blob: 40e2ac32757dacfc635b8b2ec64b51f9563a8e22 [file] [log] [blame]
rileya@google.com589708b2012-07-26 20:04:23 +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 "SkTwoPointRadialGradient.h"
10
11/* Two-point radial gradients are specified by two circles, each with a center
12 point and radius. The gradient can be considered to be a series of
13 concentric circles, with the color interpolated from the start circle
14 (at t=0) to the end circle (at t=1).
15
16 For each point (x, y) in the span, we want to find the
17 interpolated circle that intersects that point. The center
18 of the desired circle (Cx, Cy) falls at some distance t
19 along the line segment between the start point (Sx, Sy) and
20 end point (Ex, Ey):
21
22 Cx = (1 - t) * Sx + t * Ex (0 <= t <= 1)
23 Cy = (1 - t) * Sy + t * Ey
24
25 The radius of the desired circle (r) is also a linear interpolation t
26 between the start and end radii (Sr and Er):
27
28 r = (1 - t) * Sr + t * Er
29
30 But
31
32 (x - Cx)^2 + (y - Cy)^2 = r^2
33
34 so
35
36 (x - ((1 - t) * Sx + t * Ex))^2
37 + (y - ((1 - t) * Sy + t * Ey))^2
38 = ((1 - t) * Sr + t * Er)^2
39
40 Solving for t yields
41
42 [(Sx - Ex)^2 + (Sy - Ey)^2 - (Er - Sr)^2)] * t^2
43 + [2 * (Sx - Ex)(x - Sx) + 2 * (Sy - Ey)(y - Sy) - 2 * (Er - Sr) * Sr] * t
44 + [(x - Sx)^2 + (y - Sy)^2 - Sr^2] = 0
45
46 To simplify, let Dx = Sx - Ex, Dy = Sy - Ey, Dr = Er - Sr, dx = x - Sx, dy = y - Sy
47
48 [Dx^2 + Dy^2 - Dr^2)] * t^2
49 + 2 * [Dx * dx + Dy * dy - Dr * Sr] * t
50 + [dx^2 + dy^2 - Sr^2] = 0
51
52 A quadratic in t. The two roots of the quadratic reflect the two
53 possible circles on which the point may fall. Solving for t yields
54 the gradient value to use.
55
56 If a<0, the start circle is entirely contained in the
57 end circle, and one of the roots will be <0 or >1 (off the line
58 segment). If a>0, the start circle falls at least partially
59 outside the end circle (or vice versa), and the gradient
60 defines a "tube" where a point may be on one circle (on the
61 inside of the tube) or the other (outside of the tube). We choose
62 one arbitrarily.
63
64 In order to keep the math to within the limits of fixed point,
65 we divide the entire quadratic by Dr^2, and replace
66 (x - Sx)/Dr with x' and (y - Sy)/Dr with y', giving
67
68 [Dx^2 / Dr^2 + Dy^2 / Dr^2 - 1)] * t^2
69 + 2 * [x' * Dx / Dr + y' * Dy / Dr - Sr / Dr] * t
70 + [x'^2 + y'^2 - Sr^2/Dr^2] = 0
71
72 (x' and y' are computed by appending the subtract and scale to the
73 fDstToIndex matrix in the constructor).
74
75 Since the 'A' component of the quadratic is independent of x' and y', it
76 is precomputed in the constructor. Since the 'B' component is linear in
77 x' and y', if x and y are linear in the span, 'B' can be computed
78 incrementally with a simple delta (db below). If it is not (e.g.,
79 a perspective projection), it must be computed in the loop.
