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robertphillips@google.comb83b6b42013-01-22 14:32:09 +00001/*
2 * Copyright 2013 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@reedtribe.orge51755f2011-12-10 19:36:56 +00008#include "SkArithmeticMode.h"
9#include "SkColorPriv.h"
senorblanco@chromium.org9a6eb0e2013-05-29 20:55:09 +000010#include "SkFlattenableBuffers.h"
robertphillips@google.comb83b6b42013-01-22 14:32:09 +000011#include "SkString.h"
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000012#include "SkUnPreMultiply.h"
senorblanco@chromium.org9a6eb0e2013-05-29 20:55:09 +000013#if SK_SUPPORT_GPU
14#include "GrContext.h"
15#include "gl/GrGLEffect.h"
16#include "GrTBackendEffectFactory.h"
17#include "SkImageFilterUtils.h"
18#endif
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000019
20class SkArithmeticMode_scalar : public SkXfermode {
21public:
22 SkArithmeticMode_scalar(SkScalar k1, SkScalar k2, SkScalar k3, SkScalar k4) {
23 fK[0] = k1;
24 fK[1] = k2;
25 fK[2] = k3;
26 fK[3] = k4;
27 }
28
29 virtual void xfer32(SkPMColor dst[], const SkPMColor src[], int count,
reed@google.com30da7452012-12-17 19:55:24 +000030 const SkAlpha aa[]) const SK_OVERRIDE;
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000031
robertphillips@google.comb83b6b42013-01-22 14:32:09 +000032 SK_DEVELOPER_TO_STRING()
senorblanco@chromium.org9a6eb0e2013-05-29 20:55:09 +000033 SK_DECLARE_PUBLIC_FLATTENABLE_DESERIALIZATION_PROCS(SkArithmeticMode_scalar)
34
35#if SK_SUPPORT_GPU
36 virtual bool asNewEffectOrCoeff(GrContext*, GrEffectRef** effect, Coeff*, Coeff*) const SK_OVERRIDE;
37#endif
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000038
39private:
senorblanco@chromium.org9a6eb0e2013-05-29 20:55:09 +000040 SkArithmeticMode_scalar(SkFlattenableReadBuffer& buffer) : INHERITED(buffer) {
41 fK[0] = buffer.readScalar();
42 fK[1] = buffer.readScalar();
43 fK[2] = buffer.readScalar();
44 fK[3] = buffer.readScalar();
45 }
46
47 virtual void flatten(SkFlattenableWriteBuffer& buffer) const SK_OVERRIDE {
48 INHERITED::flatten(buffer);
49 buffer.writeScalar(fK[0]);
50 buffer.writeScalar(fK[1]);
51 buffer.writeScalar(fK[2]);
52 buffer.writeScalar(fK[3]);
53 }
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000054 SkScalar fK[4];
robertphillips@google.comb83b6b42013-01-22 14:32:09 +000055
skia.committer@gmail.com98ded842013-01-23 07:06:17 +000056 typedef SkXfermode INHERITED;
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000057};
58
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000059static int pinToByte(int value) {
60 if (value < 0) {
61 value = 0;
62 } else if (value > 255) {
63 value = 255;
64 }
65 return value;
66}
67
68static int arith(SkScalar k1, SkScalar k2, SkScalar k3, SkScalar k4,
69 int src, int dst) {
70 SkScalar result = SkScalarMul(k1, src * dst) +
71 SkScalarMul(k2, src) +
72 SkScalarMul(k3, dst) +
73 k4;
74 int res = SkScalarRoundToInt(result);
75 return pinToByte(res);
76}
77
78static int blend(int src, int dst, int scale) {
79 return dst + ((src - dst) * scale >> 8);
80}
81
82static bool needsUnpremul(int alpha) {
83 return 0 != alpha && 0xFF != alpha;
84}
85
86void SkArithmeticMode_scalar::xfer32(SkPMColor dst[], const SkPMColor src[],
reed@google.com30da7452012-12-17 19:55:24 +000087 int count, const SkAlpha aaCoverage[]) const {
mike@reedtribe.orge51755f2011-12-10 19:36:56 +000088 SkScalar k1 = fK[0] / 255;
89 SkScalar k2 = fK[1];
90 SkScalar k3 = fK[2];
