10-13 18:47:00 +00001482 this->lineTo(x1, y1);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001483 return;
1484 }
reed@google.comabf15c12011-01-18 20:35:51 +00001485
caryclark88651ae2016-01-20 11:55:11 -08001486 SkScalar dist = SkScalarAbs(SkScalarMulDiv(radius, SK_Scalar1 - cosh, sinh));
reed@android.com8a1c16f2008-12-17 15:59:43 +00001487
1488 SkScalar xx = x1 - SkScalarMul(dist, before.fX);
1489 SkScalar yy = y1 - SkScalarMul(dist, before.fY);
caryclark88651ae2016-01-20 11:55:11 -08001490 after.setLength(dist);
1491 this->lineTo(xx, yy);
1492 SkScalar weight = SkScalarSqrt(SK_ScalarHalf + cosh * SK_ScalarHalf);
1493 this->conicTo(x1, y1, x1 + after.fX, y1 + after.fY, weight);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001494}
1495
1496///////////////////////////////////////////////////////////////////////////////
1497
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001498void SkPath::addPath(const SkPath& path, SkScalar dx, SkScalar dy, AddPathMode mode) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001499 SkMatrix matrix;
1500
1501 matrix.setTranslate(dx, dy);
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001502 this->addPath(path, matrix, mode);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001503}
1504
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001505void SkPath::addPath(const SkPath& path, const SkMatrix& matrix, AddPathMode mode) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001506 SkPathRef::Editor(&fPathRef, path.countVerbs(), path.countPoints());
reed@android.com8a1c16f2008-12-17 15:59:43 +00001507
schenney@chromium.org6630d8d2012-01-04 21:05:51 +00001508 RawIter iter(path);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001509 SkPoint pts[4];
1510 Verb verb;
1511
1512 SkMatrix::MapPtsProc proc = matrix.getMapPtsProc();
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001513 bool firstVerb = true;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001514 while ((verb = iter.next(pts)) != kDone_Verb) {
1515 switch (verb) {
1516 case kMove_Verb:
1517 proc(matrix, &pts[0], &pts[0], 1);
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001518 if (firstVerb && mode == kExtend_AddPathMode && !isEmpty()) {
1519 injectMoveToIfNeeded(); // In case last contour is closed
1520 this->lineTo(pts[0]);
1521 } else {
1522 this->moveTo(pts[0]);
1523 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001524 break;
1525 case kLine_Verb:
1526 proc(matrix, &pts[1], &pts[1], 1);
1527 this->lineTo(pts[1]);
1528 break;
1529 case kQuad_Verb:
1530 proc(matrix, &pts[1], &pts[1], 2);
1531 this->quadTo(pts[1], pts[2]);
1532 break;
reed@google.com277c3f82013-05-31 15:17:50 +00001533 case kConic_Verb:
1534 proc(matrix, &pts[1], &pts[1], 2);
1535 this->conicTo(pts[1], pts[2], iter.conicWeight());
1536 break;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001537 case kCubic_Verb:
1538 proc(matrix, &pts[1], &pts[1], 3);
1539 this->cubicTo(pts[1], pts[2], pts[3]);
1540 break;
1541 case kClose_Verb:
1542 this->close();
1543 break;
1544 default:
tomhudson@google.com0c00f212011-12-28 14:59:50 +00001545 SkDEBUGFAIL("unknown verb");
reed@android.com8a1c16f2008-12-17 15:59:43 +00001546 }
commit-bot@chromium.org14747e52014-02-11 21:16:29 +00001547 firstVerb = false;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001548 }
1549}
1550
1551///////////////////////////////////////////////////////////////////////////////
1552
reed@google.com277c3f82013-05-31 15:17:50 +00001553static int pts_in_verb(unsigned verb) {
1554 static const uint8_t gPtsInVerb[] = {
1555 1, // kMove
1556 1, // kLine
1557 2, // kQuad
1558 2, // kConic
1559 3, // kCubic
1560 0, // kClose
1561 0 // kDone
1562 };
1563
1564 SkASSERT(verb < SK_ARRAY_COUNT(gPtsInVerb));
1565 return gPtsInVerb[verb];
1566}
reed@android.com8a1c16f2008-12-17 15:59:43 +00001567
reed@android.com8a1c16f2008-12-17 15:59:43 +00001568// ignore the last point of the 1st contour
1569void SkPath::reversePathTo(const SkPath& path) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001570 int i, vcount = path.fPathRef->countVerbs();
1571 // exit early if the path is empty, or just has a moveTo.
1572 if (vcount < 2) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001573 return;
1574 }
1575
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001576 SkPathRef::Editor(&fPathRef, vcount, path.countPoints());
reed@android.com8a1c16f2008-12-17 15:59:43 +00001577
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001578 const uint8_t* verbs = path.fPathRef->verbs();
1579 const SkPoint* pts = path.fPathRef->points();
reed@google.com277c3f82013-05-31 15:17:50 +00001580 const SkScalar* conicWeights = path.fPathRef->conicWeights();
reed@android.com8a1c16f2008-12-17 15:59:43 +00001581
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001582 SkASSERT(verbs[~0] == kMove_Verb);
1583 for (i = 1; i < vcount; ++i) {
reed@google.com277c3f82013-05-31 15:17:50 +00001584 unsigned v = verbs[~i];
1585 int n = pts_in_verb(v);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001586 if (n == 0) {
1587 break;
1588 }
1589 pts += n;
reed@google.com277c3f82013-05-31 15:17:50 +00001590 conicWeights += (SkPath::kConic_Verb == v);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001591 }
1592
1593 while (--i > 0) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001594 switch (verbs[~i]) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001595 case kLine_Verb:
1596 this->lineTo(pts[-1].fX, pts[-1].fY);
1597 break;
1598 case kQuad_Verb:
1599 this->quadTo(pts[-1].fX, pts[-1].fY, pts[-2].fX, pts[-2].fY);
1600 break;
reed@google.com277c3f82013-05-31 15:17:50 +00001601 case kConic_Verb:
1602 this->conicTo(pts[-1], pts[-2], *--conicWeights);
1603 break;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001604 case kCubic_Verb:
1605 this->cubicTo(pts[-1].fX, pts[-1].fY, pts[-2].fX, pts[-2].fY,
1606 pts[-3].fX, pts[-3].fY);
1607 break;
1608 default:
tomhudson@google.com0c00f212011-12-28 14:59:50 +00001609 SkDEBUGFAIL("bad verb");
reed@android.com8a1c16f2008-12-17 15:59:43 +00001610 break;
1611 }
reed@google.com277c3f82013-05-31 15:17:50 +00001612 pts -= pts_in_verb(verbs[~i]);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001613 }
1614}
1615
reed@google.com63d73742012-01-10 15:33:12 +00001616void SkPath::reverseAddPath(const SkPath& src) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001617 SkPathRef::Editor ed(&fPathRef, src.fPathRef->countPoints(), src.fPathRef->countVerbs());
reed@google.com63d73742012-01-10 15:33:12 +00001618
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001619 const SkPoint* pts = src.fPathRef->pointsEnd();
1620 // we will iterator through src's verbs backwards
1621 const uint8_t* verbs = src.fPathRef->verbsMemBegin(); // points at the last verb
1622 const uint8_t* verbsEnd = src.fPathRef->verbs(); // points just past the first verb
reed@google.com277c3f82013-05-31 15:17:50 +00001623 const SkScalar* conicWeights = src.fPathRef->conicWeightsEnd();
reed@google.com63d73742012-01-10 15:33:12 +00001624
1625 bool needMove = true;
1626 bool needClose = false;
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001627 while (verbs < verbsEnd) {
1628 uint8_t v = *(verbs++);
reed@google.com277c3f82013-05-31 15:17:50 +00001629 int n = pts_in_verb(v);
reed@google.com63d73742012-01-10 15:33:12 +00001630
1631 if (needMove) {
1632 --pts;
1633 this->moveTo(pts->fX, pts->fY);
1634 needMove = false;
1635 }
1636 pts -= n;
1637 switch (v) {
1638 case kMove_Verb:
1639 if (needClose) {
1640 this->close();
1641 needClose = false;
1642 }
1643 needMove = true;
1644 pts += 1; // so we see the point in "if (needMove)" above
1645 break;
1646 case kLine_Verb:
1647 this->lineTo(pts[0]);
1648 break;
1649 case kQuad_Verb:
1650 this->quadTo(pts[1], pts[0]);
1651 break;
reed@google.com277c3f82013-05-31 15:17:50 +00001652 case kConic_Verb:
1653 this->conicTo(pts[1], pts[0], *--conicWeights);
1654 break;
reed@google.com63d73742012-01-10 15:33:12 +00001655 case kCubic_Verb:
1656 this->cubicTo(pts[2], pts[1], pts[0]);
1657 break;
1658 case kClose_Verb:
1659 needClose = true;
1660 break;
1661 default:
mtklein@google.com330313a2013-08-22 15:37:26 +00001662 SkDEBUGFAIL("unexpected verb");
reed@google.com63d73742012-01-10 15:33:12 +00001663 }
1664 }
1665}
1666
reed@android.com8a1c16f2008-12-17 15:59:43 +00001667///////////////////////////////////////////////////////////////////////////////
1668
1669void SkPath::offset(SkScalar dx, SkScalar dy, SkPath* dst) const {
1670 SkMatrix matrix;
1671
1672 matrix.setTranslate(dx, dy);
1673 this->transform(matrix, dst);
1674}
1675
reed@android.com8a1c16f2008-12-17 15:59:43 +00001676static void subdivide_cubic_to(SkPath* path, const SkPoint pts[4],
1677 int level = 2) {
1678 if (--level >= 0) {
1679 SkPoint tmp[7];
1680
1681 SkChopCubicAtHalf(pts, tmp);
1682 subdivide_cubic_to(path, &tmp[0], level);
1683 subdivide_cubic_to(path, &tmp[3], level);
1684 } else {
1685 path->cubicTo(pts[1], pts[2], pts[3]);
1686 }
1687}
1688
1689void SkPath::transform(const SkMatrix& matrix, SkPath* dst) const {
1690 SkDEBUGCODE(this->validate();)
halcanary96fcdcc2015-08-27 07:41:13 -07001691 if (dst == nullptr) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001692 dst = (SkPath*)this;
1693 }
1694
tomhudson@google.com8d430182011-06-06 19:11:19 +00001695 if (matrix.hasPerspective()) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001696 SkPath tmp;
1697 tmp.fFillType = fFillType;
1698
1699 SkPath::Iter iter(*this, false);
1700 SkPoint pts[4];
1701 SkPath::Verb verb;
1702
reed@google.com4a3b7142012-05-16 17:16:46 +00001703 while ((verb = iter.next(pts, false)) != kDone_Verb) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001704 switch (verb) {
1705 case kMove_Verb:
1706 tmp.moveTo(pts[0]);
1707 break;
1708 case kLine_Verb:
1709 tmp.lineTo(pts[1]);
1710 break;
1711 case kQuad_Verb:
reed220f9262014-12-17 08:21:04 -08001712 // promote the quad to a conic
1713 tmp.conicTo(pts[1], pts[2],
1714 SkConic::TransformW(pts, SK_Scalar1, matrix));
reed@android.com8a1c16f2008-12-17 15:59:43 +00001715 break;
reed@google.com277c3f82013-05-31 15:17:50 +00001716 case kConic_Verb:
reed220f9262014-12-17 08:21:04 -08001717 tmp.conicTo(pts[1], pts[2],
1718 SkConic::TransformW(pts, iter.conicWeight(), matrix));
reed@google.com277c3f82013-05-31 15:17:50 +00001719 break;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001720 case kCubic_Verb:
1721 subdivide_cubic_to(&tmp, pts);
1722 break;
1723 case kClose_Verb:
1724 tmp.close();
1725 break;
1726 default:
tomhudson@google.com0c00f212011-12-28 14:59:50 +00001727 SkDEBUGFAIL("unknown verb");
reed@android.com8a1c16f2008-12-17 15:59:43 +00001728 break;
1729 }
1730 }
1731
1732 dst->swap(tmp);
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001733 SkPathRef::Editor ed(&dst->fPathRef);
1734 matrix.mapPoints(ed.points(), ed.pathRef()->countPoints());
reed026beb52015-06-10 14:23:15 -07001735 dst->fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001736 } else {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001737 SkPathRef::CreateTransformedCopy(&dst->fPathRef, *fPathRef.get(), matrix);
1738
reed@android.com8a1c16f2008-12-17 15:59:43 +00001739 if (this != dst) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001740 dst->fFillType = fFillType;
reed@google.com2a6f8ab2011-10-25 18:41:23 +00001741 dst->fConvexity = fConvexity;
jvanverthb3eb6872014-10-24 07:12:51 -07001742 dst->fIsVolatile = fIsVolatile;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001743 }
bsalomon@google.com6aa29652012-04-18 13:29:52 +00001744
reed026beb52015-06-10 14:23:15 -07001745 if (SkPathPriv::kUnknown_FirstDirection == fFirstDirection) {
1746 dst->fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001747 } else {
1748 SkScalar det2x2 =
1749 SkScalarMul(matrix.get(SkMatrix::kMScaleX), matrix.get(SkMatrix::kMScaleY)) -
1750 SkScalarMul(matrix.get(SkMatrix::kMSkewX), matrix.get(SkMatrix::kMSkewY));
1751 if (det2x2 < 0) {
herb9f4dbca2015-09-28 11:05:47 -07001752 dst->fFirstDirection = SkPathPriv::OppositeFirstDirection(
1753 (SkPathPriv::FirstDirection)fFirstDirection.load());
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001754 } else if (det2x2 > 0) {
herb9f4dbca2015-09-28 11:05:47 -07001755 dst->fFirstDirection = fFirstDirection.load();
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001756 } else {
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00001757 dst->fConvexity = kUnknown_Convexity;
reed026beb52015-06-10 14:23:15 -07001758 dst->fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00001759 }
1760 }
1761
reed@android.com8a1c16f2008-12-17 15:59:43 +00001762 SkDEBUGCODE(dst->validate();)
1763 }
1764}
1765
reed@android.com8a1c16f2008-12-17 15:59:43 +00001766///////////////////////////////////////////////////////////////////////////////
1767///////////////////////////////////////////////////////////////////////////////
1768
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001769enum SegmentState {
schenney@chromium.orgfde6b412012-01-19 15:31:01 +00001770 kEmptyContour_SegmentState, // The current contour is empty. We may be
1771 // starting processing or we may have just
1772 // closed a contour.