80
81*/
82
83namespace {
84
85inline SkFixed two_point_radial(SkScalar b, SkScalar fx, SkScalar fy,
86 SkScalar sr2d2, SkScalar foura,
87 SkScalar oneOverTwoA, bool posRoot) {
88 SkScalar c = SkScalarSquare(fx) + SkScalarSquare(fy) - sr2d2;
89 if (0 == foura) {
90 return SkScalarToFixed(SkScalarDiv(-c, b));
91 }
92
93 SkScalar discrim = SkScalarSquare(b) - SkScalarMul(foura, c);
94 if (discrim < 0) {
95 discrim = -discrim;
96 }
97 SkScalar rootDiscrim = SkScalarSqrt(discrim);
98 SkScalar result;
99 if (posRoot) {
100 result = SkScalarMul(-b + rootDiscrim, oneOverTwoA);
101 } else {
102 result = SkScalarMul(-b - rootDiscrim, oneOverTwoA);
103 }
104 return SkScalarToFixed(result);
105}
106
107typedef void (* TwoPointRadialShadeProc)(SkScalar fx, SkScalar dx,
108 SkScalar fy, SkScalar dy,
109 SkScalar b, SkScalar db,
110 SkScalar fSr2D2, SkScalar foura, SkScalar fOneOverTwoA, bool posRoot,
111 SkPMColor* SK_RESTRICT dstC, const SkPMColor* SK_RESTRICT cache,
112 int count);
113
114void shadeSpan_twopoint_clamp(SkScalar fx, SkScalar dx,
115 SkScalar fy, SkScalar dy,
116 SkScalar b, SkScalar db,
117 SkScalar fSr2D2, SkScalar foura, SkScalar fOneOverTwoA, bool posRoot,
118 SkPMColor* SK_RESTRICT dstC, const SkPMColor* SK_RESTRICT cache,
119 int count) {
120 for (; count > 0; --count) {
121 SkFixed t = two_point_radial(b, fx, fy, fSr2D2, foura,
122 fOneOverTwoA, posRoot);
123 SkFixed index = SkClampMax(t, 0xFFFF);
124 SkASSERT(index <= 0xFFFF);
125 *dstC++ = cache[index >> SkGradientShaderBase::kCache32Shift];
126 fx += dx;
127 fy += dy;
128 b += db;
129 }
130}
131void shadeSpan_twopoint_mirror(SkScalar fx, SkScalar dx,
132 SkScalar fy, SkScalar dy,
133 SkScalar b, SkScalar db,
134 SkScalar fSr2D2, SkScalar foura, SkScalar fOneOverTwoA, bool posRoot,
135 SkPMColor* SK_RESTRICT dstC, const SkPMColor* SK_RESTRICT cache,
136 int count) {
137 for (; count > 0; --count) {
138 SkFixed t = two_point_radial(b, fx, fy, fSr2D2, foura,
139 fOneOverTwoA, posRoot);
140 SkFixed index = mirror_tileproc(t);
141 SkASSERT(index <= 0xFFFF);
142 *dstC++ = cache[index >> SkGradientShaderBase::kCache32Shift];
143 fx += dx;
144 fy += dy;
145 b += db;
146 }
147}
148
149void shadeSpan_twopoint_repeat(SkScalar fx, SkScalar dx,
150 SkScalar fy, SkScalar dy,
151 SkScalar b, SkScalar db,
152 SkScalar fSr2D2, SkScalar foura, SkScalar fOneOverTwoA, bool posRoot,
153 SkPMColor* SK_RESTRICT dstC, const SkPMColor* SK_RESTRICT cache,
154 int count) {
155 for (; count > 0; --count) {
156 SkFixed t = two_point_radial(b, fx, fy, fSr2D2, foura,
157 fOneOverTwoA, posRoot);
158 SkFixed index = repeat_tileproc(t);
159 SkASSERT(index <= 0xFFFF);
160 *dstC++ = cache[index >> SkGradientShaderBase::kCache32Shift];
161 fx += dx;
162 fy += dy;
163 b += db;
164 }
165}
166}
167
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000168/////////////////////////////////////////////////////////////////////
169
rileya@google.com589708b2012-07-26 20:04:23 +0000170SkTwoPointRadialGradient::SkTwoPointRadialGradient(
171 const SkPoint& start, SkScalar startRadius,
172 const SkPoint& end, SkScalar endRadius,
173 const SkColor colors[], const SkScalar pos[],
174 int colorCount, SkShader::TileMode mode,
175 SkUnitMapper* mapper)
176 : SkGradientShaderBase(colors, pos, colorCount, mode, mapper),
177 fCenter1(start),
178 fCenter2(end),
179 fRadius1(startRadius),
180 fRadius2(endRadius) {
181 init();
182}
183
184SkShader::BitmapType SkTwoPointRadialGradient::asABitmap(
185 SkBitmap* bitmap,
186 SkMatrix* matrix,
187 SkShader::TileMode* xy) const {
188 if (bitmap) {
rileya@google.com1c6d64b2012-07-27 15:49:05 +0000189 this->getGradientTableBitmap(bitmap);
rileya@google.com589708b2012-07-26 20:04:23 +0000190 }
191 SkScalar diffL = 0; // just to avoid gcc warning
192 if (matrix) {
193 diffL = SkScalarSqrt(SkScalarSquare(fDiff.fX) +
194 SkScalarSquare(fDiff.fY));
195 }
196 if (matrix) {
197 if (diffL) {
198 SkScalar invDiffL = SkScalarInvert(diffL);
199 matrix->setSinCos(-SkScalarMul(invDiffL, fDiff.fY),
200 SkScalarMul(invDiffL, fDiff.fX));
201 } else {
202 matrix->reset();
203 }
204 matrix->preConcat(fPtsToUnit);
205 }
206 if (xy) {
207 xy[0] = fTileMode;
208 xy[1] = kClamp_TileMode;
209 }
210 return kTwoPointRadial_BitmapType;
211}
212
213SkShader::GradientType SkTwoPointRadialGradient::asAGradient(
214 SkShader::GradientInfo* info) const {
215 if (info) {
216 commonAsAGradient(info);
217 info->fPoint[0] = fCenter1;
218 info->fPoint[1] = fCenter2;
219 info->fRadius[0] = fRadius1;
220 info->fRadius[1] = fRadius2;
221 }
222 return kRadial2_GradientType;
223}
224
rileya@google.com589708b2012-07-26 20:04:23 +0000225void SkTwoPointRadialGradient::shadeSpan(int x, int y, SkPMColor* dstCParam,
226 int count) {
227 SkASSERT(count > 0);
228
229 SkPMColor* SK_RESTRICT dstC = dstCParam;
230
231 // Zero difference between radii: fill with transparent black.
