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bsalomon@google.com69cc6ad2012-01-17 14:25:10 +00001/*
2 * Copyright 2012 Google Inc.
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
Mike Kleinc0bd9f92019-04-23 12:05:21 -05008#include "include/core/SkString.h"
9#include "include/core/SkTypes.h"
10#include "src/core/SkGeometry.h"
11#include "src/core/SkPathPriv.h"
12#include "src/core/SkPointPriv.h"
Greg Danielf91aeb22019-06-18 09:58:02 -040013#include "src/gpu/GrAuditTrail.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050014#include "src/gpu/GrCaps.h"
15#include "src/gpu/GrDrawOpTest.h"
16#include "src/gpu/GrGeometryProcessor.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050017#include "src/gpu/GrProcessor.h"
Robert Phillips3eabf4a2020-03-10 14:49:20 -040018#include "src/gpu/GrProgramInfo.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050019#include "src/gpu/GrRenderTargetContext.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050020#include "src/gpu/GrVertexWriter.h"
Michael Ludwig663afe52019-06-03 16:46:19 -040021#include "src/gpu/geometry/GrPathUtils.h"
22#include "src/gpu/geometry/GrShape.h"
Mike Kleinc0bd9f92019-04-23 12:05:21 -050023#include "src/gpu/glsl/GrGLSLFragmentShaderBuilder.h"
24#include "src/gpu/glsl/GrGLSLGeometryProcessor.h"
25#include "src/gpu/glsl/GrGLSLProgramDataManager.h"
26#include "src/gpu/glsl/GrGLSLUniformHandler.h"
27#include "src/gpu/glsl/GrGLSLVarying.h"
28#include "src/gpu/glsl/GrGLSLVertexGeoBuilder.h"
29#include "src/gpu/ops/GrAAConvexPathRenderer.h"
30#include "src/gpu/ops/GrMeshDrawOp.h"
Robert Phillips55f681f2020-02-28 08:58:15 -050031#include "src/gpu/ops/GrSimpleMeshDrawOpHelperWithStencil.h"
commit-bot@chromium.org234d4fb2013-09-30 19:55:49 +000032
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000033GrAAConvexPathRenderer::GrAAConvexPathRenderer() {
34}
35
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000036struct Segment {
37 enum {
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000038 // These enum values are assumed in member functions below.
39 kLine = 0,
40 kQuad = 1,
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000041 } fType;
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000042
bsalomon@google.com9aed1142012-01-30 14:28:39 +000043 // line uses one pt, quad uses 2 pts
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +000044 SkPoint fPts[2];
bsalomon@google.com9aed1142012-01-30 14:28:39 +000045 // normal to edge ending at each pt
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +000046 SkVector fNorms[2];
bsalomon@google.com9aed1142012-01-30 14:28:39 +000047 // is the corner where the previous segment meets this segment
48 // sharp. If so, fMid is a normalized bisector facing outward.
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +000049 SkVector fMid;
bsalomon@google.com9aed1142012-01-30 14:28:39 +000050
51 int countPoints() {
Brian Salomon4dea72a2019-12-18 10:43:10 -050052 static_assert(0 == kLine && 1 == kQuad);
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000053 return fType + 1;
bsalomon@google.com9aed1142012-01-30 14:28:39 +000054 }
55 const SkPoint& endPt() const {
Brian Salomon4dea72a2019-12-18 10:43:10 -050056 static_assert(0 == kLine && 1 == kQuad);
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000057 return fPts[fType];
Mike Kleinfc6c37b2016-09-27 09:34:10 -040058 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +000059 const SkPoint& endNorm() const {
Brian Salomon4dea72a2019-12-18 10:43:10 -050060 static_assert(0 == kLine && 1 == kQuad);
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000061 return fNorms[fType];
Mike Kleinfc6c37b2016-09-27 09:34:10 -040062 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000063};
64
65typedef SkTArray<Segment, true> SegmentArray;
66
Greg Daniel8b09b962018-04-03 14:53:45 -040067static bool center_of_mass(const SegmentArray& segments, SkPoint* c) {
bsalomon@google.com81712882012-11-01 17:12:34 +000068 SkScalar area = 0;
vandebo@chromium.org6390c722012-03-28 21:03:22 +000069 SkPoint center = {0, 0};
bsalomon@google.com9aed1142012-01-30 14:28:39 +000070 int count = segments.count();
vandebo@chromium.org6390c722012-03-28 21:03:22 +000071 SkPoint p0 = {0, 0};
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000072 if (count > 2) {
73 // We translate the polygon so that the first point is at the origin.
74 // This avoids some precision issues with small area polygons far away
75 // from the origin.
76 p0 = segments[0].endPt();
77 SkPoint pi;
78 SkPoint pj;
bsalomon@google.coma51ab842012-07-10 19:53:34 +000079 // the first and last iteration of the below loop would compute
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000080 // zeros since the starting / ending point is (0,0). So instead we start
81 // at i=1 and make the last iteration i=count-2.
82 pj = segments[1].endPt() - p0;
83 for (int i = 1; i < count - 1; ++i) {
84 pi = pj;
robertphillips44c31282015-09-03 12:58:48 -070085 pj = segments[i + 1].endPt() - p0;
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000086
robertphillips44c31282015-09-03 12:58:48 -070087 SkScalar t = SkPoint::CrossProduct(pi, pj);
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000088 area += t;
89 center.fX += (pi.fX + pj.fX) * t;
90 center.fY += (pi.fY + pj.fY) * t;
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000091 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +000092 }
robertphillips44c31282015-09-03 12:58:48 -070093
bsalomon@google.com278dc692012-02-15 16:52:51 +000094 // If the poly has no area then we instead return the average of
95 // its points.
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000096 if (SkScalarNearlyZero(area)) {
bsalomon@google.com278dc692012-02-15 16:52:51 +000097 SkPoint avg;
98 avg.set(0, 0);
99 for (int i = 0; i < count; ++i) {
100 const SkPoint& pt = segments[i].endPt();
101 avg.fX += pt.fX;
102 avg.fY += pt.fY;
103 }
104 SkScalar denom = SK_Scalar1 / count;
105 avg.scale(denom);
106 *c = avg;
107 } else {
108 area *= 3;
reed80ea19c2015-05-12 10:37:34 -0700109 area = SkScalarInvert(area);
robertphillips44c31282015-09-03 12:58:48 -0700110 center.scale(area);
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +0000111 // undo the translate of p0 to the origin.