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001773 kAfterMove_SegmentState, // We have seen a move, but nothing else.
1774 kAfterPrimitive_SegmentState // We have seen a primitive but not yet
1775 // closed the path. Also the initial state.
reed@android.com8a1c16f2008-12-17 15:59:43 +00001776};
1777
1778SkPath::Iter::Iter() {
1779#ifdef SK_DEBUG
halcanary96fcdcc2015-08-27 07:41:13 -07001780 fPts = nullptr;
1781 fConicWeights = nullptr;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001782 fMoveTo.fX = fMoveTo.fY = fLastPt.fX = fLastPt.fY = 0;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001783 fForceClose = fCloseLine = false;
schenney@chromium.orgfde6b412012-01-19 15:31:01 +00001784 fSegmentState = kEmptyContour_SegmentState;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001785#endif
1786 // need to init enough to make next() harmlessly return kDone_Verb
halcanary96fcdcc2015-08-27 07:41:13 -07001787 fVerbs = nullptr;
1788 fVerbStop = nullptr;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001789 fNeedClose = false;
1790}
1791
1792SkPath::Iter::Iter(const SkPath& path, bool forceClose) {
1793 this->setPath(path, forceClose);
1794}
1795
1796void SkPath::Iter::setPath(const SkPath& path, bool forceClose) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001797 fPts = path.fPathRef->points();
1798 fVerbs = path.fPathRef->verbs();
1799 fVerbStop = path.fPathRef->verbsMemBegin();
caryclark69424422016-10-04 13:06:17 -07001800 fConicWeights = path.fPathRef->conicWeights();
1801 if (fConicWeights) {
1802 fConicWeights -= 1; // begin one behind
1803 }
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001804 fLastPt.fX = fLastPt.fY = 0;
schenney@chromium.org72785c42011-12-29 21:03:28 +00001805 fMoveTo.fX = fMoveTo.fY = 0;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001806 fForceClose = SkToU8(forceClose);
1807 fNeedClose = false;
schenney@chromium.orgfde6b412012-01-19 15:31:01 +00001808 fSegmentState = kEmptyContour_SegmentState;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001809}
1810
1811bool SkPath::Iter::isClosedContour() const {
halcanary96fcdcc2015-08-27 07:41:13 -07001812 if (fVerbs == nullptr || fVerbs == fVerbStop) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001813 return false;
1814 }
1815 if (fForceClose) {
1816 return true;
1817 }
1818
1819 const uint8_t* verbs = fVerbs;
1820 const uint8_t* stop = fVerbStop;
reed@google.comabf15c12011-01-18 20:35:51 +00001821
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001822 if (kMove_Verb == *(verbs - 1)) {
1823 verbs -= 1; // skip the initial moveto
reed@android.com8a1c16f2008-12-17 15:59:43 +00001824 }
1825
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001826 while (verbs > stop) {
1827 // verbs points one beyond the current verb, decrement first.
1828 unsigned v = *(--verbs);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001829 if (kMove_Verb == v) {
1830 break;
1831 }
1832 if (kClose_Verb == v) {
1833 return true;
1834 }
1835 }
1836 return false;
1837}
1838
1839SkPath::Verb SkPath::Iter::autoClose(SkPoint pts[2]) {
reed@google.com9e25dbf2012-05-15 17:05:38 +00001840 SkASSERT(pts);
reed@android.com8a1c16f2008-12-17 15:59:43 +00001841 if (fLastPt != fMoveTo) {
reed@android.com4ddfe352009-03-20 12:16:09 +00001842 // A special case: if both points are NaN, SkPoint::operation== returns
1843 // false, but the iterator expects that they are treated as the same.
1844 // (consider SkPoint is a 2-dimension float point).
reed@android.com9da1ae32009-07-22 17:06:15 +00001845 if (SkScalarIsNaN(fLastPt.fX) || SkScalarIsNaN(fLastPt.fY) ||
1846 SkScalarIsNaN(fMoveTo.fX) || SkScalarIsNaN(fMoveTo.fY)) {
reed@android.com4ddfe352009-03-20 12:16:09 +00001847 return kClose_Verb;
1848 }
1849
reed@google.com9e25dbf2012-05-15 17:05:38 +00001850 pts[0] = fLastPt;
1851 pts[1] = fMoveTo;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001852 fLastPt = fMoveTo;
1853 fCloseLine = true;
1854 return kLine_Verb;
bsalomon@google.comb3b8dfa2011-07-13 17:44:36 +00001855 } else {
1856 pts[0] = fMoveTo;
1857 return kClose_Verb;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001858 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001859}
1860
reed@google.com9e25dbf2012-05-15 17:05:38 +00001861const SkPoint& SkPath::Iter::cons_moveTo() {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001862 if (fSegmentState == kAfterMove_SegmentState) {
1863 // Set the first return pt to the move pt
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001864 fSegmentState = kAfterPrimitive_SegmentState;
reed@google.com9e25dbf2012-05-15 17:05:38 +00001865 return fMoveTo;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001866 } else {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001867 SkASSERT(fSegmentState == kAfterPrimitive_SegmentState);
1868 // Set the first return pt to the last pt of the previous primitive.
reed@google.com9e25dbf2012-05-15 17:05:38 +00001869 return fPts[-1];
reed@android.com8a1c16f2008-12-17 15:59:43 +00001870 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00001871}
1872
caryclarke8c56662015-07-14 11:19:26 -07001873void SkPath::Iter::consumeDegenerateSegments(bool exact) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001874 // We need to step over anything that will not move the current draw point
1875 // forward before the next move is seen
1876 const uint8_t* lastMoveVerb = 0;
1877 const SkPoint* lastMovePt = 0;
halcanary96fcdcc2015-08-27 07:41:13 -07001878 const SkScalar* lastMoveWeight = nullptr;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001879 SkPoint lastPt = fLastPt;
1880 while (fVerbs != fVerbStop) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001881 unsigned verb = *(fVerbs - 1); // fVerbs is one beyond the current verb
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001882 switch (verb) {
1883 case kMove_Verb:
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001884 // Keep a record of this most recent move
1885 lastMoveVerb = fVerbs;
1886 lastMovePt = fPts;
robertphillipsb8de1f42015-02-23 11:17:01 -08001887 lastMoveWeight = fConicWeights;
schenney@chromium.orgb0af6da2011-12-21 20:43:13 +00001888 lastPt = fPts[0];
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001889 fVerbs--;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001890 fPts++;
1891 break;
1892
1893 case kClose_Verb:
schenney@chromium.org7e963602012-06-13 17:05:43 +00001894 // A close when we are in a segment is always valid except when it
1895 // follows a move which follows a segment.
1896 if (fSegmentState == kAfterPrimitive_SegmentState && !lastMoveVerb) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001897 return;
1898 }
1899 // A close at any other time must be ignored
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001900 fVerbs--;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001901 break;
1902
1903 case kLine_Verb:
caryclarke8c56662015-07-14 11:19:26 -07001904 if (!IsLineDegenerate(lastPt, fPts[0], exact)) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001905 if (lastMoveVerb) {
1906 fVerbs = lastMoveVerb;
1907 fPts = lastMovePt;
robertphillipsb8de1f42015-02-23 11:17:01 -08001908 fConicWeights = lastMoveWeight;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001909 return;
1910 }
1911 return;
1912 }
1913 // Ignore this line and continue
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001914 fVerbs--;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001915 fPts++;
1916 break;
1917
reed@google.com277c3f82013-05-31 15:17:50 +00001918 case kConic_Verb:
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001919 case kQuad_Verb:
caryclarke8c56662015-07-14 11:19:26 -07001920 if (!IsQuadDegenerate(lastPt, fPts[0], fPts[1], exact)) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001921 if (lastMoveVerb) {
1922 fVerbs = lastMoveVerb;
1923 fPts = lastMovePt;
robertphillipsb8de1f42015-02-23 11:17:01 -08001924 fConicWeights = lastMoveWeight;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001925 return;
1926 }
1927 return;
1928 }
1929 // Ignore this line and continue
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001930 fVerbs--;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001931 fPts += 2;
reed@google.com277c3f82013-05-31 15:17:50 +00001932 fConicWeights += (kConic_Verb == verb);
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001933 break;
1934
1935 case kCubic_Verb:
caryclarke8c56662015-07-14 11:19:26 -07001936 if (!IsCubicDegenerate(lastPt, fPts[0], fPts[1], fPts[2], exact)) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001937 if (lastMoveVerb) {
1938 fVerbs = lastMoveVerb;
1939 fPts = lastMovePt;
robertphillipsb8de1f42015-02-23 11:17:01 -08001940 fConicWeights = lastMoveWeight;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001941 return;
1942 }
1943 return;
1944 }
1945 // Ignore this line and continue
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001946 fVerbs--;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001947 fPts += 3;
1948 break;
schenney@chromium.orgb0af6da2011-12-21 20:43:13 +00001949
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001950 default:
tomhudson@google.com0c00f212011-12-28 14:59:50 +00001951 SkDEBUGFAIL("Should never see kDone_Verb");
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001952 }
1953 }
1954}
1955
reed@google.com4a3b7142012-05-16 17:16:46 +00001956SkPath::Verb SkPath::Iter::doNext(SkPoint ptsParam[4]) {
reed@google.com9e25dbf2012-05-15 17:05:38 +00001957 SkASSERT(ptsParam);
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001958
reed@android.com8a1c16f2008-12-17 15:59:43 +00001959 if (fVerbs == fVerbStop) {
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001960 // Close the curve if requested and if there is some curve to close
1961 if (fNeedClose && fSegmentState == kAfterPrimitive_SegmentState) {
reed@google.com9e25dbf2012-05-15 17:05:38 +00001962 if (kLine_Verb == this->autoClose(ptsParam)) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00001963 return kLine_Verb;
1964 }
1965 fNeedClose = false;
1966 return kClose_Verb;
1967 }
1968 return kDone_Verb;
1969 }
1970
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001971 // fVerbs is one beyond the current verb, decrement first
1972 unsigned verb = *(--fVerbs);
reed@google.com9e25dbf2012-05-15 17:05:38 +00001973 const SkPoint* SK_RESTRICT srcPts = fPts;
1974 SkPoint* SK_RESTRICT pts = ptsParam;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001975
1976 switch (verb) {
1977 case kMove_Verb:
1978 if (fNeedClose) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00001979 fVerbs++; // move back one verb
reed@android.com8a1c16f2008-12-17 15:59:43 +00001980 verb = this->autoClose(pts);
1981 if (verb == kClose_Verb) {
1982 fNeedClose = false;
1983 }