232 if (fDiffRadius == 0) {
233 sk_bzero(dstC, count * sizeof(*dstC));
234 return;
235 }
236 SkMatrix::MapXYProc dstProc = fDstToIndexProc;
237 TileProc proc = fTileProc;
238 const SkPMColor* SK_RESTRICT cache = this->getCache32();
239
240 SkScalar foura = fA * 4;
241 bool posRoot = fDiffRadius < 0;
242 if (fDstToIndexClass != kPerspective_MatrixClass) {
243 SkPoint srcPt;
244 dstProc(fDstToIndex, SkIntToScalar(x) + SK_ScalarHalf,
245 SkIntToScalar(y) + SK_ScalarHalf, &srcPt);
246 SkScalar dx, fx = srcPt.fX;
247 SkScalar dy, fy = srcPt.fY;
248
249 if (fDstToIndexClass == kFixedStepInX_MatrixClass) {
250 SkFixed fixedX, fixedY;
251 (void)fDstToIndex.fixedStepInX(SkIntToScalar(y), &fixedX, &fixedY);
252 dx = SkFixedToScalar(fixedX);
253 dy = SkFixedToScalar(fixedY);
254 } else {
255 SkASSERT(fDstToIndexClass == kLinear_MatrixClass);
256 dx = fDstToIndex.getScaleX();
257 dy = fDstToIndex.getSkewY();
258 }
259 SkScalar b = (SkScalarMul(fDiff.fX, fx) +
260 SkScalarMul(fDiff.fY, fy) - fStartRadius) * 2;
261 SkScalar db = (SkScalarMul(fDiff.fX, dx) +
262 SkScalarMul(fDiff.fY, dy)) * 2;
263
264 TwoPointRadialShadeProc shadeProc = shadeSpan_twopoint_repeat;
265 if (SkShader::kClamp_TileMode == fTileMode) {
266 shadeProc = shadeSpan_twopoint_clamp;
267 } else if (SkShader::kMirror_TileMode == fTileMode) {
268 shadeProc = shadeSpan_twopoint_mirror;
269 } else {
270 SkASSERT(SkShader::kRepeat_TileMode == fTileMode);
271 }
272 (*shadeProc)(fx, dx, fy, dy, b, db,
273 fSr2D2, foura, fOneOverTwoA, posRoot,
274 dstC, cache, count);
275 } else { // perspective case
276 SkScalar dstX = SkIntToScalar(x);
277 SkScalar dstY = SkIntToScalar(y);
278 for (; count > 0; --count) {
279 SkPoint srcPt;
280 dstProc(fDstToIndex, dstX, dstY, &srcPt);
281 SkScalar fx = srcPt.fX;
282 SkScalar fy = srcPt.fY;
283 SkScalar b = (SkScalarMul(fDiff.fX, fx) +
284 SkScalarMul(fDiff.fY, fy) - fStartRadius) * 2;
285 SkFixed t = two_point_radial(b, fx, fy, fSr2D2, foura,
286 fOneOverTwoA, posRoot);
287 SkFixed index = proc(t);
288 SkASSERT(index <= 0xFFFF);
289 *dstC++ = cache[index >> SkGradientShaderBase::kCache32Shift];
290 dstX += SK_Scalar1;
291 }
292 }
293}
294
reed@google.coma641f3f2012-12-13 22:16:30 +0000295bool SkTwoPointRadialGradient::setContext( const SkBitmap& device,
296 const SkPaint& paint,
297 const SkMatrix& matrix){
298 // For now, we might have divided by zero, so detect that
299 if (0 == fDiffRadius) {
rileya@google.com589708b2012-07-26 20:04:23 +0000300 return false;
301 }
302
reed@google.coma641f3f2012-12-13 22:16:30 +0000303 if (!this->INHERITED::setContext(device, paint, matrix)) {
rileya@google.com589708b2012-07-26 20:04:23 +0000304 return false;
305 }
306
307 // we don't have a span16 proc
308 fFlags &= ~kHasSpan16_Flag;
309 return true;
310}
311
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000312#ifdef SK_DEVELOPER
313void SkTwoPointRadialGradient::toString(SkString* str) const {
314 str->append("SkTwoPointRadialGradient: (");
315
316 str->append("center1: (");
317 str->appendScalar(fCenter1.fX);
318 str->append(", ");
319 str->appendScalar(fCenter1.fY);
320 str->append(") radius1: ");
321 str->appendScalar(fRadius1);
322 str->append(" ");
323
324 str->append("center2: (");
325 str->appendScalar(fCenter2.fX);
326 str->append(", ");
327 str->appendScalar(fCenter2.fY);