112 *c = center + p0;
bsalomon@google.com278dc692012-02-15 16:52:51 +0000113 }
Greg Daniel62473ad2018-04-03 15:44:18 -0400114 return !SkScalarIsNaN(c->fX) && !SkScalarIsNaN(c->fY) && c->isFinite();
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000115}
116
Greg Daniel8b09b962018-04-03 14:53:45 -0400117static bool compute_vectors(SegmentArray* segments,
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000118 SkPoint* fanPt,
reed026beb52015-06-10 14:23:15 -0700119 SkPathPriv::FirstDirection dir,
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000120 int* vCount,
121 int* iCount) {
Greg Daniel8b09b962018-04-03 14:53:45 -0400122 if (!center_of_mass(*segments, fanPt)) {
123 return false;
124 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000125 int count = segments->count();
126
bsalomon@google.com278dc692012-02-15 16:52:51 +0000127 // Make the normals point towards the outside
Cary Clarkdf429f32017-11-08 11:44:31 -0500128 SkPointPriv::Side normSide;
reed026beb52015-06-10 14:23:15 -0700129 if (dir == SkPathPriv::kCCW_FirstDirection) {
Cary Clarkdf429f32017-11-08 11:44:31 -0500130 normSide = SkPointPriv::kRight_Side;
bsalomon@google.com278dc692012-02-15 16:52:51 +0000131 } else {
Cary Clarkdf429f32017-11-08 11:44:31 -0500132 normSide = SkPointPriv::kLeft_Side;
bsalomon@google.com278dc692012-02-15 16:52:51 +0000133 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000134
Greg Danield5b45932018-06-07 13:15:10 -0400135 int64_t vCount64 = 0;
136 int64_t iCount64 = 0;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000137 // compute normals at all points
138 for (int a = 0; a < count; ++a) {
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000139 Segment& sega = (*segments)[a];
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000140 int b = (a + 1) % count;
141 Segment& segb = (*segments)[b];
142
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000143 const SkPoint* prevPt = &sega.endPt();
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000144 int n = segb.countPoints();
145 for (int p = 0; p < n; ++p) {
146 segb.fNorms[p] = segb.fPts[p] - *prevPt;
147 segb.fNorms[p].normalize();
Brian Salomon0235c642018-08-31 12:04:18 -0400148 segb.fNorms[p] = SkPointPriv::MakeOrthog(segb.fNorms[p], normSide);
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000149 prevPt = &segb.fPts[p];
150 }
151 if (Segment::kLine == segb.fType) {
Greg Danield5b45932018-06-07 13:15:10 -0400152 vCount64 += 5;
153 iCount64 += 9;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000154 } else {
Greg Danield5b45932018-06-07 13:15:10 -0400155 vCount64 += 6;
156 iCount64 += 12;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000157 }
158 }
159
160 // compute mid-vectors where segments meet. TODO: Detect shallow corners
161 // and leave out the wedges and close gaps by stitching segments together.
162 for (int a = 0; a < count; ++a) {
163 const Segment& sega = (*segments)[a];
164 int b = (a + 1) % count;
165 Segment& segb = (*segments)[b];
166 segb.fMid = segb.fNorms[0] + sega.endNorm();
167 segb.fMid.normalize();
168 // corner wedges
Greg Danield5b45932018-06-07 13:15:10 -0400169 vCount64 += 4;
170 iCount64 += 6;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000171 }
Greg Danield5b45932018-06-07 13:15:10 -0400172 if (vCount64 > SK_MaxS32 || iCount64 > SK_MaxS32) {
173 return false;
174 }
175 *vCount = vCount64;
176 *iCount = iCount64;
Greg Daniel8b09b962018-04-03 14:53:45 -0400177 return true;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000178}
179
bsalomon@google.com9732f622012-01-31 15:19:21 +0000180struct DegenerateTestData {
181 DegenerateTestData() { fStage = kInitial; }
182 bool isDegenerate() const { return kNonDegenerate != fStage; }
183 enum {
184 kInitial,
185 kPoint,
186 kLine,
187 kNonDegenerate
188 } fStage;
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000189 SkPoint fFirstPoint;
190 SkVector fLineNormal;
bsalomon@google.com81712882012-11-01 17:12:34 +0000191 SkScalar fLineC;
bsalomon@google.com9732f622012-01-31 15:19:21 +0000192};
193
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000194static const SkScalar kClose = (SK_Scalar1 / 16);
Mike Reed8be952a2017-02-13 20:44:33 -0500195static const SkScalar kCloseSqd = kClose * kClose;
bsalomon@google.com9732f622012-01-31 15:19:21 +0000196
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000197static void update_degenerate_test(DegenerateTestData* data, const SkPoint& pt) {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000198 switch (data->fStage) {
199 case DegenerateTestData::kInitial:
200 data->fFirstPoint = pt;
201 data->fStage = DegenerateTestData::kPoint;
202 break;
203 case DegenerateTestData::kPoint:
Cary Clarkdf429f32017-11-08 11:44:31 -0500204 if (SkPointPriv::DistanceToSqd(pt, data->fFirstPoint) > kCloseSqd) {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000205 data->fLineNormal = pt - data->fFirstPoint;
206 data->fLineNormal.normalize();
Brian Salomon0235c642018-08-31 12:04:18 -0400207 data->fLineNormal = SkPointPriv::MakeOrthog(data->fLineNormal);
bsalomon@google.com9732f622012-01-31 15:19:21 +0000208 data->fLineC = -data->fLineNormal.dot(data->fFirstPoint);
209 data->fStage = DegenerateTestData::kLine;
210 }
211 break;
212 case DegenerateTestData::kLine:
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000213 if (SkScalarAbs(data->fLineNormal.dot(pt) + data->fLineC) > kClose) {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000214 data->fStage = DegenerateTestData::kNonDegenerate;
215 }
216 case DegenerateTestData::kNonDegenerate:
217 break;
218 default:
Ben Wagnerb4aab9a2017-08-16 10:53:04 -0400219 SK_ABORT("Unexpected degenerate test stage.");
bsalomon@google.com9732f622012-01-31 15:19:21 +0000220 }
221}
222
Brian Osman2caecd22019-09-25 14:02:26 -0400223static inline bool get_direction(const SkPath& path, const SkMatrix& m,
224 SkPathPriv::FirstDirection* dir) {
Michael Ludwig0a1e9ef2019-08-30 10:03:15 -0400225 // At this point, we've already returned true from canDraw(), which checked that the path's
226 // direction could be determined, so this should just be fetching the cached direction.
Brian Osman2caecd22019-09-25 14:02:26 -0400227 // However, if perspective is involved, we're operating on a transformed path, which may no
228 // longer have a computable direction.