1984 return (Verb)verb;
1985 }
1986 if (fVerbs == fVerbStop) { // might be a trailing moveto
1987 return kDone_Verb;
1988 }
schenney@chromium.orgb0af6da2011-12-21 20:43:13 +00001989 fMoveTo = *srcPts;
reed@google.com9e25dbf2012-05-15 17:05:38 +00001990 pts[0] = *srcPts;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001991 srcPts += 1;
schenney@chromium.orgb0af6da2011-12-21 20:43:13 +00001992 fSegmentState = kAfterMove_SegmentState;
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00001993 fLastPt = fMoveTo;
reed@android.com8a1c16f2008-12-17 15:59:43 +00001994 fNeedClose = fForceClose;
1995 break;
1996 case kLine_Verb:
reed@google.com9e25dbf2012-05-15 17:05:38 +00001997 pts[0] = this->cons_moveTo();
1998 pts[1] = srcPts[0];
reed@android.com8a1c16f2008-12-17 15:59:43 +00001999 fLastPt = srcPts[0];
2000 fCloseLine = false;
2001 srcPts += 1;
2002 break;
reed@google.com277c3f82013-05-31 15:17:50 +00002003 case kConic_Verb:
2004 fConicWeights += 1;
2005 // fall-through
reed@android.com8a1c16f2008-12-17 15:59:43 +00002006 case kQuad_Verb:
reed@google.com9e25dbf2012-05-15 17:05:38 +00002007 pts[0] = this->cons_moveTo();
2008 memcpy(&pts[1], srcPts, 2 * sizeof(SkPoint));
reed@android.com8a1c16f2008-12-17 15:59:43 +00002009 fLastPt = srcPts[1];
2010 srcPts += 2;
2011 break;
2012 case kCubic_Verb:
reed@google.com9e25dbf2012-05-15 17:05:38 +00002013 pts[0] = this->cons_moveTo();
2014 memcpy(&pts[1], srcPts, 3 * sizeof(SkPoint));
reed@android.com8a1c16f2008-12-17 15:59:43 +00002015 fLastPt = srcPts[2];
2016 srcPts += 3;
2017 break;
2018 case kClose_Verb:
2019 verb = this->autoClose(pts);
2020 if (verb == kLine_Verb) {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002021 fVerbs++; // move back one verb
reed@android.com8a1c16f2008-12-17 15:59:43 +00002022 } else {
2023 fNeedClose = false;
schenney@chromium.orgfde6b412012-01-19 15:31:01 +00002024 fSegmentState = kEmptyContour_SegmentState;
reed@android.com8a1c16f2008-12-17 15:59:43 +00002025 }
schenney@chromium.org4da06ab2011-12-20 15:14:18 +00002026 fLastPt = fMoveTo;
reed@android.com8a1c16f2008-12-17 15:59:43 +00002027 break;
2028 }
2029 fPts = srcPts;
2030 return (Verb)verb;
2031}
2032
2033///////////////////////////////////////////////////////////////////////////////
2034
reed@android.com8a1c16f2008-12-17 15:59:43 +00002035/*
djsollen@google.com94e75ee2012-06-08 18:30:46 +00002036 Format in compressed buffer: [ptCount, verbCount, pts[], verbs[]]
reed@android.com8a1c16f2008-12-17 15:59:43 +00002037*/
2038
commit-bot@chromium.org4faa8692013-11-05 15:46:56 +00002039size_t SkPath::writeToMemory(void* storage) const {
reed@android.com8a1c16f2008-12-17 15:59:43 +00002040 SkDEBUGCODE(this->validate();)
2041
halcanary96fcdcc2015-08-27 07:41:13 -07002042 if (nullptr == storage) {
caryclark69006412016-02-17 12:16:27 -08002043 const int byteCount = sizeof(int32_t) * 2 + fPathRef->writeSize();
djsollen@google.com94e75ee2012-06-08 18:30:46 +00002044 return SkAlign4(byteCount);
2045 }
2046
2047 SkWBuffer buffer(storage);
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002048
robertphillips@google.com466310d2013-12-03 16:43:54 +00002049 int32_t packed = (fConvexity << kConvexity_SerializationShift) |
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002050 (fFillType << kFillType_SerializationShift) |
reed026beb52015-06-10 14:23:15 -07002051 (fFirstDirection << kDirection_SerializationShift) |
reed8f086022015-06-11 14:22:19 -07002052 (fIsVolatile << kIsVolatile_SerializationShift) |
2053 kCurrent_Version;
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002054
robertphillips@google.com2972bb52012-08-07 17:32:51 +00002055 buffer.write32(packed);
caryclark69006412016-02-17 12:16:27 -08002056 buffer.write32(fLastMoveToIndex);
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002057
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002058 fPathRef->writeToBuffer(&buffer);
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002059
djsollen@google.com94e75ee2012-06-08 18:30:46 +00002060 buffer.padToAlign4();
commit-bot@chromium.org4faa8692013-11-05 15:46:56 +00002061 return buffer.pos();
reed@android.com8a1c16f2008-12-17 15:59:43 +00002062}
2063
commit-bot@chromium.org4faa8692013-11-05 15:46:56 +00002064size_t SkPath::readFromMemory(const void* storage, size_t length) {
2065 SkRBufferWithSizeCheck buffer(storage, length);
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002066
commit-bot@chromium.org8f457e32013-11-08 19:22:57 +00002067 int32_t packed;
2068 if (!buffer.readS32(&packed)) {
2069 return 0;
2070 }
2071
reed8f086022015-06-11 14:22:19 -07002072 unsigned version = packed & 0xFF;
caryclark69006412016-02-17 12:16:27 -08002073 if (version >= kPathPrivLastMoveToIndex_Version && !buffer.readS32(&fLastMoveToIndex)) {
2074 return 0;
2075 }
mtklein1b249332015-07-07 12:21:21 -07002076
robertphillips@google.com01ec2eb2012-08-17 10:58:49 +00002077 fConvexity = (packed >> kConvexity_SerializationShift) & 0xFF;
robertphillips7070a3c2016-06-28 04:54:54 -07002078 fFillType = (packed >> kFillType_SerializationShift) & 0x3;
reed8f086022015-06-11 14:22:19 -07002079 uint8_t dir = (packed >> kDirection_SerializationShift) & 0x3;
jvanverthb3eb6872014-10-24 07:12:51 -07002080 fIsVolatile = (packed >> kIsVolatile_SerializationShift) & 0x1;
commit-bot@chromium.orgfed2ab62014-01-23 15:16:05 +00002081 SkPathRef* pathRef = SkPathRef::CreateFromBuffer(&buffer);
ajumaf8aec582016-01-13 13:46:31 -08002082 if (!pathRef) {
2083 return 0;
2084 }
2085
2086 fPathRef.reset(pathRef);
2087 SkDEBUGCODE(this->validate();)
2088 buffer.skipToAlign4();
reed@google.comabf15c12011-01-18 20:35:51 +00002089
reed8f086022015-06-11 14:22:19 -07002090 // compatibility check
2091 if (version < kPathPrivFirstDirection_Version) {
2092 switch (dir) { // old values
2093 case 0:
2094 fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
2095 break;
2096 case 1:
2097 fFirstDirection = SkPathPriv::kCW_FirstDirection;
2098 break;
2099 case 2:
2100 fFirstDirection = SkPathPriv::kCCW_FirstDirection;
2101 break;
2102 default:
2103 SkASSERT(false);
2104 }
2105 } else {
2106 fFirstDirection = dir;
2107 }
2108
ajumaf8aec582016-01-13 13:46:31 -08002109 return buffer.pos();
reed@android.com8a1c16f2008-12-17 15:59:43 +00002110}
2111
2112///////////////////////////////////////////////////////////////////////////////
reed@android.com8a1c16f2008-12-17 15:59:43 +00002113
reede05fed02014-12-15 07:59:53 -08002114#include "SkStringUtils.h"
caryclark66a5d8b2014-06-24 08:30:15 -07002115#include "SkStream.h"
reed@google.com51bbe752013-01-17 22:07:50 +00002116
reed@google.com51bbe752013-01-17 22:07:50 +00002117static void append_params(SkString* str, const char label[], const SkPoint pts[],
reede05fed02014-12-15 07:59:53 -08002118 int count, SkScalarAsStringType strType, SkScalar conicWeight = -1) {
reed@google.com51bbe752013-01-17 22:07:50 +00002119 str->append(label);
2120 str->append("(");
skia.committer@gmail.com15dd3002013-01-18 07:07:28 +00002121
reed@google.com51bbe752013-01-17 22:07:50 +00002122 const SkScalar* values = &pts[0].fX;
2123 count *= 2;
2124
2125 for (int i = 0; i < count; ++i) {
reede05fed02014-12-15 07:59:53 -08002126 SkAppendScalar(str, values[i], strType);
reed@google.com51bbe752013-01-17 22:07:50 +00002127 if (i < count - 1) {
2128 str->append(", ");
2129 }
2130 }
reed@google.com277c3f82013-05-31 15:17:50 +00002131 if (conicWeight >= 0) {
2132 str->append(", ");
reede05fed02014-12-15 07:59:53 -08002133 SkAppendScalar(str, conicWeight, strType);
reed@google.com277c3f82013-05-31 15:17:50 +00002134 }
caryclark08fa28c2014-10-23 13:08:56 -07002135 str->append(");");
reede05fed02014-12-15 07:59:53 -08002136 if (kHex_SkScalarAsStringType == strType) {
caryclark08fa28c2014-10-23 13:08:56 -07002137 str->append(" // ");
2138 for (int i = 0; i < count; ++i) {
reede05fed02014-12-15 07:59:53 -08002139 SkAppendScalarDec(str, values[i]);
caryclark08fa28c2014-10-23 13:08:56 -07002140 if (i < count - 1) {
2141 str->append(", ");
2142 }
2143 }
2144 if (conicWeight >= 0) {
2145 str->append(", ");
reede05fed02014-12-15 07:59:53 -08002146 SkAppendScalarDec(str, conicWeight);
caryclark08fa28c2014-10-23 13:08:56 -07002147 }
2148 }
2149 str->append("\n");
reed@google.com51bbe752013-01-17 22:07:50 +00002150}
2151
caryclarke9562592014-09-15 09:26:09 -07002152void SkPath::dump(SkWStream* wStream, bool forceClose, bool dumpAsHex) const {
reede05fed02014-12-15 07:59:53 -08002153 SkScalarAsStringType asType = dumpAsHex ? kHex_SkScalarAsStringType : kDec_SkScalarAsStringType;
reed@android.com8a1c16f2008-12-17 15:59:43 +00002154 Iter iter(*this, forceClose);
2155 SkPoint pts[4];
2156 Verb verb;
2157
caryclark66a5d8b2014-06-24 08:30:15 -07002158 if (!wStream) {
2159 SkDebugf("path: forceClose=%s\n", forceClose ? "true" : "false");
2160 }
reed@google.com51bbe752013-01-17 22:07:50 +00002161 SkString builder;
2162
reed@google.com4a3b7142012-05-16 17:16:46 +00002163 while ((verb = iter.next(pts, false)) != kDone_Verb) {
reed@android.com8a1c16f2008-12-17 15:59:43 +00002164 switch (verb) {
2165 case kMove_Verb:
reede05fed02014-12-15 07:59:53 -08002166 append_params(&builder, "path.moveTo", &pts[0], 1, asType);
reed@android.com8a1c16f2008-12-17 15:59:43 +00002167 break;
2168 case kLine_Verb:
reede05fed02014-12-15 07:59:53 -08002169 append_params(&builder, "path.lineTo", &pts[1], 1, asType);
reed@android.com8a1c16f2008-12-17 15:59:43 +00002170 break;
2171 case kQuad_Verb:
reede05fed02014-12-15 07:59:53 -08002172 append_params(&builder, "path.quadTo", &pts[1], 2, asType);
reed@android.com8a1c16f2008-12-17 15:59:43 +00002173 break;
reed@google.com277c3f82013-05-31 15:17:50 +00002174 case kConic_Verb:
reede05fed02014-12-15 07:59:53 -08002175 append_params(&builder, "path.conicTo", &pts[1], 2, asType, iter.conicWeight());
reed@google.com277c3f82013-05-31 15:17:50 +00002176 break;
reed@android.com8a1c16f2008-12-17 15:59:43 +00002177 case kCubic_Verb:
reede05fed02014-12-15 07:59:53 -08002178 append_params(&builder, "path.cubicTo", &pts[1], 3, asType);
reed@android.com8a1c16f2008-12-17 15:59:43 +00002179 break;
2180 case kClose_Verb:
caryclark66a5d8b2014-06-24 08:30:15 -07002181 builder.append("path.close();\n");
reed@android.com8a1c16f2008-12-17 15:59:43 +00002182 break;
2183 default:
2184 SkDebugf(" path: UNKNOWN VERB %d, aborting dump...\n", verb);
2185 verb = kDone_Verb; // stop the loop
2186 break;
2187 }
caryclark1049f122015-04-20 08:31:59 -07002188 if (!wStream && builder.size()) {
2189 SkDebugf("%s", builder.c_str());
2190 builder.reset();
2191 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00002192 }
caryclark66a5d8b2014-06-24 08:30:15 -07002193 if (wStream) {
2194 wStream->writeText(builder.c_str());
caryclark66a5d8b2014-06-24 08:30:15 -07002195 }
reed@android.com8a1c16f2008-12-17 15:59:43 +00002196}