328 str->append(") radius2: ");
329 str->appendScalar(fRadius2);
330 str->append(" ");
331
332 this->INHERITED::toString(str);
333
334 str->append(")");
335}
336#endif
337
rileya@google.com589708b2012-07-26 20:04:23 +0000338SkTwoPointRadialGradient::SkTwoPointRadialGradient(
339 SkFlattenableReadBuffer& buffer)
340 : INHERITED(buffer),
341 fCenter1(buffer.readPoint()),
342 fCenter2(buffer.readPoint()),
343 fRadius1(buffer.readScalar()),
344 fRadius2(buffer.readScalar()) {
345 init();
346};
347
348void SkTwoPointRadialGradient::flatten(
349 SkFlattenableWriteBuffer& buffer) const {
350 this->INHERITED::flatten(buffer);
351 buffer.writePoint(fCenter1);
352 buffer.writePoint(fCenter2);
353 buffer.writeScalar(fRadius1);
354 buffer.writeScalar(fRadius2);
355}
356
357void SkTwoPointRadialGradient::init() {
358 fDiff = fCenter1 - fCenter2;
359 fDiffRadius = fRadius2 - fRadius1;
360 // hack to avoid zero-divide for now
361 SkScalar inv = fDiffRadius ? SkScalarInvert(fDiffRadius) : 0;
362 fDiff.fX = SkScalarMul(fDiff.fX, inv);
363 fDiff.fY = SkScalarMul(fDiff.fY, inv);
364 fStartRadius = SkScalarMul(fRadius1, inv);
365 fSr2D2 = SkScalarSquare(fStartRadius);
366 fA = SkScalarSquare(fDiff.fX) + SkScalarSquare(fDiff.fY) - SK_Scalar1;
367 fOneOverTwoA = fA ? SkScalarInvert(fA * 2) : 0;
368
369 fPtsToUnit.setTranslate(-fCenter1.fX, -fCenter1.fY);
370 fPtsToUnit.postScale(inv, inv);
371}
372
rileya@google.comd7cc6512012-07-27 14:00:39 +0000373/////////////////////////////////////////////////////////////////////
374
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000375#if SK_SUPPORT_GPU
376
bsalomon@google.com2eaaefd2012-10-29 19:51:22 +0000377#include "GrTBackendEffectFactory.h"
378
rileya@google.comd7cc6512012-07-27 14:00:39 +0000379// For brevity
380typedef GrGLUniformManager::UniformHandle UniformHandle;
381static const UniformHandle kInvalidUniformHandle = GrGLUniformManager::kInvalidUniformHandle;
382
bsalomon@google.com0707c292012-10-25 21:45:42 +0000383class GrGLRadial2Gradient : public GrGLGradientEffect {
rileya@google.comd7cc6512012-07-27 14:00:39 +0000384
385public:
386
bsalomon@google.com6340a412013-01-22 19:55:59 +0000387 GrGLRadial2Gradient(const GrBackendEffectFactory& factory, const GrEffectRef&);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000388 virtual ~GrGLRadial2Gradient() { }
389
bsalomon@google.comf78df332012-10-29 12:43:38 +0000390 virtual void emitCode(GrGLShaderBuilder*,
bsalomon@google.com2eaaefd2012-10-29 19:51:22 +0000391 const GrEffectStage&,
bsalomon@google.comf78df332012-10-29 12:43:38 +0000392 EffectKey,
393 const char* vertexCoords,
394 const char* outputColor,
395 const char* inputColor,
396 const TextureSamplerArray&) SK_OVERRIDE;
bsalomon@google.com28a15fb2012-10-26 17:53:18 +0000397 virtual void setData(const GrGLUniformManager&, const GrEffectStage&) SK_OVERRIDE;
rileya@google.comd7cc6512012-07-27 14:00:39 +0000398
bsalomon@google.com2eaaefd2012-10-29 19:51:22 +0000399 static EffectKey GenKey(const GrEffectStage&, const GrGLCaps& caps);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000400
401protected:
402
403 UniformHandle fVSParamUni;
404 UniformHandle fFSParamUni;
405
406 const char* fVSVaryingName;
407 const char* fFSVaryingName;
408
409 bool fIsDegenerate;
410
411 // @{
412 /// Values last uploaded as uniforms
413
