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bsalomon@google.com69cc6ad2012-01-17 14:25:10 +00001
2/*
3 * Copyright 2012 Google Inc.
4 *
5 * Use of this source code is governed by a BSD-style license that can be
6 * found in the LICENSE file.
7 */
8
9#include "GrAAConvexPathRenderer.h"
10
11#include "GrContext.h"
12#include "GrDrawState.h"
13#include "GrPathUtils.h"
14#include "SkString.h"
15#include "SkTrace.h"
16
17
18GrAAConvexPathRenderer::GrAAConvexPathRenderer() {
19}
20
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000021namespace {
22
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000023struct Segment {
24 enum {
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000025 // These enum values are assumed in member functions below.
26 kLine = 0,
27 kQuad = 1,
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000028 } fType;
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000029
bsalomon@google.com9aed1142012-01-30 14:28:39 +000030 // line uses one pt, quad uses 2 pts
31 GrPoint fPts[2];
32 // normal to edge ending at each pt
33 GrVec fNorms[2];
34 // is the corner where the previous segment meets this segment
35 // sharp. If so, fMid is a normalized bisector facing outward.
36 GrVec fMid;
37
38 int countPoints() {
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000039 GR_STATIC_ASSERT(0 == kLine && 1 == kQuad);
40 return fType + 1;
bsalomon@google.com9aed1142012-01-30 14:28:39 +000041 }
42 const SkPoint& endPt() const {
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000043 GR_STATIC_ASSERT(0 == kLine && 1 == kQuad);
44 return fPts[fType];
bsalomon@google.com9aed1142012-01-30 14:28:39 +000045 };
46 const SkPoint& endNorm() const {
bsalomon@google.com9b1517e2012-03-05 17:58:34 +000047 GR_STATIC_ASSERT(0 == kLine && 1 == kQuad);
48 return fNorms[fType];
bsalomon@google.com9aed1142012-01-30 14:28:39 +000049 };
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +000050};
51
52typedef SkTArray<Segment, true> SegmentArray;
53
bsalomon@google.com9aed1142012-01-30 14:28:39 +000054void center_of_mass(const SegmentArray& segments, SkPoint* c) {
55 GrScalar area = 0;
56 SkPoint center;
57 center.set(0, 0);
58 int count = segments.count();
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000059 SkPoint p0;
60 if (count > 2) {
61 // We translate the polygon so that the first point is at the origin.
62 // This avoids some precision issues with small area polygons far away
63 // from the origin.
64 p0 = segments[0].endPt();
65 SkPoint pi;
66 SkPoint pj;
67 // the first and last interation of the below loop would compute
68 // zeros since the starting / ending point is (0,0). So instead we start
69 // at i=1 and make the last iteration i=count-2.
70 pj = segments[1].endPt() - p0;
71 for (int i = 1; i < count - 1; ++i) {
72 pi = pj;
73 const SkPoint pj = segments[i + 1].endPt() - p0;
74
75 GrScalar t = GrMul(pi.fX, pj.fY) - GrMul(pj.fX, pi.fY);
76 area += t;
77 center.fX += (pi.fX + pj.fX) * t;
78 center.fY += (pi.fY + pj.fY) * t;
79
80 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +000081 }
bsalomon@google.com278dc692012-02-15 16:52:51 +000082 // If the poly has no area then we instead return the average of
83 // its points.
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +000084 if (SkScalarNearlyZero(area)) {
bsalomon@google.com278dc692012-02-15 16:52:51 +000085 SkPoint avg;
86 avg.set(0, 0);
87 for (int i = 0; i < count; ++i) {
88 const SkPoint& pt = segments[i].endPt();
89 avg.fX += pt.fX;
90 avg.fY += pt.fY;
91 }
92 SkScalar denom = SK_Scalar1 / count;
93 avg.scale(denom);
94 *c = avg;
95 } else {
96 area *= 3;
97 area = GrScalarDiv(GR_Scalar1, area);
98 center.fX = GrScalarMul(center.fX, area);
99 center.fY = GrScalarMul(center.fY, area);
bsalomon@google.com5b56d9e2012-02-23 19:18:37 +0000100 // undo the translate of p0 to the origin.