2197
reed@android.come522ca52009-11-23 20:10:41 +00002198void SkPath::dump() const {
halcanary96fcdcc2015-08-27 07:41:13 -07002199 this->dump(nullptr, false, false);
caryclarke9562592014-09-15 09:26:09 -07002200}
2201
2202void SkPath::dumpHex() const {
halcanary96fcdcc2015-08-27 07:41:13 -07002203 this->dump(nullptr, false, true);
reed@android.come522ca52009-11-23 20:10:41 +00002204}
2205
2206#ifdef SK_DEBUG
2207void SkPath::validate() const {
reed@android.come522ca52009-11-23 20:10:41 +00002208 SkASSERT((fFillType & ~3) == 0);
reed@google.comabf15c12011-01-18 20:35:51 +00002209
djsollen@google.com077348c2012-10-22 20:23:32 +00002210#ifdef SK_DEBUG_PATH
reed@android.come522ca52009-11-23 20:10:41 +00002211 if (!fBoundsIsDirty) {
2212 SkRect bounds;
tomhudson@google.comed02c4d2012-08-10 14:10:45 +00002213
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002214 bool isFinite = compute_pt_bounds(&bounds, *fPathRef.get());
robertphillips@google.com5d8d1862012-08-15 14:36:41 +00002215 SkASSERT(SkToBool(fIsFinite) == isFinite);
tomhudson@google.comed02c4d2012-08-10 14:10:45 +00002216
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002217 if (fPathRef->countPoints() <= 1) {
reed@android.come522ca52009-11-23 20:10:41 +00002218 // if we're empty, fBounds may be empty but translated, so we can't
2219 // necessarily compare to bounds directly
2220 // try path.addOval(2, 2, 2, 2) which is empty, but the bounds will
2221 // be [2, 2, 2, 2]
2222 SkASSERT(bounds.isEmpty());
2223 SkASSERT(fBounds.isEmpty());
2224 } else {
reed@google.comeac52bd2011-11-14 18:13:59 +00002225 if (bounds.isEmpty()) {
2226 SkASSERT(fBounds.isEmpty());
2227 } else {
reed@google.com3563c9e2011-11-14 19:34:57 +00002228 if (!fBounds.isEmpty()) {
2229 SkASSERT(fBounds.contains(bounds));
2230 }
reed@google.comeac52bd2011-11-14 18:13:59 +00002231 }
reed@android.come522ca52009-11-23 20:10:41 +00002232 }
2233 }
djsollen@google.com077348c2012-10-22 20:23:32 +00002234#endif // SK_DEBUG_PATH
reed@android.come522ca52009-11-23 20:10:41 +00002235}
djsollen@google.com077348c2012-10-22 20:23:32 +00002236#endif // SK_DEBUG
reed@android.come522ca52009-11-23 20:10:41 +00002237
reed@google.com04863fa2011-05-15 04:08:24 +00002238///////////////////////////////////////////////////////////////////////////////
2239
reed@google.com0b7b9822011-05-16 12:29:27 +00002240static int sign(SkScalar x) { return x < 0; }
2241#define kValueNeverReturnedBySign 2
reed@google.com85b6e392011-05-15 20:25:17 +00002242
robertphillipsc506e302014-09-16 09:43:31 -07002243enum DirChange {
2244 kLeft_DirChange,
2245 kRight_DirChange,
2246 kStraight_DirChange,
2247 kBackwards_DirChange,
2248
2249 kInvalid_DirChange
2250};
2251
2252
commit-bot@chromium.org8be07bb2014-05-22 14:58:53 +00002253static bool almost_equal(SkScalar compA, SkScalar compB) {
commit-bot@chromium.orgf91aaec2013-11-01 15:24:55 +00002254 // The error epsilon was empirically derived; worse case round rects
2255 // with a mid point outset by 2x float epsilon in tests had an error
2256 // of 12.
2257 const int epsilon = 16;
2258 if (!SkScalarIsFinite(compA) || !SkScalarIsFinite(compB)) {
2259 return false;
2260 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002261 // no need to check for small numbers because SkPath::Iter has removed degenerate values
commit-bot@chromium.orgf91aaec2013-11-01 15:24:55 +00002262 int aBits = SkFloatAs2sCompliment(compA);
2263 int bBits = SkFloatAs2sCompliment(compB);
2264 return aBits < bBits + epsilon && bBits < aBits + epsilon;
reed@google.com04863fa2011-05-15 04:08:24 +00002265}
2266
caryclarkb4216502015-03-02 13:02:34 -08002267static bool approximately_zero_when_compared_to(double x, double y) {
2268 return x == 0 || fabs(x) < fabs(y * FLT_EPSILON);
robertphillipsc506e302014-09-16 09:43:31 -07002269}
2270
caryclarkb4216502015-03-02 13:02:34 -08002271
reed@google.com04863fa2011-05-15 04:08:24 +00002272// only valid for a single contour
2273struct Convexicator {
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002274 Convexicator()
2275 : fPtCount(0)
2276 , fConvexity(SkPath::kConvex_Convexity)
reed026beb52015-06-10 14:23:15 -07002277 , fFirstDirection(SkPathPriv::kUnknown_FirstDirection)
caryclark5ccef572015-03-02 10:07:56 -08002278 , fIsFinite(true)
2279 , fIsCurve(false) {
robertphillipsc506e302014-09-16 09:43:31 -07002280 fExpectedDir = kInvalid_DirChange;
reed@google.com04863fa2011-05-15 04:08:24 +00002281 // warnings
djsollen2f124632016-04-29 13:53:05 -07002282 fPriorPt.set(0,0);
commit-bot@chromium.orgf91aaec2013-11-01 15:24:55 +00002283 fLastPt.set(0, 0);
reed@google.com04863fa2011-05-15 04:08:24 +00002284 fCurrPt.set(0, 0);
commit-bot@chromium.org8be07bb2014-05-22 14:58:53 +00002285 fLastVec.set(0, 0);
reed@google.com04863fa2011-05-15 04:08:24 +00002286 fFirstVec.set(0, 0);
reed@google.com85b6e392011-05-15 20:25:17 +00002287
2288 fDx = fDy = 0;
reed@google.com0b7b9822011-05-16 12:29:27 +00002289 fSx = fSy = kValueNeverReturnedBySign;
reed@google.com04863fa2011-05-15 04:08:24 +00002290 }
2291
2292 SkPath::Convexity getConvexity() const { return fConvexity; }
2293
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002294 /** The direction returned is only valid if the path is determined convex */
reed026beb52015-06-10 14:23:15 -07002295 SkPathPriv::FirstDirection getFirstDirection() const { return fFirstDirection; }
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002296
reed@google.com04863fa2011-05-15 04:08:24 +00002297 void addPt(const SkPoint& pt) {
caryclarkd3d1a982014-12-08 04:57:38 -08002298 if (SkPath::kConcave_Convexity == fConvexity || !fIsFinite) {
reed@google.com04863fa2011-05-15 04:08:24 +00002299 return;
2300 }
2301
2302 if (0 == fPtCount) {
2303 fCurrPt = pt;
2304 ++fPtCount;
2305 } else {
2306 SkVector vec = pt - fCurrPt;
caryclarkd3d1a982014-12-08 04:57:38 -08002307 SkScalar lengthSqd = vec.lengthSqd();
2308 if (!SkScalarIsFinite(lengthSqd)) {
2309 fIsFinite = false;
caryclarke8c56662015-07-14 11:19:26 -07002310 } else if (lengthSqd) {
caryclarkb4216502015-03-02 13:02:34 -08002311 fPriorPt = fLastPt;
commit-bot@chromium.orgf91aaec2013-11-01 15:24:55 +00002312 fLastPt = fCurrPt;
reed@google.com04863fa2011-05-15 04:08:24 +00002313 fCurrPt = pt;
2314 if (++fPtCount == 2) {
commit-bot@chromium.org8be07bb2014-05-22 14:58:53 +00002315 fFirstVec = fLastVec = vec;
reed@google.com04863fa2011-05-15 04:08:24 +00002316 } else {
2317 SkASSERT(fPtCount > 2);
2318 this->addVec(vec);
2319 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002320
reed@google.com85b6e392011-05-15 20:25:17 +00002321 int sx = sign(vec.fX);
2322 int sy = sign(vec.fY);
2323 fDx += (sx != fSx);
2324 fDy += (sy != fSy);
2325 fSx = sx;
2326 fSy = sy;
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002327
reed@google.com85b6e392011-05-15 20:25:17 +00002328 if (fDx > 3 || fDy > 3) {
2329 fConvexity = SkPath::kConcave_Convexity;
2330 }
reed@google.com04863fa2011-05-15 04:08:24 +00002331 }
2332 }
2333 }
2334
2335 void close() {
2336 if (fPtCount > 2) {
2337 this->addVec(fFirstVec);
2338 }
2339 }
2340
caryclarkb4216502015-03-02 13:02:34 -08002341 DirChange directionChange(const SkVector& curVec) {
2342 SkScalar cross = SkPoint::CrossProduct(fLastVec, curVec);
2343
2344 SkScalar smallest = SkTMin(fCurrPt.fX, SkTMin(fCurrPt.fY, SkTMin(fLastPt.fX, fLastPt.fY)));
2345 SkScalar largest = SkTMax(fCurrPt.fX, SkTMax(fCurrPt.fY, SkTMax(fLastPt.fX, fLastPt.fY)));
2346 largest = SkTMax(largest, -smallest);
2347
2348 if (!almost_equal(largest, largest + cross)) {
2349 int sign = SkScalarSignAsInt(cross);
2350 if (sign) {
2351 return (1 == sign) ? kRight_DirChange : kLeft_DirChange;
2352 }
2353 }
2354
2355 if (cross) {
2356 double dLastVecX = SkScalarToDouble(fLastPt.fX) - SkScalarToDouble(fPriorPt.fX);
2357 double dLastVecY = SkScalarToDouble(fLastPt.fY) - SkScalarToDouble(fPriorPt.fY);
2358 double dCurrVecX = SkScalarToDouble(fCurrPt.fX) - SkScalarToDouble(fLastPt.fX);
2359 double dCurrVecY = SkScalarToDouble(fCurrPt.fY) - SkScalarToDouble(fLastPt.fY);
2360 double dCross = dLastVecX * dCurrVecY - dLastVecY * dCurrVecX;
2361 if (!approximately_zero_when_compared_to(dCross, SkScalarToDouble(largest))) {
2362 int sign = SkScalarSignAsInt(SkDoubleToScalar(dCross));
2363 if (sign) {
2364 return (1 == sign) ? kRight_DirChange : kLeft_DirChange;
2365 }
2366 }
2367 }
2368
2369 if (!SkScalarNearlyZero(fLastVec.lengthSqd(), SK_ScalarNearlyZero*SK_ScalarNearlyZero) &&
2370 !SkScalarNearlyZero(curVec.lengthSqd(), SK_ScalarNearlyZero*SK_ScalarNearlyZero) &&
2371 fLastVec.dot(curVec) < 0.0f) {
2372 return kBackwards_DirChange;
2373 }
2374
2375 return kStraight_DirChange;
2376 }
2377
2378
caryclarkd3d1a982014-12-08 04:57:38 -08002379 bool isFinite() const {
2380 return fIsFinite;
2381 }
2382
caryclark5ccef572015-03-02 10:07:56 -08002383 void setCurve(bool isCurve) {
2384 fIsCurve = isCurve;
2385 }
2386
reed@google.com04863fa2011-05-15 04:08:24 +00002387private:
2388 void addVec(const SkVector& vec) {
2389 SkASSERT(vec.fX || vec.fY);
caryclarkb4216502015-03-02 13:02:34 -08002390 DirChange dir = this->directionChange(vec);
robertphillipsc506e302014-09-16 09:43:31 -07002391 switch (dir) {
2392 case kLeft_DirChange: // fall through
2393 case kRight_DirChange:
2394 if (kInvalid_DirChange == fExpectedDir) {
2395 fExpectedDir = dir;
reed026beb52015-06-10 14:23:15 -07002396 fFirstDirection = (kRight_DirChange == dir) ? SkPathPriv::kCW_FirstDirection
2397 : SkPathPriv::kCCW_FirstDirection;
robertphillipsc506e302014-09-16 09:43:31 -07002398 } else if (dir != fExpectedDir) {
2399 fConvexity = SkPath::kConcave_Convexity;
reed026beb52015-06-10 14:23:15 -07002400 fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
robertphillipsc506e302014-09-16 09:43:31 -07002401 }
2402 fLastVec = vec;
2403 break;
2404 case kStraight_DirChange:
2405 break;
2406 case kBackwards_DirChange:
caryclark5ccef572015-03-02 10:07:56 -08002407 if (fIsCurve) {
2408 fConvexity = SkPath::kConcave_Convexity;
reed026beb52015-06-10 14:23:15 -07002409 fFirstDirection = SkPathPriv::kUnknown_FirstDirection;
caryclark5ccef572015-03-02 10:07:56 -08002410 }
robertphillipsc506e302014-09-16 09:43:31 -07002411 fLastVec = vec;
2412 break;
2413 case kInvalid_DirChange:
2414 SkFAIL("Use of invalid direction change flag");
2415 break;
reed@google.com04863fa2011-05-15 04:08:24 +00002416 }
2417 }
2418
caryclarkb4216502015-03-02 13:02:34 -08002419 SkPoint fPriorPt;
commit-bot@chromium.orgf91aaec2013-11-01 15:24:55 +00002420 SkPoint fLastPt;
reed@google.com04863fa2011-05-15 04:08:24 +00002421 SkPoint fCurrPt;
commit-bot@chromium.org8be07bb2014-05-22 14:58:53 +00002422 // fLastVec does not necessarily start at fLastPt. We only advance it when the cross product
2423 // value with the current vec is deemed to be of a significant value.