bsalomon@google.com81712882012-11-01 17:12:34 +0000414 SkScalar fCachedCenter;
415 SkScalar fCachedRadius;
rileya@google.comd7cc6512012-07-27 14:00:39 +0000416 bool fCachedPosRoot;
417
418 // @}
419
420private:
421
bsalomon@google.com0707c292012-10-25 21:45:42 +0000422 typedef GrGLGradientEffect INHERITED;
rileya@google.comd7cc6512012-07-27 14:00:39 +0000423
424};
425
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000426/////////////////////////////////////////////////////////////////////
427
428class GrRadial2Gradient : public GrGradientEffect {
429public:
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000430 static GrEffectRef* Create(GrContext* ctx,
431 const SkTwoPointRadialGradient& shader,
432 const SkMatrix& matrix,
433 SkShader::TileMode tm) {
bsalomon@google.com6340a412013-01-22 19:55:59 +0000434 AutoEffectUnref effect(SkNEW_ARGS(GrRadial2Gradient, (ctx, shader, matrix, tm)));
bsalomon@google.coma1ebbe42013-01-16 15:51:47 +0000435 return CreateEffectRef(effect);
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000436 }
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000437
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000438 virtual ~GrRadial2Gradient() { }
439
440 static const char* Name() { return "Two-Point Radial Gradient"; }
bsalomon@google.com396e61f2012-10-25 19:00:29 +0000441 virtual const GrBackendEffectFactory& getFactory() const SK_OVERRIDE {
442 return GrTBackendEffectFactory<GrRadial2Gradient>::getInstance();
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000443 }
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000444
445 // The radial gradient parameters can collapse to a linear (instead of quadratic) equation.
bsalomon@google.com81712882012-11-01 17:12:34 +0000446 bool isDegenerate() const { return SK_Scalar1 == fCenterX1; }
447 SkScalar center() const { return fCenterX1; }
448 SkScalar radius() const { return fRadius0; }
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000449 bool isPosRoot() const { return SkToBool(fPosRoot); }
450
bsalomon@google.com422e81a2012-10-25 14:11:03 +0000451 typedef GrGLRadial2Gradient GLEffect;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000452
453private:
bsalomon@google.com8a252f72013-01-22 20:35:13 +0000454 virtual bool onIsEqual(const GrEffect& sBase) const SK_OVERRIDE {
bsalomon@google.com6340a412013-01-22 19:55:59 +0000455 const GrRadial2Gradient& s = CastEffect<GrRadial2Gradient>(sBase);
bsalomon@google.com70db51f2013-01-17 18:39:59 +0000456 return (INHERITED::onIsEqual(sBase) &&
bsalomon@google.com68b58c92013-01-17 16:50:08 +0000457 this->fCenterX1 == s.fCenterX1 &&
458 this->fRadius0 == s.fRadius0 &&
459 this->fPosRoot == s.fPosRoot);
460 }
461
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000462 GrRadial2Gradient(GrContext* ctx,
463 const SkTwoPointRadialGradient& shader,
464 const SkMatrix& matrix,
465 SkShader::TileMode tm)
466 : INHERITED(ctx, shader, matrix, tm)
467 , fCenterX1(shader.getCenterX1())
468 , fRadius0(shader.getStartRadius())
469 , fPosRoot(shader.getDiffRadius() < 0) { }
470
bsalomon@google.comf271cc72012-10-24 19:35:13 +0000471 GR_DECLARE_EFFECT_TEST;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000472
473 // @{
474 // Cache of values - these can change arbitrarily, EXCEPT
475 // we shouldn't change between degenerate and non-degenerate?!