101 *c = center + p0;
bsalomon@google.com278dc692012-02-15 16:52:51 +0000102 }
103 GrAssert(!SkScalarIsNaN(c->fX) && !SkScalarIsNaN(c->fY));
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000104}
105
106void compute_vectors(SegmentArray* segments,
bsalomon@google.com278dc692012-02-15 16:52:51 +0000107 SkPoint* fanPt,
108 SkPath::Direction dir,
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000109 int* vCount,
110 int* iCount) {
111 center_of_mass(*segments, fanPt);
112 int count = segments->count();
113
bsalomon@google.com278dc692012-02-15 16:52:51 +0000114 // Make the normals point towards the outside
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000115 GrPoint::Side normSide;
bsalomon@google.com278dc692012-02-15 16:52:51 +0000116 if (dir == SkPath::kCCW_Direction) {
117 normSide = GrPoint::kRight_Side;
118 } else {
119 normSide = GrPoint::kLeft_Side;
120 }
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000121
122 *vCount = 0;
123 *iCount = 0;
124 // compute normals at all points
125 for (int a = 0; a < count; ++a) {
126 const Segment& sega = (*segments)[a];
127 int b = (a + 1) % count;
128 Segment& segb = (*segments)[b];
129
130 const GrPoint* prevPt = &sega.endPt();
131 int n = segb.countPoints();
132 for (int p = 0; p < n; ++p) {
133 segb.fNorms[p] = segb.fPts[p] - *prevPt;
134 segb.fNorms[p].normalize();
135 segb.fNorms[p].setOrthog(segb.fNorms[p], normSide);
136 prevPt = &segb.fPts[p];
137 }
138 if (Segment::kLine == segb.fType) {
139 *vCount += 5;
140 *iCount += 9;
141 } else {
142 *vCount += 6;
143 *iCount += 12;
144 }
145 }
146
147 // compute mid-vectors where segments meet. TODO: Detect shallow corners
148 // and leave out the wedges and close gaps by stitching segments together.
149 for (int a = 0; a < count; ++a) {
150 const Segment& sega = (*segments)[a];
151 int b = (a + 1) % count;
152 Segment& segb = (*segments)[b];
153 segb.fMid = segb.fNorms[0] + sega.endNorm();
154 segb.fMid.normalize();
155 // corner wedges
156 *vCount += 4;
157 *iCount += 6;
158 }
159}
160
bsalomon@google.com9732f622012-01-31 15:19:21 +0000161struct DegenerateTestData {
162 DegenerateTestData() { fStage = kInitial; }
163 bool isDegenerate() const { return kNonDegenerate != fStage; }
164 enum {
165 kInitial,
166 kPoint,
167 kLine,
168 kNonDegenerate
169 } fStage;
170 GrPoint fFirstPoint;
171 GrVec fLineNormal;
172 GrScalar fLineC;
173};
174
175void update_degenerate_test(DegenerateTestData* data, const GrPoint& pt) {
176 static const SkScalar TOL = (SK_Scalar1 / 16);
177 static const SkScalar TOL_SQD = SkScalarMul(TOL, TOL);
178
179 switch (data->fStage) {
180 case DegenerateTestData::kInitial:
181 data->fFirstPoint = pt;
182 data->fStage = DegenerateTestData::kPoint;
183 break;
184 case DegenerateTestData::kPoint:
185 if (pt.distanceToSqd(data->fFirstPoint) > TOL_SQD) {
186 data->fLineNormal = pt - data->fFirstPoint;
187 data->fLineNormal.normalize();
188 data->fLineNormal.setOrthog(data->fLineNormal);
189 data->fLineC = -data->fLineNormal.dot(data->fFirstPoint);
190 data->fStage = DegenerateTestData::kLine;
191 }
192 break;
193 case DegenerateTestData::kLine:
194 if (SkScalarAbs(data->fLineNormal.dot(pt) + data->fLineC) > TOL) {
195 data->fStage = DegenerateTestData::kNonDegenerate;
196 }
197 case DegenerateTestData::kNonDegenerate:
198 break;
199 default:
200 GrCrash("Unexpected degenerate test stage.");
201 }
202}
203
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000204bool get_segments(const GrPath& path,
205 SegmentArray* segments,
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000206 SkPoint* fanPt,
207 int* vCount,
208 int* iCount) {
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000209 SkPath::Iter iter(path, true);
bsalomon@google.com5cc90d12012-01-17 16:28:34 +0000210 // This renderer overemphasises very thin path regions. We use the distance
211 // to the path from the sample to compute coverage. Every pixel intersected
212 // by the path will be hit and the maximum distance is sqrt(2)/2. We don't
213 // notice that the sample may be close to a very thin area of the path and
214 // thus should be very light. This is particularly egregious for degenerate
215 // line paths. We detect paths that are very close to a line (zero area) and
216 // draw nothing.