2424 SkVector fLastVec, fFirstVec;
reed@google.com04863fa2011-05-15 04:08:24 +00002425 int fPtCount; // non-degenerate points
robertphillipsc506e302014-09-16 09:43:31 -07002426 DirChange fExpectedDir;
reed@google.com04863fa2011-05-15 04:08:24 +00002427 SkPath::Convexity fConvexity;
reed026beb52015-06-10 14:23:15 -07002428 SkPathPriv::FirstDirection fFirstDirection;
reed@google.com0b7b9822011-05-16 12:29:27 +00002429 int fDx, fDy, fSx, fSy;
caryclarkd3d1a982014-12-08 04:57:38 -08002430 bool fIsFinite;
caryclark5ccef572015-03-02 10:07:56 -08002431 bool fIsCurve;
reed@google.com04863fa2011-05-15 04:08:24 +00002432};
2433
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002434SkPath::Convexity SkPath::internalGetConvexity() const {
2435 SkASSERT(kUnknown_Convexity == fConvexity);
reed@google.com04863fa2011-05-15 04:08:24 +00002436 SkPoint pts[4];
2437 SkPath::Verb verb;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002438 SkPath::Iter iter(*this, true);
reed@google.com04863fa2011-05-15 04:08:24 +00002439
2440 int contourCount = 0;
2441 int count;
2442 Convexicator state;
2443
caryclarkd3d1a982014-12-08 04:57:38 -08002444 if (!isFinite()) {
2445 return kUnknown_Convexity;
2446 }
caryclarke8c56662015-07-14 11:19:26 -07002447 while ((verb = iter.next(pts, true, true)) != SkPath::kDone_Verb) {
reed@google.com04863fa2011-05-15 04:08:24 +00002448 switch (verb) {
2449 case kMove_Verb:
2450 if (++contourCount > 1) {
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002451 fConvexity = kConcave_Convexity;
reed@google.com04863fa2011-05-15 04:08:24 +00002452 return kConcave_Convexity;
2453 }
2454 pts[1] = pts[0];
caryclark5ccef572015-03-02 10:07:56 -08002455 // fall through
2456 case kLine_Verb:
reed@google.com04863fa2011-05-15 04:08:24 +00002457 count = 1;
caryclark5ccef572015-03-02 10:07:56 -08002458 state.setCurve(false);
reed@google.com04863fa2011-05-15 04:08:24 +00002459 break;
caryclark5ccef572015-03-02 10:07:56 -08002460 case kQuad_Verb:
2461 // fall through
2462 case kConic_Verb:
2463 // fall through
2464 case kCubic_Verb:
2465 count = 2 + (kCubic_Verb == verb);
2466 // As an additional enhancement, this could set curve true only
2467 // if the curve is nonlinear
2468 state.setCurve(true);
2469 break;
reed@google.com04863fa2011-05-15 04:08:24 +00002470 case kClose_Verb:
caryclark5ccef572015-03-02 10:07:56 -08002471 state.setCurve(false);
reed@google.com04863fa2011-05-15 04:08:24 +00002472 state.close();
2473 count = 0;
2474 break;
2475 default:
tomhudson@google.com0c00f212011-12-28 14:59:50 +00002476 SkDEBUGFAIL("bad verb");
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002477 fConvexity = kConcave_Convexity;
reed@google.com04863fa2011-05-15 04:08:24 +00002478 return kConcave_Convexity;
2479 }
2480
2481 for (int i = 1; i <= count; i++) {
2482 state.addPt(pts[i]);
2483 }
2484 // early exit
caryclarkd3d1a982014-12-08 04:57:38 -08002485 if (!state.isFinite()) {
2486 return kUnknown_Convexity;
2487 }
reed@google.com04863fa2011-05-15 04:08:24 +00002488 if (kConcave_Convexity == state.getConvexity()) {
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002489 fConvexity = kConcave_Convexity;
reed@google.com04863fa2011-05-15 04:08:24 +00002490 return kConcave_Convexity;
2491 }
2492 }
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002493 fConvexity = state.getConvexity();
reed026beb52015-06-10 14:23:15 -07002494 if (kConvex_Convexity == fConvexity && SkPathPriv::kUnknown_FirstDirection == fFirstDirection) {
2495 fFirstDirection = state.getFirstDirection();
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002496 }
2497 return static_cast<Convexity>(fConvexity);
reed@google.com04863fa2011-05-15 04:08:24 +00002498}
reed@google.com69a99432012-01-10 18:00:10 +00002499
2500///////////////////////////////////////////////////////////////////////////////
2501
2502class ContourIter {
2503public:
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002504 ContourIter(const SkPathRef& pathRef);
reed@google.com69a99432012-01-10 18:00:10 +00002505
2506 bool done() const { return fDone; }
2507 // if !done() then these may be called
2508 int count() const { return fCurrPtCount; }
2509 const SkPoint* pts() const { return fCurrPt; }
2510 void next();
2511
2512private:
2513 int fCurrPtCount;
2514 const SkPoint* fCurrPt;
2515 const uint8_t* fCurrVerb;
2516 const uint8_t* fStopVerbs;
reed@google.com277c3f82013-05-31 15:17:50 +00002517 const SkScalar* fCurrConicWeight;
reed@google.com69a99432012-01-10 18:00:10 +00002518 bool fDone;
reed@google.comd1ab9322012-01-10 18:40:03 +00002519 SkDEBUGCODE(int fContourCounter;)
reed@google.com69a99432012-01-10 18:00:10 +00002520};
2521
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002522ContourIter::ContourIter(const SkPathRef& pathRef) {
2523 fStopVerbs = pathRef.verbsMemBegin();
reed@google.com69a99432012-01-10 18:00:10 +00002524 fDone = false;
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002525 fCurrPt = pathRef.points();
2526 fCurrVerb = pathRef.verbs();
reed@google.com277c3f82013-05-31 15:17:50 +00002527 fCurrConicWeight = pathRef.conicWeights();
reed@google.com69a99432012-01-10 18:00:10 +00002528 fCurrPtCount = 0;
reed@google.comd1ab9322012-01-10 18:40:03 +00002529 SkDEBUGCODE(fContourCounter = 0;)
reed@google.com69a99432012-01-10 18:00:10 +00002530 this->next();
2531}
2532
2533void ContourIter::next() {
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002534 if (fCurrVerb <= fStopVerbs) {
reed@google.com69a99432012-01-10 18:00:10 +00002535 fDone = true;
2536 }
2537 if (fDone) {
2538 return;
2539 }
2540
2541 // skip pts of prev contour
2542 fCurrPt += fCurrPtCount;
2543
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002544 SkASSERT(SkPath::kMove_Verb == fCurrVerb[~0]);
reed@google.com69a99432012-01-10 18:00:10 +00002545 int ptCount = 1; // moveTo
2546 const uint8_t* verbs = fCurrVerb;
2547
bsalomon@google.com1dfe88e2012-10-03 13:46:20 +00002548 for (--verbs; verbs > fStopVerbs; --verbs) {
2549 switch (verbs[~0]) {
reed@google.com69a99432012-01-10 18:00:10 +00002550 case SkPath::kMove_Verb:
reed@google.com69a99432012-01-10 18:00:10 +00002551 goto CONTOUR_END;
2552 case SkPath::kLine_Verb:
2553 ptCount += 1;
2554 break;
reed@google.com277c3f82013-05-31 15:17:50 +00002555 case SkPath::kConic_Verb:
2556 fCurrConicWeight += 1;
2557 // fall-through
reed@google.com69a99432012-01-10 18:00:10 +00002558 case SkPath::kQuad_Verb:
2559 ptCount += 2;
2560 break;
2561 case SkPath::kCubic_Verb:
2562 ptCount += 3;
2563 break;
reed@google.com277c3f82013-05-31 15:17:50 +00002564 case SkPath::kClose_Verb:
2565 break;
2566 default:
mtklein@google.com330313a2013-08-22 15:37:26 +00002567 SkDEBUGFAIL("unexpected verb");
reed@google.com69a99432012-01-10 18:00:10 +00002568 break;
2569 }
2570 }
2571CONTOUR_END:
2572 fCurrPtCount = ptCount;
2573 fCurrVerb = verbs;
reed@google.comd1ab9322012-01-10 18:40:03 +00002574 SkDEBUGCODE(++fContourCounter;)
reed@google.com69a99432012-01-10 18:00:10 +00002575}
2576
bsalomon@google.comf0ed80a2012-02-17 13:38:26 +00002577// returns cross product of (p1 - p0) and (p2 - p0)
reed@google.com69a99432012-01-10 18:00:10 +00002578static SkScalar cross_prod(const SkPoint& p0, const SkPoint& p1, const SkPoint& p2) {
bsalomon@google.comf0ed80a2012-02-17 13:38:26 +00002579 SkScalar cross = SkPoint::CrossProduct(p1 - p0, p2 - p0);
2580 // We may get 0 when the above subtracts underflow. We expect this to be
2581 // very rare and lazily promote to double.
2582 if (0 == cross) {
2583 double p0x = SkScalarToDouble(p0.fX);
2584 double p0y = SkScalarToDouble(p0.fY);
2585
2586 double p1x = SkScalarToDouble(p1.fX);
2587 double p1y = SkScalarToDouble(p1.fY);
2588
2589 double p2x = SkScalarToDouble(p2.fX);
2590 double p2y = SkScalarToDouble(p2.fY);
2591
2592 cross = SkDoubleToScalar((p1x - p0x) * (p2y - p0y) -
2593 (p1y - p0y) * (p2x - p0x));
2594
2595 }
2596 return cross;
reed@google.com69a99432012-01-10 18:00:10 +00002597}
2598
reed@google.comc1ea60a2012-01-31 15:15:36 +00002599// Returns the first pt with the maximum Y coordinate
reed@google.com69a99432012-01-10 18:00:10 +00002600static int find_max_y(const SkPoint pts[], int count) {
2601 SkASSERT(count > 0);
2602 SkScalar max = pts[0].fY;
reed@google.comc1ea60a2012-01-31 15:15:36 +00002603 int firstIndex = 0;
reed@google.com69a99432012-01-10 18:00:10 +00002604 for (int i = 1; i < count; ++i) {
reed@google.comc1ea60a2012-01-31 15:15:36 +00002605 SkScalar y = pts[i].fY;
2606 if (y > max) {
2607 max = y;
2608 firstIndex = i;
reed@google.com69a99432012-01-10 18:00:10 +00002609 }
2610 }
reed@google.comc1ea60a2012-01-31 15:15:36 +00002611 return firstIndex;
reed@google.com69a99432012-01-10 18:00:10 +00002612}
2613
reed@google.comcabaf1d2012-01-11 21:03:05 +00002614static int find_diff_pt(const SkPoint pts[], int index, int n, int inc) {
2615 int i = index;
2616 for (;;) {
2617 i = (i + inc) % n;
2618 if (i == index) { // we wrapped around, so abort
2619 break;
2620 }
2621 if (pts[index] != pts[i]) { // found a different point, success!
2622 break;
2623 }
2624 }
2625 return i;
2626}
2627
reed@google.comc1ea60a2012-01-31 15:15:36 +00002628/**
2629 * Starting at index, and moving forward (incrementing), find the xmin and
2630 * xmax of the contiguous points that have the same Y.