476
bsalomon@google.com81712882012-11-01 17:12:34 +0000477 SkScalar fCenterX1;
478 SkScalar fRadius0;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000479 SkBool8 fPosRoot;
480
481 // @}
482
483 typedef GrGradientEffect INHERITED;
484};
485
486/////////////////////////////////////////////////////////////////////
487
bsalomon@google.comf271cc72012-10-24 19:35:13 +0000488GR_DEFINE_EFFECT_TEST(GrRadial2Gradient);
bsalomon@google.comd4726202012-08-03 14:34:46 +0000489
bsalomon@google.com73a96942013-02-13 16:31:19 +0000490GrEffectRef* GrRadial2Gradient::TestCreate(SkMWCRandom* random,
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000491 GrContext* context,
492 GrTexture**) {
bsalomon@google.comd4726202012-08-03 14:34:46 +0000493 SkPoint center1 = {random->nextUScalar1(), random->nextUScalar1()};
494 SkScalar radius1 = random->nextUScalar1();
495 SkPoint center2;
496 SkScalar radius2;
497 do {
bsalomon@google.comfb883bf2012-12-11 15:32:04 +0000498 center2.set(random->nextUScalar1(), random->nextUScalar1());
bsalomon@google.comd4726202012-08-03 14:34:46 +0000499 radius2 = random->nextUScalar1 ();
bsalomon@google.come197cbf2013-01-14 16:46:26 +0000500 // There is a bug in two point radial gradients with identical radii
bsalomon@google.comd4726202012-08-03 14:34:46 +0000501 } while (radius1 == radius2);
502
503 SkColor colors[kMaxRandomGradientColors];
504 SkScalar stopsArray[kMaxRandomGradientColors];
505 SkScalar* stops = stopsArray;
506 SkShader::TileMode tm;
507 int colorCount = RandomGradientParams(random, colors, &stops, &tm);
508 SkAutoTUnref<SkShader> shader(SkGradientShader::CreateTwoPointRadial(center1, radius1,
509 center2, radius2,
510 colors, stops, colorCount,
511 tm));
bsalomon@google.come197cbf2013-01-14 16:46:26 +0000512 SkPaint paint;
513 return shader->asNewEffect(context, paint);
bsalomon@google.comd4726202012-08-03 14:34:46 +0000514}
515
516/////////////////////////////////////////////////////////////////////
517
bsalomon@google.com6340a412013-01-22 19:55:59 +0000518GrGLRadial2Gradient::GrGLRadial2Gradient(const GrBackendEffectFactory& factory,
519 const GrEffectRef& baseData)
rileya@google.comd7cc6512012-07-27 14:00:39 +0000520 : INHERITED(factory)
521 , fVSParamUni(kInvalidUniformHandle)
522 , fFSParamUni(kInvalidUniformHandle)
523 , fVSVaryingName(NULL)
524 , fFSVaryingName(NULL)
bsalomon@google.com81712882012-11-01 17:12:34 +0000525 , fCachedCenter(SK_ScalarMax)
526 , fCachedRadius(-SK_ScalarMax)
rileya@google.comd7cc6512012-07-27 14:00:39 +0000527 , fCachedPosRoot(0) {
528
bsalomon@google.com6340a412013-01-22 19:55:59 +0000529 const GrRadial2Gradient& data = CastEffect<GrRadial2Gradient>(baseData);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000530 fIsDegenerate = data.isDegenerate();
531}
532
bsalomon@google.comf78df332012-10-29 12:43:38 +0000533void GrGLRadial2Gradient::emitCode(GrGLShaderBuilder* builder,
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000534 const GrEffectStage& stage,
535 EffectKey key,
bsalomon@google.comf78df332012-10-29 12:43:38 +0000536 const char* vertexCoords,
537 const char* outputColor,
538 const char* inputColor,
539 const TextureSamplerArray& samplers) {
540
541 this->emitYCoordUniform(builder);
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000542 const char* fsCoords;
543 const char* vsCoordsVarying;
544 GrSLType coordsVaryingType;
545 this->setupMatrix(builder, key, vertexCoords, &fsCoords, &vsCoordsVarying, &coordsVaryingType);
546
rileya@google.comd7cc6512012-07-27 14:00:39 +0000547 // 2 copies of uniform array, 1 for each of vertex & fragment shader,
548 // to work around Xoom bug. Doesn't seem to cause performance decrease
549 // in test apps, but need to keep an eye on it.
550 fVSParamUni = builder->addUniformArray(GrGLShaderBuilder::kVertex_ShaderType,
551 kFloat_GrSLType, "Radial2VSParams", 6);
552 fFSParamUni = builder->addUniformArray(GrGLShaderBuilder::kFragment_ShaderType,
553 kFloat_GrSLType, "Radial2FSParams", 6);
554
555 // For radial gradients without perspective we can pass the linear
556 // part of the quadratic as a varying.
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000557 if (kVec2f_GrSLType == coordsVaryingType) {
558 builder->addVarying(kFloat_GrSLType, "Radial2BCoeff", &fVSVaryingName, &fFSVaryingName);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000559 }
rileya@google.comd7cc6512012-07-27 14:00:39 +0000560
bsalomon@google.comf78df332012-10-29 12:43:38 +0000561 // VS
562 {
bsalomon@google.comf78df332012-10-29 12:43:38 +0000563 SkString p2;
564 SkString p3;
565 builder->getUniformVariable(fVSParamUni).appendArrayAccess(2, &p2);
566 builder->getUniformVariable(fVSParamUni).appendArrayAccess(3, &p3);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000567
bsalomon@google.comf78df332012-10-29 12:43:38 +0000568 // For radial gradients without perspective we can pass the linear
569 // part of the quadratic as a varying.