91 SkScalar k4 = fK[3] * 255;
92
93 for (int i = 0; i < count; ++i) {
94 if ((NULL == aaCoverage) || aaCoverage[i]) {
95 SkPMColor sc = src[i];
96 SkPMColor dc = dst[i];
97 int sa = SkGetPackedA32(sc);
98 int da = SkGetPackedA32(dc);
99
100 int srcNeedsUnpremul = needsUnpremul(sa);
senorblanco@chromium.org35c733c2013-05-28 19:43:05 +0000101 int dstNeedsUnpremul = needsUnpremul(da);
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000102
103 int a, r, g, b;
104
tomhudson@google.com5efe0cb2012-04-10 19:14:48 +0000105 if (!srcNeedsUnpremul && !dstNeedsUnpremul) {
senorblanco@chromium.org35c733c2013-05-28 19:43:05 +0000106 a = arith(k1, k2, k3, k4, sa, da);
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000107 r = arith(k1, k2, k3, k4, SkGetPackedR32(sc), SkGetPackedR32(dc));
108 g = arith(k1, k2, k3, k4, SkGetPackedG32(sc), SkGetPackedG32(dc));
109 b = arith(k1, k2, k3, k4, SkGetPackedB32(sc), SkGetPackedB32(dc));
110 } else {
111 int sr = SkGetPackedR32(sc);
112 int sg = SkGetPackedG32(sc);
113 int sb = SkGetPackedB32(sc);
114 if (srcNeedsUnpremul) {
115 SkUnPreMultiply::Scale scale = SkUnPreMultiply::GetScale(sa);
116 sr = SkUnPreMultiply::ApplyScale(scale, sr);
117 sg = SkUnPreMultiply::ApplyScale(scale, sg);
118 sb = SkUnPreMultiply::ApplyScale(scale, sb);
119 }
120
121 int dr = SkGetPackedR32(dc);
122 int dg = SkGetPackedG32(dc);
123 int db = SkGetPackedB32(dc);
124 if (dstNeedsUnpremul) {
125 SkUnPreMultiply::Scale scale = SkUnPreMultiply::GetScale(da);
126 dr = SkUnPreMultiply::ApplyScale(scale, dr);
127 dg = SkUnPreMultiply::ApplyScale(scale, dg);
128 db = SkUnPreMultiply::ApplyScale(scale, db);
129 }
130
senorblanco@chromium.org35c733c2013-05-28 19:43:05 +0000131 a = arith(k1, k2, k3, k4, sa, da);
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000132 r = arith(k1, k2, k3, k4, sr, dr);
133 g = arith(k1, k2, k3, k4, sg, dg);
134 b = arith(k1, k2, k3, k4, sb, db);
135 }
136
137 // apply antialias coverage if necessary
138 if (aaCoverage && 0xFF != aaCoverage[i]) {
139 int scale = aaCoverage[i] + (aaCoverage[i] >> 7);
140 a = blend(a, SkGetPackedA32(sc), scale);
141 r = blend(r, SkGetPackedR32(sc), scale);
142 g = blend(g, SkGetPackedG32(sc), scale);
143 b = blend(b, SkGetPackedB32(sc), scale);
144 }
145
mike@reedtribe.org0e330ae2012-08-12 19:08:41 +0000146 // turn the result back into premul
147 if (0xFF != a) {
148 int scale = a + (a >> 7);
149 r = SkAlphaMul(r, scale);
150 g = SkAlphaMul(g, scale);
151 b = SkAlphaMul(b, scale);
152 }
153 dst[i] = SkPackARGB32(a, r, g, b);
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000154 }
155 }
156}
157
robertphillips@google.comb83b6b42013-01-22 14:32:09 +0000158#ifdef SK_DEVELOPER
159void SkArithmeticMode_scalar::toString(SkString* str) const {
160 str->append("SkArithmeticMode_scalar: ");
161 for (int i = 0; i < 4; ++i) {
162 str->appendScalar(fK[i]);
163 if (i < 3) {
164 str->append(" ");
165 }
166 }
167}
168#endif
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000169
170///////////////////////////////////////////////////////////////////////////////
171
172static bool fitsInBits(SkScalar x, int bits) {
173#ifdef SK_SCALAR_IS_FIXED
174 x = SkAbs32(x);
175 x += 1 << 7;
176 x >>= 8;
177 return x < (1 << (bits - 1));
178#else
179 return SkScalarAbs(x) < (1 << (bits - 1));
180#endif
181}
182
caryclark@google.com383d5d42012-06-06 12:09:18 +0000183#if 0 // UNUSED
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000184static int32_t toDot8(SkScalar x) {