bsalomon@google.com9732f622012-01-31 15:19:21 +0000217 DegenerateTestData degenerateData;
218
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000219 for (;;) {
220 GrPoint pts[4];
221 GrPathCmd cmd = (GrPathCmd)iter.next(pts);
222 switch (cmd) {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000223 case kMove_PathCmd:
224 update_degenerate_test(&degenerateData, pts[0]);
225 break;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000226 case kLine_PathCmd: {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000227 update_degenerate_test(&degenerateData, pts[1]);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000228 segments->push_back();
229 segments->back().fType = Segment::kLine;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000230 segments->back().fPts[0] = pts[1];
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000231 break;
232 }
233 case kQuadratic_PathCmd:
bsalomon@google.com9732f622012-01-31 15:19:21 +0000234 update_degenerate_test(&degenerateData, pts[1]);
235 update_degenerate_test(&degenerateData, pts[2]);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000236 segments->push_back();
237 segments->back().fType = Segment::kQuad;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000238 segments->back().fPts[0] = pts[1];
239 segments->back().fPts[1] = pts[2];
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000240 break;
241 case kCubic_PathCmd: {
bsalomon@google.com9732f622012-01-31 15:19:21 +0000242 update_degenerate_test(&degenerateData, pts[1]);
243 update_degenerate_test(&degenerateData, pts[2]);
244 update_degenerate_test(&degenerateData, pts[3]);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000245 SkSTArray<15, SkPoint, true> quads;
246 GrPathUtils::convertCubicToQuads(pts, SK_Scalar1, &quads);
247 int count = quads.count();
248 for (int q = 0; q < count; q += 3) {
249 segments->push_back();
250 segments->back().fType = Segment::kQuad;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000251 segments->back().fPts[0] = quads[q + 1];
252 segments->back().fPts[1] = quads[q + 2];
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000253 }
254 break;
255 };
256 case kEnd_PathCmd:
bsalomon@google.com9732f622012-01-31 15:19:21 +0000257 if (degenerateData.isDegenerate()) {
258 return false;
259 } else {
bsalomon@google.com278dc692012-02-15 16:52:51 +0000260 SkPath::Direction dir;
261 GR_DEBUGCODE(bool succeeded = )
262 path.cheapComputeDirection(&dir);
263 GrAssert(succeeded);
264 compute_vectors(segments, fanPt, dir, vCount, iCount);
bsalomon@google.com9732f622012-01-31 15:19:21 +0000265 return true;
266 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000267 default:
268 break;
269 }
270 }
271}
272
273struct QuadVertex {
274 GrPoint fPos;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000275 GrPoint fUV;
276 GrScalar fD0;
277 GrScalar fD1;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000278};
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000279
280void create_vertices(const SegmentArray& segments,
281 const SkPoint& fanPt,
282 QuadVertex* verts,
283 uint16_t* idxs) {
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000284 int v = 0;
285 int i = 0;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000286
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000287 int count = segments.count();
288 for (int a = 0; a < count; ++a) {
289 const Segment& sega = segments[a];
290 int b = (a + 1) % count;
291 const Segment& segb = segments[b];
292
293 // FIXME: These tris are inset in the 1 unit arc around the corner
294 verts[v + 0].fPos = sega.endPt();
295 verts[v + 1].fPos = verts[v + 0].fPos + sega.endNorm();
296 verts[v + 2].fPos = verts[v + 0].fPos + segb.fMid;
297 verts[v + 3].fPos = verts[v + 0].fPos + segb.fNorms[0];
298 verts[v + 0].fUV.set(0,0);
299 verts[v + 1].fUV.set(0,-SK_Scalar1);
300 verts[v + 2].fUV.set(0,-SK_Scalar1);
301 verts[v + 3].fUV.set(0,-SK_Scalar1);
302 verts[v + 0].fD0 = verts[v + 0].fD1 = -SK_Scalar1;