229 if (!SkPathPriv::CheapComputeFirstDirection(path, dir)) {
230 return false;
231 }
Michael Ludwig0a1e9ef2019-08-30 10:03:15 -0400232
bsalomon@google.comaf90f7f2012-03-05 20:50:10 +0000233 // check whether m reverses the orientation
tfarina@chromium.orgf6de4752013-08-17 00:02:59 +0000234 SkASSERT(!m.hasPerspective());
Mike Reed8be952a2017-02-13 20:44:33 -0500235 SkScalar det2x2 = m.get(SkMatrix::kMScaleX) * m.get(SkMatrix::kMScaleY) -
236 m.get(SkMatrix::kMSkewX) * m.get(SkMatrix::kMSkewY);
bsalomon@google.comaf90f7f2012-03-05 20:50:10 +0000237 if (det2x2 < 0) {
Brian Osman2caecd22019-09-25 14:02:26 -0400238 *dir = SkPathPriv::OppositeFirstDirection(*dir);
bsalomon@google.comaf90f7f2012-03-05 20:50:10 +0000239 }
Michael Ludwig0a1e9ef2019-08-30 10:03:15 -0400240
Brian Osman2caecd22019-09-25 14:02:26 -0400241 return true;
bsalomon@google.comaf90f7f2012-03-05 20:50:10 +0000242}
243
commit-bot@chromium.org106655e2013-09-03 21:28:55 +0000244static inline void add_line_to_segment(const SkPoint& pt,
joshualitt27f398f2015-02-05 14:39:01 -0800245 SegmentArray* segments) {
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000246 segments->push_back();
247 segments->back().fType = Segment::kLine;
248 segments->back().fPts[0] = pt;
249}
250
commit-bot@chromium.org106655e2013-09-03 21:28:55 +0000251static inline void add_quad_segment(const SkPoint pts[3],
joshualitt27f398f2015-02-05 14:39:01 -0800252 SegmentArray* segments) {
Brian Salomon5f8a62b2019-03-29 13:55:32 -0400253 if (SkPointPriv::DistanceToLineSegmentBetweenSqd(pts[1], pts[0], pts[2]) < kCloseSqd) {
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000254 if (pts[0] != pts[2]) {
joshualitt27f398f2015-02-05 14:39:01 -0800255 add_line_to_segment(pts[2], segments);
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000256 }
257 } else {
258 segments->push_back();
259 segments->back().fType = Segment::kQuad;
260 segments->back().fPts[0] = pts[1];
261 segments->back().fPts[1] = pts[2];
262 }
263}
264
265static inline void add_cubic_segments(const SkPoint pts[4],
reed026beb52015-06-10 14:23:15 -0700266 SkPathPriv::FirstDirection dir,
joshualitt27f398f2015-02-05 14:39:01 -0800267 SegmentArray* segments) {
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000268 SkSTArray<15, SkPoint, true> quads;
bsalomon18fab302016-02-16 08:00:05 -0800269 GrPathUtils::convertCubicToQuadsConstrainToTangents(pts, SK_Scalar1, dir, &quads);
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000270 int count = quads.count();
271 for (int q = 0; q < count; q += 3) {
joshualitt27f398f2015-02-05 14:39:01 -0800272 add_quad_segment(&quads[q], segments);
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000273 }
274}
275
276static bool get_segments(const SkPath& path,
277 const SkMatrix& m,
278 SegmentArray* segments,
279 SkPoint* fanPt,
280 int* vCount,
joshualitt27f398f2015-02-05 14:39:01 -0800281 int* iCount) {
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000282 SkPath::Iter iter(path, true);
bsalomon@google.com30c174b2012-11-13 14:36:42 +0000283 // This renderer over-emphasizes very thin path regions. We use the distance
bsalomon@google.com5cc90d12012-01-17 16:28:34 +0000284 // to the path from the sample to compute coverage. Every pixel intersected
285 // by the path will be hit and the maximum distance is sqrt(2)/2. We don't
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000286 // notice that the sample may be close to a very thin area of the path and
bsalomon@google.com5cc90d12012-01-17 16:28:34 +0000287 // thus should be very light. This is particularly egregious for degenerate
288 // line paths. We detect paths that are very close to a line (zero area) and
289 // draw nothing.
bsalomon@google.com9732f622012-01-31 15:19:21 +0000290 DegenerateTestData degenerateData;
Brian Osman2caecd22019-09-25 14:02:26 -0400291 SkPathPriv::FirstDirection dir;
292 if (!get_direction(path, m, &dir)) {
293 return false;
294 }
bsalomon@google.com9732f622012-01-31 15:19:21 +0000295
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000296 for (;;) {
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000297 SkPoint pts[4];
Mike Reedba7e9a62019-08-16 13:30:34 -0400298 SkPath::Verb verb = iter.next(pts);
bsalomon@google.com94b284d2013-05-10 17:14:06 +0000299 switch (verb) {
300 case SkPath::kMove_Verb:
bsalomon@google.com1a38d552012-03-15 14:40:46 +0000301 m.mapPoints(pts, 1);
bsalomon@google.com9732f622012-01-31 15:19:21 +0000302 update_degenerate_test(&degenerateData, pts[0]);
303 break;
bsalomon@google.com94b284d2013-05-10 17:14:06 +0000304 case SkPath::kLine_Verb: {
Mike Reedba7e9a62019-08-16 13:30:34 -0400305 if (!SkPathPriv::AllPointsEq(pts, 2)) {
306 m.mapPoints(&pts[1], 1);
307 update_degenerate_test(&degenerateData, pts[1]);
308 add_line_to_segment(pts[1], segments);
309 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000310 break;
311 }
bsalomon@google.com94b284d2013-05-10 17:14:06 +0000312 case SkPath::kQuad_Verb:
Mike Reedba7e9a62019-08-16 13:30:34 -0400313 if (!SkPathPriv::AllPointsEq(pts, 3)) {
314 m.mapPoints(pts, 3);
315 update_degenerate_test(&degenerateData, pts[1]);
316 update_degenerate_test(&degenerateData, pts[2]);
317 add_quad_segment(pts, segments);
318 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000319 break;
egdanielaf18a092015-01-05 10:22:28 -0800320 case SkPath::kConic_Verb: {
Mike Reedba7e9a62019-08-16 13:30:34 -0400321 if (!SkPathPriv::AllPointsEq(pts, 3)) {
322 m.mapPoints(pts, 3);
323 SkScalar weight = iter.conicWeight();
324 SkAutoConicToQuads converter;
325 const SkPoint* quadPts = converter.computeQuads(pts, weight, 0.25f);
326 for (int i = 0; i < converter.countQuads(); ++i) {
327 update_degenerate_test(&degenerateData, quadPts[2*i + 1]);
328 update_degenerate_test(&degenerateData, quadPts[2*i + 2]);
329 add_quad_segment(quadPts + 2*i, segments);
330 }
egdanielaf18a092015-01-05 10:22:28 -0800331 }
332 break;
333 }
bsalomon@google.com94b284d2013-05-10 17:14:06 +0000334 case SkPath::kCubic_Verb: {
Mike Reedba7e9a62019-08-16 13:30:34 -0400335 if (!SkPathPriv::AllPointsEq(pts, 4)) {
336 m.mapPoints(pts, 4);
337 update_degenerate_test(&degenerateData, pts[1]);
338 update_degenerate_test(&degenerateData, pts[2]);
339 update_degenerate_test(&degenerateData, pts[3]);
340 add_cubic_segments(pts, dir, segments);
341 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000342 break;
Brian Salomon23356442018-11-30 15:33:19 -0500343 }
bsalomon@google.com94b284d2013-05-10 17:14:06 +0000344 case SkPath::kDone_Verb:
bsalomon@google.com9732f622012-01-31 15:19:21 +0000345 if (degenerateData.isDegenerate()) {
346 return false;
347 } else {
Greg Daniel8b09b962018-04-03 14:53:45 -0400348 return compute_vectors(segments, fanPt, dir, vCount, iCount);
bsalomon@google.com9732f622012-01-31 15:19:21 +0000349 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000350 default:
351 break;
352 }
353 }
354}
355
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000356struct Draw {
357 Draw() : fVertexCnt(0), fIndexCnt(0) {}
358 int fVertexCnt;
359 int fIndexCnt;
360};
361
362typedef SkTArray<Draw, true> DrawArray;
363
Brian Salomon60fb0b22017-06-15 17:09:36 -0400364static void create_vertices(const SegmentArray& segments,
commit-bot@chromium.orgfdfbb9d2013-08-15 18:16:27 +0000365 const SkPoint& fanPt,
Brian Osman7f4735b2019-01-02 13:55:10 +0000366 const GrVertexColor& color,
Brian Salomon60fb0b22017-06-15 17:09:36 -0400367 DrawArray* draws,
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500368 GrVertexWriter& verts,
369 uint16_t* idxs,
370 size_t vertexStride) {
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000371 Draw* draw = &draws->push_back();
372 // alias just to make vert/index assignments easier to read.
373 int* v = &draw->fVertexCnt;
374 int* i = &draw->fIndexCnt;
Brian Osman7f4735b2019-01-02 13:55:10 +0000375 const size_t uvOffset = sizeof(SkPoint) + color.size();
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000376
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000377 int count = segments.count();
378 for (int a = 0; a < count; ++a) {
379 const Segment& sega = segments[a];
380 int b = (a + 1) % count;
381 const Segment& segb = segments[b];
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000382
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000383 // Check whether adding the verts for this segment to the current draw would cause index
384 // values to overflow.