185#ifdef SK_SCALAR_IS_FIXED
186 x += 1 << 7;
187 x >>= 8;
188 return x;
189#else
190 return (int32_t)(x * 256);
191#endif
192}
caryclark@google.com383d5d42012-06-06 12:09:18 +0000193#endif
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000194
195SkXfermode* SkArithmeticMode::Create(SkScalar k1, SkScalar k2,
196 SkScalar k3, SkScalar k4) {
197 if (fitsInBits(k1, 8) && fitsInBits(k2, 16) &&
198 fitsInBits(k2, 16) && fitsInBits(k2, 24)) {
199
caryclark@google.com383d5d42012-06-06 12:09:18 +0000200#if 0 // UNUSED
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000201 int32_t i1 = toDot8(k1);
202 int32_t i2 = toDot8(k2);
203 int32_t i3 = toDot8(k3);
204 int32_t i4 = toDot8(k4);
mike@reedtribe.orge51755f2011-12-10 19:36:56 +0000205 if (i1) {
206 return SkNEW_ARGS(SkArithmeticMode_quad, (i1, i2, i3, i4));
207 }
208 if (0 == i2) {
209 return SkNEW_ARGS(SkArithmeticMode_dst, (i3, i4));
210 }
211 if (0 == i3) {
212 return SkNEW_ARGS(SkArithmeticMode_src, (i2, i4));
213 }
214 return SkNEW_ARGS(SkArithmeticMode_linear, (i2, i3, i4));
215#endif
216 }
217 return SkNEW_ARGS(SkArithmeticMode_scalar, (k1, k2, k3, k4));
218}
senorblanco@chromium.org9a6eb0e2013-05-29 20:55:09 +0000219
220
221//////////////////////////////////////////////////////////////////////////////
222
223#if SK_SUPPORT_GPU
224
225class GrGLArithmeticEffect : public GrGLEffect {
226public:
227 GrGLArithmeticEffect(const GrBackendEffectFactory&, const GrDrawEffect&);
228 virtual ~GrGLArithmeticEffect();
229
230 virtual void emitCode(GrGLShaderBuilder*,
231 const GrDrawEffect&,
232 EffectKey,
233 const char* outputColor,
234 const char* inputColor,
235 const TextureSamplerArray&) SK_OVERRIDE;
236
237 static inline EffectKey GenKey(const GrDrawEffect&, const GrGLCaps&);
238
239 virtual void setData(const GrGLUniformManager&, const GrDrawEffect&) SK_OVERRIDE;
240
241private:
242 static const GrEffect::CoordsType kCoordsType = GrEffect::kLocal_CoordsType;
243
244 GrGLUniformManager::UniformHandle fKUni;
245
246 typedef GrGLEffect INHERITED;
247};
248
249///////////////////////////////////////////////////////////////////////////////
250
251class GrArithmeticEffect : public GrEffect {
252public:
253 static GrEffectRef* Create(float k1, float k2, float k3, float k4) {
254 AutoEffectUnref effect(SkNEW_ARGS(GrArithmeticEffect, (k1, k2, k3, k4)));
255 return CreateEffectRef(effect);
256 }
257
258 virtual ~GrArithmeticEffect();
259
260 virtual const GrBackendEffectFactory& getFactory() const SK_OVERRIDE;
261
262 typedef GrGLArithmeticEffect GLEffect;
263 static const char* Name() { return "Arithmetic"; }
264
265 virtual void getConstantColorComponents(GrColor* color, uint32_t* validFlags) const SK_OVERRIDE;
266
267 float k1() const { return fK1; }
268 float k2() const { return fK2; }
269 float k3() const { return fK3; }
270 float k4() const { return fK4; }
271
272private:
273 virtual bool onIsEqual(const GrEffect&) const SK_OVERRIDE;
274
275 GrArithmeticEffect(float k1, float k2, float k3, float k4);
276 float fK1, fK2, fK3, fK4;
277
278 GR_DECLARE_EFFECT_TEST;
279 typedef GrEffect INHERITED;
280
281};
282
283///////////////////////////////////////////////////////////////////////////////
284
285GrArithmeticEffect::GrArithmeticEffect(float k1, float k2, float k3, float k4)
286 : fK1(k1), fK2(k2), fK3(k3), fK4(k4) {
287 this->setWillReadDstColor();
288}
289
290GrArithmeticEffect::~GrArithmeticEffect() {
291}
292