303 verts[v + 1].fD0 = verts[v + 1].fD1 = -SK_Scalar1;
304 verts[v + 2].fD0 = verts[v + 2].fD1 = -SK_Scalar1;
305 verts[v + 3].fD0 = verts[v + 3].fD1 = -SK_Scalar1;
306
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000307 idxs[i + 0] = v + 0;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000308 idxs[i + 1] = v + 2;
309 idxs[i + 2] = v + 1;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000310 idxs[i + 3] = v + 0;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000311 idxs[i + 4] = v + 3;
312 idxs[i + 5] = v + 2;
313
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000314 v += 4;
315 i += 6;
316
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000317 if (Segment::kLine == segb.fType) {
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000318 verts[v + 0].fPos = fanPt;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000319 verts[v + 1].fPos = sega.endPt();
320 verts[v + 2].fPos = segb.fPts[0];
321
322 verts[v + 3].fPos = verts[v + 1].fPos + segb.fNorms[0];
323 verts[v + 4].fPos = verts[v + 2].fPos + segb.fNorms[0];
324
325 // we draw the line edge as a degenerate quad (u is 0, v is the
326 // signed distance to the edge)
327 GrScalar dist = fanPt.distanceToLineBetween(verts[v + 1].fPos,
328 verts[v + 2].fPos);
329 verts[v + 0].fUV.set(0, dist);
330 verts[v + 1].fUV.set(0, 0);
331 verts[v + 2].fUV.set(0, 0);
332 verts[v + 3].fUV.set(0, -SK_Scalar1);
333 verts[v + 4].fUV.set(0, -SK_Scalar1);
334
335 verts[v + 0].fD0 = verts[v + 0].fD1 = -SK_Scalar1;
336 verts[v + 1].fD0 = verts[v + 1].fD1 = -SK_Scalar1;
337 verts[v + 2].fD0 = verts[v + 2].fD1 = -SK_Scalar1;
338 verts[v + 3].fD0 = verts[v + 3].fD1 = -SK_Scalar1;
339 verts[v + 4].fD0 = verts[v + 4].fD1 = -SK_Scalar1;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000340
341 idxs[i + 0] = v + 0;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000342 idxs[i + 1] = v + 2;
343 idxs[i + 2] = v + 1;
344
345 idxs[i + 3] = v + 3;
346 idxs[i + 4] = v + 1;
347 idxs[i + 5] = v + 2;
348
349 idxs[i + 6] = v + 4;
350 idxs[i + 7] = v + 3;
bsalomon@google.com06809612012-01-21 15:03:39 +0000351 idxs[i + 8] = v + 2;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000352
bsalomon@google.com06809612012-01-21 15:03:39 +0000353 v += 5;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000354 i += 9;
bsalomon@google.com06809612012-01-21 15:03:39 +0000355 } else {
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000356 GrPoint qpts[] = {sega.endPt(), segb.fPts[0], segb.fPts[1]};
bsalomon@google.com495e2102012-01-21 14:48:36 +0000357
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000358 GrVec midVec = segb.fNorms[0] + segb.fNorms[1];
359 midVec.normalize();
bsalomon@google.com06809612012-01-21 15:03:39 +0000360
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000361 verts[v + 0].fPos = fanPt;
362 verts[v + 1].fPos = qpts[0];
363 verts[v + 2].fPos = qpts[2];
364 verts[v + 3].fPos = qpts[0] + segb.fNorms[0];
365 verts[v + 4].fPos = qpts[2] + segb.fNorms[1];
366 verts[v + 5].fPos = qpts[1] + midVec;
367
368 GrScalar c = segb.fNorms[0].dot(qpts[0]);
369 verts[v + 0].fD0 = -segb.fNorms[0].dot(fanPt) + c;
370 verts[v + 1].fD0 = 0.f;
371 verts[v + 2].fD0 = -segb.fNorms[0].dot(qpts[2]) + c;
372 verts[v + 3].fD0 = -GR_ScalarMax/100;
373 verts[v + 4].fD0 = -GR_ScalarMax/100;
374 verts[v + 5].fD0 = -GR_ScalarMax/100;
375
376 c = segb.fNorms[1].dot(qpts[2]);
377 verts[v + 0].fD1 = -segb.fNorms[1].dot(fanPt) + c;
378 verts[v + 1].fD1 = -segb.fNorms[1].dot(qpts[0]) + c;
379 verts[v + 2].fD1 = 0.f;
380 verts[v + 3].fD1 = -GR_ScalarMax/100;
381 verts[v + 4].fD1 = -GR_ScalarMax/100;
382 verts[v + 5].fD1 = -GR_ScalarMax/100;
383
bsalomon@google.com06809612012-01-21 15:03:39 +0000384 GrMatrix toUV;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000385 GrPathUtils::quadDesignSpaceToUVCoordsMatrix(qpts, &toUV);
386 toUV.mapPointsWithStride(&verts[v].fUV,
387 &verts[v].fPos,
388 sizeof(QuadVertex),
389 6);