385 int vCount = 4;
386 if (Segment::kLine == segb.fType) {
387 vCount += 5;
388 } else {
389 vCount += 6;
390 }
391 if (draw->fVertexCnt + vCount > (1 << 16)) {
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000392 idxs += *i;
393 draw = &draws->push_back();
394 v = &draw->fVertexCnt;
395 i = &draw->fIndexCnt;
396 }
397
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500398 const SkScalar negOneDists[2] = { -SK_Scalar1, -SK_Scalar1 };
399
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000400 // FIXME: These tris are inset in the 1 unit arc around the corner
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500401 SkPoint p0 = sega.endPt();
402 // Position, Color, UV, D0, D1
403 verts.write(p0, color, SkPoint{0, 0}, negOneDists);
404 verts.write(p0 + sega.endNorm(), color, SkPoint{0, -SK_Scalar1}, negOneDists);
405 verts.write(p0 + segb.fMid, color, SkPoint{0, -SK_Scalar1}, negOneDists);
406 verts.write(p0 + segb.fNorms[0], color, SkPoint{0, -SK_Scalar1}, negOneDists);
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000407
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000408 idxs[*i + 0] = *v + 0;
409 idxs[*i + 1] = *v + 2;
410 idxs[*i + 2] = *v + 1;
411 idxs[*i + 3] = *v + 0;
412 idxs[*i + 4] = *v + 3;
413 idxs[*i + 5] = *v + 2;
rmistry@google.comfbfcd562012-08-23 18:09:54 +0000414
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000415 *v += 4;
416 *i += 6;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000417
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000418 if (Segment::kLine == segb.fType) {
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000419 // we draw the line edge as a degenerate quad (u is 0, v is the
420 // signed distance to the edge)
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500421 SkPoint v1Pos = sega.endPt();
422 SkPoint v2Pos = segb.fPts[0];
423 SkScalar dist = SkPointPriv::DistanceToLineBetween(fanPt, v1Pos, v2Pos);
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000424
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500425 verts.write(fanPt, color, SkPoint{0, dist}, negOneDists);
426 verts.write(v1Pos, color, SkPoint{0, 0}, negOneDists);
427 verts.write(v2Pos, color, SkPoint{0, 0}, negOneDists);
428 verts.write(v1Pos + segb.fNorms[0], color, SkPoint{0, -SK_Scalar1}, negOneDists);
429 verts.write(v2Pos + segb.fNorms[0], color, SkPoint{0, -SK_Scalar1}, negOneDists);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000430
cdalton35964822015-04-29 10:14:03 -0700431 idxs[*i + 0] = *v + 3;
432 idxs[*i + 1] = *v + 1;
433 idxs[*i + 2] = *v + 2;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000434
cdalton35964822015-04-29 10:14:03 -0700435 idxs[*i + 3] = *v + 4;
436 idxs[*i + 4] = *v + 3;
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000437 idxs[*i + 5] = *v + 2;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000438
cdalton35964822015-04-29 10:14:03 -0700439 *i += 6;
440
441 // Draw the interior fan if it exists.
442 // TODO: Detect and combine colinear segments. This will ensure we catch every case
443 // with no interior, and that the resulting shared edge uses the same endpoints.
444 if (count >= 3) {
445 idxs[*i + 0] = *v + 0;
446 idxs[*i + 1] = *v + 2;
447 idxs[*i + 2] = *v + 1;
448
449 *i += 3;
450 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000451
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000452 *v += 5;
bsalomon@google.com06809612012-01-21 15:03:39 +0000453 } else {
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500454 void* quadVertsBegin = verts.fPtr;
455
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000456 SkPoint qpts[] = {sega.endPt(), segb.fPts[0], segb.fPts[1]};
bsalomon@google.com495e2102012-01-21 14:48:36 +0000457
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500458 SkScalar c0 = segb.fNorms[0].dot(qpts[0]);
459 SkScalar c1 = segb.fNorms[1].dot(qpts[2]);
460 GrVertexWriter::Skip<SkPoint> skipUVs;
461
462 verts.write(fanPt,
463 color, skipUVs,
464 -segb.fNorms[0].dot(fanPt) + c0,
465 -segb.fNorms[1].dot(fanPt) + c1);
466
467 verts.write(qpts[0],
468 color, skipUVs,
469 0.0f,
470 -segb.fNorms[1].dot(qpts[0]) + c1);
471
472 verts.write(qpts[2],
473 color, skipUVs,
474 -segb.fNorms[0].dot(qpts[2]) + c0,
475 0.0f);
476
477 verts.write(qpts[0] + segb.fNorms[0],
478 color, skipUVs,
479 -SK_ScalarMax/100,
480 -SK_ScalarMax/100);
481
482 verts.write(qpts[2] + segb.fNorms[1],
483 color, skipUVs,
484 -SK_ScalarMax/100,
485 -SK_ScalarMax/100);
486
commit-bot@chromium.org972f9cd2014-03-28 17:58:28 +0000487 SkVector midVec = segb.fNorms[0] + segb.fNorms[1];
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000488 midVec.normalize();
bsalomon@google.com06809612012-01-21 15:03:39 +0000489
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500490 verts.write(qpts[1] + midVec,
491 color, skipUVs,
492 -SK_ScalarMax/100,
493 -SK_ScalarMax/100);
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000494
bsalomon@google.com19713172012-03-15 13:51:08 +0000495 GrPathUtils::QuadUVMatrix toUV(qpts);
Brian Osman7f4735b2019-01-02 13:55:10 +0000496 toUV.apply(quadVertsBegin, 6, vertexStride, uvOffset);
bsalomon@google.com06809612012-01-21 15:03:39 +0000497
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000498 idxs[*i + 0] = *v + 3;
499 idxs[*i + 1] = *v + 1;
500 idxs[*i + 2] = *v + 2;
501 idxs[*i + 3] = *v + 4;
502 idxs[*i + 4] = *v + 3;
503 idxs[*i + 5] = *v + 2;
bsalomon@google.com06809612012-01-21 15:03:39 +0000504
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000505 idxs[*i + 6] = *v + 5;
506 idxs[*i + 7] = *v + 3;
507 idxs[*i + 8] = *v + 4;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000508
cdalton35964822015-04-29 10:14:03 -0700509 *i += 9;
510
511 // Draw the interior fan if it exists.
512 // TODO: Detect and combine colinear segments. This will ensure we catch every case
513 // with no interior, and that the resulting shared edge uses the same endpoints.
514 if (count >= 3) {
515 idxs[*i + 0] = *v + 0;
516 idxs[*i + 1] = *v + 2;
517 idxs[*i + 2] = *v + 1;
518
519 *i += 3;
520 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000521
bsalomon@google.com7d9ffc82013-05-14 14:20:28 +0000522 *v += 6;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000523 }
524 }
525}
526
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000527///////////////////////////////////////////////////////////////////////////////
528
529/*
530 * Quadratic specified by 0=u^2-v canonical coords. u and v are the first
531 * two components of the vertex attribute. Coverage is based on signed
532 * distance with negative being inside, positive outside. The edge is specified in
533 * window space (y-down). If either the third or fourth component of the interpolated
534 * vertex coord is > 0 then the pixel is considered outside the edge. This is used to
skia.committer@gmail.com041e2db2013-04-03 07:01:14 +0000535 * attempt to trim to a portion of the infinite quad.
536 * Requires shader derivative instruction support.