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000570 if (kVec2f_GrSLType == coordsVaryingType) {
bsalomon@google.comf78df332012-10-29 12:43:38 +0000571 // r2Var = 2 * (r2Parm[2] * varCoord.x - r2Param[3])
bsalomon@google.comf910d3b2013-03-07 17:06:57 +0000572 builder->vsCodeAppendf("\t%s = 2.0 *(%s * %s.x - %s);\n",
573 fVSVaryingName, p2.c_str(),
574 vsCoordsVarying, p3.c_str());
bsalomon@google.comf78df332012-10-29 12:43:38 +0000575 }
rileya@google.comd7cc6512012-07-27 14:00:39 +0000576 }
577
bsalomon@google.comf78df332012-10-29 12:43:38 +0000578 // FS
579 {
bsalomon@google.comf78df332012-10-29 12:43:38 +0000580 SkString cName("c");
581 SkString ac4Name("ac4");
582 SkString rootName("root");
583 SkString t;
584 SkString p0;
585 SkString p1;
586 SkString p2;
587 SkString p3;
588 SkString p4;
589 SkString p5;
590 builder->getUniformVariable(fFSParamUni).appendArrayAccess(0, &p0);
591 builder->getUniformVariable(fFSParamUni).appendArrayAccess(1, &p1);
592 builder->getUniformVariable(fFSParamUni).appendArrayAccess(2, &p2);
593 builder->getUniformVariable(fFSParamUni).appendArrayAccess(3, &p3);
594 builder->getUniformVariable(fFSParamUni).appendArrayAccess(4, &p4);
595 builder->getUniformVariable(fFSParamUni).appendArrayAccess(5, &p5);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000596
bsalomon@google.comf78df332012-10-29 12:43:38 +0000597 // If we we're able to interpolate the linear component,
598 // bVar is the varying; otherwise compute it
599 SkString bVar;
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000600 if (kVec2f_GrSLType == coordsVaryingType) {
bsalomon@google.comf78df332012-10-29 12:43:38 +0000601 bVar = fFSVaryingName;
602 } else {
603 bVar = "b";
bsalomon@google.comf910d3b2013-03-07 17:06:57 +0000604 builder->fsCodeAppendf("\tfloat %s = 2.0 * (%s * %s.x - %s);\n",
605 bVar.c_str(), p2.c_str(), fsCoords, p3.c_str());
bsalomon@google.comf78df332012-10-29 12:43:38 +0000606 }
rileya@google.comd7cc6512012-07-27 14:00:39 +0000607
bsalomon@google.comf78df332012-10-29 12:43:38 +0000608 // c = (x^2)+(y^2) - params[4]
bsalomon@google.comf910d3b2013-03-07 17:06:57 +0000609 builder->fsCodeAppendf("\tfloat %s = dot(%s, %s) - %s;\n",
610 cName.c_str(),
611 fsCoords,
612 fsCoords,
613 p4.c_str());
rileya@google.comd7cc6512012-07-27 14:00:39 +0000614
bsalomon@google.comf78df332012-10-29 12:43:38 +0000615 // If we aren't degenerate, emit some extra code, and accept a slightly
616 // more complex coord.