bsalomon@google.com06809612012-01-21 15:03:39 +0000390
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000391 idxs[i + 0] = v + 3;
392 idxs[i + 1] = v + 1;
393 idxs[i + 2] = v + 2;
394 idxs[i + 3] = v + 4;
395 idxs[i + 4] = v + 3;
396 idxs[i + 5] = v + 2;
bsalomon@google.com06809612012-01-21 15:03:39 +0000397
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000398 idxs[i + 6] = v + 5;
399 idxs[i + 7] = v + 3;
400 idxs[i + 8] = v + 4;
401
402 idxs[i + 9] = v + 0;
403 idxs[i + 10] = v + 2;
404 idxs[i + 11] = v + 1;
405
406 v += 6;
407 i += 12;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000408 }
409 }
410}
411
412}
413
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000414bool GrAAConvexPathRenderer::canDrawPath(const SkPath& path,
415 GrPathFill fill,
416 const GrDrawTarget* target,
417 bool antiAlias) const {
418 if (!target->getCaps().fShaderDerivativeSupport || !antiAlias ||
419 kHairLine_PathFill == fill || GrIsFillInverted(fill) ||
420 !path.isConvex()) {
421 return false;
422 } else {
423 return true;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000424 }
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000425}
426
427bool GrAAConvexPathRenderer::onDrawPath(const SkPath& origPath,
428 GrPathFill fill,
429 const GrVec* translate,
430 GrDrawTarget* target,
431 GrDrawState::StageMask stageMask,
432 bool antiAlias) {
433
434
435 if (origPath.isEmpty()) {
436 return true;
437 }
438 GrDrawState* drawState = target->drawState();
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000439
440 GrDrawTarget::AutoStateRestore asr;
441 GrMatrix vm = drawState->getViewMatrix();
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000442 if (NULL != translate) {
443 vm.postTranslate(translate->fX, translate->fY);
444 }
445 asr.set(target);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000446 GrMatrix ivm;
447 if (vm.invert(&ivm)) {
448 drawState->preConcatSamplerMatrices(stageMask, ivm);
449 }
450 drawState->setViewMatrix(GrMatrix::I());
451
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000452 SkPath path;
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000453 origPath.transform(vm, &path);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000454
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000455 GrVertexLayout layout = 0;
456 for (int s = 0; s < GrDrawState::kNumStages; ++s) {
457 if ((1 << s) & stageMask) {
458 layout |= GrDrawTarget::StagePosAsTexCoordVertexLayoutBit(s);
459 }
460 }
461 layout |= GrDrawTarget::kEdge_VertexLayoutBit;
462
463 QuadVertex *verts;
464 uint16_t* idxs;
465
bsalomon@google.com06809612012-01-21 15:03:39 +0000466 int vCount;
467 int iCount;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000468 SegmentArray segments;
469 SkPoint fanPt;
470 if (!get_segments(path, &segments, &fanPt, &vCount, &iCount)) {
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000471 return false;
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000472 }
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000473
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000474 if (!target->reserveVertexSpace(layout,
475 vCount,
476 reinterpret_cast<void**>(&verts))) {
477 return false;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000478 }
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000479 if (!target->reserveIndexSpace(iCount, reinterpret_cast<void**>(&idxs))) {
480 target->resetVertexSource();
481 return false;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000482 }
483
bsalomon@google.com9aed1142012-01-30 14:28:39 +0000484 create_vertices(segments, fanPt, verts, idxs);
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000485
486 drawState->setVertexEdgeType(GrDrawState::kQuad_EdgeType);
bsalomon@google.comc2099d22012-03-02 21:26:50 +0000487 target->drawIndexed(kTriangles_PrimitiveType,
488 0, // start vertex
489 0, // start index
490 vCount,
491 iCount);
492 return true;
bsalomon@google.com69cc6ad2012-01-17 14:25:10 +0000493}
494