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000537 */
538
joshualitt249af152014-09-15 11:41:13 -0700539class QuadEdgeEffect : public GrGeometryProcessor {
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000540public:
Robert Phillips7cd0bfe2019-11-20 16:08:10 -0500541 static GrGeometryProcessor* Make(SkArenaAlloc* arena,
542 const SkMatrix& localMatrix,
543 bool usesLocalCoords,
544 bool wideColor) {
545 return arena->make<QuadEdgeEffect>(localMatrix, usesLocalCoords, wideColor);
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000546 }
547
Brian Salomond3b65972017-03-22 12:05:03 -0400548 ~QuadEdgeEffect() override {}
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000549
mtklein36352bf2015-03-25 18:17:31 -0700550 const char* name() const override { return "QuadEdge"; }
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000551
egdaniel57d3b032015-11-13 11:57:27 -0800552 class GLSLProcessor : public GrGLSLGeometryProcessor {
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000553 public:
Brian Salomon60fb0b22017-06-15 17:09:36 -0400554 GLSLProcessor() {}
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000555
mtklein36352bf2015-03-25 18:17:31 -0700556 void onEmitCode(EmitArgs& args, GrGPArgs* gpArgs) override {
joshualitt2dd1ae02014-12-03 06:24:10 -0800557 const QuadEdgeEffect& qe = args.fGP.cast<QuadEdgeEffect>();
egdaniel4ca2e602015-11-18 08:01:26 -0800558 GrGLSLVertexBuilder* vertBuilder = args.fVertBuilder;
egdaniel0eafe792015-11-20 14:01:22 -0800559 GrGLSLVaryingHandler* varyingHandler = args.fVaryingHandler;
egdaniel7ea439b2015-12-03 09:20:44 -0800560 GrGLSLUniformHandler* uniformHandler = args.fUniformHandler;
joshualitt2dd1ae02014-12-03 06:24:10 -0800561
joshualittabb52a12015-01-13 15:02:10 -0800562 // emit attributes
egdaniel0eafe792015-11-20 14:01:22 -0800563 varyingHandler->emitAttributes(qe);
joshualittabb52a12015-01-13 15:02:10 -0800564
Chris Dalton27372882017-12-08 13:34:21 -0700565 GrGLSLVarying v(kHalf4_GrSLType);
egdaniel0eafe792015-11-20 14:01:22 -0800566 varyingHandler->addVarying("QuadEdge", &v);
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500567 vertBuilder->codeAppendf("%s = %s;", v.vsOut(), qe.fInQuadEdge.name());
Brian Salomon60fb0b22017-06-15 17:09:36 -0400568
569 // Setup pass through color
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500570 varyingHandler->addPassThroughAttribute(qe.fInColor, args.fOutputColor);
joshualitt2dd1ae02014-12-03 06:24:10 -0800571
Chris Dalton60283612018-02-14 13:38:14 -0700572 GrGLSLFPFragmentBuilder* fragBuilder = args.fFragBuilder;
joshualitt9b989322014-12-15 14:16:27 -0800573
joshualittabb52a12015-01-13 15:02:10 -0800574 // Setup position
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500575 this->writeOutputPosition(vertBuilder, gpArgs, qe.fInPosition.name());
joshualittabb52a12015-01-13 15:02:10 -0800576
577 // emit transforms
egdaniel7ea439b2015-12-03 09:20:44 -0800578 this->emitTransforms(vertBuilder,
egdaniel0eafe792015-11-20 14:01:22 -0800579 varyingHandler,
egdaniel7ea439b2015-12-03 09:20:44 -0800580 uniformHandler,
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500581 qe.fInPosition.asShaderVar(),
Brian Salomon60fb0b22017-06-15 17:09:36 -0400582 qe.fLocalMatrix,
bsalomona624bf32016-09-20 09:12:47 -0700583 args.fFPCoordTransformHandler);
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000584
Ethan Nicholasf7b88202017-09-18 14:10:39 -0400585 fragBuilder->codeAppendf("half edgeAlpha;");
joshualitt30ba4362014-08-21 20:18:45 -0700586
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000587 // keep the derivative instructions outside the conditional
Ethan Nicholase1f55022019-02-05 17:17:40 -0500588 fragBuilder->codeAppendf("half2 duvdx = half2(dFdx(%s.xy));", v.fsIn());
589 fragBuilder->codeAppendf("half2 duvdy = half2(dFdy(%s.xy));", v.fsIn());
egdaniel4ca2e602015-11-18 08:01:26 -0800590 fragBuilder->codeAppendf("if (%s.z > 0.0 && %s.w > 0.0) {", v.fsIn(), v.fsIn());
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000591 // today we know z and w are in device space. We could use derivatives
egdaniel4ca2e602015-11-18 08:01:26 -0800592 fragBuilder->codeAppendf("edgeAlpha = min(min(%s.z, %s.w) + 0.5, 1.0);", v.fsIn(),
593 v.fsIn());
594 fragBuilder->codeAppendf ("} else {");
Ethan Nicholasf7b88202017-09-18 14:10:39 -0400595 fragBuilder->codeAppendf("half2 gF = half2(2.0*%s.x*duvdx.x - duvdx.y,"
egdaniel4ca2e602015-11-18 08:01:26 -0800596 " 2.0*%s.x*duvdy.x - duvdy.y);",
597 v.fsIn(), v.fsIn());
598 fragBuilder->codeAppendf("edgeAlpha = (%s.x*%s.x - %s.y);", v.fsIn(), v.fsIn(),
599 v.fsIn());
600 fragBuilder->codeAppendf("edgeAlpha = "
Ethan Nicholas12fb9cf2018-08-03 16:16:57 -0400601 "saturate(0.5 - edgeAlpha / length(gF));}");
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000602
Ethan Nicholasf7b88202017-09-18 14:10:39 -0400603 fragBuilder->codeAppendf("%s = half4(edgeAlpha);", args.fOutputCoverage);
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000604 }
605
joshualitt9b989322014-12-15 14:16:27 -0800606 static inline void GenKey(const GrGeometryProcessor& gp,
Brian Salomon94efbf52016-11-29 13:43:05 -0500607 const GrShaderCaps&,
joshualitt9b989322014-12-15 14:16:27 -0800608 GrProcessorKeyBuilder* b) {
joshualitte3ababe2015-05-15 07:56:07 -0700609 const QuadEdgeEffect& qee = gp.cast<QuadEdgeEffect>();
Brian Salomon60fb0b22017-06-15 17:09:36 -0400610 b->add32(SkToBool(qee.fUsesLocalCoords && qee.fLocalMatrix.hasPerspective()));
joshualitt9b989322014-12-15 14:16:27 -0800611 }
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000612
egdaniel018fb622015-10-28 07:26:40 -0700613 void setData(const GrGLSLProgramDataManager& pdman,
bsalomona624bf32016-09-20 09:12:47 -0700614 const GrPrimitiveProcessor& gp,
Brian Salomonc241b582019-11-27 08:57:17 -0500615 const CoordTransformRange& transformRange) override {
joshualittb8c241a2015-05-19 08:23:30 -0700616 const QuadEdgeEffect& qe = gp.cast<QuadEdgeEffect>();
Brian Salomonc241b582019-11-27 08:57:17 -0500617 this->setTransformDataHelper(qe.fLocalMatrix, pdman, transformRange);
joshualitte3ababe2015-05-15 07:56:07 -0700618 }