2631 */
2632static int find_min_max_x_at_y(const SkPoint pts[], int index, int n,
2633 int* maxIndexPtr) {
2634 const SkScalar y = pts[index].fY;
2635 SkScalar min = pts[index].fX;
2636 SkScalar max = min;
2637 int minIndex = index;
2638 int maxIndex = index;
2639 for (int i = index + 1; i < n; ++i) {
2640 if (pts[i].fY != y) {
2641 break;
2642 }
2643 SkScalar x = pts[i].fX;
2644 if (x < min) {
2645 min = x;
2646 minIndex = i;
2647 } else if (x > max) {
2648 max = x;
2649 maxIndex = i;
2650 }
2651 }
2652 *maxIndexPtr = maxIndex;
2653 return minIndex;
2654}
2655
reed026beb52015-06-10 14:23:15 -07002656static void crossToDir(SkScalar cross, SkPathPriv::FirstDirection* dir) {
2657 *dir = cross > 0 ? SkPathPriv::kCW_FirstDirection : SkPathPriv::kCCW_FirstDirection;
bsalomon@google.com4eefe612012-07-10 18:28:12 +00002658}
2659
reed@google.comac8543f2012-01-30 20:51:25 +00002660/*
2661 * We loop through all contours, and keep the computed cross-product of the
2662 * contour that contained the global y-max. If we just look at the first
2663 * contour, we may find one that is wound the opposite way (correctly) since
2664 * it is the interior of a hole (e.g. 'o'). Thus we must find the contour
2665 * that is outer most (or at least has the global y-max) before we can consider
2666 * its cross product.
2667 */
reed026beb52015-06-10 14:23:15 -07002668bool SkPathPriv::CheapComputeFirstDirection(const SkPath& path, FirstDirection* dir) {
herb9f4dbca2015-09-28 11:05:47 -07002669 if (kUnknown_FirstDirection != path.fFirstDirection.load()) {
2670 *dir = static_cast<FirstDirection>(path.fFirstDirection.load());
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002671 return true;
2672 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002673
2674 // don't want to pay the cost for computing this if it
2675 // is unknown, so we don't call isConvex()
reed026beb52015-06-10 14:23:15 -07002676 if (SkPath::kConvex_Convexity == path.getConvexityOrUnknown()) {
2677 SkASSERT(kUnknown_FirstDirection == path.fFirstDirection);
herb9f4dbca2015-09-28 11:05:47 -07002678 *dir = static_cast<FirstDirection>(path.fFirstDirection.load());
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002679 return false;
2680 }
reed@google.com69a99432012-01-10 18:00:10 +00002681
reed026beb52015-06-10 14:23:15 -07002682 ContourIter iter(*path.fPathRef.get());
reed@google.com69a99432012-01-10 18:00:10 +00002683
reed@google.comac8543f2012-01-30 20:51:25 +00002684 // initialize with our logical y-min
reed026beb52015-06-10 14:23:15 -07002685 SkScalar ymax = path.getBounds().fTop;
reed@google.comac8543f2012-01-30 20:51:25 +00002686 SkScalar ymaxCross = 0;
2687
reed@google.com69a99432012-01-10 18:00:10 +00002688 for (; !iter.done(); iter.next()) {
2689 int n = iter.count();
reed@google.comcabaf1d2012-01-11 21:03:05 +00002690 if (n < 3) {
2691 continue;
2692 }
djsollen@google.come63793a2012-03-21 15:39:03 +00002693
reed@google.comcabaf1d2012-01-11 21:03:05 +00002694 const SkPoint* pts = iter.pts();
reed@google.com69a99432012-01-10 18:00:10 +00002695 SkScalar cross = 0;
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002696 int index = find_max_y(pts, n);
2697 if (pts[index].fY < ymax) {
2698 continue;
2699 }
2700
2701 // If there is more than 1 distinct point at the y-max, we take the
2702 // x-min and x-max of them and just subtract to compute the dir.
2703 if (pts[(index + 1) % n].fY == pts[index].fY) {
2704 int maxIndex;
2705 int minIndex = find_min_max_x_at_y(pts, index, n, &maxIndex);
2706 if (minIndex == maxIndex) {
2707 goto TRY_CROSSPROD;
bsalomon@google.com4eefe612012-07-10 18:28:12 +00002708 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002709 SkASSERT(pts[minIndex].fY == pts[index].fY);
2710 SkASSERT(pts[maxIndex].fY == pts[index].fY);
2711 SkASSERT(pts[minIndex].fX <= pts[maxIndex].fX);
2712 // we just subtract the indices, and let that auto-convert to
2713 // SkScalar, since we just want - or + to signal the direction.
2714 cross = minIndex - maxIndex;
reed@google.com69a99432012-01-10 18:00:10 +00002715 } else {
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002716 TRY_CROSSPROD:
2717 // Find a next and prev index to use for the cross-product test,
2718 // but we try to find pts that form non-zero vectors from pts[index]
2719 //
2720 // Its possible that we can't find two non-degenerate vectors, so
2721 // we have to guard our search (e.g. all the pts could be in the
2722 // same place).
2723
2724 // we pass n - 1 instead of -1 so we don't foul up % operator by
2725 // passing it a negative LH argument.
2726 int prev = find_diff_pt(pts, index, n, n - 1);
2727 if (prev == index) {
2728 // completely degenerate, skip to next contour
reed@google.comac8543f2012-01-30 20:51:25 +00002729 continue;
2730 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002731 int next = find_diff_pt(pts, index, n, 1);
2732 SkASSERT(next != index);
2733 cross = cross_prod(pts[prev], pts[index], pts[next]);
2734 // if we get a zero and the points are horizontal, then we look at the spread in
2735 // x-direction. We really should continue to walk away from the degeneracy until
2736 // there is a divergence.
2737 if (0 == cross && pts[prev].fY == pts[index].fY && pts[next].fY == pts[index].fY) {
2738 // construct the subtract so we get the correct Direction below
2739 cross = pts[index].fX - pts[next].fX;
reed@google.com188bfcf2012-01-17 18:26:38 +00002740 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002741 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002742
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002743 if (cross) {
2744 // record our best guess so far
2745 ymax = pts[index].fY;
2746 ymaxCross = cross;
reed@google.com69a99432012-01-10 18:00:10 +00002747 }
2748 }
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002749 if (ymaxCross) {
2750 crossToDir(ymaxCross, dir);
reed026beb52015-06-10 14:23:15 -07002751 path.fFirstDirection = *dir;
bsalomon@google.com30c174b2012-11-13 14:36:42 +00002752 return true;
2753 } else {
2754 return false;
2755 }
reed@google.comac8543f2012-01-30 20:51:25 +00002756}
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002757
2758///////////////////////////////////////////////////////////////////////////////
2759
caryclark9aacd902015-12-14 08:38:09 -08002760static bool between(SkScalar a, SkScalar b, SkScalar c) {
2761 SkASSERT(((a <= b && b <= c) || (a >= b && b >= c)) == ((a - b) * (c - b) <= 0)
2762 || (SkScalarNearlyZero(a) && SkScalarNearlyZero(b) && SkScalarNearlyZero(c)));
2763 return (a - b) * (c - b) <= 0;
2764}
2765
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002766static SkScalar eval_cubic_coeff(SkScalar A, SkScalar B, SkScalar C,
2767 SkScalar D, SkScalar t) {
2768 return SkScalarMulAdd(SkScalarMulAdd(SkScalarMulAdd(A, t, B), t, C), t, D);
2769}
2770
2771static SkScalar eval_cubic_pts(SkScalar c0, SkScalar c1, SkScalar c2, SkScalar c3,
2772 SkScalar t) {
2773 SkScalar A = c3 + 3*(c1 - c2) - c0;
2774 SkScalar B = 3*(c2 - c1 - c1 + c0);
2775 SkScalar C = 3*(c1 - c0);
2776 SkScalar D = c0;
2777 return eval_cubic_coeff(A, B, C, D, t);
2778}
2779
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002780template <size_t N> static void find_minmax(const SkPoint pts[],
2781 SkScalar* minPtr, SkScalar* maxPtr) {
2782 SkScalar min, max;
2783 min = max = pts[0].fX;
2784 for (size_t i = 1; i < N; ++i) {
2785 min = SkMinScalar(min, pts[i].fX);
2786 max = SkMaxScalar(max, pts[i].fX);
2787 }
2788 *minPtr = min;
2789 *maxPtr = max;
2790}
2791
caryclark9cb5d752015-12-18 04:35:24 -08002792static bool checkOnCurve(SkScalar x, SkScalar y, const SkPoint& start, const SkPoint& end) {
2793 if (start.fY == end.fY) {
2794 return between(start.fX, x, end.fX) && x != end.fX;
2795 } else {
2796 return x == start.fX && y == start.fY;
2797 }
2798}
2799
caryclark9aacd902015-12-14 08:38:09 -08002800static int winding_mono_cubic(const SkPoint pts[], SkScalar x, SkScalar y, int* onCurveCount) {
caryclark9cb5d752015-12-18 04:35:24 -08002801 SkScalar y0 = pts[0].fY;
2802 SkScalar y3 = pts[3].fY;
2803
2804 int dir = 1;
2805 if (y0 > y3) {
2806 SkTSwap(y0, y3);
2807 dir = -1;
2808 }
2809 if (y < y0 || y > y3) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002810 return 0;
2811 }
caryclark9cb5d752015-12-18 04:35:24 -08002812 if (checkOnCurve(x, y, pts[0], pts[3])) {
2813 *onCurveCount += 1;
caryclark9aacd902015-12-14 08:38:09 -08002814 return 0;
2815 }
caryclark9cb5d752015-12-18 04:35:24 -08002816 if (y == y3) {
2817 return 0;
2818 }
2819
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002820 // quickreject or quickaccept
2821 SkScalar min, max;
2822 find_minmax<4>(pts, &min, &max);
2823 if (x < min) {
2824 return 0;
2825 }
2826 if (x > max) {
2827 return dir;
2828 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002829
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002830 // compute the actual x(t) value
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002831 SkScalar t;
mbarbella276e6332016-05-31 14:44:01 -07002832 if (!SkCubicClipper::ChopMonoAtY(pts, y, &t)) {
mbarbella99600d02016-06-01 15:39:47 -07002833 return 0;
mbarbella276e6332016-05-31 14:44:01 -07002834 }
commit-bot@chromium.orga1a097e2013-11-14 16:53:22 +00002835 SkScalar xt = eval_cubic_pts(pts[0].fX, pts[1].fX, pts[2].fX, pts[3].fX, t);
caryclark9aacd902015-12-14 08:38:09 -08002836 if (SkScalarNearlyEqual(xt, x)) {
2837 if (x != pts[3].fX || y != pts[3].fY) { // don't test end points; they're start points
2838 *onCurveCount += 1;
caryclark9cb5d752015-12-18 04:35:24 -08002839 return 0;
caryclark9aacd902015-12-14 08:38:09 -08002840 }
2841 }
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002842 return xt < x ? dir : 0;
2843}
2844
caryclark9aacd902015-12-14 08:38:09 -08002845static int winding_cubic(const SkPoint pts[], SkScalar x, SkScalar y, int* onCurveCount) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002846 SkPoint dst[10];
2847 int n = SkChopCubicAtYExtrema(pts, dst);
2848 int w = 0;
2849 for (int i = 0; i <= n; ++i) {
caryclark9aacd902015-12-14 08:38:09 -08002850 w += winding_mono_cubic(&dst[i * 3], x, y, onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002851 }
2852 return w;
2853}
2854
caryclark9aacd902015-12-14 08:38:09 -08002855static double conic_eval_numerator(const SkScalar src[], SkScalar w, SkScalar t) {
2856 SkASSERT(src);
2857 SkASSERT(t >= 0 && t <= 1);
2858 SkScalar src2w = src[2] * w;
2859 SkScalar C = src[0];
2860 SkScalar A = src[4] - 2 * src2w + C;
2861 SkScalar B = 2 * (src2w - C);
2862 return (A * t + B) * t + C;
2863}
2864
2865
2866static double conic_eval_denominator(SkScalar w, SkScalar t) {
2867 SkScalar B = 2 * (w - 1);
2868 SkScalar C = 1;
2869 SkScalar A = -B;
2870 return (A * t + B) * t + C;
2871}
2872
2873static int winding_mono_conic(const SkConic& conic, SkScalar x, SkScalar y, int* onCurveCount) {
2874 const SkPoint* pts = conic.fPts;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002875 SkScalar y0 = pts[0].fY;
2876 SkScalar y2 = pts[2].fY;
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002877
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002878 int dir = 1;
2879 if (y0 > y2) {
2880 SkTSwap(y0, y2);
2881 dir = -1;
2882 }
caryclark9aacd902015-12-14 08:38:09 -08002883 if (y < y0 || y > y2) {
2884 return 0;
2885 }
caryclark9cb5d752015-12-18 04:35:24 -08002886 if (checkOnCurve(x, y, pts[0], pts[2])) {
2887 *onCurveCount += 1;
2888 return 0;
2889 }
caryclark9aacd902015-12-14 08:38:09 -08002890 if (y == y2) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002891 return 0;
2892 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002893
caryclark9aacd902015-12-14 08:38:09 -08002894 SkScalar roots[2];
2895 SkScalar A = pts[2].fY;
2896 SkScalar B = pts[1].fY * conic.fW - y * conic.fW + y;
2897 SkScalar C = pts[0].fY;
2898 A += C - 2 * B; // A = a + c - 2*(b*w - yCept*w + yCept)
2899 B -= C; // B = b*w - w * yCept + yCept - a
2900 C -= y;
2901 int n = SkFindUnitQuadRoots(A, 2 * B, C, roots);
2902 SkASSERT(n <= 1);
2903 SkScalar xt;
2904 if (0 == n) {
caryclark9cb5d752015-12-18 04:35:24 -08002905 // zero roots are returned only when y0 == y
2906 // Need [0] if dir == 1
2907 // and [2] if dir == -1
2908 xt = pts[1 - dir].fX;
caryclark9aacd902015-12-14 08:38:09 -08002909 } else {
2910 SkScalar t = roots[0];
2911 xt = conic_eval_numerator(&pts[0].fX, conic.fW, t) / conic_eval_denominator(conic.fW, t);
2912 }
2913 if (SkScalarNearlyEqual(xt, x)) {
2914 if (x != pts[2].fX || y != pts[2].fY) { // don't test end points; they're start points
2915 *onCurveCount += 1;
caryclark9cb5d752015-12-18 04:35:24 -08002916 return 0;
caryclark9aacd902015-12-14 08:38:09 -08002917 }
2918 }
2919 return xt < x ? dir : 0;
2920}
2921
2922static bool is_mono_quad(SkScalar y0, SkScalar y1, SkScalar y2) {
2923 // return SkScalarSignAsInt(y0 - y1) + SkScalarSignAsInt(y1 - y2) != 0;
2924 if (y0 == y1) {
2925 return true;
2926 }
2927 if (y0 < y1) {
2928 return y1 <= y2;
2929 } else {
2930 return y1 >= y2;
2931 }
2932}
2933
2934static int winding_conic(const SkPoint pts[], SkScalar x, SkScalar y, SkScalar weight,
2935 int* onCurveCount) {
2936 SkConic conic(pts, weight);
caryclark9aacd902015-12-14 08:38:09 -08002937 SkConic chopped[2];
caryclark1e1e5092016-01-06 08:27:44 -08002938 // If the data points are very large, the conic may not be monotonic but may also
2939 // fail to chop. Then, the chopper does not split the original conic in two.