293bool GrArithmeticEffect::onIsEqual(const GrEffect& sBase) const {
294 const GrArithmeticEffect& s = CastEffect<GrArithmeticEffect>(sBase);
295 return fK1 == s.fK1 &&
296 fK2 == s.fK2 &&
297 fK3 == s.fK3 &&
298 fK4 == s.fK4;
299}
300
301const GrBackendEffectFactory& GrArithmeticEffect::getFactory() const {
302 return GrTBackendEffectFactory<GrArithmeticEffect>::getInstance();
303}
304
305void GrArithmeticEffect::getConstantColorComponents(GrColor* color, uint32_t* validFlags) const {
306 // TODO: optimize this
307 *validFlags = 0;
308}
309
310///////////////////////////////////////////////////////////////////////////////
311
312GrGLArithmeticEffect::GrGLArithmeticEffect(const GrBackendEffectFactory& factory,
313 const GrDrawEffect& drawEffect) : INHERITED(factory) {
314}
315
316GrGLArithmeticEffect::~GrGLArithmeticEffect() {
317}
318
319void GrGLArithmeticEffect::emitCode(GrGLShaderBuilder* builder,
320 const GrDrawEffect&,
321 EffectKey key,
322 const char* outputColor,
323 const char* inputColor,
324 const TextureSamplerArray& samplers) {
325 const char* dstColor = builder->dstColor();
326 GrAssert(NULL != dstColor);
327 fKUni = builder->addUniform(GrGLShaderBuilder::kFragment_ShaderType,
328 kVec4f_GrSLType, "k");
329 const char* kUni = builder->getUniformCStr(fKUni);
330
331 const char* srcColor = "srcColor";
332
333 // We don't try to optimize for this case at all
334 if (NULL == inputColor) {
335 builder->fsCodeAppendf("\t\tconst vec4 srcColor = %s;\n", GrGLSLOnesVecf(4));
336 } else {
337 builder->fsCodeAppendf("\t\tvec4 srcColor = %s;\n", inputColor);
338 builder->fsCodeAppendf("\t\tsrcColor.rgb = clamp(srcColor.rgb / srcColor.a, 0.0, 1.0);\n");
339 }
340
341 builder->fsCodeAppendf("\t\t%s.rgb = clamp(%s.rgb / %s.a, 0.0, 1.0);\n", dstColor, dstColor, dstColor);
342
343 builder->fsCodeAppendf("\t\t%s = %s.x * %s * %s + %s.y * %s + %s.z * %s + %s.w;\n", outputColor, kUni, srcColor, dstColor, kUni, srcColor, kUni, dstColor, kUni);
344 builder->fsCodeAppendf("\t\t%s = clamp(%s, 0.0, 1.0);\n", outputColor, outputColor);
345 builder->fsCodeAppendf("\t\t%s.rgb *= %s.a;\n", outputColor, outputColor);
346}
347
348void GrGLArithmeticEffect::setData(const GrGLUniformManager& uman, const GrDrawEffect& drawEffect) {
349 const GrArithmeticEffect& arith = drawEffect.castEffect<GrArithmeticEffect>();
350 uman.set4f(fKUni, arith.k1(), arith.k2(), arith.k3(), arith.k4());
351}
352
353GrGLEffect::EffectKey GrGLArithmeticEffect::GenKey(const GrDrawEffect& drawEffect, const GrGLCaps&) {
354 return 0;
355}
356
357GrEffectRef* GrArithmeticEffect::TestCreate(SkMWCRandom* rand,
358 GrContext*,
359 const GrDrawTargetCaps&,
360 GrTexture*[]) {
361 float k1 = rand->nextF();
362 float k2 = rand->nextF();
363 float k3 = rand->nextF();
364 float k4 = rand->nextF();
365
366 static AutoEffectUnref gEffect(SkNEW_ARGS(GrArithmeticEffect, (k1, k2, k3, k4)));
367 return CreateEffectRef(gEffect);
368}
369
370GR_DEFINE_EFFECT_TEST(GrArithmeticEffect);
371
372bool SkArithmeticMode_scalar::asNewEffectOrCoeff(GrContext*,
373 GrEffectRef** effect,
374 Coeff*,
375 Coeff*) const {
376 if (effect) {
377 *effect = GrArithmeticEffect::Create(SkScalarToFloat(fK[0]),
378 SkScalarToFloat(fK[1]),
379 SkScalarToFloat(fK[2]),
380 SkScalarToFloat(fK[3]));
381 }
382 return true;
383}
384
385#endif
386
387SK_DEFINE_FLATTENABLE_REGISTRAR_GROUP_START(SkArithmeticMode)
388 SK_DEFINE_FLATTENABLE_REGISTRAR_ENTRY(SkArithmeticMode_scalar)
389SK_DEFINE_FLATTENABLE_REGISTRAR_GROUP_END