619
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000620 private:
egdaniele659a582015-11-13 09:55:43 -0800621 typedef GrGLSLGeometryProcessor INHERITED;
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000622 };
skia.committer@gmail.com041e2db2013-04-03 07:01:14 +0000623
Brian Salomon94efbf52016-11-29 13:43:05 -0500624 void getGLSLProcessorKey(const GrShaderCaps& caps, GrProcessorKeyBuilder* b) const override {
egdaniel57d3b032015-11-13 11:57:27 -0800625 GLSLProcessor::GenKey(*this, caps, b);
joshualitteb2a6762014-12-04 11:35:33 -0800626 }
627
Brian Salomon94efbf52016-11-29 13:43:05 -0500628 GrGLSLPrimitiveProcessor* createGLSLInstance(const GrShaderCaps&) const override {
egdaniel57d3b032015-11-13 11:57:27 -0800629 return new GLSLProcessor();
joshualitteb2a6762014-12-04 11:35:33 -0800630 }
631
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000632private:
Robert Phillips7cd0bfe2019-11-20 16:08:10 -0500633 friend class ::SkArenaAlloc; // for access to ctor
634
Brian Osman7f4735b2019-01-02 13:55:10 +0000635 QuadEdgeEffect(const SkMatrix& localMatrix, bool usesLocalCoords, bool wideColor)
Ethan Nicholasabff9562017-10-09 10:54:08 -0400636 : INHERITED(kQuadEdgeEffect_ClassID)
637 , fLocalMatrix(localMatrix)
638 , fUsesLocalCoords(usesLocalCoords) {
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500639 fInPosition = {"inPosition", kFloat2_GrVertexAttribType, kFloat2_GrSLType};
Brian Osman7f4735b2019-01-02 13:55:10 +0000640 fInColor = MakeColorAttribute("inColor", wideColor);
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500641 fInQuadEdge = {"inQuadEdge", kFloat4_GrVertexAttribType, kHalf4_GrSLType};
642 this->setVertexAttributes(&fInPosition, 3);
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000643 }
644
Brian Osmanf04fb3c2018-11-12 15:34:00 -0500645 Attribute fInPosition;
646 Attribute fInColor;
647 Attribute fInQuadEdge;
648
Brian Salomon92be2f72018-06-19 14:33:47 -0400649 SkMatrix fLocalMatrix;
650 bool fUsesLocalCoords;
joshualitt249af152014-09-15 11:41:13 -0700651
Brian Salomon0c26a9d2017-07-06 10:09:38 -0400652 GR_DECLARE_GEOMETRY_PROCESSOR_TEST
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000653
joshualitt2e3b3e32014-12-09 13:31:14 -0800654 typedef GrGeometryProcessor INHERITED;
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000655};
656
joshualittb0a8a372014-09-23 09:50:21 -0700657GR_DEFINE_GEOMETRY_PROCESSOR_TEST(QuadEdgeEffect);
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000658
Hal Canary6f6961e2017-01-31 13:50:44 -0500659#if GR_TEST_UTILS
Robert Phillips7cd0bfe2019-11-20 16:08:10 -0500660GrGeometryProcessor* QuadEdgeEffect::TestCreate(GrProcessorTestData* d) {
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000661 // Doesn't work without derivative instructions.
Robert Phillips296b1cc2017-03-15 10:42:12 -0400662 return d->caps()->shaderCaps()->shaderDerivativeSupport()
Robert Phillips7cd0bfe2019-11-20 16:08:10 -0500663 ? QuadEdgeEffect::Make(d->allocator(), GrTest::TestMatrix(d->fRandom),
664 d->fRandom->nextBool(), d->fRandom->nextBool())
Brian Salomon9ae32a22017-01-25 14:58:24 -0500665 : nullptr;
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000666}
Hal Canary6f6961e2017-01-31 13:50:44 -0500667#endif
commit-bot@chromium.org90c240a2013-04-02 17:57:21 +0000668
669///////////////////////////////////////////////////////////////////////////////
670
Chris Dalton5ed44232017-09-07 13:22:46 -0600671GrPathRenderer::CanDrawPath
672GrAAConvexPathRenderer::onCanDrawPath(const CanDrawPathArgs& args) const {
Michael Ludwig0a1e9ef2019-08-30 10:03:15 -0400673 // This check requires convexity and known direction, since the direction is used to build
674 // the geometry segments. Degenerate convex paths will fall through to some other path renderer.
Chris Dalton5ed44232017-09-07 13:22:46 -0600675 if (args.fCaps->shaderCaps()->shaderDerivativeSupport() &&
Chris Dalton6ce447a2019-06-23 18:07:38 -0600676 (GrAAType::kCoverage == args.fAAType) && args.fShape->style().isSimpleFill() &&
Michael Ludwig0a1e9ef2019-08-30 10:03:15 -0400677 !args.fShape->inverseFilled() && args.fShape->knownToBeConvex() &&
678 args.fShape->knownDirection()) {
Chris Dalton5ed44232017-09-07 13:22:46 -0600679 return CanDrawPath::kYes;
680 }
681 return CanDrawPath::kNo;
robertphillips@google.comfa662942012-05-17 12:20:22 +0000682}
683
Brian Salomon10978a62017-06-15 16:21:49 -0400684namespace {
685
686class AAConvexPathOp final : public GrMeshDrawOp {
687private:
688 using Helper = GrSimpleMeshDrawOpHelperWithStencil;
689
joshualitt27f398f2015-02-05 14:39:01 -0800690public:
Brian Salomon25a88092016-12-01 09:36:50 -0500691 DEFINE_OP_CLASS_ID
Robert Phillipsb493eeb2017-09-13 13:10:52 -0400692
Robert Phillipsb97da532019-02-12 15:24:12 -0500693 static std::unique_ptr<GrDrawOp> Make(GrRecordingContext* context,
Robert Phillips7c525e62018-06-12 10:11:12 -0400694 GrPaint&& paint,
695 const SkMatrix& viewMatrix,
Brian Salomon10978a62017-06-15 16:21:49 -0400696 const SkPath& path,
697 const GrUserStencilSettings* stencilSettings) {
Robert Phillips7c525e62018-06-12 10:11:12 -0400698 return Helper::FactoryHelper<AAConvexPathOp>(context, std::move(paint), viewMatrix, path,
Brian Salomon10978a62017-06-15 16:21:49 -0400699 stencilSettings);
700 }
701
Brian Osmancf860852018-10-31 14:04:39 -0400702 AAConvexPathOp(const Helper::MakeArgs& helperArgs, const SkPMColor4f& color,
Brian Osman936fe7d2018-10-30 15:30:35 -0400703 const SkMatrix& viewMatrix, const SkPath& path,
704 const GrUserStencilSettings* stencilSettings)
Brian Salomon60fb0b22017-06-15 17:09:36 -0400705 : INHERITED(ClassID()), fHelper(helperArgs, GrAAType::kCoverage, stencilSettings) {
706 fPaths.emplace_back(PathData{viewMatrix, path, color});
Greg Daniel5faf4742019-10-01 15:14:44 -0400707 this->setTransformedBounds(path.getBounds(), viewMatrix, HasAABloat::kYes,
708 IsHairline::kNo);
bsalomonf1703092016-06-29 18:41:53 -0700709 }
joshualitt27f398f2015-02-05 14:39:01 -0800710
Brian Salomond0a0a652016-12-15 15:25:22 -0500711 const char* name() const override { return "AAConvexPathOp"; }
joshualitt27f398f2015-02-05 14:39:01 -0800712