caryclarke114dd62016-01-06 08:15:44 -08002940 bool isMono = is_mono_quad(pts[0].fY, pts[1].fY, pts[2].fY) || !conic.chopAtYExtrema(chopped);
2941 int w = winding_mono_conic(isMono ? conic : chopped[0], x, y, onCurveCount);
2942 if (!isMono) {
caryclark9aacd902015-12-14 08:38:09 -08002943 w += winding_mono_conic(chopped[1], x, y, onCurveCount);
2944 }
2945 return w;
2946}
2947
2948static int winding_mono_quad(const SkPoint pts[], SkScalar x, SkScalar y, int* onCurveCount) {
2949 SkScalar y0 = pts[0].fY;
2950 SkScalar y2 = pts[2].fY;
2951
2952 int dir = 1;
2953 if (y0 > y2) {
2954 SkTSwap(y0, y2);
2955 dir = -1;
2956 }
2957 if (y < y0 || y > y2) {
2958 return 0;
2959 }
caryclark9cb5d752015-12-18 04:35:24 -08002960 if (checkOnCurve(x, y, pts[0], pts[2])) {
2961 *onCurveCount += 1;
2962 return 0;
2963 }
caryclark9aacd902015-12-14 08:38:09 -08002964 if (y == y2) {
caryclark9aacd902015-12-14 08:38:09 -08002965 return 0;
2966 }
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002967 // bounds check on X (not required. is it faster?)
2968#if 0
2969 if (pts[0].fX > x && pts[1].fX > x && pts[2].fX > x) {
2970 return 0;
2971 }
2972#endif
rmistry@google.comfbfcd562012-08-23 18:09:54 +00002973
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002974 SkScalar roots[2];
2975 int n = SkFindUnitQuadRoots(pts[0].fY - 2 * pts[1].fY + pts[2].fY,
2976 2 * (pts[1].fY - pts[0].fY),
2977 pts[0].fY - y,
2978 roots);
2979 SkASSERT(n <= 1);
2980 SkScalar xt;
2981 if (0 == n) {
caryclark9cb5d752015-12-18 04:35:24 -08002982 // zero roots are returned only when y0 == y
2983 // Need [0] if dir == 1
2984 // and [2] if dir == -1
2985 xt = pts[1 - dir].fX;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002986 } else {
2987 SkScalar t = roots[0];
2988 SkScalar C = pts[0].fX;
2989 SkScalar A = pts[2].fX - 2 * pts[1].fX + C;
2990 SkScalar B = 2 * (pts[1].fX - C);
2991 xt = SkScalarMulAdd(SkScalarMulAdd(A, t, B), t, C);
2992 }
caryclark9aacd902015-12-14 08:38:09 -08002993 if (SkScalarNearlyEqual(xt, x)) {
2994 if (x != pts[2].fX || y != pts[2].fY) { // don't test end points; they're start points
2995 *onCurveCount += 1;
caryclark9cb5d752015-12-18 04:35:24 -08002996 return 0;
caryclark9aacd902015-12-14 08:38:09 -08002997 }
2998 }
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00002999 return xt < x ? dir : 0;
3000}
3001
caryclark9aacd902015-12-14 08:38:09 -08003002static int winding_quad(const SkPoint pts[], SkScalar x, SkScalar y, int* onCurveCount) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003003 SkPoint dst[5];
3004 int n = 0;
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003005
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003006 if (!is_mono_quad(pts[0].fY, pts[1].fY, pts[2].fY)) {
3007 n = SkChopQuadAtYExtrema(pts, dst);
3008 pts = dst;
3009 }
caryclark9aacd902015-12-14 08:38:09 -08003010 int w = winding_mono_quad(pts, x, y, onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003011 if (n > 0) {
caryclark9aacd902015-12-14 08:38:09 -08003012 w += winding_mono_quad(&pts[2], x, y, onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003013 }
3014 return w;
3015}
3016
caryclark9aacd902015-12-14 08:38:09 -08003017static int winding_line(const SkPoint pts[], SkScalar x, SkScalar y, int* onCurveCount) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003018 SkScalar x0 = pts[0].fX;
3019 SkScalar y0 = pts[0].fY;
3020 SkScalar x1 = pts[1].fX;
3021 SkScalar y1 = pts[1].fY;
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003022
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003023 SkScalar dy = y1 - y0;
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003024
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003025 int dir = 1;
3026 if (y0 > y1) {
3027 SkTSwap(y0, y1);
3028 dir = -1;
3029 }
caryclark9aacd902015-12-14 08:38:09 -08003030 if (y < y0 || y > y1) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003031 return 0;
3032 }
caryclark9cb5d752015-12-18 04:35:24 -08003033 if (checkOnCurve(x, y, pts[0], pts[1])) {
3034 *onCurveCount += 1;
3035 return 0;
3036 }
3037 if (y == y1) {
caryclark9aacd902015-12-14 08:38:09 -08003038 return 0;
3039 }
3040 SkScalar cross = SkScalarMul(x1 - x0, y - pts[0].fY) - SkScalarMul(dy, x - x0);
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003041
caryclark9aacd902015-12-14 08:38:09 -08003042 if (!cross) {
fsc91065d2015-12-17 09:03:27 -08003043 // zero cross means the point is on the line, and since the case where
3044 // y of the query point is at the end point is handled above, we can be
3045 // sure that we're on the line (excluding the end point) here
caryclark9cb5d752015-12-18 04:35:24 -08003046 if (x != x1 || y != pts[1].fY) {
3047 *onCurveCount += 1;
3048 }
caryclark9aacd902015-12-14 08:38:09 -08003049 dir = 0;
3050 } else if (SkScalarSignAsInt(cross) == dir) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003051 dir = 0;
3052 }
3053 return dir;
3054}
3055
caryclark9aacd902015-12-14 08:38:09 -08003056static void tangent_cubic(const SkPoint pts[], SkScalar x, SkScalar y,
3057 SkTDArray<SkVector>* tangents) {
3058 if (!between(pts[0].fY, y, pts[1].fY) && !between(pts[1].fY, y, pts[2].fY)
3059 && !between(pts[2].fY, y, pts[3].fY)) {
3060 return;
3061 }
3062 if (!between(pts[0].fX, x, pts[1].fX) && !between(pts[1].fX, x, pts[2].fX)
3063 && !between(pts[2].fX, x, pts[3].fX)) {
3064 return;
3065 }
3066 SkPoint dst[10];
3067 int n = SkChopCubicAtYExtrema(pts, dst);
3068 for (int i = 0; i <= n; ++i) {
3069 SkPoint* c = &dst[i * 3];
3070 SkScalar t;
mbarbella276e6332016-05-31 14:44:01 -07003071 if (!SkCubicClipper::ChopMonoAtY(c, y, &t)) {
mbarbella99600d02016-06-01 15:39:47 -07003072 continue;
mbarbella276e6332016-05-31 14:44:01 -07003073 }
caryclark9aacd902015-12-14 08:38:09 -08003074 SkScalar xt = eval_cubic_pts(c[0].fX, c[1].fX, c[2].fX, c[3].fX, t);
3075 if (!SkScalarNearlyEqual(x, xt)) {
3076 continue;
3077 }
3078 SkVector tangent;
3079 SkEvalCubicAt(c, t, nullptr, &tangent, nullptr);
3080 tangents->push(tangent);
3081 }
3082}
3083
3084static void tangent_conic(const SkPoint pts[], SkScalar x, SkScalar y, SkScalar w,
3085 SkTDArray<SkVector>* tangents) {
3086 if (!between(pts[0].fY, y, pts[1].fY) && !between(pts[1].fY, y, pts[2].fY)) {
3087 return;
3088 }
3089 if (!between(pts[0].fX, x, pts[1].fX) && !between(pts[1].fX, x, pts[2].fX)) {
3090 return;
3091 }
3092 SkScalar roots[2];
3093 SkScalar A = pts[2].fY;
3094 SkScalar B = pts[1].fY * w - y * w + y;
3095 SkScalar C = pts[0].fY;
3096 A += C - 2 * B; // A = a + c - 2*(b*w - yCept*w + yCept)
3097 B -= C; // B = b*w - w * yCept + yCept - a
3098 C -= y;
3099 int n = SkFindUnitQuadRoots(A, 2 * B, C, roots);
3100 for (int index = 0; index < n; ++index) {
3101 SkScalar t = roots[index];
3102 SkScalar xt = conic_eval_numerator(&pts[0].fX, w, t) / conic_eval_denominator(w, t);
3103 if (!SkScalarNearlyEqual(x, xt)) {
3104 continue;
3105 }
3106 SkConic conic(pts, w);
3107 tangents->push(conic.evalTangentAt(t));
3108 }
3109}
3110
3111static void tangent_quad(const SkPoint pts[], SkScalar x, SkScalar y,
3112 SkTDArray<SkVector>* tangents) {
3113 if (!between(pts[0].fY, y, pts[1].fY) && !between(pts[1].fY, y, pts[2].fY)) {
3114 return;
3115 }
3116 if (!between(pts[0].fX, x, pts[1].fX) && !between(pts[1].fX, x, pts[2].fX)) {
3117 return;
3118 }
3119 SkScalar roots[2];
3120 int n = SkFindUnitQuadRoots(pts[0].fY - 2 * pts[1].fY + pts[2].fY,
3121 2 * (pts[1].fY - pts[0].fY),
3122 pts[0].fY - y,
3123 roots);
3124 for (int index = 0; index < n; ++index) {
3125 SkScalar t = roots[index];
3126 SkScalar C = pts[0].fX;
3127 SkScalar A = pts[2].fX - 2 * pts[1].fX + C;
3128 SkScalar B = 2 * (pts[1].fX - C);
3129 SkScalar xt = (A * t + B) * t + C;
3130 if (!SkScalarNearlyEqual(x, xt)) {
3131 continue;
3132 }
3133 tangents->push(SkEvalQuadTangentAt(pts, t));
3134 }
3135}
3136
3137static void tangent_line(const SkPoint pts[], SkScalar x, SkScalar y,
3138 SkTDArray<SkVector>* tangents) {
3139 SkScalar y0 = pts[0].fY;
3140 SkScalar y1 = pts[1].fY;
3141 if (!between(y0, y, y1)) {
3142 return;
3143 }
3144 SkScalar x0 = pts[0].fX;
3145 SkScalar x1 = pts[1].fX;
3146 if (!between(x0, x, x1)) {
3147 return;
3148 }
3149 SkScalar dx = x1 - x0;
3150 SkScalar dy = y1 - y0;
3151 if (!SkScalarNearlyEqual((x - x0) * dy, dx * (y - y0))) {
3152 return;
3153 }
3154 SkVector v;
3155 v.set(dx, dy);
3156 tangents->push(v);
3157}
3158
reed@google.com4db592c2013-10-30 17:39:43 +00003159static bool contains_inclusive(const SkRect& r, SkScalar x, SkScalar y) {
3160 return r.fLeft <= x && x <= r.fRight && r.fTop <= y && y <= r.fBottom;
3161}
3162
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003163bool SkPath::contains(SkScalar x, SkScalar y) const {
3164 bool isInverse = this->isInverseFillType();
3165 if (this->isEmpty()) {
3166 return isInverse;
3167 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003168
reed@google.com4db592c2013-10-30 17:39:43 +00003169 if (!contains_inclusive(this->getBounds(), x, y)) {
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003170 return isInverse;
3171 }
rmistry@google.comfbfcd562012-08-23 18:09:54 +00003172
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003173 SkPath::Iter iter(*this, true);
3174 bool done = false;
3175 int w = 0;
caryclark9aacd902015-12-14 08:38:09 -08003176 int onCurveCount = 0;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003177 do {
3178 SkPoint pts[4];
3179 switch (iter.next(pts, false)) {
3180 case SkPath::kMove_Verb:
3181 case SkPath::kClose_Verb:
3182 break;
3183 case SkPath::kLine_Verb:
caryclark9aacd902015-12-14 08:38:09 -08003184 w += winding_line(pts, x, y, &onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003185 break;
3186 case SkPath::kQuad_Verb:
caryclark9aacd902015-12-14 08:38:09 -08003187 w += winding_quad(pts, x, y, &onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003188 break;
reed@google.com277c3f82013-05-31 15:17:50 +00003189 case SkPath::kConic_Verb:
caryclark9aacd902015-12-14 08:38:09 -08003190 w += winding_conic(pts, x, y, iter.conicWeight(), &onCurveCount);
reed@google.com277c3f82013-05-31 15:17:50 +00003191 break;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003192 case SkPath::kCubic_Verb:
caryclark9aacd902015-12-14 08:38:09 -08003193 w += winding_cubic(pts, x, y, &onCurveCount);
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003194 break;
3195 case SkPath::kDone_Verb:
3196 done = true;
3197 break;
reed@google.com277c3f82013-05-31 15:17:50 +00003198 }
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003199 } while (!done);
caryclark9aacd902015-12-14 08:38:09 -08003200 bool evenOddFill = SkPath::kEvenOdd_FillType == this->getFillType()
3201 || SkPath::kInverseEvenOdd_FillType == this->getFillType();
3202 if (evenOddFill) {
3203 w &= 1;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003204 }
caryclark9aacd902015-12-14 08:38:09 -08003205 if (w) {
3206 return !isInverse;
3207 }
3208 if (onCurveCount <= 1) {
3209 return SkToBool(onCurveCount) ^ isInverse;
3210 }
3211 if ((onCurveCount & 1) || evenOddFill) {
3212 return SkToBool(onCurveCount & 1) ^ isInverse;
3213 }
halcanary9d524f22016-03-29 09:03:52 -07003214 // If the point touches an even number of curves, and the fill is winding, check for
caryclark9aacd902015-12-14 08:38:09 -08003215 // coincidence. Count coincidence as places where the on curve points have identical tangents.