617 if (!fIsDegenerate) {
rileya@google.comd7cc6512012-07-27 14:00:39 +0000618
bsalomon@google.comf78df332012-10-29 12:43:38 +0000619 // ac4 = 4.0 * params[0] * c
bsalomon@google.comf910d3b2013-03-07 17:06:57 +0000620 builder->fsCodeAppendf("\tfloat %s = %s * 4.0 * %s;\n",
621 ac4Name.c_str(), p0.c_str(),
622 cName.c_str());
bsalomon@google.comf78df332012-10-29 12:43:38 +0000623
624 // root = sqrt(b^2-4ac)
625 // (abs to avoid exception due to fp precision)
bsalomon@google.comf910d3b2013-03-07 17:06:57 +0000626 builder->fsCodeAppendf("\tfloat %s = sqrt(abs(%s*%s - %s));\n",
627 rootName.c_str(), bVar.c_str(), bVar.c_str(),
628 ac4Name.c_str());
bsalomon@google.comf78df332012-10-29 12:43:38 +0000629
630 // t is: (-b + params[5] * sqrt(b^2-4ac)) * params[1]
631 t.printf("(-%s + %s * %s) * %s", bVar.c_str(), p5.c_str(),
632 rootName.c_str(), p1.c_str());
633 } else {
634 // t is: -c/b
635 t.printf("-%s / %s", cName.c_str(), bVar.c_str());
636 }
637
638 this->emitColorLookup(builder, t.c_str(), outputColor, inputColor, samplers[0]);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000639 }
rileya@google.comd7cc6512012-07-27 14:00:39 +0000640}
641
bsalomon@google.com28a15fb2012-10-26 17:53:18 +0000642void GrGLRadial2Gradient::setData(const GrGLUniformManager& uman, const GrEffectStage& stage) {
643 INHERITED::setData(uman, stage);
bsalomon@google.com6340a412013-01-22 19:55:59 +0000644 const GrRadial2Gradient& data = GetEffectFromStage<GrRadial2Gradient>(stage);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000645 GrAssert(data.isDegenerate() == fIsDegenerate);
bsalomon@google.com81712882012-11-01 17:12:34 +0000646 SkScalar centerX1 = data.center();
647 SkScalar radius0 = data.radius();
rileya@google.comd7cc6512012-07-27 14:00:39 +0000648 if (fCachedCenter != centerX1 ||
649 fCachedRadius != radius0 ||
650 fCachedPosRoot != data.isPosRoot()) {
651
bsalomon@google.com81712882012-11-01 17:12:34 +0000652 SkScalar a = SkScalarMul(centerX1, centerX1) - SK_Scalar1;
rileya@google.comd7cc6512012-07-27 14:00:39 +0000653
654 // When we're in the degenerate (linear) case, the second
655 // value will be INF but the program doesn't read it. (We
656 // use the same 6 uniforms even though we don't need them
657 // all in the linear case just to keep the code complexity
658 // down).
659 float values[6] = {
bsalomon@google.com81712882012-11-01 17:12:34 +0000660 SkScalarToFloat(a),
661 1 / (2.f * SkScalarToFloat(a)),
662 SkScalarToFloat(centerX1),
663 SkScalarToFloat(radius0),
664 SkScalarToFloat(SkScalarMul(radius0, radius0)),
rileya@google.comd7cc6512012-07-27 14:00:39 +0000665 data.isPosRoot() ? 1.f : -1.f
666 };
667
668 uman.set1fv(fVSParamUni, 0, 6, values);
669 uman.set1fv(fFSParamUni, 0, 6, values);
670 fCachedCenter = centerX1;
671 fCachedRadius = radius0;
672 fCachedPosRoot = data.isPosRoot();
673 }
674}
675
bsalomon@google.com2eaaefd2012-10-29 19:51:22 +0000676GrGLEffect::EffectKey GrGLRadial2Gradient::GenKey(const GrEffectStage& s, const GrGLCaps&) {
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000677 enum {
678 kIsDegenerate = 1 << kMatrixKeyBitCnt,
679 };
680
681 EffectKey key = GenMatrixKey(s);
bsalomon@google.com6340a412013-01-22 19:55:59 +0000682 if (GetEffectFromStage<GrRadial2Gradient>(s).isDegenerate()) {
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000683 key |= kIsDegenerate;
684 }
685 return key;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000686}
rileya@google.comd7cc6512012-07-27 14:00:39 +0000687
688/////////////////////////////////////////////////////////////////////
689
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000690GrEffectRef* SkTwoPointRadialGradient::asNewEffect(GrContext* context, const SkPaint&) const {
bsalomon@google.com00835cc2013-01-14 17:07:22 +0000691 SkASSERT(NULL != context);
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000692 // invert the localM, translate to center1 (fPtsToUni), rotate so center2 is on x axis.
bsalomon@google.comdfdb7e52012-10-16 15:19:45 +0000693 SkMatrix matrix;
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000694 if (!this->getLocalMatrix().invert(&matrix)) {
humper@google.com84831ac2013-01-14 22:09:54 +0000695 return NULL;
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000696 }
697 matrix.postConcat(fPtsToUnit);
698
699 SkScalar diffLen = fDiff.length();
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000700 if (0 != diffLen) {
701 SkScalar invDiffLen = SkScalarInvert(diffLen);
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000702 SkMatrix rot;
703 rot.setSinCos(-SkScalarMul(invDiffLen, fDiff.fY),
704 SkScalarMul(invDiffLen, fDiff.fX));
705 matrix.postConcat(rot);
bsalomon@google.comdfdb7e52012-10-16 15:19:45 +0000706 }
707
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000708 return GrRadial2Gradient::Create(context, *this, matrix, fTileMode);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000709}
710
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000711#else
712
bsalomon@google.com5d2cd202013-01-16 15:31:06 +0000713GrEffectRef* SkTwoPointRadialGradient::asNewEffect(GrContext*, const SkPaint&) const {
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000714 SkDEBUGFAIL("Should not call in GPU-less build");
bsalomon@google.come197cbf2013-01-14 16:46:26 +0000715 return NULL;
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000716}
717
718#endif