Chris Dalton1706cbf2019-05-21 19:35:29 -0600713 void visitProxies(const VisitProxyFunc& func) const override {
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400714 if (fProgramInfo) {
715 fProgramInfo->visitProxies(func);
716 } else {
717 fHelper.visitProxies(func);
718 }
Robert Phillipsb493eeb2017-09-13 13:10:52 -0400719 }
720
Brian Osman9a390ac2018-11-12 09:47:48 -0500721#ifdef SK_DEBUG
Brian Salomon7c3e7182016-12-01 09:35:30 -0500722 SkString dumpInfo() const override {
723 SkString string;
Brian Salomon60fb0b22017-06-15 17:09:36 -0400724 string.appendf("Count: %d\n", fPaths.count());
Brian Salomon10978a62017-06-15 16:21:49 -0400725 string += fHelper.dumpInfo();
726 string += INHERITED::dumpInfo();
Brian Salomon7c3e7182016-12-01 09:35:30 -0500727 return string;
728 }
Brian Osman9a390ac2018-11-12 09:47:48 -0500729#endif
Brian Salomon7c3e7182016-12-01 09:35:30 -0500730
Brian Salomon10978a62017-06-15 16:21:49 -0400731 FixedFunctionFlags fixedFunctionFlags() const override { return fHelper.fixedFunctionFlags(); }
732
Chris Dalton6ce447a2019-06-23 18:07:38 -0600733 GrProcessorSet::Analysis finalize(
734 const GrCaps& caps, const GrAppliedClip* clip, bool hasMixedSampledCoverage,
735 GrClampType clampType) override {
Chris Daltonb8fff0d2019-03-05 10:11:58 -0700736 return fHelper.finalizeProcessors(
Chris Dalton6ce447a2019-06-23 18:07:38 -0600737 caps, clip, hasMixedSampledCoverage, clampType,
738 GrProcessorAnalysisCoverage::kSingleChannel, &fPaths.back().fColor, &fWideColor);
Brian Salomon10978a62017-06-15 16:21:49 -0400739 }
740
bsalomone46f9fe2015-08-18 06:05:14 -0700741private:
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400742 GrProgramInfo* createProgramInfo(const GrCaps* caps,
743 SkArenaAlloc* arena,
744 const GrSurfaceProxyView* outputView,
745 GrAppliedClip&& appliedClip,
746 const GrXferProcessor::DstProxyView& dstProxyView) {
747 SkMatrix invert;
748 if (fHelper.usesLocalCoords() && !fPaths.back().fViewMatrix.invert(&invert)) {
749 return nullptr;
750 }
751
752 GrGeometryProcessor* quadProcessor = QuadEdgeEffect::Make(arena, invert,
753 fHelper.usesLocalCoords(),
754 fWideColor);
755
756 return fHelper.createProgramInfoWithStencil(caps, arena, outputView, std::move(appliedClip),
757 dstProxyView, quadProcessor,
758 GrPrimitiveType::kTriangles);
759 }
760
761 GrProgramInfo* createProgramInfo(Target* target) {
762 return this->createProgramInfo(&target->caps(),
763 target->allocator(),
764 target->outputView(),
765 target->detachAppliedClip(),
766 target->dstProxyView());
767 }
768
769 void onPrePrepareDraws(GrRecordingContext* context,
770 const GrSurfaceProxyView* outputView,
771 GrAppliedClip* clip,
772 const GrXferProcessor::DstProxyView& dstProxyView) override {
773 SkArenaAlloc* arena = context->priv().recordTimeAllocator();
774
775 // This is equivalent to a GrOpFlushState::detachAppliedClip
776 GrAppliedClip appliedClip = clip ? std::move(*clip) : GrAppliedClip();
777
778 fProgramInfo = this->createProgramInfo(context->priv().caps(), arena, outputView,
779 std::move(appliedClip), dstProxyView);
780
781 context->priv().recordProgramInfo(fProgramInfo);
782 }
783
Brian Salomon91326c32017-08-09 16:02:19 -0400784 void onPrepareDraws(Target* target) override {
Brian Salomond0a0a652016-12-15 15:25:22 -0500785 int instanceCount = fPaths.count();
joshualitt27f398f2015-02-05 14:39:01 -0800786
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400787 if (!fProgramInfo) {
788 fProgramInfo = this->createProgramInfo(target);
789 if (!fProgramInfo) {
790 return;
791 }
joshualitt27f398f2015-02-05 14:39:01 -0800792 }
793
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400794 const size_t kVertexStride = fProgramInfo->primProc().vertexStride();
795
796 fDraws.reserve(instanceCount);
joshualitt27f398f2015-02-05 14:39:01 -0800797
joshualitt27f398f2015-02-05 14:39:01 -0800798 // TODO generate all segments for all paths and use one vertex buffer
799 for (int i = 0; i < instanceCount; i++) {
Brian Salomond0a0a652016-12-15 15:25:22 -0500800 const PathData& args = fPaths[i];
joshualitt27f398f2015-02-05 14:39:01 -0800801
802 // We use the fact that SkPath::transform path does subdivision based on
803 // perspective. Otherwise, we apply the view matrix when copying to the
804 // segment representation.
805 const SkMatrix* viewMatrix = &args.fViewMatrix;
joshualitt144c3c82015-11-30 12:30:13 -0800806
807 // We avoid initializing the path unless we have to
808 const SkPath* pathPtr = &args.fPath;
809 SkTLazy<SkPath> tmpPath;
joshualitt27f398f2015-02-05 14:39:01 -0800810 if (viewMatrix->hasPerspective()) {
joshualitt144c3c82015-11-30 12:30:13 -0800811 SkPath* tmpPathPtr = tmpPath.init(*pathPtr);
812 tmpPathPtr->setIsVolatile(true);
813 tmpPathPtr->transform(*viewMatrix);
joshualitt27f398f2015-02-05 14:39:01 -0800814 viewMatrix = &SkMatrix::I();
joshualitt144c3c82015-11-30 12:30:13 -0800815 pathPtr = tmpPathPtr;
joshualitt27f398f2015-02-05 14:39:01 -0800816 }
817
818 int vertexCount;
819 int indexCount;
820 enum {
821 kPreallocSegmentCnt = 512 / sizeof(Segment),
822 kPreallocDrawCnt = 4,
823 };
824 SkSTArray<kPreallocSegmentCnt, Segment, true> segments;
825 SkPoint fanPt;
826
joshualitt144c3c82015-11-30 12:30:13 -0800827 if (!get_segments(*pathPtr, *viewMatrix, &segments, &fanPt, &vertexCount,
joshualitt27f398f2015-02-05 14:39:01 -0800828 &indexCount)) {
829 continue;
830 }
831
Brian Salomon12d22642019-01-29 14:38:50 -0500832 sk_sp<const GrBuffer> vertexBuffer;
Chris Daltonbca46e22017-05-15 11:03:26 -0600833 int firstVertex;
834
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500835 GrVertexWriter verts{target->makeVertexSpace(kVertexStride, vertexCount,
836 &vertexBuffer, &firstVertex)};
bsalomone64eb572015-05-07 11:35:55 -0700837
Brian Osmand2fa2eb2018-12-26 16:48:40 -0500838 if (!verts.fPtr) {
joshualitt4b31de82015-03-05 14:33:41 -0800839 SkDebugf("Could not allocate vertices\n");
840 return;
841 }
842
Brian Salomon12d22642019-01-29 14:38:50 -0500843 sk_sp<const GrBuffer> indexBuffer;
Chris Daltonbca46e22017-05-15 11:03:26 -0600844 int firstIndex;
845