3216 iter.setPath(*this, true);
caryclark9cb5d752015-12-18 04:35:24 -08003217 done = false;
caryclark9aacd902015-12-14 08:38:09 -08003218 SkTDArray<SkVector> tangents;
3219 do {
3220 SkPoint pts[4];
3221 int oldCount = tangents.count();
3222 switch (iter.next(pts, false)) {
3223 case SkPath::kMove_Verb:
3224 case SkPath::kClose_Verb:
3225 break;
3226 case SkPath::kLine_Verb:
3227 tangent_line(pts, x, y, &tangents);
3228 break;
3229 case SkPath::kQuad_Verb:
3230 tangent_quad(pts, x, y, &tangents);
3231 break;
3232 case SkPath::kConic_Verb:
3233 tangent_conic(pts, x, y, iter.conicWeight(), &tangents);
3234 break;
3235 case SkPath::kCubic_Verb:
3236 tangent_cubic(pts, x, y, &tangents);
3237 break;
3238 case SkPath::kDone_Verb:
3239 done = true;
3240 break;
3241 }
3242 if (tangents.count() > oldCount) {
3243 int last = tangents.count() - 1;
3244 const SkVector& tangent = tangents[last];
3245 if (SkScalarNearlyZero(tangent.lengthSqd())) {
3246 tangents.remove(last);
3247 } else {
3248 for (int index = 0; index < last; ++index) {
3249 const SkVector& test = tangents[index];
3250 if (SkScalarNearlyZero(test.cross(tangent))
caryclark9cb5d752015-12-18 04:35:24 -08003251 && SkScalarSignAsInt(tangent.fX * test.fX) <= 0
3252 && SkScalarSignAsInt(tangent.fY * test.fY) <= 0) {
caryclark9aacd902015-12-14 08:38:09 -08003253 tangents.remove(last);
3254 tangents.removeShuffle(index);
3255 break;
3256 }
3257 }
3258 }
3259 }
3260 } while (!done);
3261 return SkToBool(tangents.count()) ^ isInverse;
mike@reedtribe.orgbad1b2f2012-07-11 01:51:33 +00003262}
fmalitaaa0df4e2015-12-01 09:13:23 -08003263
3264int SkPath::ConvertConicToQuads(const SkPoint& p0, const SkPoint& p1, const SkPoint& p2,
3265 SkScalar w, SkPoint pts[], int pow2) {
3266 const SkConic conic(p0, p1, p2, w);
3267 return conic.chopIntoQuadsPOW2(pts, pow2);
3268}
bsalomonedc743a2016-06-01 09:42:31 -07003269
3270bool SkPathPriv::IsSimpleClosedRect(const SkPath& path, SkRect* rect, SkPath::Direction* direction,
3271 unsigned* start) {
3272 if (path.getSegmentMasks() != SkPath::kLine_SegmentMask) {
3273 return false;
3274 }
3275 SkPath::RawIter iter(path);
3276 SkPoint verbPts[4];
3277 SkPath::Verb v;
3278 SkPoint rectPts[5];
3279 int rectPtCnt = 0;
3280 while ((v = iter.next(verbPts)) != SkPath::kDone_Verb) {
3281 switch (v) {
3282 case SkPath::kMove_Verb:
3283 if (0 != rectPtCnt) {
3284 return false;
3285 }
3286 rectPts[0] = verbPts[0];
3287 ++rectPtCnt;
3288 break;
3289 case SkPath::kLine_Verb:
3290 if (5 == rectPtCnt) {
3291 return false;
3292 }
3293 rectPts[rectPtCnt] = verbPts[1];
3294 ++rectPtCnt;
3295 break;
3296 case SkPath::kClose_Verb:
3297 if (4 == rectPtCnt) {
3298 rectPts[4] = rectPts[0];
3299 rectPtCnt = 5;
3300 }
3301 break;
3302 default:
3303 return false;
3304 }
3305 }
3306 if (rectPtCnt < 5) {
3307 return false;
3308 }
3309 if (rectPts[0] != rectPts[4]) {
3310 return false;
3311 }
bsalomon057ae8a2016-07-24 05:37:26 -07003312 // Check for two cases of rectangles: pts 0 and 3 form a vertical edge or a horizontal edge (
3313 // and pts 1 and 2 the opposite vertical or horizontal edge).
3314 bool vec03IsVertical;
3315 if (rectPts[0].fX == rectPts[3].fX && rectPts[1].fX == rectPts[2].fX &&
3316 rectPts[0].fY == rectPts[1].fY && rectPts[3].fY == rectPts[2].fY) {
3317 // Make sure it has non-zero width and height
3318 if (rectPts[0].fX == rectPts[1].fX || rectPts[0].fY == rectPts[3].fY) {
bsalomonedc743a2016-06-01 09:42:31 -07003319 return false;
3320 }
bsalomon057ae8a2016-07-24 05:37:26 -07003321 vec03IsVertical = true;
3322 } else if (rectPts[0].fY == rectPts[3].fY && rectPts[1].fY == rectPts[2].fY &&
3323 rectPts[0].fX == rectPts[1].fX && rectPts[3].fX == rectPts[2].fX) {
3324 // Make sure it has non-zero width and height
3325 if (rectPts[0].fY == rectPts[1].fY || rectPts[0].fX == rectPts[3].fX) {
3326 return false;
3327 }
3328 vec03IsVertical = false;
3329 } else {
bsalomonedc743a2016-06-01 09:42:31 -07003330 return false;
3331 }
bsalomon057ae8a2016-07-24 05:37:26 -07003332 // Set sortFlags so that it has the low bit set if pt index 0 is on right edge and second bit
3333 // set if it is on the bottom edge.
3334 unsigned sortFlags =
3335 ((rectPts[0].fX < rectPts[2].fX) ? 0b00 : 0b01) |
3336 ((rectPts[0].fY < rectPts[2].fY) ? 0b00 : 0b10);
3337 switch (sortFlags) {
3338 case 0b00:
3339 rect->set(rectPts[0].fX, rectPts[0].fY, rectPts[2].fX, rectPts[2].fY);
3340 *direction = vec03IsVertical ? SkPath::kCW_Direction : SkPath::kCCW_Direction;
3341 *start = 0;
3342 break;
3343 case 0b01:
3344 rect->set(rectPts[2].fX, rectPts[0].fY, rectPts[0].fX, rectPts[2].fY);
3345 *direction = vec03IsVertical ? SkPath::kCCW_Direction : SkPath::kCW_Direction;
3346 *start = 1;
3347 break;
3348 case 0b10:
3349 rect->set(rectPts[0].fX, rectPts[2].fY, rectPts[2].fX, rectPts[0].fY);
3350 *direction = vec03IsVertical ? SkPath::kCCW_Direction : SkPath::kCW_Direction;
3351 *start = 3;
3352 break;
3353 case 0b11:
3354 rect->set(rectPts[2].fX, rectPts[2].fY, rectPts[0].fX, rectPts[0].fY);
3355 *direction = vec03IsVertical ? SkPath::kCW_Direction : SkPath::kCCW_Direction;
3356 *start = 2;
3357 break;
bsalomonedc743a2016-06-01 09:42:31 -07003358 }
bsalomonedc743a2016-06-01 09:42:31 -07003359 return true;
3360}
bsalomon21af9ca2016-08-25 12:29:23 -07003361
3362void SkPathPriv::CreateDrawArcPath(SkPath* path, const SkRect& oval, SkScalar startAngle,
3363 SkScalar sweepAngle, bool useCenter, bool isFillNoPathEffect) {
3364 SkASSERT(!oval.isEmpty());
3365 SkASSERT(sweepAngle);
3366
3367 path->reset();
3368 path->setIsVolatile(true);
3369 path->setFillType(SkPath::kWinding_FillType);
3370 if (isFillNoPathEffect && SkScalarAbs(sweepAngle) >= 360.f) {
3371 path->addOval(oval);
3372 return;
3373 }
3374 if (useCenter) {
3375 path->moveTo(oval.centerX(), oval.centerY());
3376 }
3377 // Arc to mods at 360 and drawArc is not supposed to.
3378 bool forceMoveTo = !useCenter;
3379 while (sweepAngle <= -360.f) {
3380 path->arcTo(oval, startAngle, -180.f, forceMoveTo);
3381 startAngle -= 180.f;
3382 path->arcTo(oval, startAngle, -180.f, false);
3383 startAngle -= 180.f;
3384 forceMoveTo = false;
3385 sweepAngle += 360.f;
3386 }
3387 while (sweepAngle >= 360.f) {
3388 path->arcTo(oval, startAngle, 180.f, forceMoveTo);
3389 startAngle += 180.f;
3390 path->arcTo(oval, startAngle, 180.f, false);
3391 startAngle += 180.f;
3392 forceMoveTo = false;
3393 sweepAngle -= 360.f;
3394 }
3395 path->arcTo(oval, startAngle, sweepAngle, forceMoveTo);
3396 if (useCenter) {
3397 path->close();
3398 }
3399}