846 uint16_t *idxs = target->makeIndexSpace(indexCount, &indexBuffer, &firstIndex);
robertphillipse40d3972015-05-07 09:51:43 -0700847 if (!idxs) {
joshualitt4b31de82015-03-05 14:33:41 -0800848 SkDebugf("Could not allocate indices\n");
849 return;
850 }
851
joshualitt27f398f2015-02-05 14:39:01 -0800852 SkSTArray<kPreallocDrawCnt, Draw, true> draws;
Brian Osman7f4735b2019-01-02 13:55:10 +0000853 GrVertexColor color(args.fColor, fWideColor);
854 create_vertices(segments, fanPt, color, &draws, verts, idxs, kVertexStride);
joshualitt27f398f2015-02-05 14:39:01 -0800855
Brian Salomon7eae3e02018-08-07 14:02:38 +0000856 GrMesh* meshes = target->allocMeshes(draws.count());
robertphillips44c31282015-09-03 12:58:48 -0700857 for (int j = 0; j < draws.count(); ++j) {
858 const Draw& draw = draws[j];
Brian Salomon7eae3e02018-08-07 14:02:38 +0000859 meshes[j].setIndexed(indexBuffer, draw.fIndexCnt, firstIndex, 0,
860 draw.fVertexCnt - 1, GrPrimitiveRestart::kNo);
861 meshes[j].setVertexData(vertexBuffer, firstVertex);
Chris Daltonbca46e22017-05-15 11:03:26 -0600862 firstIndex += draw.fIndexCnt;
863 firstVertex += draw.fVertexCnt;
joshualitt27f398f2015-02-05 14:39:01 -0800864 }
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400865
866 fDraws.push_back({ meshes, draws.count() });
joshualitt27f398f2015-02-05 14:39:01 -0800867 }
868 }
869
Chris Dalton07cdcfc92019-02-26 11:13:22 -0700870 void onExecute(GrOpFlushState* flushState, const SkRect& chainBounds) override {
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400871 if (!fProgramInfo || fDraws.isEmpty()) {
872 return;
873 }
Robert Phillips3968fcb2019-12-05 16:40:31 -0500874
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400875 flushState->opsRenderPass()->bindPipeline(*fProgramInfo, chainBounds);
876 for (int i = 0; i < fDraws.count(); ++i) {
877 flushState->opsRenderPass()->drawMeshes(*fProgramInfo,
878 fDraws[i].fMeshes, fDraws[i].fMeshCount);
879 }
Chris Dalton07cdcfc92019-02-26 11:13:22 -0700880 }
881
Michael Ludwig28b0c5d2019-12-19 14:51:00 -0500882 CombineResult onCombineIfPossible(GrOp* t, GrRecordingContext::Arenas*,
883 const GrCaps& caps) override {
Brian Salomond0a0a652016-12-15 15:25:22 -0500884 AAConvexPathOp* that = t->cast<AAConvexPathOp>();
Brian Salomon10978a62017-06-15 16:21:49 -0400885 if (!fHelper.isCompatible(that->fHelper, caps, this->bounds(), that->bounds())) {
Brian Salomon7eae3e02018-08-07 14:02:38 +0000886 return CombineResult::kCannotCombine;
joshualitt8cab9a72015-07-16 09:13:50 -0700887 }
Brian Salomon10978a62017-06-15 16:21:49 -0400888 if (fHelper.usesLocalCoords() &&
Mike Reed2c383152019-12-18 16:47:47 -0500889 !SkMatrixPriv::CheapEqual(fPaths[0].fViewMatrix, that->fPaths[0].fViewMatrix)) {
Brian Salomon7eae3e02018-08-07 14:02:38 +0000890 return CombineResult::kCannotCombine;
joshualitt27f398f2015-02-05 14:39:01 -0800891 }
892
Brian Salomond0a0a652016-12-15 15:25:22 -0500893 fPaths.push_back_n(that->fPaths.count(), that->fPaths.begin());
Brian Osman7f4735b2019-01-02 13:55:10 +0000894 fWideColor |= that->fWideColor;
Brian Salomon7eae3e02018-08-07 14:02:38 +0000895 return CombineResult::kMerged;
joshualitt27f398f2015-02-05 14:39:01 -0800896 }
897
Brian Salomond0a0a652016-12-15 15:25:22 -0500898 struct PathData {
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400899 SkMatrix fViewMatrix;
900 SkPath fPath;
Brian Osmancf860852018-10-31 14:04:39 -0400901 SkPMColor4f fColor;
bsalomonf1703092016-06-29 18:41:53 -0700902 };
903
Brian Salomon10978a62017-06-15 16:21:49 -0400904 Helper fHelper;
Brian Salomond0a0a652016-12-15 15:25:22 -0500905 SkSTArray<1, PathData, true> fPaths;
Brian Osman7f4735b2019-01-02 13:55:10 +0000906 bool fWideColor;
reed1b55a962015-09-17 20:16:13 -0700907
Robert Phillips3eabf4a2020-03-10 14:49:20 -0400908 struct MeshDraw {
909 GrMesh* fMeshes;
910 int fMeshCount;
911 };
912
913 SkTDArray<MeshDraw> fDraws;
914 GrProgramInfo* fProgramInfo = nullptr;
915
Brian Salomon10978a62017-06-15 16:21:49 -0400916 typedef GrMeshDrawOp INHERITED;
joshualitt27f398f2015-02-05 14:39:01 -0800917};
918
Brian Salomon10978a62017-06-15 16:21:49 -0400919} // anonymous namespace
920
bsalomon0aff2fa2015-07-31 06:48:27 -0700921bool GrAAConvexPathRenderer::onDrawPath(const DrawPathArgs& args) {
Brian Osman11052242016-10-27 14:47:55 -0400922 GR_AUDIT_TRAIL_AUTO_FRAME(args.fRenderTargetContext->auditTrail(),
robertphillips976f5f02016-06-03 10:59:20 -0700923 "GrAAConvexPathRenderer::onDrawPath");
Chris Dalton6ce447a2019-06-23 18:07:38 -0600924 SkASSERT(args.fRenderTargetContext->numSamples() <= 1);
bsalomon8acedde2016-06-24 10:42:16 -0700925 SkASSERT(!args.fShape->isEmpty());
bsalomon@google.com4647f902013-03-26 14:45:27 +0000926
bsalomonf1703092016-06-29 18:41:53 -0700927 SkPath path;
928 args.fShape->asPath(&path);
bsalomon@google.comaf90f7f2012-03-05 20:50:10 +0000929
Robert Phillips7c525e62018-06-12 10:11:12 -0400930 std::unique_ptr<GrDrawOp> op = AAConvexPathOp::Make(args.fContext, std::move(args.fPaint),
931 *args.fViewMatrix,
Brian Salomon10978a62017-06-15 16:21:49 -0400932 path, args.fUserStencilSettings);
933 args.fRenderTargetContext->addDrawOp(*args.fClip, std::move(op));
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000934 return true;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000935}
joshualitt8e5c1772015-05-11 08:58:52 -0700936
937///////////////////////////////////////////////////////////////////////////////////////////////////
938
Hal Canary6f6961e2017-01-31 13:50:44 -0500939#if GR_TEST_UTILS
joshualitt8e5c1772015-05-11 08:58:52 -0700940
Brian Salomon10978a62017-06-15 16:21:49 -0400941GR_DRAW_OP_TEST_DEFINE(AAConvexPathOp) {
bsalomonf1703092016-06-29 18:41:53 -0700942 SkMatrix viewMatrix = GrTest::TestMatrixInvertible(random);
943 SkPath path = GrTest::TestPathConvex(random);
Brian Salomon10978a62017-06-15 16:21:49 -0400944 const GrUserStencilSettings* stencilSettings = GrGetRandomStencil(random, context);
Robert Phillips7c525e62018-06-12 10:11:12 -0400945 return AAConvexPathOp::Make(context, std::move(paint), viewMatrix, path, stencilSettings);
joshualitt8e5c1772015-05-11 08:58:52 -0700946}
947
948#endif